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作 者:吴国新[1] 徐小力[1] 时延辉[2] 左云波[1]
机构地区:[1]北京信息科技大学现代测控技术教育部重点实验室,北京100192 [2]北京市商业学校信息艺术系,北京102209
出 处:《北京信息科技大学学报(自然科学版)》2010年第3期65-70,共6页Journal of Beijing Information Science and Technology University
基 金:北京市人才强教深化计划项目(PHR201008443);北京市教委科技发展计划重点资助项目(KZ200910772001)
摘 要:应用TRIZ理论创新设计方法分析了新型精密热分析仪器的加热炉体结构特征,采用冲突矩阵,得到影响加热炉体均温区分布的主要因素,对原加热炉内腔体积空间及加热电阻丝存在的冲突进行分析研究。利用TRIZ理论的ARIZ发明问题解决算法,结合具体加热炉体均温区分布曲线的误差实验数据,分析得到两种能够改善仪器精度的创新设计方法。结果表明,这种利用TRIZ理论得到的设计方法能有效增大均温区分布面积,降低加热炉内腔温差大小,从而解决了精密热分析仪器对加热炉内腔均温区的设计要求,实现了仪器对温度精密控制的要求。The furnace structure characteristics of new precision thermal analysis instruments are analyzed by applying the TRIZ theory analysis. The main affecting factors of the distribution of uniform temperature for the furnace body are obtained by using the conflict matrix. The existing conflicts are stud- ied and analyzed between the size of original oven cavity space and the resistance wire heating. Using ARIZ theory of inventive problem solving algorithm and combining with the error of experimental data for specific body of uniform temperature distribution curves of heating, two innovative designs are obtained to improve the instruments precision. Results show that the using of TRIZ theory on the design method can effectively increase the area of uniform temperature distribution and reduces the size of oven cavity temperature, which resolves the precise thermal analysis of the inner cavity of uniform temperature furnace design requirements and achieves the precise temperature control of the instrument requirements.
分 类 号:TH122[机械工程—机械设计及理论]
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