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wc-10co4cr carbides powders for general machinery

short description:

brand: kf-65
particle size: 15-45/ 10-38/ 5-30/ 5-15/ 5-25μm
type: sinter&crush, agglomerated&sintered
kf-65 similar to amperit 554/556/557/558, metco/amdry 5843/5163, woka 3903/3615/3652/3655/3665, praxair wc-113/wc-436-1/wc-7311350, pac 1500

description

kf-65 is a premium quality wc-10co4cr powder that has been designed to meet the high demands of the petroleum, paper, and general machinery industries. this product boasts a versatile particle size range of 15-45/ 10-38/ 5-30/ 5-15/ 5-25μm, making it suitable for a wide range of applications.

kf-65 is available in two different forms: sinter & crush, and agglomerated & sintered. the sinter & crush form is made by sintering the powder and then crushing it into smaller particles, while the agglomerated & sintered form is made by agglomerating the powder into larger particles before sintering. this versatility makes it easy to incorporate kf-65 into your manufacturing process and achieve the desired results.

furthermore, kf-65 is comparable to other leading products such as amperit 554/556/557/558, metco/amdry 5843/5163, woka 3903/3615/3652/3655/3665, praxair wc-113/wc-436-1/wc-7311350, and pac 1500. this ensures that you receive a product of the highest quality that meets the same standards as other industry-leading brands.

one of the major benefits of kf-65 is its ability to serve as an alternative to hard chromium plating. this is an important consideration for companies looking to reduce their environmental impact and comply with regulations. additionally, kf-65 can provide a smoother surface finish, reducing or even eliminating the need for post-machining. this can save time and money in the manufacturing process, while still delivering high-quality results.

whether you are looking to improve the performance of your equipment, reduce your environmental impact, or simply improve the quality of your products, kf-65 is an excellent choice. it is a reliable and cost-effective solution that can meet the demands of a wide variety of industries, including petroleum, paper, and general machinery. try it today and experience the difference for yourself.


similar products

brand product name amperit metco/amdry woka praxair pac
kf-65 wc-10co4cr 554 5843 3903 wc-113wc-436-1

wc-10co4cr 556 / 557 / 558 5163 3651 / 36523655 / 3665 wc-7311350 1500

wc-10co4cr . . 3660fc . 1500


specification

brand product name particle size (μm) chemistry (wt%) type apparent density flowability properties application
co c fe w cr b si ni
kf-65 wc-10co4cr 15-45, 10-38 9.5-10 5.3-5.6 ≤0.8 bal. 3.5-4.0


sinter&crush 5.5-6.5g/cm3 ≤25 s/50g aps,hvof,hvaf alternative hard chromium plating; petroleum, paper, general machinery
kf-65 wc-10co4cr 15-45,10-38,5-30 9.5-10 5.3-5.6 ≤0.8 bal. 3.5-4.0


agglomerated and sintered 4.0-6.0 g/cm3 ≤18 s/50g aps,hvof,hvaf alternative hard chromium plating; petroleum, paper, general machinery
kf-65 wc-10co4cr 5-25,5-15 9.5-10 5.3-5.6 ≤0.8 bal. 3.5-4.0


agglomerated and sintered 3.5-4.8 g/cm3 stable feeding to powder feeder hvof,hvaf alternative hard chromium plating;smoother surface, less or free post machining;
kf-60 wc-12co 15-45,10-63 10.5-12 4.9-5.4 ≤0.8 bal.



sinter&crush 5.5-6.5 g/cm3 ≤25 s/50g aps,hvof wear resistance,fretting wear  resistance
kf-60 wc-12co 15-45,10-38,5-30 10.5-12 4.9-5.4 ≤0.8 bal.



agglomerated and sintered 4.0-6.0 g/cm3 ≤18 s/50g aps,hvof,hvaf wear resistance,fretting wear  resistance;general machinery
kf-61 wc-17co 15-45,10-38 15.5-17 4.5-5.1 ≤0.8 bal.



agglomerated and sintered 3.5-5.5 g/cm3 ≤25 s/50g aps,hvof,hvaf wear resistance,fretting wear  resistance,better toughness; general machinery
kf-62 wc-25co 15-45,10-38 22-26 4.0-4.6 ≤0.8 bal.



agglomerated and sintered, densification 3.0-5.5 g/cm3 ≤25 s/50g aps, detonation guns,cold spray fretting wear  resistance,better toughness
kf-66 wc-23%crc-7ni 15-45,10-38
6.0-6.8 ≤0.8 bal. 16.5-20

5.5-7 agglomerated and sintered 3.0-5.0 g/cm3 ≤25 s/50g aps,hvof,hvaf alternative hard chromium plating;used for low concentration acid/alkali environment at 200 ℃;  anti oxidation and wear resistance at 750 ℃
kf-66 43wc-43%crc-14ni 15-45,10-38
7.8-8.4 ≤0.8 bal. 35-38

12-14 agglomerated and sintered 2.0-4.0 g/cm3 ≤35 s/50g aps,hvof,hvaf alternative hard chromium plating used for low concentration acid/alkali environment at 200 ℃
kf-63 wc-10ni 15-45,10-38
4.5-5.2 ≤0.1 bal.


8.5-10.5 agglomerated and sintered 4.0-6.0 g/cm3 ≤18 s/50g aps,hvf,hvaf non magnetic wear resistant coating. better corrosion resistance
kf-70 cr3c2-25nicr 15-45, 20-53
9-11 ≤1
bal.

18-21.5 agglomerated and sintered ≥2.3 g/cm3 stable feeding to powder feeder aps,hvof anti oxidation and wear resistance at 815 ℃
kf-69 cr3c2-20nicr 15-45, 20-53
9-11 ≤1
bal.

15-17.5 agglomerated and sintered ≥2.3 g/cm3 stable feeding to powder feeder aps,hvof anti oxidation and wear resistance at 815 ℃
kf-71 cr3c2-30nicr 15-45, 20-53
9-11 ≤1
bal.

15-17.5 agglomerated and sintered ≥2.3 g/cm3 stable feeding to powder feeder aps,hvof anti oxidation and wear resistance at 815 ℃. better toughness
kf-60 wc-12co (low carbon) 15-45, 20-53 10.5-12 4.0-4.4 ≤0.8 bal.



agglomerated and sintered 4.0-6.0 g/cm3 ≤18 s/50g hvof,hvaf used for zn bath rolls in continuous galvanizing lines
kf-68 wc-30wb-10co 15-45,20-53,10-38 9-11 3.5-3.9
bal.
1.4-1.7

agglomerated and sintered 3.0-4.9 g/cm3 ≤30 s/50g hvof,hvaf used for zn bath rolls in continuous galvanizing lines
kf-68 wc-30wb-5co5cr 15-45,20-53,10-38 4-6 3.5-3.9
bal. 4-6 1.4-1.7

agglomerated and sintered 3.0-4.9 g/cm3 ≤30 s/50g hvof,hvaf used for zn bath rolls in continuous galvanizing lines
kf-300e 35%wc-nicrbsi 15-53,45-104
2.5-3.2 1.0-2.6 32-35 7.5-9 1.5-1.9 2.0-2.7 bal. wc and nicrbsi forming alloy 4.0-4.9 g/cm3 ≤16 s/50g hvof,ps alternative blended type wc ni60;higher material utilization,lower energy consumption, lower thermal impact;used for glass mold
kf-300f 50%wc-nicrbsi 15-53,45-104
3.2-4.3 0.8-2.0 45-48 5.8-7.2 1.0-1.7 1.5-2.4 bal. wc and nicrbsi forming alloy 5.0-7 g/cm3 ≤16 s/50g hvof,ps alternative blended type wc ni60;higher material utilization,lower energy consumption, lower therma


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