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球墨铸铁激光表面熔化处理和熔化层残余应力分析 被引量:2
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作者 赵忠兴 穆光华 +2 位作者 孙保纯 王开琦 周广英 《热加工工艺》 CSCD 北大核心 1992年第4期32-34,共3页
试验研究了激光处理工艺参数对球墨铸铁熔化层深和熔化层残余应力的影响,测试和分析了熔化层横向和纵向的残余应力分布规律。
关键词 球墨铸铁 激光表面熔化 残余应力
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马氏体不锈钢表面激光熔化处理后的组织特征
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作者 蔡伟平 《武汉钢铁学院学报》 1994年第3期255-260,共6页
作者借助X-衍射、能谱等分析手段对马氏体不锈钢表面激光熔化处理后的组织特性进行了研究。结果表明,经激光照射后,熔化层近乎无扩散凝固,致使凝固成分均匀分布;凝固组织呈辐射状柱晶,但无晶体择优取向。还对激光加热及随后冷却... 作者借助X-衍射、能谱等分析手段对马氏体不锈钢表面激光熔化处理后的组织特性进行了研究。结果表明,经激光照射后,熔化层近乎无扩散凝固,致使凝固成分均匀分布;凝固组织呈辐射状柱晶,但无晶体择优取向。还对激光加热及随后冷却期间进行了传热分析,并对上述结果及组织形成机制作了详细讨论。 展开更多
关键词 激光表面熔化处理 传热分析 马氏体不锈钢 组织特性
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国外激光表面处理的进展 被引量:7
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作者 徐恒钧 《北京工业大学学报》 CAS CSCD 1998年第3期130-136,共7页
激光表面处理是一项新的也是远没有成熟的技术.本文对近些年来激光表面处理的进展情况进行了综合评述,并讨论了影响激光表面处理应用的一些问题.
关键词 激光表面处理 激光表面熔化 激光表面涂敷
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Experimental study on mechanism of influence of laser energy density on surface quality of Ti-6Al-4V alloy in selective laser melting 被引量:10
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作者 SHI Wen-tian LI Ji-hang +3 位作者 LIU Yu-de LIU Shuai LIN Yu-xiang HAN Yu-fan 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3447-3462,共16页
This experiment obtained different laser energy density(LED) by changing SLM molding process parameters.The surface morphology, surface quality, and microstructure of as-fabricated samples were studied. The effects of... This experiment obtained different laser energy density(LED) by changing SLM molding process parameters.The surface morphology, surface quality, and microstructure of as-fabricated samples were studied. The effects of scanning speed, hatching space, and laser power on surface quality were analyzed, and the optimal LED range for surface quality was determined. The results show that pores and spherical particles appear on the sample’s surface when low LED is applied, while there are lamellar structures on the sides of the samples. Cracks appear on the sample’s surface,and the splash phenomenon increases when a high LED is taken. At the same time, a large amount of unmelted powder adhered to the side of the sample. The surface quality is the best when the LED is 150-170 J/mm^(3). The preferred hatch space is currently 0.05-0.09 mm, the laser power is 200-350 W, and the average surface roughness value is(15.1±3) μm.The average surface hardness reaches HV404±HV3, higher than the forging standard range of HV340-HV395.Increasing the LED within the experiment range can increase the surface hardness, yet an excessively high LED will not further increase the surface hardness. The microstructure is composed of needle-like α’-phases with a length of about 20μm, in a crisscross ‘N’ shape, when the LED is low. The β-phase grain boundary is not obvious, and the secondaryphase volume fraction is high;when the LED is high, the α’-phase of the microstructure is in the form of coarse slats, and the secondary-phase is composed of a small amount of secondary α’-phase, the tertiary α’-phase and the fourth α’-phase disappear, and the volume fraction of the secondary-phase becomes low. 展开更多
关键词 laser energy density surface quality selective laser melting TI-6AL-4V MICROSTRUCTURE
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