
JB/T 7744-1995 Alloy powder for plasma arc cladding of valve sealing surface
time:
1995-06-20 15:00:00
- JB/T 7744-1995
- in force
Standard ID:
JB/T 7744-1995
Standard Name:
Alloy powder for plasma arc cladding of valve sealing surface
Chinese Name:
阀门密封面等离子弧堆焊用合金粉末
Standard category:
Machinery Industry Standard (JB)
-
Date of Release:
1995-06-20 -
Date of Implementation:
1996-01-01
China Standard Classification Number:
Machinery>>General Parts>>J16 Valve
Focal point Organization:
Hefei General Machinery Research InstitutePublishing Department:
Hefei General Machinery Research Institute

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Summary:
This standard specifies the classification, grade representation, technical requirements, test methods, inspection rules, marking, packaging, transportation and storage of alloy powders for plasma arc welding of valve sealing surfaces. This standard applies to alloy powders for plasma arc welding of valve sealing surfaces of carbon steel, alloy steel, stainless steel, etc. JB/T 7744-1995 Alloy powders for plasma arc welding of valve sealing surfaces JB/T7744-1995 Standard download decompression password: www.bzxz.net

Some standard content:
Mechanical Industry Standard of the People's Republic of China
Alloy powder for plasma arc cladding of valve sealing surface
1 Subject content and scope of application
JB/T 7744-95
This standard specifies the classification, brand representation method, technical requirements, test methods, inspection rules, marking, packaging, transportation and storage of alloy powder for plasma arc cladding of valve sealing surface. This standard is applicable to alloy powder for plasma arc cladding of valve sealing surface of carbon steel, alloy steel, stainless steel, etc. 2 Reference standards
GB1479 Determination of bulk density of metal powders Part 1: Funnel method GB/T1482 Determination of fluidity of metal powders Standard Funnel method (Hall flowmeter) JB3168 Technical conditions for alloy powders for spray welding
JB3169 Determination of hardness and particle size of alloy powders for spray welding JB3170 Chemical composition analysis method for alloy powders for spray welding 3 Classification and brand designation method
3.1 Alloy powders are divided into nickel-based, cobalt-based, iron-based and copper-based alloy powders according to the chemical composition of the matrix, as shown in Table 1. 3.2 The alloy powder brand consists of three parts, and its compilation method is as follows: PT XX XX
Indicates the serial number of alloy powder materials
Indicates the alloy type and alloy powder properties
Indicates alloy powder for plasma arc surfacing
3.2.1 The first part uses the capital letter PT of the English word to indicate alloy powder for plasma arc surfacing. 3.2.2 The second part uses two Arabic numerals to indicate the alloy type. The first Arabic numeral indicates the major category, 1 for nickel-based, 2 for cobalt-based, 3 for iron-based, and 4 for copper-based; the second Arabic numeral indicates the minor category, 1 for self-fluxing alloy powder. 3.2.3 The third part uses two Arabic numerals (0199) to indicate the serial number of the alloy powder material. Approved by the Ministry of Machinery Industry of the People's Republic of China on June 20, 1995 and implemented on January 1, 1996
JB/T 7744--95
1 002--088
[01-50/5'1~5081~8\]
5~51s2~911
~0~80~0
9°0~09\~0'z'~805\~5252~0
0'6~02
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10~018~z
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00829~9
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10~0'6
0'[~9'0 101zd
4 Technical requirements
JB/T 7744--95
4.1 The chemical composition of the alloy powder and the hardness of the cladding layer shall comply with the requirements of Table 1. 4.2 The particle size range of the alloy powder is 75~250um. The allowable content of alloy powder outside the sampling time interval: ≤5% below 74um; ≤2% from 250 to 290um.
4.3 The bulk density and fluidity of alloy powder are shown in Table 2. Table 2 Bulk density and fluidity of alloy powder
Alloy powder type
Nickel-based alloy powder
Cobalt-based alloy powder
Iron-based alloy powder
Copper-based alloy powder
5 Test method
Bulk density·g/cm
The chemical composition test of alloy powder shall be in accordance with the provisions of JB3170 5.1
5.2 The particle size of alloy powder and the hardness test of cladding layer shall be in accordance with the provisions of JB3169. 5.3 The bulk density of alloy powder shall be determined in accordance with the provisions of GB1479. 5.4 The fluidity of alloy powder shall be determined in accordance with the provisions of GB/T1482. 6 Inspection rules
Flowability, s/50g
6.1 Before the alloy powder leaves the factory, check the chemical composition, particle size, bulk density and weld hardness of the alloy powder. The results should meet the requirements of this standard and be accompanied by the factory batch number and quality assurance certificate. 6.2 Take one sample from each of the three packages of each batch, and all qualified after testing are qualified. If one sample is unqualified, double sampling should be carried out, and all qualified are qualified; if one of the samples is unqualified, the batch is judged to be unqualified. Marking, packaging, transportation and storage
The marking, packaging, transportation and storage of powders shall comply with the provisions of JB3168. Additional remarks:
This standard was proposed by the National Valve Standardization Technical Committee. This standard is under the jurisdiction of the Hefei General Machinery Research Institute of the Ministry of Machinery Industry. This standard was drafted by the Shenyang Valve Research Institute and the Hefei General Machinery Research Institute of the Ministry of Machinery Industry. The main drafters of this standard are Wang Dequan, Fang Benxiao and Su Zhidong. 153
Tip: This standard content only shows part of the intercepted content of the complete standard. If you need the complete standard, please go to the top to download the complete standard document for free.
Alloy powder for plasma arc cladding of valve sealing surface
1 Subject content and scope of application
JB/T 7744-95
This standard specifies the classification, brand representation method, technical requirements, test methods, inspection rules, marking, packaging, transportation and storage of alloy powder for plasma arc cladding of valve sealing surface. This standard is applicable to alloy powder for plasma arc cladding of valve sealing surface of carbon steel, alloy steel, stainless steel, etc. 2 Reference standards
GB1479 Determination of bulk density of metal powders Part 1: Funnel method GB/T1482 Determination of fluidity of metal powders Standard Funnel method (Hall flowmeter) JB3168 Technical conditions for alloy powders for spray welding
JB3169 Determination of hardness and particle size of alloy powders for spray welding JB3170 Chemical composition analysis method for alloy powders for spray welding 3 Classification and brand designation method
3.1 Alloy powders are divided into nickel-based, cobalt-based, iron-based and copper-based alloy powders according to the chemical composition of the matrix, as shown in Table 1. 3.2 The alloy powder brand consists of three parts, and its compilation method is as follows: PT XX XX
Indicates the serial number of alloy powder materials
Indicates the alloy type and alloy powder properties
Indicates alloy powder for plasma arc surfacing
3.2.1 The first part uses the capital letter PT of the English word to indicate alloy powder for plasma arc surfacing. 3.2.2 The second part uses two Arabic numerals to indicate the alloy type. The first Arabic numeral indicates the major category, 1 for nickel-based, 2 for cobalt-based, 3 for iron-based, and 4 for copper-based; the second Arabic numeral indicates the minor category, 1 for self-fluxing alloy powder. 3.2.3 The third part uses two Arabic numerals (0199) to indicate the serial number of the alloy powder material. Approved by the Ministry of Machinery Industry of the People's Republic of China on June 20, 1995 and implemented on January 1, 1996
JB/T 7744--95
1 002--088
[01-50/5'1~5081~8\]
5~51s2~911
~0~80~0
9°0~09\~0'z'~805\~5252~0
0'6~02
0°6~02||tt| |02~0's
[0 '~0'10'2~'1
10~018~z
j0\°0'10\s\0
~gus
0201020
[02'0~0101018d
00829~9
10*0992Www.bzxZ.net
10~0'6
0'[~9'0 101zd
4 Technical requirements
JB/T 7744--95
4.1 The chemical composition of the alloy powder and the hardness of the cladding layer shall comply with the requirements of Table 1. 4.2 The particle size range of the alloy powder is 75~250um. The allowable content of alloy powder outside the sampling time interval: ≤5% below 74um; ≤2% from 250 to 290um.
4.3 The bulk density and fluidity of alloy powder are shown in Table 2. Table 2 Bulk density and fluidity of alloy powder
Alloy powder type
Nickel-based alloy powder
Cobalt-based alloy powder
Iron-based alloy powder
Copper-based alloy powder
5 Test method
Bulk density·g/cm
The chemical composition test of alloy powder shall be in accordance with the provisions of JB3170 5.1
5.2 The particle size of alloy powder and the hardness test of cladding layer shall be in accordance with the provisions of JB3169. 5.3 The bulk density of alloy powder shall be determined in accordance with the provisions of GB1479. 5.4 The fluidity of alloy powder shall be determined in accordance with the provisions of GB/T1482. 6 Inspection rules
Flowability, s/50g
6.1 Before the alloy powder leaves the factory, check the chemical composition, particle size, bulk density and weld hardness of the alloy powder. The results should meet the requirements of this standard and be accompanied by the factory batch number and quality assurance certificate. 6.2 Take one sample from each of the three packages of each batch, and all qualified after testing are qualified. If one sample is unqualified, double sampling should be carried out, and all qualified are qualified; if one of the samples is unqualified, the batch is judged to be unqualified. Marking, packaging, transportation and storage
The marking, packaging, transportation and storage of powders shall comply with the provisions of JB3168. Additional remarks:
This standard was proposed by the National Valve Standardization Technical Committee. This standard is under the jurisdiction of the Hefei General Machinery Research Institute of the Ministry of Machinery Industry. This standard was drafted by the Shenyang Valve Research Institute and the Hefei General Machinery Research Institute of the Ministry of Machinery Industry. The main drafters of this standard are Wang Dequan, Fang Benxiao and Su Zhidong. 153
Tip: This standard content only shows part of the intercepted content of the complete standard. If you need the complete standard, please go to the top to download the complete standard document for free.
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