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Wear-resistant POM model, wear-resistant grade high lubrication POM Korean Engineering Plastics FM2020 Molybdenum disulfide filled High wear resistance and high lubrication POM
American liquid nitrogen POM contains molybdenum disulfide KL-4540
POM (Polyoxymethylene) FM2020 Korea Engineering Plastics.
Manufacturer: Korea Engineering Plastics Co., Ltd.
Feature Notes: Abrasion resistant, MOS2 filled.
Important parameters: melt flow rate: 9 g 10min density: g cm3 water absorption: % molding shrinkage: 2 % notched impact strength:
POM plus molybdenum disulfide, POM + MOS2, POM + Teflon + graphite The base material of this product is imported POM, and the wear-resistant agent is graphite, silicone oil, Teflon (PTFE), molybdenum disulfide, etc.
Guangdong Guangyao Plasticizing Technology products have the advantages of ultra-low LPV value, good lubricity, super wear resistance, dimensional stability, low shrinkage, minimal shrinkage, high rigidity, high strength, impact not easy to crack, high surface hardness, high heat resistance and so on.
Guangdong Guangyao Plasticizing Technology specializes in the production of modified POM materials. There are technical, quality and cost advantages in the industry. Technical support: Manager Liu:
Typical advantageous products are:
Wear-resistant POM: POM+PTFE, POM+molybdenum disulfide, POM+silicone oil, POM+graphite, etc.; Reinforced POM: POM+10%GF, POM+20%GF, POM+25%GF, POM+30% glass fiber, POM+carbon fiber, etc.;
Toughened POM: POM+TPU, POM+POE, POM toughening, POM low temperature resistance, POM impact resistance, etc.;
Low shrinkage POM: POM + staple fiber, POM + glass beads, POM + minerals, etc.;
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And what contact wear-resistant, and metal or plastic, is it high speed?
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POM wear-resistant and high-toughness grades I have.
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There is nothing wrong with the model upstairs, but don't ignore the domestic ones.
Yuntianhua, Tianye, Longyugang, Bluestar, Shenhua, etc. all do POM, and the specific model can consult the manufacturer. There are so many that I don't know what I want to do when I list them.
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Abrasion-resistant nylon is a good electrical insulator and, like other polyamides, does not affect its insulation properties due to moisture. Super wear-resistant, slippery, wear-resistant, nylon, PA66, PA1010, it has good impact resistance, wear resistance, and chemical stability. There are many improved varieties of self-lubricating wear-resistant nylon, such as graphite nylon PA12, graphite nylon PA66, graphite nylon PA12, carbon fiber nylon, nylon molybdenum disulfide alloy, nylon PTFE alloy.
Compared to flame-retardant nylon, these materials have a lower melting point and density, and have a higher moisture regain. Self-lubricating wear-resistant nylon has a low resistance to strong oxidizing acids. The viscosity of self-lubricating and wear-resistant nylon depends mainly on humidity, temperature and storage time.
It has good liquidity. The shrinkage is between 2% and depends on the material variety, wall thickness and other process conditions. Self-lubricating wear-resistant nylon alloy, self-lubricating wear-resistant polyamide or self-lubricating wear-resistant PTFE nylon 1010 typical applications:
Automotive electrical appliances, electronic chemicals, other commercial equipment, mechanical cams, gears, oilfield equipment, mechanical connectors and other sliding mechanisms and bearings.
Wear-resistant acetal:
1. Wear-resistant POM has a very low coefficient of friction and good geometric stability, which is especially suitable for making gears and bearings. Since it is also resistant to high temperatures, it is also used in piping devices (pipe valves, pump housings), lawn equipment, etc. Abrasion-resistant acetal is a tough and resilient material with good creep resistance, geometric stability and impact resistance even at low temperatures.
Wear-resistant acetal is available as both homopolymer and copolymer. Homopolymer materials have good ductility and fatigue strength, but are not easy to process. Copolymer materials are thermally and chemically stable and easy to process.
Both homopolymer and copolymer materials are crystalline and do not easily absorb water. The high degree of crystallization of polyoxymethylene results in it having a fairly high shrinkage rate, which can be as high as 2. There are different shrinkage rates for a variety of different reinforcement materials.
By adding wear-resistant agents (such as silicone oil, MOS2, graphite, PTFE, etc.), the friction coefficient and abrasion of the composite materials can be reduced, and the LPV value can be increased. Special lubrication modifications. Excellent fluidity and good physical properties, low odor during processing, suitable for manufacturing wear-resistant parts.
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POM is more wear-resistant, PP belongs to general aggregates, POM belongs to engineering plastics, and POM is higher on the plastic pyramid than PP.
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POM-C H (black, white): represents POM copolymer and POM homopolymer, respectively, POM copolymer has low melting point, thermal stability, chemical corrosion resistance, flow characteristics, hydrolysis resistance, strong alkali resistance and thermal oxidation degradation, and processability is better than that of homopolymeric formaldehyde. POM homopolymer has high crystallinity, creep, lower thermal expansion rate, wear resistance, mechanical strength, rigidity, and heat deflection temperature than copolymer acetaldehyde.
At present, POM semi-finished products on the market generally use POM-C copolymer).
POM-H+PTFE (dark brown) :p OM-H+TF are extruded from DuPont POM (Delrin) raw material and PTFE (Teflon) fiber. It retains most of the intrinsic strength of POM-H.
Due to the addition of PTFE (Teflon) fiber, there are some property changes, slightly softer, less rigid, and smoother than pure POM resin. Compared with pure POM board, this material has better lubricity. Bearings made of POM-H+PTFE have a low coefficient of friction, are wear-resistant, and are virtually creep-free.
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Grade: 100T Tough Grade, High Viscosity, 100AF, High Viscosity, Plus Teflon3 Fiber, 100ST, Super Tough Grade 500P, Injection Grade, High Viscosity 900P, Injection Grade, High Viscosity, 500Cl Abrasion Resistant Grade, DuPont 500T, Super Tough Grade, 107UV UV Resistant, 525GR Reinforced Grade, Medium Viscosity 527UV UV Resistant 570, Glass Fiber Reinforced Grade, High Rigidity, Low Warpage.
Model: **POM, Polytechnic Japan, M25-44 standard grade, high viscosity, M25-04, extrusion grade, M90-45, weather resistant grade, M90-44 injection grade, NW-02 high sliding, SW-01 special lubricant, high performance high sliding.
**POM, Asahi Kasei 4013A Weather Resistant Grade, UV Resistant GH-25, Glass Fiber Strengthened, High Rigidity, High Strength GH-25D Glass Fiber Enhanced, High Flow KT-20, Inorganic Filled, Wear Resistant, GB-25.
Glass bead reinforced, SX-35, soft, silencing. G0H-2 glass fiber reinforced, high strength, high rigidity, EB-20 anti-static TR-10D inorganic reinforced, high rigidity, low warpage M270-48 anti-static high fluidity M270.
100p is high viscosity, suitable for processing materials, plates, strips, and tube products.
500p injection molding grade, suitable for mechanical parts, gears, zippers.
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POM POM.
100t toughness.
High Viscosity 100af High Viscosity Plus Teflon3 Fiber 100st Super Tough 500p Injection Grade High Viscosity 900p Injection Grade High Viscosity 500cl Abrasion Resistant DuPont 500t Super Tough 107uv UV 525gr Reinforced Medium Viscosity 527uv UV 570 Glass Fiber Reinforced High rigidity and low warpage.
**POM Polytechnic M25-44 Standard Grade High Viscosity M25-04 Extrusion Grade M90-45 Weather Resistant M90-44 Injection Grade NW-02 High Slip SW-01 Special Lubricant High Performance High Sliding.
**POM Asahi Kasei 4013A Weather-Resistant UV-resistant GH-25 Glass Fiber Reinforced High Rigidity High Strength GH-25D Glass Fiber Reinforced High Flow KT-20 Inorganic Filled Abrasion Resistance GB-25 Glass Bead Reinforced SX-35 Soft, Silly G0H-2 Glass Fiber Reinforced High Strength High Rigidity EB-20 Anti-static TR-10D Inorganic Reinforced High Rigidity, Low Warpage M270-48 Anti-Static High Fluidity M270
100p is high viscosity, suitable for processed materials, plates, strips, tube products, 500p injection molding grade, suitable for mechanical parts, gears, zippers,
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100p is high viscosity and high strength, with poor flowability, and is suitable for extrusion.
500p belongs to medium viscosity, medium fluidity, and is generally used in injection molding.
900p, 1700p belong to low viscosity, generally used to inject thin-walled products such as complex structures!
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POM 1, with high mechanical strength and rigidity; 2. Highest fatigue strength; 3. Good environmental resistance and organic solvent resistance; 4. Strong resistance to repeated impacts; 5. Wide operating temperature range (-40 120); 6. Good electrical properties; 7. Good recovery; 8. It has its own lubrication and good wear resistance; 9. Excellent size stability. Usage: Electronic appliances:
Components such as washing machines, juice machine timers, etc.; Automotive: handlebars, power windows and other parts; mechanical parts, gears, handles, screws, toys, etc.; Categories: Glass Fiber Carbon Fiber Reinforced POM, Fireproof POM, UV Resistant and Weatherproof POM, Teflon POM, Anti-static Conductive POM; Nylon 1 has excellent mechanical properties.
Nylon has high mechanical strength and good toughness. 2. Good self-lubricating and friction resistance. Nylon has good self-wetting properties and a low coefficient of friction, resulting in a long service life as a transmission component.
3.Excellent heat resistance. Highly crystalline nylons such as nylon 46 have a high heat deflection temperature and can be used for a long time at 150 °C.
After PA66 is reinforced with glass fiber, its heat deflection temperature reaches more than 250 °C. 4.Excellent electrical insulating properties.
Nylon has a high volume resistance and high breakdown voltage, making it an excellent electrical and electrical insulation material. 5.Excellent weather resistance.
6.Absorbent. Nylon has high water absorption, and saturated water can reach more than 3%.
To a certain extent, it affects the dimensional stability of the workpiece.
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