跳至主要内容

Ceramic lined Wearable Tube

Technical performance parameters ceramic wear pipeline
Ceramic wear pipeline is our continuous improvement after years of study introduced new wear-resistant pipes , the main technical performance parameters have the following :

good wear resistance
Ceramic wear lining layer of the pipe due to the corundum ceramics (a-AL2O3), equivalent to 9.0 Mohs hardness up to HRC90 or more. So for metallurgy, electric power , mining, coal transportation and other industries grinding media have high wear resistance. Confirmed by the industrial operation : it is ten times the wear life of hardened steel or even several times .

running resistance
Due to the inner surface of the pipe ceramic wear smooth, and never rust , not like the convex surface of seamless steel helix exists. After internal surface roughness of the test unit and water resistance characteristics of the test , the inner surface smoothness better than any metal pipes, clearing a drag coefficient of 0.0193 , slightly lower than seamless . Therefore, the tube has a running resistance and other characteristics , can reduce operating costs.

corrosion-resistant , anti- fouling
Since the ceramic wear steel pipes ceramic layer (a-AL2O3), a neutral character. So with acid and seawater corrosion resistant , and also has anti-scaling and other characteristics.

此博客中的热门博文

Silicon carbide alloy ceramic wear tube

Reaction bonded SiC is made by infiltrating compacts made of mixtures of SiC and carbon with liquid silicon. The silicon reacts with the carbon forming more SiC which bonds the initial SiC particles. Silicon carbide is formed in two ways, reaction bonding and sintering. Each forming method greatly affects the end microstructure. Reaction bonded SiC is made by infiltrating compacts made of mixtures of SiC and carbon with liquid silicon. The silicon reacts with the carbon forming more SiC which bonds the initial SiC particles. Sintered SiC is produced from pure SiC powder with non-oxide sintering aids. Conventional ceramic forming processes are used and the material is sintered in an inert atmosphere at temperatures up to 2000ºC or higher. Both forms of silicon carbide (SiC) are highly wear resistant with good mechanical properties, including high temperature strength and thermal shock resistance. Our engineers are always available to best advise you on the strengths and weaknesses of ea...

ASME SA333 Gr.6 Seamless Steel Pipe

ASME SA333 Gr.6 Seamless Steel Pipe alloy steel ,  ASME SA333 Gr.6 ,  astm a333 ,  ASTM A333 Gr.6 ,  ASTM A333 Grade 6 ,  gr 6 ,  seamless steel pipe ASTM A333 Standard covers seamless and welded steel pipe for low temperature service. The Grade 6 steel involved is similar to AISI 4032 low alloy steel. ASTM A333 Grade 6 pipe shall be made by the seamless or welding process with the addition of no filler metal in the welding operation. Seamless and Welded Steel Pipe size for Low-Temperature Service: Outer Dimensions: 19.05mm-114.3mm Wall Thickness:2.0mm-14 mm Length: max 16000mm Application: Seamless and Welded Steel Pipe for Low-Temperature Service. Steel grade: ASTM A333 Grade 6 Inspection and Test: Chemical Composition Inspection, Mechanical Properties Test Tensile Strength,Yield Strength, Elongation, Flaring, Flattening, Bending, Hardness, Impact Test Surface and Dimension Test,No-destructive Test, Hydrostatic Test. ASTM A333 Gr. 6 Chemical Compositions(...

Ultra high molecular weight polyethylene pipe

Ultra-high molecular weight polyethylene (UHMW-PE) is a new kind of engineering thermoplastics with more than 3 million viscosity-average molecular weight. What is UHMWPE Ultra-high molecular weight polyethylene pipe has superior performance over conventional HDPE pipe such as very high wear resistance, impact resistance, excellent resistance to internal pressure strength, resistance to environmental stress cracking, intrinsically self-lubricating, anti-adhesion, low temperature resistance and excellent chemical resistance. UHMWPE wear pipe UHMWPE pipe bend UHMWPE pipe for dredginge UHMWPE pipe with flangee Ultra-high molecular weight polyethylene (UHMW full name is ultra-high molecular weight polyethylene pipe) is a thermoplastic engineering plastics with an average molecular weight greater than 1.5 million, which is polymerized by ethylene and butadiene monomer under the action of a catalyst. Ultra high molecular weight polyethylene is superior in comprehensive performance, abrasion ...