高温钛合金高密度夹杂原因分析及预防措施
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1.西安超晶科技股份有限公司,西安 710299;2.陕西省先进金属结构材料精确热成形重点实验室,西安 710299

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TG146.2+3

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Cause Analysis and Preventive Measures of High Density Inclusions in High Temperature Titanium Alloy
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1.Xi’an Super Crystal Technology Co., Ltd, Xi’an 710299;2.Shaanxi Key Laboratory of Advanced Metal Structural Materials Precision Thermoforming, Xi’an 710299

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    摘要:

    采用X射线透射成像仪、光学显微镜和能谱分析等手段对热处理后高温钛合金锻件中的缺陷进行研究,显微组织照片显示,热处理后高温钛合金正常组织为初生α相含量约15%的双态组织,过渡区域组织为粗大的魏氏组织,β相含量高,晶界和晶内析出针状α,与正常组织差异大。夹杂位置存在与基体有明显区别的不熔块。能谱分析显示,不熔块为以Ta元素为主的高密度夹杂。高密度夹杂形成主要原因:配料时高熔点元素以纯金属粉末的形式配入,并以人工手动布料的方式加入电极块,压制电极块时纯金属粉末由于布料不均匀发生团聚,使高熔点金属粉“粒度”增大,化料时直流电弧来不及将 “大粒度”的金属粉全部熔化,团聚的金属粉就掉入熔池,随后进入凝固的铸锭中成为高密度夹杂。可以通过改变布料方式或选用含难熔金属组元的中间合金来进行改善。采用混料方式添加难熔金属元素后,锻件中未发现高密度夹杂。

    Abstract:

    The high density inclusions (HDI) in high temperature titanium alloy were studied by means of X-ray test, OM and EDS. The microstructure photos show that the normal microstructure of high temperature titanium alloy is duplex microstructure with α phase content of about 15% after heat treatment, the structure around the inclusion is different from the normal structure. It is widmanstatten structure, high content of β phase, acicular α phase precipitates at grain boundary and in crystal of β phase. The inclusion is obviously different from the matrix, the EDS results shows that the HDI are Ta inclusions. The main reason for the formation of HDI: when batching, high melting point element are mixed in the form of pure element powder and added to the electrode block by manual distribution. It leads to the agglomeration and increases the size of high melting point metal powder. During material melting, the DC arc are can not melt all the powder with large size, the agglomerated powder falls into the molten pool and then enters the solidified ingot to become HDI. It can be improved by changing the distribution mode or selecting multi-component alloy. HDI are not found in the forgings after adding refractory metals by mixing method.

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韩彤,侯林涛,刘娣,白钰,张利军.高温钛合金高密度夹杂原因分析及预防措施[J].宇航材料工艺,2023,53(1):94-97.

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  • 收稿日期:2022-06-12
  • 最后修改日期:2023-02-13
  • 录用日期:2022-08-16
  • 在线发布日期: 2023-03-29
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