Processing of Plastic Components with Complex Shapes

Product Details
Customization: Available
Application: Machinery Accessory, Plastic Parts
Standard: GB, China GB Code
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  • Processing of Plastic Components with Complex Shapes
  • Processing of Plastic Components with Complex Shapes
  • Processing of Plastic Components with Complex Shapes
  • Processing of Plastic Components with Complex Shapes
  • Processing of Plastic Components with Complex Shapes
  • Processing of Plastic Components with Complex Shapes
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Basic Info.

Model NO.
Type of board material
Surface Treatment
Machining
Production Type
Batch Production
Machining Method
CNC Machining
Material
Nylon, Steel, Plastic, Aluminum
Colour
Customizable
Conductivity or Not
Isolation
Shape
Customizable
Delivery Period
Within 7 Days
Transport Package
Wooden Crate/Cardboard Box Packaging
Specification
100*100*100mm
Trademark
None
Origin
Guangzhou, China
Production Capacity
100000pieces/Year

Packaging & Delivery

Package Size
10.00cm * 10.00cm * 10.00cm
Package Gross Weight
0.100kg

Product Description

Plastic type key performance Typical industrial applications
POM High rigidity, wear-resistant, self-lubricating Gears, bearings, camshafts, valve components
PA Good toughness, fatigue resistance, oil resistance Pulley, chain guide, conveyor belt components
PTFE High temperature resistance (260 ºC), chemical inertness, extremely low friction Sealing rings, liners, chemical pipeline liners
UHMWPE Impact resistant and wear-resistant (better than steel) Material bin liner, conveyor chute, artificial joint
PC High transparency and impact resistance Windows, protective covers, instrument casings
PEEK High temperature resistance (250 ºC), high strength Aerospace components, high-temperature pump valve parts
ABS Easy to process, smooth surface Control panel, casing, ventilation duct
Processing of Plastic Components with Complex Shapes
PEEK (Polyether ketone) is a high-performance special engineering plastic with excellent high temperature resistance, mechanical strength, chemical stability, and wear resistance. It is widely used in aerospace, medical, automotive, electronic, and industrial equipment fields.
 
Has the following characteristics:
High temperature resistance: Long term use temperature can reach 250 ° C, short-term temperature resistance is 300 ° C (better than most engineering plastics)
High mechanical strength, high rigidity, high strength (similar to aluminum alloy), excellent creep resistance
Wear resistance with low friction coefficient (0.3~0.4), suitable for high wear environments
Chemical stability, acid and alkali resistance, organic solvents (except concentrated sulfuric acid and concentrated nitric acid)
Electrical insulation maintains stable insulation performance at high frequencies, suitable for the field of electronics and electrical engineering
Radiation resistance, resistant to X-rays and gamma rays, suitable for nuclear industry and medical equipment
Biocompatibility meets medical grade standards (ISO 10993) and can be used for human implants
Flame retardant and self extinguishing (UL94 V-0 grade), low smoke and non-toxic
Low dimensional stability and moisture absorption, maintaining stability even in humid or high temperature environments
Processing of Plastic Components with Complex Shapes
 
Processing of Plastic Components with Complex Shapes
Processing of Plastic Components with Complex Shapes
UHMWPE(Ultra-High Molecular Weight Polyethylene)  It is a linear polyethylene with a molecular weight typically between 2 million and 6 million, much higher than ordinary HDPE (high-density polyethylene). It has extremely high wear resistance, impact resistance, and self-lubricating properties, and is widely used in industrial, medical, and sports equipment fields.
Has the following performance:
The most wear-resistant material in wear-resistant plastics (7 times higher than carbon steel and 4 times higher than nylon)
Extremely high impact resistance and toughness, maintaining excellent impact resistance even at low temperatures (-200 ° C)
Low self-lubricating friction coefficient (0.1~0.2, close to PTFE), suitable for oil-free lubrication environment
Chemical stability: Acid, alkali, and organic solvents (except for strong oxidizing acids)
Low density 0.93-0.94 g/cm ³ (lighter than water), suitable for lightweight applications
Low temperature resistance can be used within the range of -200 ° C to+80 ° C (some modified models can reach up to 100 ° C)
Good dielectric properties with good electrical insulation, suitable for electrical insulation
Biocompatibility meets medical grade standards (ISO 10993) and can be used for human implants
UV resistance requires the addition of stabilizers to improve outdoor weather resistance
Processing of Plastic Components with Complex Shapes
 

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