热加工工艺对GH738金相组织及超声特性的影响
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南昌航空大学无损检测技术教育部重点实验室,南昌,330063

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无损检测教育部重点实验室开放基金(EW201708505)资助项目;南昌航空大学研究生创新专项资金(YC2018051)资助项目。


Effects of Hot Working Process on Microstructure and Ultrasonic Characterization of GH738
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Key Laboratory of Non-destructive Testing Technology,Nanchang Hangkong University, Nanchang,330063,China

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    摘要:

    针对不同热加工工艺下GH738锻件金相组织的无损评价问题,对经过固溶、稳定化、时效和钎焊处理的合金分别进行金相、超声检测,讨论热加工工艺变化对金相组织、超声检测特征值的影响,分析金相组织参数与超声参数之间的相关性。结果表明:晶粒直径变化对声速影响微弱,在热加工过程中,固溶处理后声速下降,稳定化与时效处理后声速不断上升,钎焊处理后声速开始下降且达到最小值。衰减系数、非线性系数与晶粒直径的变化规律趋于一致,随着热加工过程的进行,呈现出固溶阶段快速上升、稳定化后缓慢上升并趋于平缓的趋势,超声衰减与非线性系数可用于表征GH738合金的晶粒直径及织构不连续性。

    Abstract:

    In order to non-destructively evaluate the microstructure and strengthening state of GH738 forging products during the heat treatment and brazing production cycle, the GH738 alloy is heat-treated under solution, stabilizing, ageing and braze welding treatment conditions. Metallographic and ultrasonic tests are carried out. The metallographic structure and ultrasonic characteristics are established. The mapping relationship between signal parameters is detected, and the influence mechanism of tissue changes on the changes of ultrasound signal parameters is analyzed. Results show that the effect of grain diameter on sound velocity is weak. During the hot working process, the sound velocity decreases after solution treatment, and the sound velocity continues to increase after stabilization and aging treatments. After the brazing process, the sound velocity starts to decrease and get minimum. The attenuation coefficient and non-linear coefficient change with the grain diameter. Both of them rise to the stabilization process and then slowly rise to flatten out. That means ultrasonic attenuation and non-linear coefficients can be used to characterize the grain diameter and texture discontinuity of GH738 alloy.

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向苹,邬冠华,陈曦,占连扬.热加工工艺对GH738金相组织及超声特性的影响[J].数据采集与处理,2020,35(2):288-297

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  • 收稿日期:2019-11-23
  • 最后修改日期:2020-01-22
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  • 在线发布日期: 2020-04-30