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Assessing the Hardness of Quenched Medium Steel Using an Ultrasonic Nondestructive Method

机译:使用超声无损法评估淬火介质钢的硬度

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摘要

Developing new materials or improving their heat treatment techniques is key to industrial upgrades for increasing fastener product quality. Nowadays, high tensile strength bolts are heat-treated to achieve desired mechanical properties such as hardness, strength, toughness, and resistance to fatigue and wear. Ultrasound detection is one widely used nondestructive inspection technique. Based on the characteristics of wave transmission, the refraction, diffraction, and scattering of ultrasound wave velocity and attenuation in a material are governed by its grain boundary characteristics. In this study, C1045 middle carbon steel was heat-treated at various temperatures and then water-quenched, and the relationships among grain size, ultrasonic velocity, attenuation, and material hardness were then determined using two ultrasound sources. Our experimental results show that a smaller average grain size as well as higher hardness can be obtained from higher quenching temperatures. Faster acoustic velocities and slower attenuation coefficients are caused by higher material hardness. A scattering effect is more obvious for higher transducer frequencies. Our results demonstrate another nondestructive test that can assess the quenching process in the fastener industry.
机译:开发新材料或改善其热处理技术是工业升级的关键,用于增加紧固件产品质量。如今,高抗拉强度螺栓被热处理,以实现所需的机械性能,例如硬度,强度,韧性,抗疲劳和磨损。超声检测是一种广泛使用的非破坏性检查技术。基于波传输的特性,超声波速度的折射,衍射和散射在材料中的衰减由其晶界特性管辖。在该研究中,C1045中碳钢在各种温度下热处理,然后水淬,然后使用两个超声源测定晶粒尺寸,超声波速度,衰减和材料硬度之间的关系。我们的实验结果表明,可以从较高的淬火温度获得较小的平均晶粒尺寸以及更高的硬度。更快的声速和较慢的衰减系数是由更高的材料硬度引起的。对于更高的传感器频率,散射效果更为明显。我们的结果表明了另一种无损检测,可以评估紧固件行业中的淬火过程。

著录项

  • 作者

    Shao-Yi Hsia; Yu-Tuan Chou;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 eng
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