Effect of Composition and Pouring Temperature of Cu-Sn on Fluidity and Mechanical Properties of Investment Casting

IF 0.6 Q4 METALLURGY & METALLURGICAL ENGINEERING
S. Slamet, Slamet Khoeron, Ratri Rahmawati, Suyitno, I. Kusumaningtyas
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引用次数: 0

Abstract

The composition and pouring temperature are important parameters in metal casting. Many cast product failures are caused by ignorance of the influence of both. This research aims to determine the effect of adding tin composition and pouring temperature on fluidity, microstructure and mechanical properties including tensile strength and hardness of tin bronze (Cu-Sn). The Cu-Sn is widely used as employed in the research is Cu (20, 22 and 24) wt.%Sn alloy using the investment casting method. Variations in pouring temperature treatment TS1 = 1000°C and TS2 = 1100°C. The mold for the fluidity test is made with a wax pattern then coated in clay. The mold dimensions are 400 mm long with mold cavity variations of 1.5, 2, 3, 4, 5 mm. Several parameters: increasing the pouring temperature, adding tin composition, decreasing the temperature gradient between the molten metal and the mold walls result in a decrease in the solidification rate which can increase fluidity. The α + δ phase transition to β and γ intermetallic phases decreases fluidity at >22wt.%Sn. The columnar dendrite microstructure increases with the addition of tin composition and pouring temperature. The mechanical properties of tensile strength decrease, hardness increases and the alloy becomes more brittle with increasing tin composition.
铜镍合金成分和浇注温度对熔模铸造流动性和机械性能的影响
成分和浇注温度是金属铸造的重要参数。许多铸造产品失效都是由于忽略了这两个参数的影响。本研究旨在确定加锡成分和浇注温度对锡青铜(Cu-Sn)流动性、微观结构和机械性能(包括抗拉强度和硬度)的影响。研究中广泛使用的 Cu-Sn 是重量百分比为 Cu(20、22 和 24)的锡合金,采用的是熔模铸造法。浇注温度处理 TS1 = 1000°C 和 TS2 = 1100°C。用于流动性测试的模具是用蜡型制作的,然后涂上粘土。模具尺寸为 400 毫米长,模腔变化为 1.5、2、3、4、5 毫米。几个参数:提高浇注温度、添加锡成分、减小熔融金属与模具壁之间的温度梯度,都会导致凝固速率降低,从而增加流动性。当锡含量大于 22wt.% 时,α + δ 相转变为 β 和 γ 金属间相会降低流动性。柱状树枝状微观结构随着锡成分的添加和浇注温度的升高而增加。随着锡成分的增加,拉伸强度、硬度和合金脆性的机械性能均有所下降。
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来源期刊
Archives of Foundry Engineering
Archives of Foundry Engineering METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
16.70%
发文量
0
期刊介绍: Thematic scope includes scientific issues of foundry industry: Theoretical Aspects of Casting Processes, Innovative Foundry Technologies and Materials, Foundry Processes Computer Aiding, Mechanization, Automation and Robotics in Foundry, Transport Systems in Foundry, Castings Quality Management, Environmental Protection. Why subscribe and read
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