The Modification of the Runner and Ingate Geometry to eliminate Misrun Defects on the Piston using Gravity Die Casting

Vika Rizkia, Muhammad Fernanda Alvi Yasin, N. Banowati, Veronika Noviaty
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引用次数: 0

Abstract

Piston is an essential component of an engine because it plays a crucial role in the combustion process that drives the motorcycle. Gravity dies casting has become an ideal method for producing pistons owing to its high-quality product, cost-effective with excellent dimensional accuracy, good surface finish, and performance characteristics. However, misrun defect may occur during metal filling and solidification. This study aims to find the suitable dimensions for motorcycle piston products without the presence of misrun using MAGMASoft. The geometry modification introduced in this research are an ingate area of 176, 264, and 352 mm2 as well as the angle of runner of 60, 160, and 180o. Modifying the ingate area to 264 mm2 and the angle of the runner to 160o eliminated the misrun defect in the piston product. This phenomenon results from the laminar flow, higher temperature, and quicker flow velocity of the molten metal as it fills the window (the thinnest part of the piston).
采用重力压铸技术对活塞流道和浇口几何形状的修改以消除错跑缺陷
活塞是发动机的重要部件,因为它在驱动摩托车的燃烧过程中起着至关重要的作用。重力压铸以其高质量的产品、高性价比的尺寸精度、良好的表面光洁度和良好的性能特点,成为生产活塞的理想方法。然而,在金属填充和凝固过程中可能会出现误用缺陷。本研究的目的是利用MAGMASoft软体,找出适合摩托车活塞产品的尺寸,而不存在误跑现象。在本研究中引入的几何修改是:内浇口面积为176、264和352 mm2,流道角度为60、160和180。将内浇口面积调整为264 mm2,流道角度调整为160°,消除了活塞产品的误跑缺陷。这种现象是由层流、高温和快速流动的熔融金属填充窗口(活塞最薄的部分)造成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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