一种基于热波法的金属导热系数测量装置的配置方法、测量装置、导热系数测量方法及存储介质

By optimizing the configuration of the metal thermal conductivity measurement device and adopting a harmonic temperature heat source and air cooling system, the problems of long experimental preparation time, high complexity, and high safety risks in the existing device were solved, achieving rapid heating and cooling, and improving experimental efficiency and accuracy.

CN122084674BActive Publication Date: 2026-07-17SICHUAN SHIJI ZHONGKE PHOTOELECTRIC TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SICHUAN SHIJI ZHONGKE PHOTOELECTRIC TECH
Filing Date
2026-04-23
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing metal thermal conductivity measurement devices suffer from problems such as long experimental preparation time, high equipment complexity, high power consumption, and significant safety risks, and cannot meet teaching needs.

Method used

By optimizing the configuration of the measuring device, including determining the target physical property parameters of the sample to be tested and the coupling method of the heating module, adopting a simple harmonic temperature heat source and air cooling system, designing the coupling method between the linear or planar heating module and the sample to be tested, and optimizing the heating parameters to achieve rapid heating and cooling.

Benefits of technology

It improves experimental efficiency and accuracy, reduces power consumption and device complexity, enhances experimental safety and comprehensiveness, and meets teaching needs.

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Abstract

本发明涉及物理实验教学仪器领域,涉及一种基于热波法的金属导热系数测量装置的配置方法、测量装置、导热系数测量方法及存储介质,配置方法包括:获取期望实验参数;基于所述期望实验参数确定待测样品的目标物理特性参数;基于目标物理特性参数确定待测样品和加热模块的耦合方式;基于目标物理特性参数和耦合方式确定加热模块的目标加热参数;基于目标物理特性参数、目标加热参数和耦合方式生成对应的配置方案。通过对传统测量装置进行优化设计,提高实验效率、实验精准性、实验多样性,降低了实验能耗和测量装置尺寸及复杂度,提高了用户体验。
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