SAE J 911-2017 Surface Texture Roughness (Ra) Peak Count(Pc) and Mean Profile Spacing (Rsm) Measurement of Metallic Coated and Uncoated Steel Sheet Strip to be Formed and or to be .pdf
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1、_ SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising there
2、from, is the sole responsibility of the user.” SAE reviews each technical report at least every five years at which time it may be revised, reaffirmed, stabilized, or cancelled. SAE invites your written comments and suggestions. Copyright 2017 SAE International All rights reserved. No part of this p
3、ublication may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE. TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) Tel: +1 724-776-497
4、0 (outside USA) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.org SAE values your input. To provide feedback on this Technical Report, please visit http:/standards.sae.org/J911_201704 SURFACE VEHICLE RECOMMENDED PRACTICE J911 APR2017 Issued 1965-01 Reaffirmed 1986-06
5、 Revised 2017-04 Superseding J911 MAR1998 Surface Texture, Roughness (Ra), Peak Count(Pc), and Mean Profile Spacing, (Rsm) Measurement of Metallic Coated and Uncoated Steel Sheet/Strip to be Formed and/or to be Painted RATIONALE The industry needs to update the spec to reflect use of zinc and alumin
6、ized coated steels. New non contact methods of measurement are also being used which are now applicable to the measurement methods employed. A number of new parameters that are being investigated to further quantify surface texture and the impact on steel perfromance in the auto industry may also ne
7、ed to be added to this document. 1. SCOPE 1.1 This SAE Recommended Practice describes a method for measuring Roughness Average (Ra) and Peak Count (PC) and other variables of the surface of metallic coated and uncoated steel sheet/strip. 1.2 The method includes a system for equipment configuration,
8、calibration, and procedures for determining average surface roughness, Ra (m), average peak count, PC (peaks per cm) and mean profile spacing, Rsm on metallic coated and uncoated steel sheet/strip surfaces. This specification is based on metric measurements, English measurements are approximations o
9、nly 2. REFERENCES 2.1 Applicable Document The following publication forms a part of this specification to the extent specified herein. Unless otherwise indicated, the latest issue of SAE publications shall apply. 2.1.1 ASME Publication Available from ASME, P.O. Box 2900, 22 Law Drive, Fairfield, NJ
10、07007-2900, Tel: 800-843-2763 (U.S./Canada), 001-800-843-2763 (Mexico), 973-882-1170 (outside North America), www.asme.org. ASME B46.1-2009 Surface Texture SAE INTERNATIONAL J911 APR2017 Page 2 of 11 3. DEFINITIONS 3.1 STYLUS PROFILOMETER: The stylus profilometer is a device which scans a surface wi
11、th a diamond tip to measure the surface texture. The stylus tip geometry and other aspects of the instrumentation limit the shortest spatial wavelength that can be measured (typically about 1m). The length of travel of the stylus and other aspects of the instrumentation limit the longest spatial wav
12、elength that can be measured (typically about 25 mm). 3.2 TRAVERSING LENGTH: The full length over which the stylus profilometer is scanned along the surface. 3.3 EVALUATION LENGTH: The length contained within and typically shorter than the traversing length over which the evaluation of the surface t
13、exture parameters is performed 3.4 BEST FIT MEAN LINE: A line that defines the nominal profile so that within the Evaluation Length the sum of the squares of the difference between the profile and this line are minimized. 3.5 SPATIAL WAVELENGTH CONTENT: The surface texture profile may be considered
14、as being composed of a spectrum of sinusoidal components each with a given wavelength and amplitude. The measurement of the surface texture typically returns a wide bandwidth (e.g., 1 m 15 mm) of spatial wavelength components. The various spatial wavelength components may affect different functional
15、 characteristics of the texture. For example, relatively shorter wavelength structures (e.g., 1.0 mm) may better correlate with paint appearance. 3.6 ROUGHNESS LONG-WAVELENGTH CUTOFF, C: The Roughness Long Wavelength Cutoff establishes the lengths of spatial features which are attenuated prior to an
16、alysis of the various surface roughness parameters. Based on the use of the default Gaussian filter as described in ASME B46.1-2009, the amplitude of the spatial wavelength components at c are attenuated by 50% before roughness parameter determination. The amplitude of spatial wavelength components
17、greater than c are further attenuated such that spatial wavelength components greater than c provide minimal contribution to the evaluation of the various roughness texture parameters. 3.7 ROUGHNESS SHORT-WAVELENGTH CUTOFF, S: The Roughness Short Wavelength Cutoff establishes the lengths of spatial
18、features which are attenuated prior to analysis of the various surface roughness parameters. Based on the use of the default Gaussian filter as described in ASME B46.1-2009, the amplitude of the spatial wavelength components at s are attenuated by 50% before roughness parameter determination. The am
19、plitude of spatial wavelength components less than s are further attenuated such that spatial wavelength components less than s provide minimal contribution to the evaluation of the various roughness texture parameters. 3.8 SAMPLING LENGTH The evaluation length is subdivided into shorter segments pr
20、ior to analysis defined to be the Sampling Length. The length of these segments is typically equal to the Roughness Long-Wavelength Cutoff, c. A measurement of the surface texture profile may be made over many contiguous sampling lengths. Typically 5 sampling lengths or more are used for analysis pe
21、r stylus trace. SAE INTERNATIONAL J911 APR2017 Page 3 of 11 3.9 ANALYSIS SPATIAL WAVELENGTH BANDWIDTH The Analysis Spatial Wavelength Bandwidth consists of the spatial wavelength components greater than the Roughness Short-Wavelength Cutoff, s and less than the Roughness Long-Wavelength cutoff c. 3.
22、10 ROUGHNESS AVERAGE, Ra: The arithmetic average of the absolute values of the profile height deviations recorded within the evaluation length and measured from the mean line (Figure 1). 3.11 PEAK COUNT The peak count (PC) is the number of peaks per unit length (peaks/cm or peaks/in). 3.12 MEAN PROF
23、ILE SPACING, Rsm: The mean value of the spacing between texture profile crossings of the mean line. As specified in ASME B46.1 2009 the evaluation of Rsm involves default profile feature height discrimination and default spacing discrimination that are adopted for this measurement protocol (Figure 2
24、). Rsm is evaluated over the total evaluation length. dxxZR L en g thE va lu a tio na )( Figure 1 - Demonstration of the calculation of the Roughness Average, Ra. -1 .0 0-0 .5 00 .0 00 .5 01 .0 01 .5 0X A x isZ(x)0 .0 00 .5 01 .0 01 .5 0X a x isZ(x)Evaluation Length Best Fit Mean Line Surface Textur
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