pin impact mill

China No.1 Technology
- Full model range boosts capacity, output 10%-20% higher than single-layer mills.
- Combined crushing & shaping greatly lowers equipment, drying and labor costs.
- Dual crushing yields well-distributed powder with good shape and high tap density.
- Wear parts cut costs ~50%; cathode version avoids metal contamination.
- Fits anode/cathode materials, less investment and power for same output.
Impact mill (pin impact mill)components


The impact mill (include pin impact mill)comprises several essential components. The main housing uses a split-body design for easy maintenance access. Inside, a high-speed rotor assembly with an impact disc, hammers, and drive motor delivers intense grinding force via a precision transmission system.
The grinding chamber features wear-resistant liners and stator rings to withstand continuous impact. An integrated vertical turbine classifier separates coarse and fine particles using centrifugal and air drag forces, enabling closed-circuit grinding.
Supporting systems include a feeding device for controlled material input, an airflow system for powder transport, a dust collection unit for environmental compliance, and an electrical control cabinet managing operational parameters. All components mount on a reinforced steel base frame, ensuring stability and facilitating installation and shipping.
Impact mill (pin impact mill)mainframe architecture


The impact mill (include pin impact mill)main unit is the core of ultra-fine grinding, built with a modular split-body housing of side panels and a central cylinder. This design allows easy access to wear zones for quick maintenance and reduced downtime.
Inside, a high-speed rotor driven by a motor features an impact disc with peripheral hammers. Operating at tip speeds of 80–120 m/s, these hammers deliver intense kinetic energy to shatter incoming material within the grinding chamber.
The chamber is lined with wear-resistant liners and stator rings. Particles undergo repeated impact, collision, friction, and shear between rotor and liners. Centrifugal force throws them outward for inter-particle collision, progressively reducing size.
A vertical turbine classifier mounted atop separates coarse from fine powder using balanced centrifugal and air drag forces. Coarse particles recirculate for re-grinding; fines exit with the airstream, achieving fineness beyond 2500 mesh in continuous closed-circuit operation.
Pin impact mill description
Think of the Pin impact mill as a high-speed workhorse designed for size reduction and grinding in industrial settings. It is specifically built to handle dry, brittle materials ranging from soft to medium hardness. The design features two counter-rotating discs fitted with evenly arranged impact pins. By generating strong impact, collision, and shear forces, it effectively breaks down feed materials into fine powder, delivering a uniform particle size distribution for the final product.
What is Pin impact mill?
Simply put, a Pin impact mill is a piece of mechanical equipment used for grinding and crushing through high-speed impact. Unlike compression-based mills or roller grinders, this machine works by using the impact between rotating pins and feed particles, along with inter-particle collisions. It is widely used across various industries to produce fine and ultra-fine powders. We find that operators appreciate it because of its simple structure and how easy it is to maintain.
What is the Pin impact mill process?
The process begins by uniformly feeding raw material into the closed milling chamber. Once inside, the material is struck by high-speed counter-rotating pins, where it gets broken down by impact, shear, and particle collisions. Particles that are fine enough and meet the size requirements are discharged through the outlet or screen. Meanwhile, the larger particles stay in the chamber to be ground further until they reach the target size.
What are the uses of Pin impact mill?
You will find the Pin impact mill used for fine grinding and depolymerization across a wide range of industries. In the mineral sector, it processes non-metallic materials like talc, kaolin, limestone, and graphite. For food processing, it handles sugar, salt, spices, and cereals. The pharmaceutical industry relies on it for herbal ingredients and active pharmaceutical materials. Additionally, it is quite effective for processing chemical materials, pigments, and even recycled waste plastics.
What is the best Pin impact mill process?
Actually, the optimal process really depends on the raw material properties and what you need for the final product. For most brittle, non-abrasive materials where strict fineness control is needed, closed-circuit grinding with an auxiliary air classifier is usually the best choice. This approach helps reduce over-grinding, saves energy, and ensures the particle size remains consistent. However, if you are working with heat-sensitive materials, adding a forced cooling system is the best way to prevent material degradation.
Pin impact mill process Application:
The applications for Pin impact mill processes are vast. In mineral processing, it creates fine non-metallic powder used as industrial fillers. The chemical industry uses it to process pigments, pesticides, and polymer materials. In food production, it turns spices and additives into fine powders. It also plays a key role in pharmaceuticals by grinding herbal extracts and API materials. Beyond that, it is used in solid waste recycling to crush things like waste rubber and plastics.
Pin impact mill Processing Technology:
The processing technology generally involves five core steps: pre-treatment, feeding, grinding, classification, and product collection. First, oversize raw materials are pre-crushed and then fed evenly into the milling chamber. The high-speed rotating pins then impact and shear the material to reduce its size. After grinding, the material is classified by an internal or external classifier to separate the qualified products. These are then collected using cyclone separators and bag filters. It is worth noting that you can adjust the fineness by changing the rotating speed and classifier parameters.
Guide to Pin impact mill: Mills, Tips, and Uses
When selecting a Pin impact mill, it is important to choose the model based on your material hardness, required output, and target fineness. For operation tips, try to keep the feeding even to avoid overloading the machine. Also, check pin wear regularly and replace worn pins to keep the grinding effect strong. If you are dealing with heat-sensitive materials, adding air cooling is a great way to control the temperature. Common uses include fine grinding of non-metallic ores, food additives, and chemical or pharmaceutical materials, typically producing powder ranging from 80 to 300 mesh.
What is the auxiliary equipment in a Pin impact mill plant?
A Pin impact mill plant usually requires several pieces of auxiliary equipment to run smoothly. This includes feeding equipment like vibrating or screw feeders to ensure uniform delivery of raw materials. You might also need pre-crushing equipment for oversize inputs and air classifiers to control the fineness of the finished product. For collection and dust removal, cyclone separators and bag filters are essential. Blowers are used for air flow transportation, and packaging machines handle the final product. If processing heat-sensitive materials, cooling systems are often added as well.
How to optimize Pin impact mill grinding efficiency?
To get the best grinding efficiency, start by maintaining stable and uniform feeding to avoid overloading or underloading the chamber. It is also crucial to check the pins regularly and replace severely worn ones promptly, as worn pins can significantly reduce impact force. Adjusting the air flow helps discharge qualified fine powder quickly, which avoids over-grinding. Experience shows that adopting a closed-circuit process with an air classifier is effective for separating products promptly. Finally, adjusting the rotating speed based on material properties helps balance energy consumption with output.
Some classifications of impact mills

Impact Mill (pin impact mill)Shipping


Impact mills are disassembled into modules—housing, rotor, classifier, and motor—for export. Each part is wrapped in plastic film, foam-padded, and secured on ISPM 15 fumigated pallets with steel straps. Larger units use reinforced export crates with internal bracing and moisture protection. Heavy components load first in containers, secured with lashing straps. Documentation includes packing list, Bill of Lading, invoice, and certificate of origin. Cargo ships in 20ft or 40ft containers for efficient sea freight delivery.
Product Models & Basic Production Capacity Advantages
Our company has launched four models of CJM-800, CJM-1000, CJM-1250 and CJM-13800 for anode materials to meet the diversified production demands of different customers.

- Configuration of Flagship Model The flagship CJM-1380 model adopts patented technical solution of double classification, double dust removal and double fans, with a high hourly output of 1.2~1.4 tons and stable powder fineness.
- Improved Production Capacity under Identical Working Conditions Under identical production conditions of raw material type, fineness standard and equipment model, the production capacity of our equipment is over 15% higher than that of traditional equipment. Compared with single-layer impact mills, all double-layer impact mills can increase output by 10%~20% with the same raw materials and fineness requirements.
Integrated Crushing & Shaping to Greatly Reduce Comprehensive Production Costs

In the production of many finished anode material products, crushing and shaping are two separate processes. Independent shaping procedures require extra investment in shaping equipment, factory land and plant space, as well as additional power consumption, labor operation and maintenance costs.
Our equipment realizes one-step forming of crushing and shaping, eliminating the full set of supporting investments for independent shaping, and cutting comprehensive production costs from multiple dimensions including equipment, plant space, energy consumption and labor.
Supporting cost-benefit data for verification: For every 1% increase in finished product yield, the production cost per ton of product can be reduced by 100 RMB; a 2% yield increase saves 200 RMB per ton, and a 3% yield increase saves 300 RMB per ton. When power consumption is reduced by 5%, the electricity cost per ton drops by 15 RMB; for power consumption reductions of 10%, 15% and 20%, the electricity cost per ton decreases by 30 RMB, 45 RMB and 60 RMB respectively.
Core Crushing Structure & Working Principle of Double-Layer Impact Mill
(I) Patented Double-Layer Crushing Chamber Structure

The core crushing unit of the equipment includes a complete set of patented structures: main machine inner cavity, crushing rotor, gear ring, feeding and discharging channels, material throwing disc, main shaft, hammer disc, upper hammer head and lower hammer head. It relies on double-layer hammer heads for composite crushing to achieve performance breakthroughs.
- Coordinated Division of Labor for Upper and Lower Hammer Heads ① Upper hammer head: Mainly responsible for coarse crushing of materials and depolymerization of powder; ② Lower hammer head: Agitates materials inside the chamber, strengthens mutual collision and friction between particles, and synchronously completes fine crushing and powder shaping to optimize the morphology of finished powder; ③ Linkage effect of double-layer hammer heads: When upper and lower hammer heads work simultaneously, the equipment’s crushing space is increased by more than 3 times compared with single-layer mills, achieving higher production capacity and lower unit power consumption.
- Auxiliary Crushing and Shaping Functions of Material Throwing Disc ① Flow guiding function: Guided by the centrifugal force of the crushing rotor and the self-weight of materials, raw materials flow rapidly downward into the crushing area; ② Filling and friction function: The surface area of the material throwing disc is larger than that of the crushing hammer disc, which enables materials to evenly fill the circumference of the crushing rotor. Particles fully collide, extrude and rub against each other to complete efficient crushing and powder shaping simultaneously; ③ Uniform discharging function: Driven by centrifugal force, crushed and shaped powder is evenly thrown outwards to the circumference of the chamber for subsequent classification and collection.
(II) Core Structural Differences Between Double-Layer Mill and Single-Layer Impact Mill
- Greatly Expanded Crushing Space The gear ring height of the double-layer impact mill is about 1.5 times higher than that of single-layer mechanical mills, the crushing gap is expanded by about 2 times, and the overall crushing space is increased by more than 3 times.
- Composite Crushing Force (Dual Crushing of Impact and Friction) Single-layer mechanical mills only rely on end-face crushing, completing crushing mainly through the impact force generated when powder hits hammer heads and gear rings. The double-layer impact mill integrates impact force from end-face crushing + friction force from circumferential crushing. Powder particles not only collide with hammer heads and gear rings at high speed, but also generate strong friction in the gaps between hammer heads and gear rings. The mutual friction and extrusion between powder particles deliver higher crushing efficiency and superior sphericity and morphology of powder.
Advantages of Double-Layer Impact Mill in Powder Performance

A core production requirement in the anode material industry is a narrow particle size distribution of powder. Through innovative matching of the crushing chamber, classification system, cyclone collection and fan system, as well as optimized feeding, control and post-processing systems, our double-layer impact mill supports stable automatic 24-hour continuous production with outstanding powder indicators:
- Excellent particle size indicators: Finer Dv50 of finished products, narrower particle size ranges of D10, D99 and D100, and concentrated particle size distribution;
- Superior powder morphology: The equipment comes with built-in shaping effect. The finished powder features regular particle shape, excellent bulk density and tap density, low fine powder content and high finished product yield. It can be directly used as an integrated crushing and shaping machine for many types of anode raw materials.
All-Round Competitive Advantages of Double-Layer Impact Mill in the Anode Material Industry

(I) Production Capacity Advantage
With identical raw materials and fineness standards, the output is 10%~20% higher than that of single-layer impact mills. The flagship CJM-1380 model delivers an hourly output of 1.2~1.4 tons.
(II) Finished Powder Quality Advantage
Powder particles feature regular morphology, low fine powder content, high tap density and high finished product yield. The integrated crushing and shaping process eliminates independent shaping procedures.
(III) Operation & Maintenance Cost Advantage for Wear Parts
Wear parts of the equipment adopt a composite wear-resistant protection scheme (Attached Drawing: Full Ceramic Protection Logo): The surface of the hammer disc is equipped with a wear-resistant welding protective layer, and the striking surface of hammer heads is fully protected by hard alloy. The service life of wear parts is greatly extended, cutting the comprehensive service cost of wear parts by nearly 50%. Key components in contact with materials are made of ceramic and composite stabilized zirconia materials to eliminate metal contamination of powder.
(IV) Built-In Drying Function to Reduce Raw Material Pretreatment Costs
The large crushing chamber and strong powder friction of the equipment generate higher internal operating temperature of the cavity, accelerating the evaporation of internal moisture in raw materials. It supports continuous production of raw materials with different moisture contents without blockage during the whole process. Independent front-end drying equipment can be eliminated, reducing drying costs by 30~60 RMB per ton of product.
(V) Wide Range of Raw Material Adaptability
It is well suited for mass production of powder with various fineness levels, targeting mainstream anode raw materials such as petroleum coke and coal-based needle coke.
Energy Saving & Consumption Reduction Advantages of the Whole Equipment

- The crushing space of the chamber is increased by 30%, and the power consumption per unit product of the whole machine is reduced by 10%~30%;
- The double-layer composite crushing structure cuts invalid energy consumption, resulting in significantly lower power consumption under the same output compared with single-layer impact mills;
- The integrated crushing and shaping process eliminates dual energy input from independent shaping and drying equipment, greatly lowering comprehensive electricity costs.
Equipment Technical Parameter Drawing (Special for Anode Materials)

Equipment Technical Parameter Drawing (Special for Cathode Materials)

Equipment Application Scenarios
- Anode Material Production: Adapted for crushing and shaping of anode raw materials including petroleum coke and coal-based needle coke;
- Cathode Material Production: Suitable for crushing and classification of various lithium-ion cathode powder materials.


















- Drawing line: As shown in below picture:

- Dig a hole: The SHM-309 foundation drawing showed size : length:3.65M,wide:3M,highly:0.5M.When Dig the hole need to have reservation some size.
Suggest size: length:4M,wide:3.5M.

- Put reinforced:Arrangement of two layers of rebar in the pit.
The size of reinforced:DiameterΦ16,spacing:20cm,Tie the rebar tightly with steel wire.

- Set mould: Enclose the square pit with template and height is the same as the ground.

- Welded: Accurately arrange the position of the steel mould and motor seat.Put 6 rebar (Φ 24) inside of each steel die (2 steel mould); Four corners of the motor base stand up and 1 rebar(Φ 18). Each rebar is 50 cm higher than the horizontal plane.


- First pouring concrete: The height is the same as the floor.

- Placing main machine steel die: The next day, Placing the main machine steel mould according to the size of the basic drawing.


- Weld: After the steel mould is put in place and make sure all sizes are correct. Weld the steel mould with 6 rebars (Φ24) together.

- The second pouring concrete. When pouring, the first steel mould is pouring half, and then poured another half of the steel mould, then back to pouring the first steel mould. It ensures that the size comparison does not deviate.Attention
- A single steel mould must be horizontal, at the same time, two steel mould dies must be horizontal.
- The pitch-row of the foundation bolts of two steel mould must be accurate. SHM-309 roller mill is 2045mm.
- Two steel mould cannot be misplaced.(It can be corrected by diagonal lines between steel dies, the length of diagonal must be equal.)
- The center line between steel mould and motor seat must be accurate. SHM-309 roller mill is 1900mm.
- After the steel mould is put in place and make sure all sizes are correct, the two steel mould must be welded and fixed with three channels steel before pouring concrete. Make sure the steel mould is not displacement and dimension not error during pouring. (This step must be done.)
Impact Mills for Sale
Roller Mills for Sale

About LKMixer
LKMixer is a professional manufacturer for grinding and mixing 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 Banana , Yellow Onion, seeds, potato, bean, tobacco, salt, cannabis, tea, Potato, corn, Coffee, rice, pepper, grain as so on. Grinders have many types such as Vacuum Millwhich suitable for zero dust environment, high speed grinder which is suitable for high speed, 0-100 all can meet, Dry Grinder , and also cutting type pulverizer or other grinding machines like SF Hammer. Welcome to contact us for details. Contact us for more information. Proposal, catalog, quotation.
FAQ(Click and See More)
Why Choose Us?
We have 20 years manufacturing experiences; 15600 cubic meters factory area; 5000sets annual capacity; 55 professional engineers;
What’s your main maket?
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
Can you support OEM?
– 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.
What after-sale services?
– 7*24 customer service online;
– 7*24 engineers online services;
– 12 months warranty services.
WHAT kind of MACHINE YOUR COMPANY HAVE?
CAN YOU GIVE ME GUIDE ON OTHER MACHINE ? TO FULL MY PRODUCTION LINE
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.
HOW TO VISIT YOUR COMPANY?
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.
WHAT’S YOUR BEFORE & AFTER SERVICE ?
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.
HOW ABOUT YOUR PAYMENT TERM?
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.
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