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Failure analysis of a titanium Coriolis mass flow meter: A case of hydrogen embrittlement

机译:钛科里奥利质量流量计的失效分析:氢脆的情况

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Titanium alloys are suitable for construction of the Coriolis mass flow meter due to their high strength to weight ratio, high thermal stability and excellent corrosion resistance. However, environments with high hydrogen content can be very harmful to titanium and its alloys, since this element may cause hydride formation and leads to hydrogen embrittlement. In this context, this paper reports on the analysis of a grade 9 titanium tube of a mass flow meter, which was performed using cyclohexanol (68%), water (2%) and Raney nickel catalyst (30%). After the active period, the flow meter was deactivated and left on standby for one year, and then reassembled on a production line, whereupon it failed prematurely. The failure was analyzed by OM, SEM, EDS, Vickers microhardness and XRD, whose results indicated that the cause was hydride embrittlement due to the chemical interaction between Raney nickel and the titanium tube during the deactivated period.
机译:钛合金适用于基石质量流量计的构建,因为它们的高强度为重量比,高热稳定性和优异的耐腐蚀性。 然而,具有高氢含量的环境对于钛及其合金非常有害,因为该元素可能导致氢化物形成并导致氢脆。 在这种情况下,本文报告了使用环己醇(68%),水(2%)和阮内镍催化剂(30%)进行的质量流量计的9级钛管的分析。 在活动期间后,流量计被停用并留在待机状态一年,然后在生产线上重新组装,从而过早地失败。 OM,SEM,EDS,VICKERS微硬度和XRD的分析失败,其结果表明由于阮内镍和钛管在停用期间的化学相互作用,原因是氢化物脆化。

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