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Position: Chinese Standard in English/QC/T 29017-1991
QC/T 29017-1991   Automotive molded plastic parts without individual tolerance limit the size of the deviation (English Version)
Standard No.: QC/T 29017-1991 Status:superseded remind me the status change

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Language:English File Format:PDF
Word Count: 4000 words Price(USD):100.0 remind me the price change

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Implemented on:1991-6-1 Delivery: via email in 1 business day
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Standard No.: QC/T 29017-1991
English Name: Automotive molded plastic parts without individual tolerance limit the size of the deviation
Chinese Name: 汽车模制塑料零件未注公差尺寸的极限偏差
Professional Classification: QC    Professional Standard - Automobile
Issued on: 1991-05-16
Implemented on: 1991-6-1
Status: superseded
Superseded by:QC/T 29017-2023 Permissible automotive molded plastic parts variations in dimensions without tolerance indication
Superseded on:2023-11-1
Language: English
File Format: PDF
Word Count: 4000 words
Price(USD): 100.0
Delivery: via email in 1 business day
Codeofchina.com is in charge of this English translation. In case of any doubt about the English translation, the Chinese original shall be considered authoritative. This standard was proposed by the China National Automotive Industry Corporation. This standard is under the jurisdiction of China Automotive Technology and Research Center. Dimension limit deviations of automotive molded plastic parts without tolerance indications 1 Content and scope This standard specifies the dimension limit deviations of automotive molded plastic parts without tolerance indications. This standard is applicable to the dimension of thermosetting plastic and thermoplastic parts formed by molding, injection and casting without tolerance indications. This standard is not applicable to the dimension of plastic parts manufactured by extrusion, blow molding, cold drawing, sintering and foaming processes without tolerance indications. 2 Normative references ZB T04 006.2 Dimension limit deviations of automotive cutting parts without tolerance indications 3 Terms Molding shrinkage V: difference between the dimension Lw of mold in standard atmosphere and the dimension LF of molded part measured after being placed in the standard atmosphere with a temperature of 23±2℃ and a relative humidity of (50±2)% for 24 h. V=LW-LF (1) Molding shrinkage rate VS: calculated using Formula (2). (2) Radial molding shrinkage rate VSR: molding shrinkage rate in the direction of injection. Tangential molding shrinkage rate VST: molding shrinkage rate in the direction perpendicular to injection direction. Molding shrinkage rate difference ΔVS: difference between radial molding shrinkage rate and tangential molding shrinkage rate. ΔVS=VSR-VST (3) Shrinkage characteristic value: value corresponding to the sum (absolute value) of radial molding shrinkage rate and molding shrinkage rate difference of the molded part, as shown in Table 1. Table 1 Sum (absolute value) of radial molding shrinkage rate and molding shrinkage rate difference, % Shrinkage characteristic value and its grading 4 Dimensions classification of molded plastic parts without tolerance indications Dimensions of molded plastic parts without tolerance indications are divided into two classes: Class a consists of dimensions constrained by single mold, while Class b consists of dimensions not constrained by single mold, as shown in Figure 1: a—dimension constrained by single mold b—dimension not constrained by single mold Figure 1 5 Dimension limit deviations of molded plastic parts without tolerance indications As specified in Table 2.
Foreword i 1 Content and scope 2 Normative references 3 Terms 4 Dimensions classification of molded plastic parts without tolerance indications 5 Dimension limit deviations of molded plastic parts without tolerance indications 6 Limit deviations of thread length, inclination angle and fillet radius of molded plastic parts without tolerance indications Annex A Corresponding relation between molded plastic materials and their shrinkage characteristic values (Supplement)
Referred in QC/T 29017-1991:
*QC/T 293-1999 Test methods of automotive axle shaft
*TB/T 2879.1-1998 Railway Rolling Stock - Paint and Painting - Part 1: Technical Specification for Supply of Paints
*QC/T 29117.22-1993 Quality inspection of products for motorcycles and mopeds Quality evaluation method of exhaust muffler
*MT/T 199-1996 General specifications for hydraulic drill jumbos for coal mine
*SH/T 0192-1992 Determination of the Aging Characteristics of Lubricating Oil
*GB/T 20314-2017 Thin float glass for liquid crystal display(LCD) applications
*QC/T 260-1998 Center High Mounted Stop Lamp
*DL/T 1672-2016 Aluminium tube bundles used in indirect air cooling system of thermal power plant
*TB/T 1950-1987 Design Parameter for Railway Tank Car Body
*TB/T 1613-1985 Design Parameter of Truck Hand Braking Device Design
*GB/T 7467-1987 Water Quality - Determination of Chromium (VI) - 1, 5 Diphenylcarbohydrazide Spectrophotometric Method
*GB/T 10180-2017 Thermal performance test code for industrial boilers
*HJ 209-2017 Technical requirement for environmental labeling products Plastic packaging products
QC/T 29017-1991 is referred in:
*CJJ 44-1991 Code for construction and acceptance of municipal road base works
*CNCA C11-01-2014 China Compulsory Certification Implementation Rules - Motor vehicle [Including CNCA 2017 No.1 Announcement - Modification List]
*GB 2726-2016 Hygienic standard for cooked meat products
*YD/T 1582-2010 800MHz/2GHz cdma2000 digital cellular mobile communication network:signaling link access control (LAC) of air interface specification
*TSG 24-2015 Supervision Regulation on Safety Technology for Hyperbaric Oxygen Chambers
*QC/T 418-1999 Technical requirements o fblade connector for automobile
*GB/T 34590.9-2017 Road vehicles-Functional safety-Part 9: Automotive Safety Integrity Level (ASI L) -oriented and safety-oriented analyses
*DB44/26-2001 Discharge limits of water pollutants (Guangdong)
*QC/T 533-1999 Test method for bench of automobile drive axle
*QC/T 546-1999 Automotive Shock Absorber cleanliness limits and determination
Code of China
Standard
QC/T 29017-1991  Automotive molded plastic parts without individual tolerance limit the size of the deviation (English Version)
Standard No.QC/T 29017-1991
Statussuperseded
LanguageEnglish
File FormatPDF
Word Count4000 words
Price(USD)100.0
Implemented on1991-6-1
Deliveryvia email in 1 business day
Detail of QC/T 29017-1991
Standard No.
QC/T 29017-1991
English Name
Automotive molded plastic parts without individual tolerance limit the size of the deviation
Chinese Name
汽车模制塑料零件未注公差尺寸的极限偏差
Chinese Classification
Professional Classification
QC
ICS Classification
Issued by
Issued on
1991-05-16
Implemented on
1991-6-1
Status
superseded
Superseded by
QC/T 29017-2023 Permissible automotive molded plastic parts variations in dimensions without tolerance indication
Superseded on
2023-11-1
Abolished on
Superseding
Language
English
File Format
PDF
Word Count
4000 words
Price(USD)
100.0
Keywords
QC/T 29017-1991, QC 29017-1991, QCT 29017-1991, QC/T29017-1991, QC/T 29017, QC/T29017, QC29017-1991, QC 29017, QC29017, QCT29017-1991, QCT 29017, QCT29017
Introduction of QC/T 29017-1991
Codeofchina.com is in charge of this English translation. In case of any doubt about the English translation, the Chinese original shall be considered authoritative. This standard was proposed by the China National Automotive Industry Corporation. This standard is under the jurisdiction of China Automotive Technology and Research Center. Dimension limit deviations of automotive molded plastic parts without tolerance indications 1 Content and scope This standard specifies the dimension limit deviations of automotive molded plastic parts without tolerance indications. This standard is applicable to the dimension of thermosetting plastic and thermoplastic parts formed by molding, injection and casting without tolerance indications. This standard is not applicable to the dimension of plastic parts manufactured by extrusion, blow molding, cold drawing, sintering and foaming processes without tolerance indications. 2 Normative references ZB T04 006.2 Dimension limit deviations of automotive cutting parts without tolerance indications 3 Terms Molding shrinkage V: difference between the dimension Lw of mold in standard atmosphere and the dimension LF of molded part measured after being placed in the standard atmosphere with a temperature of 23±2℃ and a relative humidity of (50±2)% for 24 h. V=LW-LF (1) Molding shrinkage rate VS: calculated using Formula (2). (2) Radial molding shrinkage rate VSR: molding shrinkage rate in the direction of injection. Tangential molding shrinkage rate VST: molding shrinkage rate in the direction perpendicular to injection direction. Molding shrinkage rate difference ΔVS: difference between radial molding shrinkage rate and tangential molding shrinkage rate. ΔVS=VSR-VST (3) Shrinkage characteristic value: value corresponding to the sum (absolute value) of radial molding shrinkage rate and molding shrinkage rate difference of the molded part, as shown in Table 1. Table 1 Sum (absolute value) of radial molding shrinkage rate and molding shrinkage rate difference, % Shrinkage characteristic value and its grading 4 Dimensions classification of molded plastic parts without tolerance indications Dimensions of molded plastic parts without tolerance indications are divided into two classes: Class a consists of dimensions constrained by single mold, while Class b consists of dimensions not constrained by single mold, as shown in Figure 1: a—dimension constrained by single mold b—dimension not constrained by single mold Figure 1 5 Dimension limit deviations of molded plastic parts without tolerance indications As specified in Table 2.
Contents of QC/T 29017-1991
Foreword i 1 Content and scope 2 Normative references 3 Terms 4 Dimensions classification of molded plastic parts without tolerance indications 5 Dimension limit deviations of molded plastic parts without tolerance indications 6 Limit deviations of thread length, inclination angle and fillet radius of molded plastic parts without tolerance indications Annex A Corresponding relation between molded plastic materials and their shrinkage characteristic values (Supplement)
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Keywords:
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