35.240.10 计算机辅助设计(CAD) 标准查询与下载



共找到 98 条与 计算机辅助设计(CAD) 相关的标准,共 7

本文件规定了城市轨道交通工程信息模型的分类、信息模型编码及扩展、编码逻辑运算符号以及编码的应用等。 本文件适用于城市轨道交通车站工程、区间工程、车辆段工程、设备系统工程、控制中心及主变电所,新建、改建、扩建项目,在项目全生命周期各阶段工程信息模型的分类、编码及组织。

Urban rail transit engineering information model— Classification and coding

ICS
35.240.10
CCS
G541
发布
2022-04-26
实施
2023-04-20

本文件规定了城市轨道交通工程信息模型设计表达规范的基本要求、模型表达和模型视图的要求等内容。 本文件适用于城市轨道交通车站工程、区间工程、车辆段工程、设备系统工程、控制中心及主变电所,新建、改建、扩建项目设计过程中各阶段工程信息模型的模型表达、模型视图的表达形式。

Urban rail transit engineering information model — Specifications for design and expression

ICS
35.240.10
CCS
G541
发布
2022-04-26
实施
2023-04-20

本文件规定了城市轨道交通工程信息模型在不同设计阶段构件创建的总体要求、通用构件的创建、产品构件的创建、产品构件的附件及构件交付的相关要求。 本文件适用于城市轨道交通车站工程、区间工程、车辆段工程、设备系统工程、控制中心及主变电所,新建、改建、扩建项目设计中应用模型建立的构件的创建与交付。

Urban rail transit engineering information model — Component

ICS
35.240.10
CCS
G541
发布
2022-04-26
实施
2023-04-20

Technical drawing ?Drawing by CAD

ICS
35.240.10
CCS
发布
20201222
实施
20201222

      为深入贯彻《国务院办公厅关于促进建筑业持续健康发展的意见》(国办〔2017〕19号)、《住房城乡建设部关于印发2016-2020年建筑业信息化发展纲要的通知》(建质函〔2016〕183号)、住房城乡建设部《“十三五”装配式建筑行动方案》(建科〔2017〕77号)和深圳市《关于做好装配式建筑项目实施有关工作的通知》(深建规〔2018〕13号),等相关文件要求,加快推进建筑信息模型(BIM)技术在装配式建筑项目建设全过程的应用,不断提高装配式建筑发展水平,本标准编制组经广泛调查研究,认真总结实践经验,参考有关国内外先进标准,并在反复征求意见的基础上,制订本标准。        本标准的主要技术内容是:总则,术语,基本规定,策划阶段,设计阶段,生产阶段,施工阶段。

Shenzhen prefabricated concrete building information modeling technology application standard

ICS
35.240.10
CCS
E4710
发布
2020-03-31
实施
2022-09-15

    《信息技术 职业技能 建筑动画模型师》是实施建筑动画相关人才技能培养、技能鉴定和人力资源管理的基本依据,标准的编制、发布和实施,有利于推动建筑动画制作人才的有序、有效的能力分析、能力鉴定和培养活动,促进软件行业均衡、健康的发展。     规范了建筑动画模型制作人员的职业名称、职业定义、职业等级、职业环境、职业能力特征、鉴定要求、相关知识及技能要求以及鉴定比重表等内容。     标准规范了建筑动画模型制作从业人员必须掌握的通用基础知识,包括职业所需和与职业相关并贯穿整个职业活动的基本理论和相关知识,规范了各等级从业人员应具备的专业知识和专业技能,将建筑动画模型制作职业划分为初级建筑动画模型师、中级建筑动画模型师以及高级建筑动画模型师三个等级,针对不同等级制定相应规范内容。     标准以职业技能鉴定为核心,定义职业等级,规范申报职业等级的资格要求,保证各等级之间的关联性和持续性。

Information Technology Vocational Skills Architectural Animation Modeler

ICS
35.240.10
CCS
I657
发布
2018-07-01
实施
2018-08-06

    《信息技术 职业技能 建筑动画渲染师》是实施建筑动画相关人才技能培养、技能鉴定和人力资源管理的基本依据,标准的编制、发布和实施,有利于推动建筑动画制作人才的有序、有效的能力分析、能力鉴定和培养活动,促进软件行业均衡、健康的发展。     规范了建筑动画渲染人员的职业名称、职业定义、职业等级、职业环境、职业能力特征、鉴定要求、相关知识及技能要求以及鉴定比重表等内容。     标准规范了建筑动画渲染从业人员必须掌握的通用基础知识,包括职业所需和与职业相关并贯穿整个职业活动的基本理论和相关知识,规范了各等级从业人员应具备的专业知识和专业技能,将建筑动画渲染职业划分为初级建筑动画渲染师、中级建筑动画渲染师以及高级建筑动画渲染师三个等级,针对不同等级制定相应规范内容。     标准以职业技能鉴定为核心,定义职业等级,规范申报职业等级的资格要求,保证各等级之间的关联性和持续性。

Information Technology Vocational Skills Architectural Animation Renderer

ICS
35.240.10
CCS
I657
发布
2018-07-01
实施
2018-08-06

This PAS is intended to serve as a checklist and guideline for the evaluation of CAx-software for applications within the electromechanical field by users in industry. This PAS provides a set of data element types required in the context of electromechanical applications, especially in the context of electrical applications and their mechanical representations in the real or virtual three-dimensional world. Where possible, existing internationally standardized data element types have been taken from the existing data element repository as listed in the data base of IEC 61360 available under the URL http://std.iec.ch/iec61360 Available data element types are indicated by their identity number, followed by its name and the definition as given in the data base at the time of publication of this document. The application of standardized data element types supports the automatization of design processes during the development of products, systems and plants.

Requirements concerning the interoperability between electromechanical and electrical applications in CAx-systems

ICS
35.240.10
CCS
发布
2015-09-03
实施

Digitizers-Specified items

ICS
35.240.10
CCS
发布
2013-12-19
实施

Requirements concerning the interoperability between electromechanical and electrical applications in CAx-systems

ICS
35.240.10
CCS
发布
2011-03-31
实施
2011-03-31

This practice is intended to allow marker data exchange between nesting software or CAM systems. The pieces description, exported by a CAD system, is dedicated to CAM systems.1.1 This practice describes a format for transferring marker data from a CAD marker software system to another or to a CAM software system. 1.2 This practice does not support curve interpolation or definitions. All curves are represented by discrete vectors and are dependent on the resolution of the CAD software. 1.3 This practice is concerned in limiting differences when processing the same data on different CAD systems. 1.4 This practice is not intended to represent the dimension relationships between pattern pieces or between pattern sizes, or the correspondence between 2D or 3D sewn product pattern piece geometries. 1.5 The file format for the marker data exchange file defined by this standard complies with the XML format. 1.5.1 The XML schema describing marker data exchange standard XML structure is presented in an ASTM adjunct. 1.6 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 Sewn Products Marker Data Interchange

ICS
35.240.10
CCS
Y17
发布
2011
实施

CAD/CAM data remote transmission - Part 0: Introduction, explanation, code (version: 3.2)

ICS
35.240.10
CCS
发布
2009-12
实施

CAD/CAM data remote transmission - Part 2: VDA ENGPART V4.1

ICS
35.240.10
CCS
发布
2009-11
实施

More and more customers (and frequently relatively major customers) are no longer demanding product drawings or 2D CAD files from their suppliers but rather 3D product models which they can then work on further in their own (3D) systems. In such cases the use of a 3D CAD system can be essential if competitiveness is to be retained. The most important advantages a 3D CAD system can offer over a 2D system are: more complete product models, fewer documents which need to be created and managed individually, because a large number of documents can be generated (semi-)automatically from the 3D product models (such as drawings, bills of material, operation sheets, assembly and operating instructions, spare parts catalogues), early detection and prevention of functional, manufacturing and other problems, resulting in fewer op

3D product modelling - Technical and organizational requirements - Procedures, tools, and applications - Cost-effective practical use

ICS
35.240.10
CCS
发布
2009-03
实施

CAD/CAM data transfer - Part 1: Engineering data ENGDAT V3.1

ICS
35.240.10
CCS
发布
2009-02
实施

This PAS is intended to serve as a checklist and guideline for the evaluation of CAx-software for applications within the electromechanical field by users in industry.This PAS provides a set of data element types required in the context of electromechanical applications, especially in the context of electrical applications and their mechanical representationsin the real or virtual three-dimensional world.Where possible, existing internationally standardized data element types have been taken from the existing data element repository as listed in the data base of IEC 61360 available under the URL http://std.iec.ch/iec61360 Available data element types are in

Requirements concerning the interoperability between electromechanical and electrical applications in CAx-systems

ICS
35.240.10
CCS
发布
2008-04-04
实施
2008-04-04

CAD/CAM Data Remote Transfer - Part 7: Use of CAD Assembly Container Files (Version: 1.0)

ICS
35.240.10
CCS
发布
2008-02
实施

CAD/CAM data scope and quality; Version: 4.1

ICS
35.240.10
CCS
发布
2006-12
实施

CAD/CAM Data Remote Transfer - Part 6: Encryption (Version: 3.0)

ICS
35.240.10
CCS
发布
2006-11
实施

CAD/CAM data remote transmission - Part 5: PDM data exchange (version: 3.0)

ICS
35.240.10
CCS
发布
2006-11
实施



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