17.040.01 长度和角度测量综合 标准查询与下载



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This part of ISO 14253 gives guidance on the implementation of the concept of the “Guide to the estimation of uncertainty in measurement” (in short GUM) to be applied in industry for the calibration of (measurement) standards and measuring equipment in the field of GPS and the measurement of workpiece GPS characteristics. The aim is to promote full information on how to achieve uncertainty statements and provide the basis for international comparison of measurement results and their uncertainties (relationship between purchaser and supplier). This part of ISO 14253 is intended to support ISO 14253-1. Both parts are beneficial to all technical functions in a company in the interpretation of GPS specifications [i.e. tolerances of workpiece characteristics and values of maximum permissible errors (MPEs) for metrological characteristics of measuring equipment]. This part of ISO 14253 introduces the Procedure for Uncertainty MAnagement (PUMA), which is a practical, iterative procedure based on the GUM for estimating uncertainty of measurement without changing the basic concepts of the GUM. It is intended to be used generally for estimating uncertainty of measurement and giving statements of uncertainty for: ⎯ single measurement results; ⎯ the comparison of two or more measurement results; ⎯ the comparison of measurement results — from one or more workpieces or pieces of measurement equipment — with given specifications [i.e. maximum permissible errors (MPEs) for a metrological characteristic of a measurement instrument or measurement standard, and tolerance limits for a workpiece characteristic, etc.], for proving conformance or non-conformance with the specification. The iterative method is based basically on an upper bound strategy, i.e. overestimation of the uncertainty at all levels, but the iterations control the amount of overestimation. Intentional overestimation — and not underestimation — is necessary to prevent wrong decisions based on measurement results. The amount of overestimation is controlled by economical evaluation of the situation. The iterative method is a tool to maximize profit and minimize cost in the metrological activities of a company. The iterative method/procedure is economically self-adjusting and is also a tool to change/reduce existing uncertainty in measurement with the aim of reducing cost in metrology (manufacture). The iterative method makes it possible to compromise between risk, effort and cost in uncertainty estimation and budgeting.

Geometrical product specifications (GPS) - Inspection by measurement of workpieces and measuring equipment - Part 2: Guidance for the estimation of uncertainty in GPS measurement, in calibration of measuring equipment and in product verification

ICS
17.040.01
CCS
N13
发布
2011-04-15
实施

This International Standard defines general terms for geometrical specifications, characteristics and conditions.These definitions are based on concepts developed in ISO 17450-1 and ISO 22432 and they are given byusing a mathematical description based on Annex B of ISO 17450-1:2011.

Geometrical product specifications (GPS) - Characteristics and conditions - Definitions

ICS
17.040.01
CCS
发布
2011-04-01
实施

This part of ISO 14253 gives guidance on the implementation of the concept of the “Guide to the estimation ofuncertainty in measurement” (in short GUM) to be applied in industry for the calibration of (measurement)standards and measuring equipment in the field of GPS and the measurement of workpiece GPScharacteristics. The aim is to promote full information on how to achieve uncertainty statements and providethe basis for international comparison of measurement results and their uncertainties (relationship betweenpurchaser and supplier).

Geometrical product specifications (GPS) - Inspection by measurement of workpieces and measuring equipment - Part 2: Guidance for the estimation of uncertainty in GPS measurement, in calibration of measuring equipment and in product verification

ICS
17.040.01
CCS
发布
2011-04-01
实施

This International Standard defines general terms for geometrical specifications, characteristics and conditions. These definitions are based on concepts developed in ISO 17450-1 and ISO 22432 and they are given by using a mathematical description based on Annex B of ISO 17450-1:2011. This International Standard is not intended for industrial use as such among designers, but is aimed to serve as the “road map” mapping out the requirements based on geometrical features, thus enabling future standardization for industry and software makers in a consistent manner. This International Standard defines general types of geometrical characteristics and conditions which can be used in GPS. These descriptions are applicable to - a workpiece, - an assembly, - a population of workpieces, and - a population of assemblies. These definitions are based on concepts of operators and the duality principle contained in ISO 17450-1 and ISO/TS 17450-2 and on the description of types of geometrical features defined in ISO 22432. Conceptually, these specification operators can be used as specification operators or as verification operators (duality principle). This International Standard is not intended to define GPS specifications, symbology or other types of expression.

Geometrical product specifications (GPS) - Characteristics and conditions - Definitions

ICS
17.040.01
CCS
A50
发布
2011-04-01
实施
2011-04-01

This part of ISO 14253 provides guidelines and defines procedures for assisting the customer and supplier toreach amicable agreements on disputed measurement uncertainty statements regulated in accordance withISO 14253-1, and so avoid costly and time-consuming disputes.

Geometrical product specifications (GPS) - Inspection by measurement of workpieces and measuring equipment - Part 3: Guidelines for achieving agreements on measurement uncertainty statements (ISO 14253-3:2011)

ICS
17.040.01
CCS
发布
2011-04-01
实施

This International Standard specifies the basic terminology for GPS extraction. It defines a framework for the fundamental operations used in GPS extraction and introduces the concepts of sampling and reconstruction for extraction, together with some principal sampling schemes on several basic geometries.

Geometrical product specifications (GPS) – Extraction

ICS
17.040.01
CCS
发布
2011-03-18
实施
2011-03-18

This International Standard defines general terms and types of features for geometrical features ofspecifications for workpieces. These definitions are based on concepts developed in ISO/TS 17450-1.

Geometrical product specifications (GPS) - Features utilized in specification and verification (ISO 22432:2011)

ICS
17.040.01
CCS
发布
2011
实施

This International Standard provides calculated values for a series of cones or conical tapers, ranging from120° to less than 1°, or ratios from 1:0,289 to 1:500, intended for general use in technical engineering.

Geometrical product specifications (GPS) - Series of conical tapers and taper angles

ICS
17.040.01
CCS
发布
2011
实施

This International Standard specifies the basic terminology for GPS extraction. It defines a framework for the fundamental operations used in GPS extraction and introduces the concepts of sampling and reconstruction for extraction, together with some principal sampling schemes on several basic geometries.

Geometrical product specifications (GPS) - Extraction

ICS
17.040.01
CCS
A41
发布
2010-12-15
实施
2010-12-15

To outline the main assumptions behind the theoretically ideal decision rules established in ISO 14253-1 and to discuss why these rules must be default rules and what should be considered before applying different decision rules

Geometrical product specifications (GPS) - Inspection by measurement of workpieces and measuring equipment - Part 4: Background on functional limits and specification limits in decision rules

ICS
17.040.01
CCS
发布
2010-08-09
实施
2010-08-09

Geometrical product specifications (GPS) - Inspection by measurement of workpieces and measuring equipment - Background on functional limits and specification limits in decision rules

ICS
17.040.01
CCS
N13
发布
2010-06-30
实施
2010-06-30

Geometrical product specifications (GPS) - Inspection by measurement of workpieces and measuring equipment - Part 4: Background on functional limits and specification limits in decision rules

ICS
17.040.01
CCS
A41
发布
2010-05-01
实施

This standard specifies acoustical performance criteria, and design requirements for classrooms and other learning spaces, excluding relocatable classrooms and modular core learning spaces. Annex A (normative) provides procedures for optional testing to determine conformance with the source background noise requirements and the noise isolation requirements of this standard. Annex B (informative) provides commentary information.

Acoustical Performance Criteria, Design Requirements, and Guidelines for Schools, Part 1: Permanent Schools

ICS
17.040.01
CCS
P31
发布
2010
实施

State system for ensuring the uniformity of measurements. Interplanar spacings in crystals and the intensity distribution in diffraction patterns. Method for measurement by means of an electron diffractometer

ICS
17.040.01
CCS
发布
2010
实施
2010-09-01

State system for ensuring the uniformity of measurements. Interpenar spacings in crystals. Method for measurement by means of a transmission electron microscope

ICS
17.040.01
CCS
发布
2010
实施
2010-09-01

State system for ensuring the uniformity of measurements. Dimensional parameters of nanoparticles and thin films. Method for measurement by means of a small angle X-ray scattering diffractometer

ICS
17.040.01
CCS
发布
2010
实施
2010-09-01

State system for ensuring the uniformity of measurements. Method of surface roughness effective height measurements by means of scanning probe atomic force microscope

ICS
17.040.01
CCS
发布
2010
实施
2010-11-01

State system for ensuring the uniformity of measurements. Single-crystal silicon nanometer range relief measure. Geometrical shapes, linear size and manufacturing material requirements

ICS
17.040.01
CCS
发布
2009
实施
2010-11-01

Provides a relocatable-classroom-specific supplemental version of ANSI S12.60. Includes siting requirements, acoustical performance criteria & design rqmts for relocatable classrooms. Annex A provides commentary info on this standard. Annex B provides procedures for determining compliance with background sound rqmts. Seeks to provide design flexibility without compromising goal of obtaining adequate speech intelligibility for students & teachers in learning spaces within the standard's scope.

Acoustical Performance Criteria, Design Requirements, and Guidelines for Schools - Part 2: Relocatable Classroom Factors

ICS
17.040.01
CCS
P31
发布
2009
实施

4.1 This practice can be used to facilitate comparison of areas that have been measured but it does not specify what measurements must be conducted. 4.2 This practice can be used in space programming and forecasting of space requirements. 4.3 This practice can be used to classify areas for internal cost accounting purposes. 4.4 This practice can be used to compare space use between organizations. 1.1 This practice provides a definitive procedure for measuring and classifying floor area in buildings for use in facility management, specifying occupant requirements, space planning, and for strategic facility planning. 1.2 This practice specifies the sequence in which to measure floor area. 1.3 This practice is applicable to owned, rented, and leased buildings. 1.4 Use Annex A1 to measure floor area in office facilities. The measurement practice in Annex A1 may also be suitable for use in other functional types of building which include offices, such as research, laboratory, or manufacturing buildings and building-related facilities. 1.5 The practice in Annex A1 is not intended for use in lease negotiations with owners of commercial office buildings or related properties. For that purpose, refer to the American National Standard published by the American National Standards Institute under the designation ANSI/BOMA Z65.1–1996 and commonly known as the ANSI-BOMA standard. 1.6 This practice is not intended for and not suitable for use for regulatory purposes, fire hazard assessment, and fire risk assessment. 1.7 This practice was developed for use within North America and includes some rules comparable to ISO 9836 Performance Standards in Building—Definition and Calculation of Area and Space Indicators. 1.8 The values stated in either SI units or inch-pound units are to be regarded separately as standard. The values stated in each system may not be exact equivalents; therefore, each system shall be used independently of the other. Combining values from the two systems may result in non-conformance with the standard. 1.9 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Standard Practice for Building Floor Area Measurements for Facility Management

ICS
17.040.01
CCS
发布
2009
实施



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