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Automatic Tomato Powder Production Line

Tomato Powder Process Flow

  • Tomato Washing Machine
  • Tomato Pealing and Cutting Machine
  • Tomato Drying Machine
  • Tomato Grinding Machine
  • Tomato Powder Mixing Machine
  • Tomato Powder Filling Machine
  • Tomato Powder Packing Machine

Tomato Powder Automatic Productino Line Design:

With the primary goal of converting fresh tomatoes into a dry, shelf-stable powder, an Automatic Tomato Powder Production Line is a continuous processing system that goes through a number of automated steps, such as washing, crushing, concentrating, drying, and packaging.

Flow of the Core Process

Raw Material Pretreatment is the first step in the full automated process. First, freshly harvested tomatoes are unloaded into a washing unit, frequently using an automatic charger system or conveyor. They are thoroughly cleaned here to get rid of surface microbes, detritus, and field dirt.A stage of optical sorting follows, in which sensors and cameras automatically detect and reject faulty fruits (those with rot, flaws, or the wrong color). After being approved, the tomatoes are transported to the crusher station. The fruit must be broken down and the degradation-causing enzymes must be inactivated right away. As a result, in a procedure known as “hot break,” the tomatoes are usually crushed and quickly heated to about 85°C. Pectin and color are preserved in this stage. In order to get a controlled pomace yield of 4-5%, the heated pulp is subsequently run through a double-effect pulper or finisher that uses screens with precise apertures (such as 0.4-0.6 cm) to separate the desired puree from the skin and seeds.Purification and preparation are the main goals of this first step, which is comparable to other food processing lines’ cleaning and hulling of seeds or beans.

After that, the prepared tomato puree—which has a comparatively low solids content—moves on to vacuum concentration. In contrast to boiling at atmospheric pressure, evaporation can take place at much lower temperatures (usually 45–60°C) in this case because the water is removed under reduced pressure. In order to avoid browning and flavor loss, this moderate technique is essential for protecting heat-sensitive nutrients like vitamin C and natural pigments like lycopene. It makes the puree appropriate and more cost-effective for the next drying step by concentrating it into a thick paste with a high solids content.The manufacturing of premium extracts in the tea or pharmaceutical industries shares this low-temperature concentration approach.

The Spray Drying Core Process is the central component of powder manufacture. A spray drier is fed the concentrated tomato paste. The paste is dispersed into a chamber as a fine mist of tiny droplets using a centrifugal atomizer or a high-pressure pump. The final powder particle size is mostly dependent on the atomization technique (centrifugal wheel or pressure nozzle). A stream of hot, dry air is immediately exposed to these droplets.Rapid moisture evaporation from each droplet’s surface creates a hollow, porous particle, which is the drying principle. Using PID technology, the inlet air temperature is carefully regulated (often within ±1°C) to guarantee effective drying without burning the heat-sensitive tomato solids. The equipment has features like automatic needle systems to avoid nozzle clogging and is mainly made of big stainless steel for hygienic and corrosion-resistant purposes. The powder cools after falling to the chamber’s bottom. It’s crucial to remember that grinding dry solids is not the same as spray drying tomato powder.However, tools like an airflow pulverizer or ultrafine grinder may be employed for final particle size optimization in some complementary processes or for other food powders. To recover product and keep the area clean, the entire drying area is connected to effective dust collection grinder systems.

Completed Product Management

After being dried and chilled, the tomato powder is treated as a finished product. Similar to sifting flour or spice powders, it can be gently sieved or run through a vibrating pulverizer to guarantee a consistent consistency and break up any loose agglomerates.The powder is then transported to the automated packaging station, frequently via enclosed systems like pneumatic conveyors. In this case, highly accurate bags or cans are filled using precision weighing scales. Certain lines may incorporate vacuum or nitrogen gas flushing during packaging to increase shelf life and avoid oxidation. The process from fresh tomato to packaged powder is entirely automated; the bags are branded, sealed, and can be palletized by robots.

Important Technical Benefits

The series uses technology to provide substantial advantages. Advanced atomization maximizes its drying efficiency, resulting in rapid moisture removal and powder with more than 95% particle homogeneity. The key to its functioning is intelligent control.Temperatures, air flow rates, feed pump speeds, and even CIP (Cleaning-in-Place) cycles can all be monitored and adjusted in real-time by operators using a centralized control panel, which frequently has a color touchscreen interface. This degree of regulation safeguards nutrients and guarantees constant quality. The foundation is hygienic design. Every surface that comes into contact with the product is composed of stainless steel, and the entire process is enclosed. It satisfies strict food-grade and even higher criteria, similar to those in dairy or pharmaceutical production, when combined with automated CIP systems. Lastly, one significant benefit is its multifunctional adaptability.Although the line was created for tomatoes, it can frequently be modified to process other heat-sensitive liquid or pureed foods, such as fruit juices (such as drinks made from cassava, though a cassava grinding machine would be used earlier for root processing), vegetable purees, dairy products, or even liquid chemical and food extracts, by modifying operational parameters.

Value of Application

By automating the entire process from fresh product to stable powder, the Automatic Tomato Powder Production Line provides significant value. It improves food safety by significantly lowering manual work and minimizing human touch with the product. Common production problems like powder caking and heat deterioration (caramelization or burning) are successfully resolved by it.It effectively protects essential nutrients like vitamin C and bioactive components like lycopene by using gentle, controlled processing stages, including low-temperature vacuum concentration and accurate spray drying. As a result, the finished, superior powder is appropriate for high-end uses in the natural coloring, soup and sauce flavoring, health food, dietary supplement, and instant food industries. Essentially, it turns a seasonal, highly perishable agricultural product into a useful, shelf-stable, and adaptable food ingredient.

Although the technology used in this line is unique to tomato puree drying, it is comparable to other powder production systems.For example, it is theoretically related to cryogenic grinding machine operations for spices (such as black pepper grinder applications) or cannabis, where heat can break down beneficial chemicals, due to the need for gentle, low-temperature processing. Modern food and pharmaceutical plants are universally focused on automation and hygiene. The design of sophisticated production lines, such as the Automatic Tomato Powder Production Line, is guided by the concepts of efficiency, control, and quality preservation, whether it is a 500KG peanut butter grinder or a universal grinder in a research center.

Automatic Tomato Powder Production Line

Parameters:

industrial seeds grinder parameter


Model Name
SG-600
Crushing Capacity(kg/h)1000~2000
Power(kw)11
Feeding Size(mm)<5mm
Fineness(mesh)20~40mesh
Remark: Dimension is length*width*height.



Model Name
SG-800
Crushing Capacity(kg/h)2000~4000
Power(kw)15
Feeding Size(mm)<5mm
Fineness(mesh)20~40mesh
Remark: Dimension is length*width*height.

Trade Capacity

International Commercial Terms(Incoterms):FOB, CIF, CFRTerms of Payment:LC, T/T, PayPal, Western Union
Average Lead Time60 working daysMain MarketsNorth America, South America, Europe, Southeast Asia/ Mideast, East Asia(Japan/ South Korea), Australia, Domestic
Nearest Port:Ningbo Port; Shanghai PortFactory Address:JiangSu, China

Ampere of Motors Customization for Seeds Grinder:

KWHPAmpere
75kw100HP135A
55kw75HP99A
30kw40HP54A
22kw30HP39A
2.2kw3HP3.9A
1.5kw2HP2.7A

Test Report for Flax Seed Grinder:

A flax seed grinder is a type of seed nut grinder specifically designed for grinding flax seeds. Flax seeds are small, hard seeds that are packed with nutrition and are commonly used in baking and cooking. Grinding flax seeds helps to unlock their nutrients and make them easier to digest.

Flax seed grinders typically feature sharp blades or burrs that rotate to crush the flax seeds into a fine powder. This powder can then be used in a variety of recipes, such as smoothies, baked goods, and yogurt toppings. Some flax seed grinders are manual and require hand-cranking, while others are electric and feature powerful motors for faster grinding.

When choosing a flax seed grinder, it’s important to look for one with durable blades or burrs that can withstand the hard texture of flax seeds.

There are 3 ways of cooling down the grinder: water cooling system; air cooling system and liquid nitrogen freezing system. You can choose the right one if the grinder gets too hot. When machines goes too hot, the metal can expand, causing the grinding wheel to get stuck.

Business Type:Manufacturer/FactoryMain Products:Mill, grinder, granulator, mixer, Crushing Equipment
Number of Employees:100Year of Establishment:2014.05
Production Capacity

5000Set/YearAfter-sales Service:Technical Support; on-line teach lessons
R&D Capacity:


ODM, OEMAnnual Output Value:US$5 Million – US$10 Million
No. of R&D Staff:5No. of Production Lines:6

LK Mixer is a professional manufacturer for grinder, mixer and pulverizer. These machines are widely used in pharmaceutical, cosmetic, health care products and chemical industries. Our main product including granulating machine, grinder, mixer, dryer, etc. All mechanical products in accordance with the China GMP design requirements. And also we have other certifications such as CE, UL for motors.

Business Philosophy  

“Quality is the main policy of sales” and “integrity is the principle of success” are the business philosophy of our people.  We carry out one-year warranty, lifelong maintenance service, with technical consultation, with material test machine and other services, and long-term supply of equipment. Welcome new and old customers to negotiate cooperation!  

Certifications:

Customer Side Machine Groups Showcase Videos:

Dust Collector Shipment

Shipment – Packing Method

Two Large Industrial Grinder Ready to Ship

Domestic Shipment Show Case:

Operation Instruction

General Provisions

The operation instructions for a commercial grinder may vary depending on the specific model and manufacturer. However, here are some general guidelines that may apply to many high speed grinders:

  1. Safety precautions: Before operating the high speed grinder, it is important to review all safety precautions and warnings provided in the user manual. Safety precautions may include wearing appropriate personal protective equipment, such as eye protection and hearing protection, and avoiding loose clothing or jewelry that could become caught in the grinder.
  2. Preparation: The high speed grinder should be placed on a stable and level surface, and all necessary components should be assembled according to the manufacturer’s instructions. The grinder should also be connected to a power source that is appropriate for its voltage and wattage.
  3. Loading the grinder: The material to be ground should be loaded into the grinder according to the manufacturer’s instructions. Overloading the grinder may cause damage to the machine and result in poor grinding performance.
  4. Starting the grinder: The grinder should be started according to the manufacturer’s instructions. This may involve pressing a button, turning a dial, or flipping a switch. The user should ensure that their hands are clear of the grinder and that the material to be ground is positioned properly.
  5. Adjusting the speed and settings: The speed and other settings of the high speed grinder may be adjusted according to the material being ground and the desired outcome. The user should follow the manufacturer’s instructions for making adjustments to the grinder.
  6. Monitoring the grinding process: The user should monitor the grinding process to ensure that it is progressing smoothly and that the material is being ground to the desired size and consistency. Any issues or abnormalities should be addressed promptly to prevent damage to the machine.
  7. Shutting down the grinder: When the grinding process is complete, the grinder should be shut down according to the manufacturer’s instructions. The user should ensure that the machine is completely stopped and that all moving parts have come to a complete stop before attempting to clean or service the grinder.

Overall, the operation instructions for a commercial grinder may involve a number of steps and safety precautions. It is important to carefully review the manufacturer’s instructions and follow proper operating procedures to ensure safe and effective use of the machine.

Preparation Work

Before running a commercial grinder, there are several important preparation steps that should be taken to ensure safe and effective operation of the machine. Here are some general guidelines for preparing to run a high speed grinder:

  1. Read the user manual: The first step in preparing to run a high speed grinder is to carefully read the user manual provided by the manufacturer. The user manual will provide important information about the specific model of grinder being used, including its features, specifications, and safety precautions.
  2. Select the appropriate grinding wheel: The grinding wheel used in a high speed grinder should be selected based on the material being ground and the desired outcome. It is important to use the correct type of grinding wheel to prevent damage to the machine and ensure optimal grinding performance.
  3. Inspect the grinder: Before running the grinder, it is important to inspect it for any signs of damage or wear. The user should check for loose or missing components, cracks or other signs of damage to the machine’s housing or other parts, and any other issues that could affect the grinder’s operation.
  4. Install the grinding wheel: The grinding wheel should be installed according to the manufacturer’s instructions, making sure that it is securely fastened and aligned properly. The user should also check the wheel for any cracks or other signs of damage before installation.
  5. Secure the workpiece: The workpiece to be ground should be securely clamped or held in place before starting the grinder. This will help to ensure safe and effective operation and prevent the workpiece from becoming dislodged or damaged during grinding.
  6. Connect the power source: The high speed grinder should be connected to a power source that is appropriate for its voltage and wattage. It is important to use a properly grounded power source to ensure safe and reliable operation of the machine.
  7. Test run: Before beginning actual grinding operations, it may be useful to perform a test run to ensure that the grinder is functioning properly and that the grinding wheel is aligned and balanced properly. The user should follow the manufacturer’s instructions for performing a test run.

By following these preparation steps, users can ensure safe and effective operation of a high speed grinder and achieve optimal grinding results.

Treatment of inspection

Inspection of a commercial grinder is an important maintenance procedure that helps ensure safe and effective operation of the machine. Here are some general guidelines for inspecting a high speed grinder:

  1. Disconnect power source: Before performing any inspection or maintenance on a high speed grinder, the power source should be disconnected to prevent accidental startup.
  2. Check for wear and damage: The user should inspect the grinder for any signs of wear or damage, such as cracks in the housing, worn or damaged grinding wheels, or loose or missing parts. Any issues should be addressed promptly to prevent further damage to the machine.
  3. Check alignment and balance of grinding wheel: The grinding wheel should be inspected for proper alignment and balance, as these factors can affect the quality of the grinding operation. If the grinding wheel is not properly aligned or balanced, it should be adjusted or replaced as necessary.
  4. Check for proper lubrication: The high speed grinder should be inspected for proper lubrication, as inadequate lubrication can cause excessive wear and damage to the machine’s moving parts. The user should follow the manufacturer’s instructions for lubrication, and add lubricant as necessary.
  5. Inspect electrical components: The electrical components of the high speed grinder, including the wiring, switches, and control panel, should be inspected for any signs of wear, damage, or loose connections. Any issues should be addressed promptly to prevent electrical problems.
  6. Test run: After completing the inspection, it may be useful to perform a test run of the high speed grinder to ensure that it is functioning properly and that any issues have been addressed.

By following these inspection guidelines, users can help ensure safe and effective operation of a high speed grinder and minimize the risk of damage or injury during grinding operations.

Operation Attention

Running a commercial grinder can be a dangerous operation if proper precautions are not taken. Here are some general guidelines for safe operation of a high speed grinder:

  1. Personal protective equipment: The user should wear appropriate personal protective equipment, such as safety glasses, hearing protection, and gloves, to prevent injury from flying debris, noise, and contact with the grinding wheel.
  2. Secure workpiece: The workpiece being ground should be securely clamped or held in place to prevent it from becoming dislodged during grinding.
  3. Use proper grinding wheel: The user should select the appropriate grinding wheel for the material being ground and ensure that it is installed correctly and securely. The grinding wheel should be inspected for cracks or other damage before use.
  4. Adjust grinding wheel speed: The speed of the grinding wheel should be adjusted according to the manufacturer’s instructions to ensure optimal grinding performance and prevent damage to the machine or workpiece.
  5. Avoid excessive pressure: The user should avoid applying excessive pressure to the grinding wheel, as this can cause the wheel to overheat and wear out more quickly.
  6. Avoid overheating: The high speed grinder should not be operated continuously for extended periods of time, as this can cause overheating and damage to the machine.
  7. Monitor grinding operation: The user should closely monitor the grinding operation to ensure that the workpiece is being ground properly and that the grinding wheel is functioning correctly.
  8. Disconnect power source: After completing grinding operations, the power source should be disconnected to prevent accidental startup.

By following these guidelines, users can operate a high speed grinder safely and effectively, and achieve optimal grinding results. It is important to follow the manufacturer’s instructions and all applicable safety regulations when operating any type of machinery.

Applications of Industrial Seed Grinder

Industrial seed grinders are used in a variety of applications across many industries. Here are some of the most common applications of industrial seed grinders:

  1. Food industry: Industrial seed grinders are used extensively in the food industry to grind seeds, nuts, and spices into fine powders or pastes. These powders and pastes are then used in a variety of products such as sauces, seasonings, and spreads.
  2. Pharmaceutical industry: In the pharmaceutical industry, industrial seed grinders are used to grind plant material into a fine powder, which is then used to make medicines and supplements.
  3. Cosmetics industry: Industrial seed grinders are also used in the cosmetics industry to grind plant material into a fine powder or paste, which is then used in products such as face masks, scrubs, and exfoliants.
  4. Agricultural industry: Industrial seed grinders are used in the agricultural industry to process seeds, such as soybeans, into animal feed.
  5. Chemical industry: In the chemical industry, industrial seed grinders are used to grind materials such as resins, pigments, and dyes into a fine powder.
  6. Renewable energy industry: Industrial seed grinders are also used in the renewable energy industry to process biomass into a fine powder, which is then burned to generate electricity.

Overall, industrial seed grinders are versatile machines that are used in many different industries for a variety of applications. They are essential for processing plant material into fine powders and pastes that can be used in many different products.

While not requiring the extreme precision of an Ultrafine Grinder used for chemicals or Medicine, a grinding machine such as a Hammer Mill or a Dry Grinder could be employed to achieve the desired particle size distribution, ensuring consistency in the final mix, much like achieving uniform flour from wheat.

Automated Weighing and Precision Batching

From the storage silos, each raw material is precisely metered according to a computer-stored recipe. This stage is critical for product quality and consistency. Sophisticated weighing systems, using load cells and controlled screw feeders or pneumatic valves, dispense each component—from large volumes of fillers like calcium carbonate (akin to handling bulk salt or sugar) to minute, critical amounts of organic polymers or cellulose ether. Multiple scales often work simultaneously to speed up the batching cycle. After that, a sophisticated optical sorting system automatically detects and eliminates faulty fruits, including moldy, rotten, or unripe tomatoes, guaranteeing that only pure, premium raw materials are used. Whether cleaning seeds and beans or washing crops like cassava before a cassava grinding machine, this thorough cleaning is just as important as it is in other food processing lines.

Enzyme inactivation and hot breaking come next. To break down the tomatoes, they are fed into a chopper or crusher. The temperature of this crushed pulp is immediately raised to 85–90°C. This procedure, known as “hot break,” quickly deactivates natural enzymes like pectinase, which would otherwise result in unfavorable browning, viscosity loss, and nutritional degradation during further processing.It is an essential heat treatment for maintaining quality and color.

After heating, the pulp is pulped and refined. It passes through a dual-stage pulper or finisher, which separates the smooth, seedless puree from the skins and seeds using screens with specific apertures (usually 0.4-0.6 cm). This procedure maximizes production and produces a fine, consistent puree for the subsequent steps by controlling the pomace (trash) yield to a low 4–5%.

Homogenization and Concentration

There is a lot of water in the tomato purée. It goes through Vacuum Low-Temperature Concentration to make drying effective and cost-effective.The puree is evaporated at a low temperature (around 50°C) under vacuum (pressure less than 670 mmHg). While reducing thermal damage to heat-sensitive minerals like vitamin C and natural colors (like lycopene), this gentle process removes a large amount of water, raising the solid content to 20–30%. It is a preservation-focused method that is conceptually comparable to concentrating delicate extracts in the tea or pharmaceutical industries.

The thick paste is frequently homogenized under high pressure after concentration. This procedure emulsifies the mixture and breaks down any remaining particle clusters using pressures of 150–200 kg/cm². The resulting spray-dried powder is more consistent and of higher quality as a result of the more homogeneous particle size distribution.

The Fundamentals of Spray Drying

The liquid concentration is turned into a dry powder at this point. Atomization control is crucial, to start. An atomizer within the drying chamber receives the concentrated paste. The liquid is dispersed into a thin mist of micron-sized droplets using either a centrifugal disk atomizer or a high-pressure nozzle. The resultant powder’s density and particle size are directly influenced by the atomizer’s design.

When this mist comes into contact with a stream of hot, dry air, the Precision Drying process truly begins. There are two primary methods: Conventional spray drying employs air temperatures between 150 and 160°C at the entrance, where evaporation happens very quickly.Low-Temperature Drying technique, which uses dehumidified air at 25–50°C as the drying medium, is utilized for high-end products that need to retain as much of their nutrients as possible. Advanced PID controllers keep the temperature within ±1°C in both situations. Each droplet’s surface immediately loses moisture when it comes into touch with the heated air, creating dry, hollow, porous powder particles. Cooling jackets on the walls of the drying chamber are frequently used to stop powder from adhering, which is a common problem with sweet items like tomato powder.

The line has an Anti-Clogging Design to guarantee continuous functioning. To avoid obstructions that can stop production, an automated needle-cleaning system cleans the atomizer nozzles on a regular basis. Maintaining consistent, effective drying requires this.

Completed Product Packaging and Handling

The hot powder goes through a cooling and screening phase after exiting the dryer. The powder is gradually cooled to room temperature using a fluidized bed cooler. Similar to the final screening of flour or spice powders, a vibrating pulverizer or sieve is next used to break up any soft lumps and guarantee a free-flowing, uniform powder.

Aseptic and moisture-proof packaging is the last phase. A machine for automatic packaging receives the powder. To reduce dust (powder flying) during filling, specialized filling heads made for light, airy powders like tomato powder are utilized.After precisely weighing the powder, it is put into packaging that acts as a barrier against moisture and oxygen. Usually, these are stand-up pouches with resealable zippers or bags made of aluminum foil laminate. To provide a total barrier, the bags are heat-sealed.

Throughout, aseptic control is upheld. The processing equipment is automatically cleaned and sanitized by a CIP (Clean-in-Place) system. Similar to requirements in the production of pharmaceuticals or high-care foods, the packaging area is frequently maintained under positive air pressure with filtered air to prevent external contaminants from entering.

Central Control System with Intelligence


A PLC-based Central Control System manages the entire line.Control over all phases—washing parameters, crushing, concentration temperatures, drying conditions, and packaging weights—is integrated into this system. Through an intuitive human-machine interface (HMI), it offers fault warnings, data logging, real-time monitoring, and simple recipe modifications. In contemporary food and chemical processing facilities, this degree of automation and traceability is becoming the norm.

Line Versatility and Process Variations

It’s critical to recognize the main variances in the process. In order to produce premium, “health-grade” tomato powder, where the preservation of heat-sensitive vitamins, antioxidants, and natural color is crucial, the Low-Temperature Drying Line uses dehumidified air at 25–50°C. This mild method is similar to the idea behind cryogenic grinding machines, which maintain volatile compounds at low temperatures and are used for cannabis or spices like licorice or black pepper.

A well-designed large-scale production line is also very adaptable.It may be modified to create a variety of different powder products through modular changes, such as altering feed systems, atomizers, or settings. This includes powdered fruits and vegetables (such as berries and mushrooms), medicinal extracts, and even powders made from dairy. Similar to how a universal grinder or an airflow pulverizer may be set up for various materials in a pilot plant environment, this flexibility is a defining feature of contemporary processing equipment. Thousands of tons of fresh produce can be handled daily by these massive lines, which can have astonishing capacity.

In conclusion, food engineering and automation are expertly integrated in the Automatic Tomato Powder Production Line. Although tomato powder is its main emphasis, many high-value food, nutraceutical, and specialized chemical powders are produced using the same underlying technologies—gentle concentration, perfect heat control, aseptic handling, and intelligent automation. It turns a perishable fruit into a stable, practical, and nourishing ingredient for the world’s food business from the first wash to the last sealed bag.

Food Producing Process Flow:

Ultrafine grinding is one of the very key procedure in whole production line. It depends how many mesh that customer need to produce. That’s to say this machine can decide what kind of material will get finally before mxing.

Coarse Crusher Machine —>Grinding Machine —> Vibrating Table Sifter Machine—>Mixing Machine—>Packing Machine —> (Printed Packaging Film Roll or bags ) —> Filling, sealing machine, capping and Labeling Machine —>Pack into Box.

Contact us for detail proposal and cost:

Contact Whatsapp: +86 13641968560
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Automatic Banana Powder Production Line Youtube Video

Customization Seeds Grinder According to your Capacity:

We can customize the capacity according to your special requirement, we can also customize the vacuum feeder connect with your production line (the dimension and width of grinder), for detail contact with our sales for proposal and price.

Videos of Seeds Grinder Machine:

Many model of Seeds Grinder, the universal grinder is suitable to cut the seeds into 12-120mesh, the high efficient grinder is useful, but cost a little bit higher than universal. The super fine grinder can grind into 100mesh to 320mesh. Customer can choose according to your own requirement. here show some example:

About LKMixer

LKMixer is a professional manufacturer for fertilizer production line, grinder, mixer and granulator, shredder. These machines are widely used in food, pharmaceutical, cosmetic, health care products and chemical industries. The Food materials like Peanut, mushroom, seeds, potato, bean, tobacco, salt, cannabis, tea, Sugar, corn, Coffee, rice, pepper, grain as so on. Grinders have many types such as Pulse Dust Grinder which suitable for zero pollution environment, Turbine Mill  which is suitable for coffee bean, 12-120mesh all can meet, Ultrafine Grinding Mill covers 80-200mesh, and also Winnowing Dust Grinder or other grinding machines like SF Hammer. Welcome to contact us for details. Contact us for more information. Proposal, catalog, quotation. Mobile/WhatsApp: +86 18019763531 Tel: +86 21 66037855 Email: sales@lkmixer.com

Contact Us

FAQ(Click and See More)

We have 20 years manufacturing experiences; 15600 cubic meters factory area; 5000sets annual capacity; 55 professional engineers;

South America: Brazil, Colombia, Peru, Bolivia, Uruguay, Paraguay ;Romania;
USA with UL Certification
Middle East: Saudi, Arabia, Oman, Turkey
Europe: Russia, Australia, Belarus, Ukraine, Poland

– Yes, OEM or ODM. Machine can be customized according to customer detail requirement, including capacity and voltages, motor certifications.
– Drawing and raw materials also can be customized.

Our Factory located in Jiangsu Province, very near to Shanghai, you can fly to Shanghai Pudong Airport, we pick you up and take you by car 2 hours ride, can reach our factory, welcome your visit.

1) Before your purchasing, we need to know your detail request, such as what kind of material you want to grind and mixing, what final product powder or granule you want to reach. Because different material and powder sizes request of different machine to do. We can provide professional advice and rich experience help to choose machine. Most of the products we have already did before for other customer, trail test or run mass production, so we knows which machine is best in performance of grinding and mixing. This is of very importance in helping you choose the right model. We also wish this can help our customer a lot. Even the material we didn’t do before, we will prepare the same material and to do the trail test and send video to you for your reference.
2) One Year guarantee of machine quality. If the machine have problem within one year, we will send you the spare parts to you for replacement, but this not including the damage caused by human causes. We also have 24 hours on line guide for customer, if you have operation difficulty, we will guide by video and on line communication with our engineer for your emergency debug.
3) For small machine, we sell with whole machine, it’s no need to install, and easy to operation, no problems for operation. While for large machine, its’s also not difficult to install with video guideline, but if you need, we can assign our technicians to go abroad, the round ticket, food and residents will be paid by customer.

Our payment term is T/T. 50% payment in advance, rest of 50% payment finish before the goods shipped. When we finish the machine production we will do trail test and run the machine take videos for your green light. You pay the rest of 50% payment then.

– 7*24 customer service online;
– 7*24 engineers online services;
– 12 months warranty services.

We majorly produce CRUSHER, GRINDER, MIXER, and also have auxiliary machines like DRYER, GRANULATOR, VIBRATING SIFTER, CONVEYOR, etc. 
We can customize whole production line according to your capacity, material, output sizes of mesh and mm of granule and powder.
 

YES ! Our f have factory build more than 20 years now, we can design and customize whole line, besides of the grinding machine, mixing machine, we can also fully support to provide the washing machine, cutting machine, drying machine, packing machine, filling machine. Though we are not producing these machine, but our brother companies co-work together for over 20 years, we have rich experience in providing you a full effective production line, fully automatically or semi-automatically.

There are several ways to grind flax seeds without a coffee grinder. Here are a few methods:
Mortar and pestle: If you have a mortar and pestle, you can use it to grind your flax seeds. Simply put a small amount of flax seeds in the mortar and use the pestle to grind them into a fine powder.
Blender or food processor: If you have a blender or food processor, you can use it to grind your flax seeds. Put the flax seeds in the blender or food processor and pulse until they are ground into a fine powder.
Rolling pin: You can also use a rolling pin to grind your flax seeds. Put the flax seeds in a plastic bag and seal it. Use the rolling pin to crush the seeds until they are ground into a fine powder.
Spice grinder: If you have a spice grinder, you can use it to grind your flax seeds. Simply put the seeds in the grinder and pulse until they are ground into a fine powder.
Note that whatever method you choose, it’s best to grind only what you need for immediate use as ground flaxseed can quickly become rancid if not stored properly.

There are several ways to grind flax seeds without a coffee grinder. Here are a few methods:
Mortar and pestle: If you have a mortar and pestle, you can use it to grind your flax seeds. Simply put a small amount of flax seeds in the mortar and use the pestle to grind them into a fine powder.
Blender or food processor: If you have a blender or food processor, you can use it to grind your flax seeds. Put the flax seeds in the blender or food processor and pulse until they are ground into a fine powder.
Rolling pin: You can also use a rolling pin to grind your flax seeds. Put the flax seeds in a plastic bag and seal it. Use the rolling pin to crush the seeds until they are ground into a fine powder.
Spice grinder: If you have a spice grinder, you can use it to grind your flax seeds. Simply put the seeds in the grinder and pulse until they are ground into a fine powder.
Note that whatever method you choose, it’s best to grind only what you need for immediate use as ground flaxseed can quickly become rancid if not stored properly.

Read More about Herb Grinder:

Click and read more about mushroom grinder:

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Wholesale Food Pulverizer Machine?What is a pulverizer used for?Is a soil pulverizer worth it?
What is a mini pulverizer?How many types of pulverizers are there?What is a meat pulverizer?
What is a Pulverizer?What is the meaning of pulverizer?What is another name for a pulverizer?
What may happen if there is a fire inside a pulverizer?What is the difference between a pulverizer and a hammer mill?ls milling the same as pulverizing?
What is the difference between a ball mill and a pulverizer?What is a pulveriser used for in the kitchen?What is a food pulverizer?
What is the difference between a crusher and a pulverizer?how does a pulverizer work ?What are the benefits of pulverizer machine?
What are the different types of coal pulverizing mills?what does the pulverizer mill do?What is used to pulverize food?
What is the process of pulverizing coal?How to Speed Up a Pulverizer?

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