ASTM E1603-1999(2006)
用罩式质谱探漏仪或残余气体分析仪作检漏测量的标准试验方法

Standard Test Methods for Leakage Measurement Using the Mass Spectrometer Leak Detector or Residual Gas Analyzer in the Hood Mode


ASTM E1603-1999(2006) 中,可能用到以下仪器设备

 

M6单四极杆气相色谱质谱联用仪

M6单四极杆气相色谱质谱联用仪

北京普析通用仪器有限责任公司

 

M7单四极杆气相色谱质谱联用仪

M7单四极杆气相色谱质谱联用仪

北京普析通用仪器有限责任公司

 

M8四极杆气相色谱-质谱联用仪

M8四极杆气相色谱-质谱联用仪

北京普析通用仪器有限责任公司

 

GC-MS 7000系列

GC-MS 7000系列

江苏天瑞仪器股份有限公司

 

FULI-Chromatec Crystal系列气相色谱-质谱联用仪

FULI-Chromatec Crystal系列气相色谱-质谱联用仪

浙江福立分析仪器股份有限公司

 

GCMS-QP2010 Ultra气相色谱/质谱联用仪

GCMS-QP2010 Ultra气相色谱/质谱联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

GCMS-QP2010 SE气相色谱/质谱联用仪

GCMS-QP2010 SE气相色谱/质谱联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

DFS 高分辨率磁式质谱系统

DFS 高分辨率磁式质谱系统

赛默飞色谱与质谱

 

岛津Off-Flavor异味分析系统

岛津Off-Flavor异味分析系统

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

多维GC/GCMS系统 MDGC/GCMS

多维GC/GCMS系统 MDGC/GCMS

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

GCMS-TQ8030三重四极杆气相色谱质谱联用仪

GCMS-TQ8030三重四极杆气相色谱质谱联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

GCMS-TQ8040 NX三重四极杆型气相色谱质谱联用仪

GCMS-TQ8040 NX三重四极杆型气相色谱质谱联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

赛默飞 TSQ DUO 气质联用仪

赛默飞 TSQ DUO 气质联用仪

赛默飞色谱与质谱

 

7010A三重四极杆 GC-MS/MS

7010A三重四极杆 GC-MS/MS

安捷伦科技公司

 

GCMS-QP 2020 NX单四极杆型气相色谱质谱联用仪

GCMS-QP 2020 NX单四极杆型气相色谱质谱联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

Q Exactive GC Orbitrap气质质联用仪

Q Exactive GC Orbitrap气质质联用仪

赛默飞色谱与质谱

 

Agilent 7010B 三重四极杆 GC/MS

Agilent 7010B 三重四极杆 GC/MS

安捷伦科技公司

 

GCMS-TQ8050 NX 三重四极杆气质联用仪

GCMS-TQ8050 NX 三重四极杆气质联用仪

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

赛默飞Exactive GC Orbitrap GC-MS 系统

赛默飞Exactive GC Orbitrap GC-MS 系统

赛默飞色谱与质谱

 

岛津5D Ultra-e五维超能分离质谱系统

岛津5D Ultra-e五维超能分离质谱系统

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

TSQ 9000 三重四极杆 GC-MS/MS 系统

TSQ 9000 三重四极杆 GC-MS/MS 系统

赛默飞色谱与质谱

 

Xevo TQ-GC气相色谱串联四极杆质谱联用仪

Xevo TQ-GC气相色谱串联四极杆质谱联用仪

沃特世科技(上海)有限公司Waters

 

岛津Py-Screener RoHS筛查系统

岛津Py-Screener RoHS筛查系统

岛津企业管理(中国)有限公司/岛津(香港)有限公司

 

Clarus SQ 8气相色谱/质谱联用仪

Clarus SQ 8气相色谱/质谱联用仪

珀金埃尔默企业管理(上海)有限公司PerkinElmer

 

iTOFMS-1G快速气相色谱—飞行时间质谱联用仪

iTOFMS-1G快速气相色谱—飞行时间质谱联用仪

江苏天瑞仪器股份有限公司

 

MASTER TOF-MS飞行质谱

MASTER TOF-MS飞行质谱

博赛德科技有限公司BCT

 

EVOQ TQ三重四极杆气质联用系统

EVOQ TQ三重四极杆气质联用系统

美国布鲁克道尔顿公司(Bruker Daltonic Inc.)

 

天瑞GC-MS 6800气相色谱质谱联用仪

天瑞GC-MS 6800气相色谱质谱联用仪

江苏天瑞仪器股份有限公司

 

AxION® iQT™ GC/MS/MS

AxION® iQT™ GC/MS/MS

珀金埃尔默企业管理(上海)有限公司PerkinElmer

 

天瑞GC-MS 6800S 气相色谱质谱联用仪

天瑞GC-MS 6800S 气相色谱质谱联用仪

江苏天瑞仪器股份有限公司

 

Pegasus HT-C GC-TOF MS

Pegasus HT-C GC-TOF MS

美国力可公司

 

Pegasus 4D GCxGC-TOFMS

Pegasus 4D GCxGC-TOFMS

美国力可公司

 

GC-MS3100气相色谱(四极)-质谱联用仪

GC-MS3100气相色谱(四极)-质谱联用仪

北京东西分析仪器有限公司

 

MSQ 8100四极杆气质联用仪

MSQ 8100四极杆气质联用仪

上海舜宇恒平科学仪器有限公司

 

FasTOF全二维气相色谱-高分辨飞行时间质谱

FasTOF全二维气相色谱-高分辨飞行时间质谱

北京普立泰科仪器有限公司

 

GC-MS3110型车载气相色谱-四极质谱联用仪

GC-MS3110型车载气相色谱-四极质谱联用仪

北京东西分析仪器有限公司

 

SCION 436/456-GC-SQ

SCION 436/456-GC-SQ

天美仪拓实验室设备(上海)有限公司

 

GC-MS 3200型气相色谱(四极)质谱联用仪

GC-MS 3200型气相色谱(四极)质谱联用仪

北京东西分析仪器有限公司

 

 

 

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标准号
ASTM E1603-1999(2006)
发布日期
1999年
实施日期
废止日期
中国标准分类号
J04
发布单位
US-ASTM
适用范围

Test Method A8212;This test method is the most frequently used in leak testing components. Testing of components is correlated to a standard leak, and the actual leak rate is measured. Acceptance is based on the maximum system allowable leakage. For most production needs, acceptance is based on acceptance of parts leaking less than an established leakage rate, which will ensure safe performance over the projected life of the component. Care must be exercised to ensure that large systems are calibrated with the standard leak located at a representative place on the test volume. As the volume tends to be large (>1 m3) and there are often low conductance paths involved, a check of the response time as well as system sensitivity should be made.

Test Method B8212;This test method is used for testing vacuum systems either as a step in the final test of a new system or as a maintenance practice on equipment used for manufacturing, environmental test, or conditioning parts. As with Test Method A, the response time and a system sensitivity check may be required for large volumes.

Test Method C8212;This test method is to be used only when there is no convenient method of connecting the LD to the outlet of the high-vacuum pump. If a helium LD is used and the high-vacuum pump is an ion pump or cryopump, leak testing is best accomplished during the roughing cycle, as these pumps leave a relatively high percentage of helium in the high-vacuum chamber. This will limit the maximum sensitivity that can be obtained.

1.1 These test methods cover procedures for testing the sources of gas leaking at the rate of 4.4 10 14 moles/s (1 109 standard-cm 3/s at 0C) or greater. These test methods may be conducted on any object that can be evacuated and to the other side of which helium or other tracer gas may be applied. The object must be structurally capable of being evacuated to pressures of 0.1 Pa (approximately 103 torr).

1.2 Three test methods are described;

1.2.1 Test Method AFor the object under test capable of being evacuated, but having no inherent pumping capability.

1.2.2 Test Method BFor the object under test with integral pumping capability.

1.2.3 Test Method CFor the object under test as in Test Method B, in which the vacuum pumps of the object under test replace those normally used in the leak detector (LD).

1.3 The values stated in SI units are to be regarded as standard. The values given in brackets are for information only.

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.


ASTM E1603-1999(2006) 中可能用到的仪器设备





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