首页> 外文期刊>JOM >Use of an Abrasive Water Cavitating Jet and Peening Process to Improve the Fatigue Strength of Titanium Alloy 6Al-4V Manufactured by the Electron Beam Powder Bed Melting (EBPB) Additive Manufacturing Method
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Use of an Abrasive Water Cavitating Jet and Peening Process to Improve the Fatigue Strength of Titanium Alloy 6Al-4V Manufactured by the Electron Beam Powder Bed Melting (EBPB) Additive Manufacturing Method

机译:使用磨料水分射流和喷丸工艺通过电子束粉床熔化(EBPB)添加制造方法来提高钛合金6AL-4V的疲劳强度

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摘要

Metal components made by additive manufacturing have large inherent surface roughness, and, as such, their strength and fatigue life can be reduced significantly versus wrought products. In order to improve these properties, a novel mechanical surface treatment that introduces compressive residual stress while simultaneously reducing the surface roughness is proposed. The proposed treatment uses cavitation peening combined with an abrasive slurry. The impact of the kinetic energy-charged abrasive particles, induced by collapsing water cavitation vapor bubbles, produces compressive residual stress, while the abrasive reduces the surface roughness. Plane-bending fatigue tests were carried out to determine the effectiveness of this treatment on the fatigue life and strength of titanium alloy Ti6Al4V manufactured by electron beam melting. It was demonstrated that the fatigue strength of an as-built specimen was improved from 169?MPa to 280?MPa by the proposed treatment.
机译:通过添加剂制造制造的金属部件具有大的固有表面粗糙度,因此,它们的强度和疲劳寿命可以显着降低与锻造产品相比。 为了改善这些性质,提出了一种新的机械表面处理,其提出了同时降低表面粗糙度的同时进行压缩残余应力。 该拟议的处理用耐腔加入磨料浆料。 通过塌陷水分蒸气气泡诱导的动能电荷磨料颗粒的影响产生压缩残余应力,而磨料减小了表面粗糙度。 进行平面弯曲疲劳试验,以确定该处理对通过电子束熔化制造的钛合金Ti6Al4V的疲劳寿命和强度的有效性。 结果表明,通过拟议的治疗从169μl〜280℃改善了原木样本的疲劳强度。

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