21.200 齿轮及齿轮传动 标准查询与下载



共找到 1034 条与 齿轮及齿轮传动 相关的标准,共 69

本文件规定了工业机器人用外消隙齿轮的工作原理、技术要求、试验方法和检验规则。

External backlash gearing for industrial robots

ICS
21.200
CCS
C345
发布
2022-03-08
实施
2022-03-08

本文件规定了谐波减速机用的柔性轴承(以下简称“柔性轴承”)的组成、安装、技术要求、试验方法和检验规则。

Flexible bearings for harmonic reducers

ICS
21.200
CCS
C345
发布
2022-03-08
实施
2022-03-08

本文件规定了谐波减速机用交叉滚子轴承(以下简称“交叉滚子轴承”)的组成、安装、技术要求、试验方法和检验规则。

Crossed roller bearings for harmonic reducer

ICS
21.200
CCS
C345
发布
2022-03-08
实施
2022-03-08

本标准对非公路车辆驱动桥螺旋锥齿轮的产品精度、性能要求、外观质量、检验方法等方面的主要指标进行了规定,适用于燃油和电驱动的非公路车辆驱动桥配套的螺旋锥齿轮。 齿轮材料采用优质低碳合金结构钢,宜满足GB/T 3077或GB/T 5216要求,推荐选用20CrMoH、 22CrMoH、20CrMnTiH、20CrMnTi。也可以参照GB/T 5216对淬透性指标进行调整,以满足齿轮强度和心部硬度要求。 齿轮材料质量等级应满足GB/T 3480.5的MQ级要求,其中材料氧含量应≤0.002 %。 齿轮毛坯应采用锻坯,锻造比宜在1.5至3.0之间,锻坯应进行预备热处理,推荐采用等温正火处理。 齿轮精度应符合GB/T 11365中7级。 工作齿面粗糙度Ra1.6。 齿根及过渡圆角表面粗糙度Ra3.2。 齿轮副在滚动检查机上检查应运转平稳,无冲击、撞击、振动等异常声响。

Spiral bevel gears of driving axle in off-highway vehicle

ICS
21.200
CCS
C345
发布
2022-01-06
实施
2022-01-06

本文件规定了谐波齿轮传动柔性轴承的符号、设计要求和安装要求。 本文件适用于(空间应用、机器人和精密定位系统)谐波齿轮传动系统柔性轴承的设计和开发。

Design and Installation of Flexible Bearing for Harmonic Gear Transmission

ICS
21.200
CCS
C345
发布
2022-01-05
实施
2022-01-06

本文件规定了工业机器人刚性和柔性谐波齿轮加工的设计、谐波齿轮优化、加工工艺和热处理工艺。 本文件适用于(工业机器人、谐波齿轮减速器)谐波齿轮减速器的加工。

Rigid and Flexible Harmonic Gear Machining Technology for Industrial Robots

ICS
21.200
CCS
C345
发布
2022-01-05
实施
2022-01-06

本文件规定了工业机器人刚性和柔性谐波齿轮加工的设计、谐波齿轮优化、加工工艺和热处理工艺。 本文件适用于(工业机器人、谐波齿轮减速器)谐波齿轮减速器的加工。

Rigid and Flexible Harmonic Gear Machining Technology for Industrial Robots

ICS
21.200
CCS
C345
发布
2022-01-05
实施
2023-03-22

本文件规定了谐波齿轮传动柔性轴承的符号、设计要求和安装要求。 本文件适用于(空间应用、机器人和精密定位系统)谐波齿轮传动系统柔性轴承的设计和开发。

Design and Installation of Flexible Bearing for Harmonic Gear Transmission

ICS
21.200
CCS
C345
发布
2022-01-05
实施
2023-03-22

本文件规定了机器人用谐波齿轮减速器的分类、型号及基本参数、技术要求、试验方法、检验规则、标志、包装、运输和贮存。 本文件适用于机器人用谐波齿轮减速器(以下简称减速器)。

Harmonic reducer

ICS
21.200
CCS
C345
发布
2022-01-05
实施
2022-01-06

本标准规定了轻型高速船用齿轮箱的术语和定义、技术要求、试验方法、检验规则等。

Technical specification for Light High-Speed Marine Gearbox

ICS
21.200
CCS
C348
发布
2021-12-15
实施
2021-12-17

Calculation of load capacity of bevel gears - Part 20: Calculation of scuffing load capacity -- Flash temperature method

ICS
21.200
CCS
发布
2021-09-30
实施
2021-09-30

本文件规定了精密减速器性能指标体系、测试方法和评价手段。 

Performance evaluation system of precision reducer

ICS
21.200
CCS
C348
发布
2021-09-16
实施
2021-09-16

本文件规定了精密减速器的试验条件、试验流程和失效评价。

Precision reducer reliability test method

ICS
21.200
CCS
C348
发布
2021-09-16
实施
2021-09-16

Shapes and Dimensions of Helical Gears for General Use

ICS
21.200
CCS
发布
20210903
实施
20210903

Shapes and Dimensions of Spur Gears for General Engineering

ICS
21.200
CCS
发布
20210903
实施
20210903

Backlashes for Bevel Gears

ICS
21.200
CCS
发布
20210903
实施
20210903

Bevel gears-ISO system of accuracy

ICS
21.200
CCS
发布
20210903
实施
20210903

Backlash for Spur and Helical Gears

ICS
21.200
CCS
发布
20210903
实施
20210903

This document establishes a gear tooth classification system relevant to double flank radial composite deviations of individual cylindrical involute gears and sector gears. It specifies the appropriate definitions of gear tooth deviations, the structure of the gear tooth flank cl

Cylindrical gears - ISO system of flank tolerance classification - Part 2: Definitions and allowable values of double flank radial composite deviations (ISO 1328-2:2020)

ICS
21.200
CCS
发布
2021-09-00
实施

ISO 10300-3:2014 specifies the fundamental formulae for use in the tooth root stress calculation of straight and helical (skew), Zerol and spiral bevel gears including hypoid gears, with a minimum rim thickness under the root of 3,5 mmn. All load influences on tooth root stress are included, insofar as they are the result of load transmitted by the gearing and able to be evaluated quantitatively. Stresses, such as those caused by the shrink fitting of gear rims, which are superposed on stresses due to tooth loading, are intended to be considered in the calculation of the tooth root stress, σF, or the permissible tooth root stress σFP. ISO 10300-3:2014 is not applicable in the assessment of the so-called flank breakage, a tooth internal fatigue fracture (TIFF). The formulae in ISO 10300-3:2014 are based on virtual cylindrical gears and restricted to bevel gears whose virtual cylindrical gears have transverse contact ratios of Ɛvα < 2. The results are valid within the range of the applied factors as specified in ISO 10300-1 (see also ISO 6336-3). Additionally, the given relationships are valid for bevel gears, of which the sum of profile shift coefficients of pinion and wheel is zero (see ISO 23509).

Calculation of load capacity of bevel gears — Part 3: Calculation of tooth root strength

ICS
21.200
CCS
发布
2021-07-01
实施



Copyright ©2007-2022 ANTPEDIA, All Rights Reserved
京ICP备07018254号 京公网安备1101085018 电信与信息服务业务经营许可证:京ICP证110310号