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Verification Regulation of Wheel-Checker for Railway Locomotives and Vehicles
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JJG 1080-2013
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Basic data Standard ID | JJG 1080-2013 (JJG1080-2013) | Description (Translated English) | Verification Regulation of Wheel-Checker for Railway Locomotives and Vehicles | Sector / Industry | Metrology & Measurement Industry Standard | Classification of Chinese Standard | A52 | Classification of International Standard | 17.040 | Word Count Estimation | 19,176 | Regulation (derived from) | ?State AQSIQ Announcement 2013 No. 7; | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine | Summary | This standard applies to railway rolling wheels inspector (hereinafter referred to as checker) initial verification, follow-up test and use checks. |
JJG 1080-2013: Verification Regulation of Wheel-Checker for Railway Locomotives and Vehicles---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Verification Regulation of Wheel-Checker for Railway Locomotives and Vehicles
State verification procedures People's Republic of China
Railway Locomotive wheel inspector
Issued on. 2013-01-06
2013-04-06 implementation
The State Administration of Quality Supervision, Inspection and Quarantine released
Railway rolling stock wheels
Inspector Verification Regulation
Focal point. the National Railway special equipment metering metering technology committee
Special railway length of the Technical Committee
The main drafting units. the Ministry of Railways Institute of Measurement Standards
Participated in the drafting. the Beijing Railway Star Technology Development Co., Ltd.
Liuzhou Branch Road, measuring instruments limited liability company
This procedure entrust the national railway special equipment measurement technology committee railway length measurement technology division
The Committee is responsible for interpreting surgery
The main drafters of this procedure.
Wang Yanchun (MOR Standards and Metrology Institute)
Lijun Xia (MOR Standards and Metrology Institute)
Drafters participate.
Meng Jing (Beijing Star Technology Development Co., Ltd. National Railways)
Ancient Healer (Liuzhou Branch Road, measuring instruments limited liability company)
table of Contents
Introduction (Ⅱ)
1 Scope (1)
2 Overview (1)
3 metering performance requirements (1)
3.1 Measurement range (1)
3.2 Face surface roughness (1)
3.3 scale mark width (1)
3.4 vernier label side edge to the distance between the surface of the main scale marks (1)
3.5 straightness measurement reference plane S (2)
Distance 3.6 tread wear measuring tape and measure the position of the reference plane S (2)
3.7 rim thickness measurement reference plane S perpendicular to the line of (2)
3.8 rim (hoop) straightness measuring the thickness of the line (2)
3.9 Tread Wear probe from the probe flange thickness extending horizontally from the vertical line (2)
3.10 tread wear measurement of the reference plane S positioned perpendicular to the face (2)
Indication error 3.11 Tread Wear measuring tape (2)
Indication error flange thickness measured 3.12 feet (2)
3.13 rim (hoop) Indication error thickness measuring tape (3)
3.14 QR measurement point to locate the positioning surface tread wear measurement of the vertical distance (3)
3.15 QR value indication error of measuring tape (3)
3.16 avoid indication error from the measuring tape (3)
3.17 Digital inspector Repeatability (3)
Indication stability 3.18 Digital inspector (3)
4 General Requirements (3)
4.1 Appearance (3)
4.2 Interaction of each part (3)
5 control of measuring instruments (4)
5.1 test conditions (4)
5.2 Verification Project (4)
5.3 Verification Methods (5)
5.4 Verification Results Processing (7)
5.5 test cycle (7)
Appendix A Wheel Inspector classified schematic form (8)
B railway rolling stock wheel inspector seized a combination schematic appendix (10)
Appendix C Railway Locomotive wheel inspector test records (11)
Appendix D calibration certificate and test results in the notice page format (12)
Introduction
This procedure is based on the TB/T 2597-2005 "railway rolling stock wheels Inspector" and "Railway transport EMU
Servicing procedures "(Beijing. China Railway Publishing House, 2007, p. 1) established.
This procedure was first formulated.
Railway Locomotive wheel inspector verification procedures
1 Scope
The order applies to railway rolling stock wheel inspector (hereinafter referred to as the inspector) initial verification, subsequent verification
And the use of checks.
2 Overview
Check the thickness of the rim is mainly used for direct or indirect (such as contour method) locomotives, vehicles and EMU wheels
Degrees, the tread wear depth, EMU wheel QR values or rolling stock vertical wheel flange wear, abrasion and local Tread
Depression depth, rims (tire) Thickness, tread peeling length. Inspector Inspector divided locomotive wheels, vehicle car
Check the wheel and the wheel EMU checker three, the structure diagram in Appendix A. Display device may be cursor and type
Digital.
NOTE. QR rim thickness measurement value is the point to the top of the rim at the level of the inside edge down to 2mm distance.
3 metering performance requirements
3.1 Measuring range
Inspector of each measurement scale measurement range should meet the requirements of Table 1.
Table 1 inspector measurement scale measurement range Unit. mm
Measurements Inspector Type Measurement Range
Flange thickness
Check locomotive wheels 22 to 37
Check the vehicle wheels 20 to 35
EMU wheel inspector 20 to 37
Rim height
Check locomotive wheels 25 to 40
Check the vehicle wheels 24 to 38
EMU wheel inspector 25 to 40
QR values EMU wheel inspector 3 to 13
Rim (hoop) Thickness
Check locomotive wheels 38 to 95
Check the vehicle wheels 22 to 70
3.2 Face surface roughness
Surface roughness Ra of the upper face of each inspector is 1.6μm.
3.3 scale mark width
Vernier and main scale mark width of 0.12mm ~ 0.20mm, other scale marks width of 0.12mm ~
0.25mm; variety of scale marks the difference in width should be less than 0.05mm.
3.4 vernier label side edge to the distance between the surface of the main scale marks
Vernier label side edge between the main scale marks to surface distance should be no more than 0.3mm.
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