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Analysis of Stress Distribution for Powder Compression Molding by Finite Element Method

机译:粉末压铸成型应力分布的有限元分析

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The ultrasonic mold was designed for the ceramic powder compression. CAD and CAE were used in the design to analyze the mold strength and its natural frequency. The study of stress distribution and compression in upper and lower punch, mold body and waveguide comparison of stresses was analyzed by FEA experiments under maximum compression at 50,000 N to validate the results of both methods and the mold natural frequency. The difference between FEA and experimental analysis was 3-7%, acceptable. The redesign results in a cylindrical mold body with the outer diameter of 80 mm, the height of 100 mm, and the upper punch of 125 mm in length. The six sides are 26 mm of the high waveguide with 100 mm height. The internal and external diameters are 80 and 110 mm, respectively. The mold has been redesigned and can support the maximum compression force of 1,500 kN. with the bearing steel, AISI 52100, obtainable hardness 65 HRC, the stress concentration occurs at the neck of the upper punch using the ultrasonic at 12.00 to 12.45 kHz.
机译:超声模具设计用于陶瓷粉末压缩。设计中使用了CAD和CAE来分析模具强度及其固有频率。通过在50,000 N最大压缩下的有限元分析实验,分析了上下冲头的应力分布和压缩,模具主体和波导的应力比较研究,以验证两种方法的结果以及模具的固有频率。 FEA和实验分析之间的差异为3-7%,可以接受。重新设计后,将得到一个圆柱体模具,其外径为80毫米,高度为100毫米,上冲头的长度为125毫米。六个侧面是高度为100毫米的高波导的26毫米。内径和外径分别为80毫米和110毫米。模具已经过重新设计,可以承受1,500 kN的最大压缩力。对于轴承钢AISI 52100,可获得的硬度为65 HRC,应力集中在使用12.00至12.45 kHz的超声波的上冲头的颈部发生。

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