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金属磁记忆检测法
 
 

金属磁记忆应用

设备与构件的应力应变状态检测

管道、油气管线检测

容器与机械的快速检测

检测电力和热水锅炉的受热管道

检测锅炉与蒸汽管道弯头

检测蒸汽轮机叶片

检测蒸汽轮机转子

检测蒸汽轮机叶片系统整体围带

检测蒸汽轮机叶轮

检测蒸汽轮机转子渣孔

检测巴比合金轴承壳

检测发电机转子与末端线圈扣环

检测水力发电站的水涡轮与负载结构

检测铁路运输中的铁轨、轮对、机车零件

检测钢丝与钢丝绳

检测辊轧机辊系

焊接及相关程序的质量评估

处理工艺的质量检测

 
 
 

Determination of babbit fit tightness on split-shell bearings

The technique is based on measurement of scattering magnetic field Нр characterizing residual magnetization distribution in a bearing body. Field Нр measurement can be produced through a babbit layer of the thickness up to 20 mm.

A zone (line) with maximum residual stress concentration (SC zone) is the criteria for determination of parts with potential upset of babbit fit tightness.

The technique is expediently to use in combination with ultrasonic flaw detection. Zones of maximum stress concentration are determined primary by the specialized magnetometers (TSCM-2FP or TSC-type). Then by scanning along SC lines by an ultrasonic instrument gauge (for example thickness gauge) the zone of babbit fit tightness upset is detected.

Fig.1 shows the example of the SC lines location revealed through a babbit layer of the thickness 10 mm on the split-shell bearing.

Fig.1. The example of the SC line location on the split-shell bearing: 1 - zones of babbit fit tightness upset; 2 - SC lines.

 
 
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