- 
            
 
              UHWMPE PE1000 Engineering Plastic Sheet
UHMW or UHMW-PE (ultra high molecular weight polyethylene) is an extremely tough plastic with high abrasion and wear resistance. The versatility of polyethylene has made it a popular plastic for countless industrial applications that require durability, low friction, and chemical resistance.
 - 
            
 
              Ultra High Molecular Weight Polyethylene Film
Ultra-high molecular weight polyethylene (UPE) film has become a widely used industrial raw material due to its superior wear resistance, impact resistance and self-lubricity. Widely used in foot pads, foot stickers, insulating materials, wear-resistant gaskets, furniture foot pads, slides, wear-resistant panels, packaging materials and other occasions and products.
 - 
            
 
              UHMWPE pipe
UHMWPE pipe: Ultra-high molecular weight polyethylene (UHIMW-PE) pipe is a new type of plastic pipe that is wear-resistant, impact-resistant, corrosion-resistant, non-absorbent and self-lubricating, so it is widely used in various fields: 1. Long-distance transportation of oil:due to the corrosion of harsh acidic soil, seawater and natural salt water around the oil field, and the intrusion of internal sulfur-containing oil, the service life of steel pipes is generally only a few months, and m... - 
            
 
              UHMWPE Plastic Sheet
UHMWPE sheet has excellent abrasion resistance, impact resistance, chemical resistance, self-lubrication, extremely low moisture absorption and non-toxic properties. It is an excellent choice to replace POM, PA, PP, PTFE and other materials.
 - 
            
 
              Polyethylene RG1000 Sheet – UHMWPE With Recycled Material
Ultra High Molecular Weight Polyethylene sheet With Recycled Material
This grade, partially composed of reprocessed PE1000 material, has an overall lower property level than the virgin PE1000. PE1000R grade shows a favorable price-performance ratio for applications in many kinds of industries with less demanding requirements.