首页> 外文会议>TMS annual meeting exhibition >RELATIONSHIP BETWEEN HEAT INPUT AND MICROSTRUCTURE AND MECHANICAL PROPERTIES OF LASER BEAM WELDED SUPERALLOYINCONEL 718
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RELATIONSHIP BETWEEN HEAT INPUT AND MICROSTRUCTURE AND MECHANICAL PROPERTIES OF LASER BEAM WELDED SUPERALLOYINCONEL 718

机译:激光束焊接超级合金CONEL 718的热输入与组织及力学性能的关系

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Autogenous butt, laser beam welds were carried out using Inconel 718 alloy sheets (2.1 mm thick). The relationship between heat input laser beam welding (LBW) and the microstructural and mechanical properties of superalloy Inconel 718 were investigated. Nine different heat inputs in the range of 61.29-90.09 Jmm~(-1) were applied to evaluate the geometry of weld seams. Full penetration was achieved in all weld experiments. Optical and field emission scanning electron microscopy and microhardness tests were performed. Test results indicate that increasing the amount of heat input from 61.29 Jmm~(-1) to 90.09 Jmm~(-1) presented solidification rates between 1.27×10~5 and 1.46×10~6 °Cs~(-1). The hardness property of the weld samples decreased with the increasing the heat input.
机译:使用Inconel 718合金薄板(2.1毫米厚)进行自对接激光束焊接。研究了热输入激光束焊接(LBW)与超合金Inconel 718的显微组织和力学性能之间的关系。在61.29-90.09 Jmm〜(-1)范围内使用了九种不同的热输入来评估焊缝的几何形状。在所有焊接实验中均实现了完全熔深。进行了光学和场发射扫描电子显微镜以及显微硬度测试。测试结果表明,将热量输入从61.29 Jmm〜(-1)增加到90.09 Jmm〜(-1)时,凝固速率在1.27×10〜5和1.46×10〜6°Cs〜(-1)之间。焊缝样品的硬度随输入热量的增加而降低。

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