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Database: 365,228(8 Aug 2026)
metal recovery deposition coefficient deposition coefficient scopethis covered electrodes electrodes systems approach russian olive afforestation digital platform maturity model introduction
GB/T 3731-1983 in English

GB/T 3731-1983 in English

ABOLISHED

Covered electrodes--Determination of the efficiency, metal recovery and deposition coefficient

  • Issued on:1983-06-21
  • Implemented on:1984-03-01
  • File Format:PDF
  • Delivery:Via email within 1~3 business days
Price(USD): $180.00
$175.00
Standard No: GB/T 3731-1983
Document status: ABOLISHED
Superseded on: 2004-10-14
Title in English: Covered electrodes--Determination of the efficiency, metal recovery and deposition coefficient
Title in Chinese: 涂料焊条效率,金属回收率和熔敷系数的测定
Language: English
File Format: Electronic (PDF)
Delivery: Via email within 1~3 business days
Issued on: 1983-06-21
Implemented on: 1984-03-01
ICS Classification: 25.160.20-Welding consumables
Chinese Classification: J33-Welding and cutting
Professional Classification: GB-National Standard
Related Keywords: metal recovery
deposition coefficient
deposition coefficient scopethis
covered electrodes
electrodes
Related Topics: time recovery
Metal Recovery
metal recycling
recovery of m1
sample recovery
metal recycling
Gold recovery rate
Metal Recovery+
Metal Recovery
Disk Recovery
Coated Electrode Efficiency, Metal Recovery and Deposition Coefficient
Recovery rate based on
Recovery rate regulation
m1 recovery
gb/t3736.1-1983
recovery time
absolute recovery
GB/T 3762-1983
Organic recovery rate
Definition of Recovery Rate
Peak recovery
GB/T 3641-1983
in vivo recovery
Foreign standard recovery rate
Several recovery rates
Recovery rate regulation
Metal recovery efficiency
Organic recovery rate
Quantitative recovery
recovery organic
Quantitative recovery requirements
Absolute recovery and relative recovery
Recovery peak
GB/T 4113-1983
The recovery rate is not
Nitrogen recovery
Naphthalene recovery
Disc recovery rate
Bismuth Recovery
internal recovery rate
Absorption of non-metals
inter-batch recovery
Recycling Regulations
Gold recovery rate
Recovery rate is 0
Sample recovery
Recovery Accuracy
Experimental recovery
Accuracy Recovery
Deposition Technology
The recovery rate was measured several times
Disc recovery rate
metal digestibility
Frequency Metal Detection
Efficiency Recovery
batch recovery
Relative Recovery and Recovery
recovery factor
peak recovery
The recovery rate is 76
semi-micro recovery
Total nitrogen recovery
Nitrogen recovery
Recovery rate in water
Peptide recovery
Total nitrogen recovery
GBT3731
GB/T 2477-1983
GB/T 2483-1983
GB/T 2900.34-1983
GB/T 2900.37-1983
GBT3256.8-1983
GBT3483-1983
GBT3488-1983
GBT3493-1983
GB/T 3496-1983
GB/T 3501-1983
GB/T 3502-1983
GB/T 3556-1983
GB/T 3567-1983
GB/T 3609.3-1983
GB/T 3626-1983
GBT3627-1983
GB/T 3631-1983
GB/T 3641-1983
GB/T 3642-1983
GB/T 3653.2-1983
GB/T 3653.5-1983
GB/T 3654.7-1983
GBT3657-1983
GB/T 3692-1983
GBT3717-1983
GBT3731-1983
GB/T 3733.1-1983
GB/T 3733.2-1983
GB/T 3734.1-1983
GB/T 3734.2-1983
GB/T 3735.1-1983
GB/T 3735.2-1983
GB/T 3736.1-1983
GB/T 3736.2-1983
GB/T 3737.1-1983
GB/T 3737.2-1983
GB/T 3738.1-1983
GB/T 3738.2-1983
GB/T 3739.1-1983
GB/T 3739.2-1983
GB/T 3740.1-1983
GB/T 3740.2-1983
GB/T 3741.1-1983
GB/T 3741.2-1983
GB/T 3742.1-1983
GB/T 3742.2-1983
GB/T 3743.1-1983
GB/T 3743.2-1983
GB/T 3744.1-1983
GB/T 3744.2-1983
GB/T 3745.1-1983
GB/T 3745.2-1983
GB/T 3746.1-1983
GB/T 3746.2-1983
GB/T 3747.1-1983
GB/T 3747.2-1983
GB/T 3748.1-1983
GB/T 3748.2-1983
GB/T 3749.1-1983
GB/T 3749.2-1983
GB/T 3750.1-1983
GB/T 3750.2-1983
GB/T 3750.3-1983
GB/T 3751.1-1983
GB/T 3751.2-1983
GB/T 3752.1-1983
GB/T 3752.2-1983
GB/T 3753.1-1983
GB/T 3753.2-1983
GB/T 3754.1-1983
GB/T 3754.2-1983
GB/T 3755.1-1983
GB/T 3755.2-1983
GB/T 3756.1-1983
GB/T 3756.2-1983
GB/T 3757.1-1983
GB/T 3757.2-1983
GB/T 3758.1-1983
GB/T 3758.2-1983
GBT3761-1983
GB/T 3762-1983
GBT3771-1983
GB/T 3780.13-1983
GB/T 3780.16-1983
GBT3794-1983
GBT3813-1983
GBT3814-1983
GB/T 3815-1983
GB/T 3816-1983
GBT3825-1983
GB/T 3847-1983
GBT3849-1983
GB/T 3885.10-1983
GB/T 3885.11-1983
GB/T 3885.1-1983
GB/T 3885.12-1983
GB/T 3885.2-1983
GB/T 3885.3-1983
GB/T 3885.4-1983
GB/T 3885.5-1983
GB/T 3885.6-1983
GB/T 3885.7-1983
GBT3885.8-1983
GB/T 3885.9-1983
GB/T 3907-1983
GB/T 3908-1983
GB/T 3909-1983
GB/T 3925-1983
GB/T 3936.7-1983
GB/T 3948-1983
GB/T 3951-1983
GB/T 3969-1983
GB/T 3990-1983
GB/T 3991-1983
GB/T 3992-1983
GB/T 3993-1983
GB/T 3998-1983
GB/T 4022-1983
GB/T 4064-1983
GB/T 4077-1983
GB/T 4080-1983
GB/T 4087.1-1983
GB/T 4087.2-1983
GB/T 4090-1983
GB/T 4102.10-1983
GB/T 4102.11-1983
GB/T 4102.1-1983
GB/T 4102.12-1983
GB/T 4102.2-1983
GB/T 4102.3-1983
GB/T 4102.4-1983
GB/T 4102.5-1983
GB/T 4102.6-1983
GB/T 4102.7-1983
GB/T 4102.8-1983
GB/T 4102.9-1983
GB/T 4105-1983
GB/T 4106-1983
GB/T 4112-1983
GB/T 4113-1983
GB/T 4114-1983
GB/T 4115-1983
GB/T 4116-1983
GBT558-1983
GB/T3733.2-1983
GB/T3737.1-1983
gb/t3738.1-1983
Reasons for poor recovery rates in recovery tests
Sample recovery rate
Theoretical recovery rate and actual recovery rate
Moisture meter recovery rate
Heavy metal spike recovery rate
Reasons for excessively high recovery rates in recovery experiments
How to calculate the recovery rate of heavy metal detection
GC-MS recovery rate
The difference between absolute recovery rate and relative recovery rate
Detection method for heavy metals in liquid dressings
Mass spectrometry recovery
Recovery rate accepted
Spiked recovery rate
Spiked recovery rate standard
Spiked recovery range
Recovery rate determination method
gb/t 3631-1983
gb/t 1983
gb/t 3794-1983

《GB/T 3731-1983涂料焊条效率、金属回收率和熔敷系数的测定》由TC55(全国焊接标准化技术委员会)归口,主管部门为国家标准化管理委员会。
本国家标准规定了直径为3.15至6.3mm的碳钢和低合金高强度钢涂料焊条效率、焊条金属回收率和熔敷系数的测定方法。本国家标准所规定的测量精度在实际应用中是足够的,因为每一批焊条的性质总会有一定的波动。


Scope

This national standard specifies the methods for the determination of the efficiency, metal recovery and deposition coefficient of carbon steel and low-alloy high-strength steel coated electrodes with a diameter of 3.15 to 6.3 mm. The measurement accuracy stipulated in this national standard is sufficient in practical applications, because there will always be certain fluctuations in the properties of each batch of electrodes.

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