Kaji eksperimen pengaruh hardening dan tempering terhadap kekuatan tarik dan kekerasan pada baja karbon sedang

Akmal Barry, Zuraida Zuraida
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Abstract

This study aims to determine the effect of hardening and tempering on tensile strength (ASTM E 8) and hardness (Rockwell) applied to medium carbon steel. The heat treatment process hardening is heated by a furnace at a temperature of 900 °C and 920 °C then held for 30 minutes and cooled quickly and then further processed by Tempering with each being tempered at 500 °C and cooled slowly. The results obtained are in the hardening process with a temperature variation of 900 °C, the hardness value increases from the raw material value of 5.7 HRC to 7.52 HRC and has increased again at a temperature of 920 °C of 8.08 HRC. Tempering process temperature variation of 900/ 500 °C the value is above raw material by 5.7 HRC to 7.24 HRC, down at a temperature of 920/500 °C by 6.4 HRC. For tensile testing of the hardening process against utimate stress, the value for raw material is 516,095 MPa, temperature is 900 °C/451,065 MPa and temperature is 920 °C/389,625 MPa. for yield strength raw material value is 477.4165 MPa, temperature is 900°C/270.8395 MPa, temperature is 920°C/256.4555 MPa, for modulus raw material value is 347.53 GPa, temperature is 900°C/3452605 MPa , the temperature is 920 °C/338.206 MPa, for the elongation value the raw material value is 7.871%, the temperature is 900 °C/11.392%, the temperature is 920 °C/16.448 %. for tempering to utimate stress the raw material value is 516,095 MPa, temperature 900/500 °C is 417,5635 MPa and temperature 920/500 °C is 372.416 MPa. For yield strength raw material value is 477.4165 MPa, temperature 900/500°C 304.1745 MPa, temperature 920/500 °C is 269.818 MPa, for modulus raw material value is 347.53 GPa, temperature 900 /500°C is 353.1525 MPa, temperature 920/500 °C is 366.5695 MPa, for the elongation value the raw material value is 7.871%, temperature 900/500 °C is 11.392%, temperature 920/500 ° C is 13.7665%.
研究hardening和tempering对温和碳钢的吸引力和硬度的影响
本研究旨在确定淬火和回火对中碳钢抗拉强度(ASTM E 8)和硬度(洛氏硬度)的影响。热处理工艺硬化是在900°C和920°C的温度下由炉加热,然后保持30分钟并快速冷却,然后进一步进行回火处理,每次回火500°C并缓慢冷却。结果表明:在900℃温度变化的硬化过程中,硬度值从原料的5.7 HRC上升到7.52 HRC,在920℃温度下,硬度值再次上升到8.08 HRC。回火过程温度变化900/ 500℃时,其数值比原料高5.7 HRC至7.24 HRC,在920/500℃时下降6.4 HRC。对于硬化过程抗极限应力的拉伸试验,原材料的值为516,095 MPa,温度为900℃/451,065 MPa,温度为920℃/389,625 MPa。对于屈服强度原料值为477.4165 MPa,温度为900℃/270.8395 MPa,温度为920℃/256.4555 MPa,对于模量原料值为347.53 GPa,温度为900℃/3452605 MPa,温度为920℃/338.206 MPa,对于伸长率原料值为7.871%,温度为900℃/11.392%,温度为920℃/16.448 %。对于回火至极限应力,原料值为516,095 MPa,温度900/500℃为417,5635 MPa,温度920/500℃为372.416 MPa。对于屈服强度原料值为477.4165 MPa,温度为900/500℃为304.1745 MPa,温度为920/500℃为269.818 MPa,对于模量原料值为347.53 GPa,温度为900/500℃为353.1525 MPa,温度为920/500℃为366.5695 MPa,对于伸长率原料值为7.871%,温度为900/500℃为11.392%,温度为920/500℃为13.7665%。
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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