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Calibration Specification for Contact(Stylus)Instruments of Surface Roughness Measurement by Profile Method
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Calibration specification for contact (stylus) instruments of surface roughness measurement by the profile method
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Basic data Standard ID | JJF 1105-2018 (JJF1105-2018) | Description (Translated English) | Calibration Specification for Contact(Stylus)Instruments of Surface Roughness Measurement by Profile Method | Sector / Industry | Metrology & Measurement Industry Standard | Classification of Chinese Standard | A52 | Word Count Estimation | 22,298 | Date of Issue | 2018-02-27 | Date of Implementation | 2018-08-27 | Older Standard (superseded by this standard) | JJF 1105-2003 | Regulation (derived from) | AQSIQ Announcement No. 26 of 2018 | Issuing agency(ies) | General Administration of Quality Supervision, Inspection and Quarantine |
JJF 1105-2018: Calibration Specification for Contact(Stylus)Instruments of Surface Roughness Measurement by Profile Method ---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.
(Needle surface roughness measuring instrument calibration specification)
National Metrology Technical Specification of the People's Republic
Stylus surface roughness measuring instrument calibration specification
Published on.2018-02-27
2018-08-27 implementation
The General Administration of Quality Supervision, Inspection and Quarantine issued
Replace JJF 1105-2003
Focal Point. National Geometric Quantity Engineering Measurement Technology Committee
Main drafting unit. Shanghai Institute of Metrology and Testing Technology
Shanghai Jiaotong University
China Institute of Metrology
Beijing Institute of Metrology and Measurement Science
Participated in drafting unit. Taylor Hoopson Co., Ltd. China Branch
This specification entrusts the National Geometric Quantity Engineering Parametric Measurement Technical Committee to explain
The main drafters of this specification.
Wang Yongge (Shanghai Institute of Metrology and Testing Technology)
Yuan Yibao (Shanghai Jiaotong University)
Shi Yushu (China Institute of Metrology)
Wu Xun (Beijing Institute of Metrology and Measurement Science)
Participate in the drafters.
Cai Yuyu (Shanghai Institute of Metrology and Testing Technology)
Jiang Zhihua (Shanghai Institute of Metrology and Testing Technology)
Tang Haixiang (Taylor Hopson Co., Ltd. China Branch)
table of Contents
Introduction (II)
1 Scope (1)
2 References (1)
3 Overview (1)
4 Measurement characteristics (3)
4.1 Sensor stylus (3)
4.2 Straightness of sensor sliding track (3)
4.3 Residual contour (3)
4.4 indication error (3)
4.5 indication repeatability (3)
4.6 indication stability (3)
5 Calibration conditions (4)
5.1 Environmental conditions (4)
5.2 Calibration items and calibration standards and other equipment (4)
6 Calibration method (4)
6.1 Sensor stylus tip arc radius and angle (4)
6.2 Straightness of sensor sliding track (4)
6.3 Residual contour (4)
6.4 indication error (4)
6.5 indication repeatability (5)
6.6 indication stability (6)
7 Calibration result expression (6)
8 re-study interval (6)
Appendix A Evaluation of Uncertainty of Calibration Results of Indication Error of Stylus Roughness Tester (Example) (7)
Appendix B Calibration of Sensor Stylus Static Force and Measurement Characteristics of Sensor Head (11)
Appendix C Calibration of the stylus type surface roughness measuring instrument indicator and recorder metering characteristics (13)
Appendix D λc and λs band transmission characteristics (15)
Appendix E Information and Format of Calibration Certificate (17)
Introduction
JJF 1071-2010 "National Metrology Calibration Specification Writing Rules", JJF 1001-2011 "General Measurement Terms and
Definitions, JJF 1059.1-2012 "Measurement and Expression of Measurement Uncertainty" together constitute the basis for the revision of this Code.
Basic series of measurement technology regulations.
This specification is for JJF 1105-2003 "Standard Specification for Stylus Surface Roughness Measuring Instrument" (hereinafter referred to as the original specification)
Fan) revision. In addition to the editorial changes, the main changes are as follows.
--- Added introduction.
--- Replace the reference file with the currently active version.
--- Increased structure of desktop stylus surface roughness measuring instrument and portable stylus surface roughness measuring instrument
Schematic, modified typical block diagram of the stylus instrument.
--- Modified the requirements for the metering characteristics of the sensor stylus. According to GB/T 6062-2009 "Product Geometry
Technical specification (GPS) surface structure profiling method (nominal characteristics of contact (stylus) type instrument", the original specification "sensing
The stylus static measurement force is modified to “sensor stylus static force measurement”, and its measurement characteristics are stated in the appendix.
Applicable standard and calibration methods; deleted the relevant calibration content of the sensor "static force change rate" item.
--- Modified the measurement characteristics requirements and calibration methods for the straightness of the sensor's sliding track.
--- Modified the "sensor head" related measurement characteristics, expressed in Appendix B.
--- Modified the measurement characteristics requirements and expression methods of the indication error.
---Modified the measurement characteristics requirements and expression methods of the instrument "exhibition repeatability" and "display value stability" in the text
And calibration methods. Revised the expression of the repeatability of the vertical magnification and horizontal magnification of the recorder in Appendix C,
The requirements for metering characteristics have also been modified.
--- Re-evaluated the stylus surface according to JJF 1059.1-2012 "Measurement Uncertainty Evaluation and Representation"
The uncertainty of the measurement result of the roughness error meter.
The previous versions of this specification were released.
---JJF 1105-2003;
---JJG301-1982.
Stylus surface roughness measuring instrument calibration specification
1 Scope
This specification applies to the calibration of the stylus type surface roughness measuring instrument.
2 reference files
This specification refers to the following documents.
GB/T 3505-2009 Product Geometrical Specification (GPS) Surface structure profiling terminology, definition
Surface structure parameters
GB/T 6062-2009 Product Geometrical Specification (GPS) Surface Structure Profile Method Contact
Nominal characteristics of the needle-type instrument
GB/T 10610-2009 Product Geometrical Specification (GPS) Surface Structure Profile Method for Surface Evaluation
Structure rules and methods
GB/T 18777-2009 Product Geometry Specification (GPS) Surface Structure Contour Method Phase Correction
Filtering characteristics of the filter
GB/T 19067.1-2003 Product geometry specification (GPS) Surface structure profile method
Standard Part 1. Physical measurement standards
GB/T 19600-2004 Product geometry specification (GPS) Surface structure profile method contact
Calibration of (stylus) instruments
For dated references, only dated versions apply to this specification; undated quotations
The latest version (including all amendments) applies to this specification.
3 Overview
The stylus type surface roughness measuring instrument (hereinafter referred to as the stylus type roughness meter) generally consists of a sensor, a driver, and a battery.
A sub-signal processing device, a computer, a printer, and the like. Partial analog stylus roughness meter with indicator and
Recorder. The working principle is as follows. the driver of the instrument drives the sensor to slide along the surface to be measured at a constant speed, and the sensor passes
The sharp stylus senses the geometric change of the surface being measured and converts it into an electrical signal. The signal is amplified and processed, then turned
The digital signal is stored in the memory of the computer system. The computer digitally filters this total contour and separates it out
Surface roughness profile and calculate its parameters. The measurement results can be output from the monitor or output from the printer. Analog
The stylus type roughness meter can read the measurement result from the indicator table, and the output surface profile of the recorder. Stylus roughness test
The block diagram is shown in Figure 1.
According to different principles of sensors, stylus type roughness meter can be divided into inductive, piezoelectric, photoelectric, laser
And grating type. Sensors can also be divided into lead-type sensors and non-head-type sensors. Guided sensors are only suitable
Used to measure surface roughness, but no lead sensor can be used to measure waves in addition to surface roughness.
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