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What are the Industry Standards of Powder Metallurgy

China's powder metallurgy standardization work adhere to the enterprise as the main body, market-oriented, in order to serve the development of non-ferrous metal industry as the focus, successively formulated and revised a large number of more effective, more adaptable to the market of powder metallurgy national standards and industry standards.

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1What are the national or enterprise standards for powder metallurgy?

 

Powder metallurgy can only check the national and industry standards, can not check the enterprise standards to check the national standards and industry standards only online.

 

2Domestic powder metallurgy material FZ2265 what are the ingredients?

 

This is powder metallurgy bearings! National standard FZ is powder metallurgy bearings mean ah! 2265 in the first 2 refers to the copper base, the second 2 is the type of bearing, 65 is the oil density. FZ2265 main component is copper and zinc, zinc 8% ~ 11%, and a small amount of iron and carbon.

 

3, M42 high-speed steel raw materials with which national standards? It is powder metallurgy manufacturing.

 

U.S. ASTM A 600-1999 high-speed tool steel: M42 Electronic Technical Information UNS grade T11342 (UNS: in accordance with ASTME257 and SAEJ 1086, metals and alloys digital numbering). This standard does not specify a preparation process. It is possible to use either conventional metallurgical processes or powder metallurgical processes. M42 is the U.S. standard,, there is powder metallurgy, there is not, the domestic general is not powder, only very few manufacturers can do powder M42, such as metallurgical science and technology M42 is the U.S. standard, does not belong to the powdered steel.

 

China MIM introduces the knowledge about the national standard of powder metallurgy, hope this article can help you.

 

Powder metallurgy comprehensive standards:

1JB/T 6645-2007 Classification of Powder Metallurgy Products and Code Expression Method  

2JB/T 6646-2007 Specification for Physical Properties Testing of Sintered Metal Products  

3GB/T 3500-2008 Powder Metallurgy Terminology  

 

 

Standards for testing the properties of metal powders:

1YS/T 539.13-2006 Method of chemical analysis of nickel-based alloy powder Determination of oxygen by pulse heating inert gas molten coulometric titration  

2, YS/T 539.12-2006 Nickel-based alloy powder chemical analysis method n-butanol-trichloromethane extraction spectrophotometric determination of phosphorus   

3. YS/T 539.10-2006 Nickel-based alloy powder chemical analysis method for the determination of molybdenum thiocyanate spectrophotometry  

4. YS/T 539.9-2006 Method of chemical analysis of nickel-based alloy powder Determination of copper by iodometric method with sodium thiosulfate  

5. YS/T 539.8-2006 Methods of chemical analysis of nickel-based alloy powders Determination of copper by extraction spectrophotometry of new cuprous spirit trichloromethane  

6. YS/T 539.7-2006 Methods of chemical analysis of nickel-based alloy powder Determination of cobalt by spectrophotometric method of nitrite R salt  

7, YS / T 539.6-2006 nickel-based alloy powder chemical analysis method titanium trichloride - potassium dichromate titration method for the determination of iron  

8, YS / T 539.5-2006 nickel-based alloy powder chemical analysis method of sodium (potassium) periodate oxidation spectrophotometry for the determination of manganese   

9, YS/T 539.4-2006 nickel-based alloy powder chemical analysis method ammonium persulfate oxidation titration method for the determination of chromium

10YS/T 539.3-2006 Nickel-based alloy powder chemical analysis method perchloric acid dehydration weight method for the determination of silicon  

11, YS/T 539.2-2006 Nickel-based alloy powder chemical analysis method chromium azurite S spectrophotometric determination of aluminum  

12YS/T 539.1-2006 Nickel-based alloy powder chemical analysis method for the determination of boron neutralization titration method  

13, YS / T 533-2006 self-melting alloy powder solid-liquid phase line temperature interval determination method  

14GB/T 13390-2008 Determination of specific surface area of metal powder Nitrogen adsorption method

15GB/T 13221-2004 Determination of particle size distribution of nanometer powder X-ray small angle scattering method

16GB/T 5162-2006 Determination of vibration density of metal powder  

17GB/T 4164-2008 Determination of hydrogen-reducible oxygen content in metal powder    

18GB/T 8643-2002 Determination of lubricant content in metal powder containing lubricant Modified Soxhlet extraction method  

19GB/T 6524-2003 Measurement of particle size distribution of metal powder Gravitational settling light transmission method  

 

 

Sintered metal performance test standards:

1GB/T 5163-2006 Sintered metal materials (excluding cemented carbide) Determination of density, oil content and open porosity of permeable sintered metal materials  

2GB/T 9095-2008 Determination of the depth of carburizing or carbonitriding hardened layer of sintered iron-based materials and its verification

3GB/T 6804-2008 Sintered metal bushings Determination of radial crush strength

 

 

 

 

Standards for sintered metal friction materials:

1JB/T 7269-2007 Test Method for Friction Performance of Dry Sintered Metal Friction Materials

2JB/T 7268-2007 Test Method for Friction Performance of Wet Sintered Metal Friction Materials  

3GB/T 10430-2008 Test Method for Bonding Performance of Sintered Metal Friction Plate  

4JB/T 10766-2007 Forging machine clutch copper-based dry friction plate technical conditions  

5JB/T 10767-2007 Technical conditions for copper-based wet powder metallurgy friction discs for loaders  

 

 

 

 

 

 

Sintered structural parts:

1, GB/T 14667.1-1993 Powder metallurgy iron-based structural materials * Part Sintered iron, sintered carbon steel, sintered copper steel, sintered copper-molybdenum steel  

 

 

 

 

Porous materials:

1GB/T 6886-2008 Sintered stainless steel filter elements  

2GB/T 1969-1996 Test method for permeability of porous ceramics  

3. GB/T 1967-1996 Test Method for Porous Ceramic Pore Diameter  

4. GB/T 1966-1996 Test Method for Porous Ceramic Porosity and Capacity  

5. GB/T 1965-1996 Test Method for Flexural Strength of Porous Ceramics  

6. GB/T 1964-1996 Test Method for Compressive Strength of Porous Ceramics  

 

 

 

 

Powder metallurgy bearings:

1FZ/T 92050-1995 Powder Metallurgy Bearing  

2GB/T 2688-1981 Sliding Bearings Technical Conditions for Powder Metallurgy Bearings  

 

 

 

 

 

 

Commonly used metal powder:

1GB/T 1773-2008 Flake silver powder  

2GB/T 3458-2006 Tungsten powder  

3YB/T 5308-2006 Reduced Iron Powder for Powder Metallurgy  

4GB/T 2967-2008 Cast Tungsten Carbide Powder  

5YS/T 511-2006 Cobalt-coated tungsten carbide composite powder

6YS/T 256-2000 Cobalt oxide powder    

7YS/T 510-2006 Nickel alumina composite powder  

8YS/T 537-2006 Nickel-based spray alloy powder  

9GB/T 3520-2008 Graphite fineness test method  

10GB/T 7160-2008 Nickel Carbonyl Powder  

11GB/T 3137-2007 Test Method for Electrical Performance of Tantalum Powder  

12YS/T 527-2006 Ni-Cr-B-Si self-fusing alloy powder  

13YS/T 528-2006 Aluminum clad nickel composite powder  

14YS/T 526-2006 Ni-B-Si self-melting alloy powder  

15YS/T 512-2006 Nickel-chromium composite powder  

16GB/T 10116-2007 Ammonium secondary tungstate  

17YS/T 513-2006 Nickel-copper composite powder  

18YS/T 573-2007 Tantalum powder  

19YB/T 5138-1993 Reduced Iron Powder for Welding Rods  

20GB/T 4295-2008 Tungsten carbide powder  

21GB/T 3461-2006 Molybdenum powder  

22CNS 3160-1996 Zinc powder

 

Harber Metal is a modern factory with complete production capacity of powder metallurgy products, specializing in the production of planetary gearboxes, automotive parts, high-performance powder metallurgy parts and precision hardware parts, which can be widely used in automotive, telecommunications, office equipment, household appliances, locks and other industries. We are especially specialized in planetary gearbox parts, and can provide a complete set of transmission design solutions for customers in various industries.


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