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The Effects of Shielded Metal Arc Welding (Smaw) Welding On The Mechanical Characteristics With Heating Treatment inn S45c Steel

机译:屏蔽金属弧焊(SMAW)焊接对加热处理IN S45C钢机械特性的影响

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Steel material has been used mainly for making tooling, automotive components, other household needs, power generators to frame buildings and bridges. This study aimed (1) to analyze the mechanical Characteristics of S45C steel with and without heating treatments, and (2) to analyze the temperature of heating treatment which could result in the maximal strength of S45C steel after the welding process. The research was conducted in the laboratory of mechanical engineering study program, Departement of mechanical Engineering, Christian university of indonesia paulus, makassar. The method used materials, instruments, and the dimensions determination of specimen based on the proposed testing standard, Next, was to determine the mechanical caracteristics of the S45C steel wich had been welded and heated. The tensile specimens, the hardness specimen, the impact specimen, and microstructures of which, each of the 3 specimens was the specimens was the specimen without treatment, the spesimen with the welding wthout heating and the specimen of 150°C, 250°C, 300°C. The research results indicated that the treatment process of 150°C, 250°C and 300°C produced the changes of mechanic charateristics with the tensile strength of 42 kgf/mm~2 when the temperature had reached 300°C, but at the temperature 300°C, the its toughness would decrease to Hi = 0.836 j/m~2 and its hardness would increase to 40.83 at the temperature of 300°C. The value of the maximum strengs was reached at the heating temperature of 300°C for the tensile strength and the hardness, while at the temperature of 300°C its impact value would decrease.
机译:钢材主要用于制作工具,汽车部件,其他家庭需求,发电机到框架建筑物和桥梁。本研究旨在(1)分析S45C钢的机械特性,无需加热处理,(2)分析加热处理的温度,这可能导致S45C钢在焊接过程之后的最大强度。该研究是在Makassar印度尼西亚Paulus Christian大学机械工程研究计划,机械工程部门的实验室进行。该方法采用材料,仪器和尺寸根据所提出的检测标准确定样本的尺寸,接下来是确定S45C钢的机械致意,钢材焊接和加热。拉伸试样,硬度样品,冲击样品和微观结构,其中3个样品中的每一个是试样,在没有处理的情况下,具有焊接WHOUT加热的杂项和150℃,250℃的样品, 300°C。研究结果表明,当温度达到300℃时,150℃,250℃和300°C的处理过程产生了150℃,250°C和300°C的改变,抗拉强度为42kgf / mm〜2的拉伸强度,但在温度下300℃,其韧性会降低至Hi = 0.836J / m〜2,其硬度在300℃的温度下将其增加到40.83。在加热温度为300℃的加热温度下达到最大培管的值,以抗拉强度和硬度,而在300℃的温度下,其冲击值将降低。

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