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Analysis of Thermal Shock Strength and Quality Factor with Infrared Optical Domes

机译:红外光学球罩的热冲击强度和品质因数分析

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摘要

The development of infrared optical materials is always closely related to the research and exploration of material science. The infrared optical domes bears shock and produces stress when the infrared optical domes mounted on the missile moving at a high speed is shocked by high temperature. According to principle of energy balance in fracture mechanics proposed by D.P.H. Hasselman, the author analyzed the crack extension and derived the relationship between Infrared optical materials window model and thermal shock quality factor. Meanwhile, strong or weak of thermal shock for different samples whether they are thin or thick are compared through the operation of queuing algorithm. The conclusion is the internal surface of the domes isn't heated when the window model is the thermal shock quality factor of thick sample and the heating time is between heating time constant and diffusion time constant. On the other hand, the internal surface of the domes is being heated when the window model is the thermal shock quality factor of thin sample and the heating time is between the two time constants. The most optical domes parts in practice is belong the thin model. For the thin model, reducing the thickness of optical parts can improve their thermal shock ability but mechanical impact stress factor should be considered comprehensively to design optical parts.
机译:红外光学材料的发展始终与材料科学的研究和探索紧密相关。当安装在高速运动的导弹上的红外光学圆顶受到高温的冲击时,红外光学圆顶将承受冲击并产生应力。根据D.P.H.提出的断裂力学中的能量平衡原理。作者哈塞尔曼分析了裂纹扩展并推导了红外光学材料窗口模型与热冲击品质因数之间的关系。同时,通过排队算法的操作,比较了不同样品的稀薄或厚实的热冲击强度。结论是,当窗口模型是厚样品的热冲击品质因数,并且加热时间在加热时间常数和扩散时间常数之间时,圆顶的内表面没有被加热。另一方面,当窗口模型是薄样品的热冲击品质因数且加热时间在两个时间常数之间时,圆顶的内表面将被加热。在实践中,最多的光学球罩零件是薄模型。对于薄模型,减小光学零件的厚度可以提高其热冲击能力,但是在设计光学零件时应综合考虑机械冲击应力因子。

著录项

  • 来源
    《Optical design and testing V》|2012年|85572I.1-85572I.9|共9页
  • 会议地点 Beijing(CN)
  • 作者单位

    Department of Electronic and Electrician Engineering, Nan Yang Institute of Technology, NanYane 473004 China;

    Department of Electronic and Electrician Engineering, Nan Yang Institute of Technology, NanYane 473004 China;

    Department of Electronic and Electrician Engineering, Nan Yang Institute of Technology, NanYane 473004 China,Institute of Electronic Engineering and Optical Technology, NanJing University of science and Technology,NanJing 210094 China;

    Institute of Electronic Engineering and Optical Technology, NanJing University of science and Technology,NanJing 210094 China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Infrared optical materials; domes; thermal shock strength; quality factor analysis;

    机译:红外光学材料;圆顶热冲击强度;品质因素分析;
  • 入库时间 2022-08-26 13:44:39

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