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Effects of process parameters on dimensional precision and tensile strength of wax patterns for investment casting by selective laser sintering

机译:工艺参数对选择性激光烧结熔模铸造蜡模尺寸精度和拉伸强度的影响

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Turbine blades, produced by the directional solidifi cation (DS) process, often require high dimensional accuracy and excellent mechanical properties. A critical step in their production is the fabrication of wax patterns. However, the traditional manufacturing process has many disadvantages, such as long-term production, low materialutilization rate, and the high cost of producing a complex-shaped wax pattern. Selective laser sintering (SLS) is oneof the most extensively used additive manufacturing techniques that substantially shortens the production cycle. In this study, SLS was adopted to fabricate the wax pattern instead of the traditional manufacturing process. The orthogonal experiment method was carried out to investigate the effects of laser power, scanning speed, scanning space, and layer thickness on the dimensional precision and morphologies of the SLS parts. The SLS parts showed a minimum dimensional deviation when laser power, scanning speed, scanning space, and layer thickness were 10 W, 3000 mm晄-1, 0.18 mm, and 0.25 mm, respectively. In addition, the tensile strength and fracture morphologies were closely associated with the laser volumetric energy density (VED). The tensile strength reached a maximum when the VED was 0.0762 J昺m-3, with an evident brittle fracture morphology. The wax pattern manufactured in this way meets the accuracy and strength requirements for investment casting. This research offers a novel path for the production of wax patterns for complex-shaped turbine blades by SLS.
机译:通过定向凝固(DS)工艺生产的涡轮叶片通常需要很高的尺寸精度和出色的机械性能。它们生产中的关键步骤是蜡模的制造。然而,传统的制造工艺具有许多缺点,例如,长期生产,材料利用率低以及生产复杂形状的蜡模的成本高。选择性激光烧结(SLS)是最广泛使用的增材制造技术之一,可大大缩短生产周期。在本研究中,采用SLS代替传统的制造工艺来制造蜡模。采用正交试验方法研究了激光功率,扫描速度,扫描空间和层厚对SLS零件尺寸精度和形貌的影响。当激光功率,扫描速度,扫描空间和层厚度分别为10 W,3000 mm晄-1、0.18 mm和0.25 mm时,SLS零件的尺寸偏差最小。此外,抗拉强度和断裂形态与激光体积能量密度(VED)密切相关。当VED为0.0762 J昺m-3时,拉伸强度达到最大值,具有明显的脆性断裂形态。以这种方式制造的蜡模满足熔模铸造的精度和强度要求。这项研究为通过SLS生产复杂形状的涡轮叶片的蜡模提供了一条新颖的途径。

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