N75 工艺试验机与包装试验机 标准查询与下载



共找到 32 条与 工艺试验机与包装试验机 相关的标准,共 3

The high-frequency reciprocating rig for diesel fuel assessment of lubricity

ICS
17.040.30
CCS
N75
发布
2017-12-29
实施
2018-07-01 00:00:00.0

Shaft straighteners—General specification

ICS
CCS
N75
发布
2016-08-29
实施
2017-03-01

Spring tension and compression testing machine

ICS
19.060
CCS
N75
发布
2017-04-12
实施
2018-01-01

本标准规定了四球摩擦试验机的符号和单位、技术要求、检验方法、检验规则、标志与包装、随行技术文件。 本标准适用于以滑动摩擦形式在点接触压力下,按GB/T 12583测定润滑剂承载、抗磨损能力用最大容量为10 kN的四球摩擦试验机(以下简称试验机)。

Four-ball friction testing machines

ICS
19.060
CCS
N75
发布
2017-04-12
实施
2018-01-01

本标准规定了拉压疲劳试验机的技术要求、检验方法、检验规则及标志、包装、运输与贮存。本标准适用于最大循环力为±1 000kN,频率不超过400Hz,材料疲劳试验用的电子测量、力控制式拉压疲劳试验机(以下简称试验机)。本标准亦适用于应用在特殊试验条件(如高低温、腐蚀性介质)和带有附属装置(如程序控制装置)的试验机,但本标准对这些特殊条件和附属装置未予规定。

Tension-compression fatigue testing machines.Technical specification

ICS
19.060
CCS
N75
发布
2013-04-25
实施
2013-09-01

本标准规定了弯折试验机的结构、技术要求、检验方法、检验规则、标志与包装和随行文件等内容。本标准适用于试样直径(包括异型截面)为0.3 mm~10 mm的线材和厚度不大于3 mm的金属板材与带材,按GB/T 238或HB/T 5178进行反复弯曲试验用的弯折试验机(以下简称试验机)。

Reverse bend testing machines.Specification

ICS
19.060
CCS
N75
发布
2013-04-25
实施
2013-09-01

本标准规定了杯突试验机的主要部件、技术要求、检验方法、检验规则、标志与包装、随行文件等内容。本标准适用于按GB/T 4156试验方法测定金属薄板和薄带埃里克森杯突值IE用的杯突试验机(以下简称试验机)。

Cupping testing machines.Specification

ICS
19.060
CCS
N75
发布
2013-04-25
实施
2013-09-01

Practice for Validation and Calibration of Walkway Tribometers Using Reference Surfaces

ICS
17.040.20;93.080.10
CCS
N75
发布
2013
实施

本规范适用于仪器化金属夏比摆锤冲击试验机(以下简称试验机)的校准。

Calibration Specification for Instrumented Charpy Pendulum Impact Testing Machines

ICS
CCS
N75
发布
2011-11-14
实施
2012-02-14

本大纲适用于液压式万能试验机的型式评价。液压式拉力(或压力)试验机的型式评价、木材万能试验机静力部分的型式评价可参照本大纲执行。

Program of Pattern Evaluation of Static Uniaxial Testing Machines―Part 3 :Hydraulic Universal Testing Machines

ICS
CCS
N75
发布
2011-07-28
实施
2011-10-28

本大纲适用于电液伺服万能试验机的型式评价。电液伺服拉力(或压力)试验机的型式评价可参照本大纲。

Program of Pattern Evaluation of Static Uniaxial Testing Machines―Part 2 :Electro-hydraulic Servo Universal Testing Machines

ICS
CCS
N75
发布
2011-07-28
实施
2011-10-28

本大纲适用于电子式万能试验机、电子拉力(或压力)试验机的型式评价。

Program of Pattern Evaluation of Static Uniaxial Testing Machines― Part 1 :Electronic Universal Testing Machines

ICS
CCS
N75
发布
2011-07-28
实施
2011-10-28

5.1 The determination of the wear volume becomes in tribological testing a key element, as it is more discriminative than the wear scar diameter, because an optically visible wear scar diameter may or may not indicate wear on the surface of the ball and the wear track as an irreversible loss of material. Users of this test method should determine whether results correlate with field performance or other applications. Note 3: It is believed, that tactile stylus tip profilometer determines the most realistic figure and are more frequent in use, than it can be achieved by optical profilometers operating in a non-contacting mode. 1.1 This practice covers a procedure for determining the wear volume WV of wear scars and tracks on test pieces tribologically stresses under high-frequency, linear-oscillation motion using a SRV test machine by means of stylus tip profilometry. 1.2 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.3 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. 1.4 This international standard was developed in accordance with internationally recognized principles on standardization established in the Decision on Principles for the Development of International Standards, Guides and Recommendations issued by the World Trade Organization Technical Barriers to Trade (TBT) Committee.

Standard Practice for Determining the Wear Volume on Standard Test Pieces Used by High-Frequency, Linear-Oscillation (SRV) Test Machine

ICS
75.100
CCS
N75
发布
2011
实施

1.1 This method employs a testing machine (Fig. 1) that generates a precisely controlled gyratory kneading process which is used to prepare and test specimens of bituminous paving mixtures. This method is intended for use in bituminous mixtures design and control testing as well as accelerated traffic simulation. The objective is to compact to the ultimate in place density under the anticipated vertical stress while monitoring the process in terms of unit mass, and shearing resistance including the plastic properties. Particular attention is given to the development of the plastic properties associated with the compaction phenomenon. The maximum permissible bitumen content is indicated directly by the first evidence of a progressive increase in shear strain (as indicated by a progressive increase in the gyratory angle) accompanied by a progressive reduction in shear strength (as indicated by a progressive reduction in roller pressure.) The procedures described here are for mix design and plant control as well as accelerated traffic simulation. 1.2 This test method covers two separate modes of operation of the Gyratory Testing Machine (GTM), namely: (1) GTM oil-filled roller mode; and (2) GTM air-filled roller mode. With the air filled roller, the GTM machine angle varies according to the resistance encountered during the gyratory kneading process. Thus the GTM using the air-filled roller is considered a better mechanical analog of the interaction between pneumatic tire and pavement structure. 1.3 This test method is for use with mixtures containing asphalt cement, asphalt binder cutback asphalt, asphalt emulsion. Test molds are available in 4- in. (101.6 mm), 6-in. ( 152.4 mm), and 8-in. (203.2 mm)diameters with corresponding height of 8-in (203.2 mm), 10-in.(254.0 mm), and 12-in. (304.8 mm) respectively. These molds can accommodate maximum particle sizes of 1 in. (25.4 mm) 1.5-in. (38.1 mm) and 2.0-in. (50.8 mm) respectively. 1.4 Units8212;The values stated in inch pound units are to be regarded as standard. The values given in parentheses are mathematical conversions to SI units that are provided for information only and are not considered standard. 1.5 The text of this standard references notes and footnotes which provide explanatory material. These notes and footnotes (excluding those in tables and figures) shall not be considered as requirements of the standard. 1.6 This standard may involve hazardous materials, operations, and equipment. 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. FIG. 1 Largest Model of Gyratory Testing Machine

Standard Test Method for Compaction and Shear Properties of Bituminous Mixtures by Means of the U.S. Corps of Engineers Gyratory Testing Machine (GTM)

ICS
CCS
N75
发布
2011
实施

The determination of the wear volume becomes in tribological testing a key element, as it is more discriminative than the wear scar diameter, because an optically visible wear scar diameter may or may not indicate wear on the surface of the ball and the wear track as an irreversible loss of material. Users of this test method should determine whether results correlate with field performance or other applications. Note 38212;It is believed, that tactile stylus tip profilometer determines the most realistic figure and are more frequent in use, than it can be achieved by optical profilometers operating in a non-contacting mode.1.1 This practice covers a procedure for determining the wear volume WV of wear scars and tracks on test pieces tribologically stresses under high-frequency, linear-oscillation motion using a SRV test machine by means of stylus tip profilometry. 1.2 The values stated in SI units are to be regarded as the standard. The values given in parentheses are for information only. 1.3 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 Determining the Wear Volume on Standard Test Pieces Used by High-Frequency, Linear-Oscillation (SRV) Test Machine

ICS
CCS
N75
发布
2011
实施

本标准规定了包装件跌落试验机(以下简称跌落试验机)的术语和定义、基本参数与组成、技术要求、检验方法、检验规则等。 本标准适用于跌落高度不大于2000mm的跌落试验机。

Specifications for the packaging case drop testing machines

ICS
17.160;19.060
CCS
N75
发布
2008-03-12
实施
2008-09-01

This test guide provides a means to quantify the abrasion resistance of material surfaces, and may be related to end-use performance, or used to comparatively rank material performance, or both. The resistance of material surfaces to abrasion, as measured on a testing machine in the laboratory, is generally only one of several factors contributing to wear performance as experienced in the actual use of the material. Other factors may need to be considered in any calculation of predicted life from specific abrasion data. The resistance of material surfaces to abrasion may be affected by factors including test conditions; type of abradant; pressure between the specimen and abradant; mounting or tension of the specimen; and type, kind, or amount of finishing materials. Abrasion tests utilizing the rotary platform, double head abraser may be subject to variation due to changes in the abradant during the course of specific tests. Depending on abradant type and test specimen, the abrading wheel surface may change (i.e. become clogged) due to the pick-up of finishing or other materials from test specimens. To reduce this variation, the abrading wheels should be resurfaced at regularly defined intervals. See Appendix X2. The measurement of the relative amount of abrasion may be affected by the method of evaluation and influenced by the judgment of the operator.1.1 This guide covers and is intended to assist in establishing procedures for conducting wear tests of rigid or flexible materials utilizing the rotary platform, double-head abraser (RPDH). 1.2 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard. 1.2.1 Exception8212;English units are used when determining coating thickness. 1.3 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 Guide for Conducting Wear Tests Using a Rotary Platform, Double-Head Abraser

ICS
19.060
CCS
N75
发布
2008
实施

本标准规定了定速式摩擦试验机(以下简称试验机)的技术要求、试验方法及标志、包装、运输。 本标准适用于计算机控制的定速式摩擦试验机,普通定速式摩擦试验机蛮可参照使用。

Constant speed friction test machine

ICS
CCS
N75
发布
2007-09-22
实施
2008-04-01

ERRATUM

ICS
CCS
N75
发布
2005-11-20
实施

本标准规定了弹簧拉压试验机的术语和定义、要求、检验方法、检验规则、标志和包装等内容。 本标准适用于最大容量在1000kN以下的弹簧拉力和(或)压力试验机(以下简称为试验机)。

Tension and compression spring testing machines

ICS
19.060
CCS
N75
发布
2005-09-23
实施
2006-02-01



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