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基于仿真的民用飞机预冷器温度特性试验方案分析
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作者 黄晓聃 《机械设计与制造工程》 2022年第4期65-68,共4页
为提供预冷器核心体试验所需要的均匀流,提出了板孔结构加过渡直段的试验方案,并基于仿真分析确认了试验方案的整流效果。为尽可能有效地捕获预冷器出口温度特性,采用优化的试验方案,通过仿真确认其测温有效性,有力地支持了实际的预冷... 为提供预冷器核心体试验所需要的均匀流,提出了板孔结构加过渡直段的试验方案,并基于仿真分析确认了试验方案的整流效果。为尽可能有效地捕获预冷器出口温度特性,采用优化的试验方案,通过仿真确认其测温有效性,有力地支持了实际的预冷器温度特性试验。 展开更多
关键词 民用客机 预冷器 温度特性试验 孔板结构 温度传感器
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应变片温度特性检测 被引量:2
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作者 张永峰 张强 《现代机械》 2013年第5期78-79,87,共3页
涡桨发动机功率输出轴载荷测量过程中,环境温度变化范围大,如果应变片灵敏度系数变化,将给试验带来误差,影响试验结果,因此,必须检测应变片的温度特性是否稳定。基于某型螺旋桨飞行试验的应变片温度特性试验检测方法和试验过程,对试验... 涡桨发动机功率输出轴载荷测量过程中,环境温度变化范围大,如果应变片灵敏度系数变化,将给试验带来误差,影响试验结果,因此,必须检测应变片的温度特性是否稳定。基于某型螺旋桨飞行试验的应变片温度特性试验检测方法和试验过程,对试验结果进行比对分析,得出应变片温度试验中需要注意的事项,应变片特性试验检测结果有效可行。 展开更多
关键词 应变片 温度特性应变测量飞行试验
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Investigation of meso-failure behavior of rock under thermal-mechanical coupled effects based on high temperature SEM 被引量:7
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作者 ZUO JianPing XIE HePing ZHOU HongWei 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2012年第10期1855-1862,共8页
It is extremely important to study and understand the deformation behavior and strength characteristics of rocks under thermal-mechanical (TM) coupling effects. Failure behavior and strength characteristics of Pingd... It is extremely important to study and understand the deformation behavior and strength characteristics of rocks under thermal-mechanical (TM) coupling effects. Failure behavior and strength characteristics of Pingdingshan sandstone were investigated at room temperatures up to 300℃ in an internally heated apparatus and tensile load through meso-scale laboratory experiments in this work. 33 experiments have successfully been conducted for Pingdingshan sandstone. Experimental results indicated that the tensile strength increased slowly with temperatures from 25℃ to 100℃, and then sharply jumped from 100℃ to 150℃, and finally decreased slightly with temperatures from 150℃ to 300℃. And about 150℃ is the threshold temperature of strength and thermal cracking. At low temperatures (25℃-150℃), sandstone strength is determined by relatively weak clay cement. However, at higher temperatures (150℃-300℃), because of the strength enhancement of clay cement, sandstone strength is controlled by both mineral particles and clay cement. The effects of cement clay, micro-cracks closing, and thermal cracking were the possible reasons for our detailed analysis. In addition, the typical fracture position maps and nominal stress-strain curves indicated that the temperature had strong effects on the failure mechanism of sandstone. The fractograph implied that the dominant fracture mechanism tended to transform from brittle at low temperatures to ductile at high temperatures. 展开更多
关键词 SANDSTONE thermal-mechanical (TM) effects MESO-SCALE tensile strength thermal cracking FRACTOGRAPHY
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