conclusion the infrared thermography is helpful to the early diagnosis of as.
结论红外热图有助于早期as诊断。
as the infrared thermography inspecting is developing from nature determining to quantity determining, some basic study is done in this paper for this development in the area of building inspection.
由定性检测走向定量检测是当前红外热像检测方法发展趋势,本文的主要工作是为房屋建筑红外热像检测定量化而进行的基础性研究。
the ultrasonic infrared thermography method is a new nondestructive testing technology.
超声红外热成像是一种新型的无损检测技术。
purpose: to evaluate the differential diagnostic value of infrared thermography in primary breast neoplasm.
目的:探讨红外热像图对乳腺病变性质的鑒别诊断价值。
objective to investigate the diagnostic value of infrared thermography for various breast diseases.
目的探讨远红外热线扫描对乳腺疾病的诊断价值。
finally, the application of infrared thermography technology to microwave cubic module was discussed.
完成了三维立体微波电路封装技术的研究。
with the advantages of remote, untouched fast and large area scanning, infrared thermography has become an effective way to diagnose equipment with internal or external faults.
在进行电气设备内外部故障诊断方面,红外成象技术具有远距离、非接触、大面积扫描成象、快速直观等优点,成为电气设备故障有效的诊断方法。
and through the actual project, further proved the feasibility of infrared thermography technology for detect building roof moisture.
并通过对实际工程的检测,进一步证明了红外热像技术在建筑物屋面渗漏中应用的可行性。
results infrared thermography diagnosed 134 breast cancer, while pathological examination diagnosed 150 breast cancer. the diagnostic agreement between the two methods were 89.3%.
结果病理证实乳腺癌150例,其中134例被远红外热像图检测为阳性,诊断符合率89.3%。
infrared thermography is a new and effective technology of ndt.
红外成像技术是一种新型而有效的无损检测方法。
the principles and methods of infrared thermography ndt technique were introduced.
本文介绍了红外热成像无损探伤技术的基本原理和检测方法。
investigation of infrared thermography in roofing moisture detection and application finite element method in infrared thermography.
重点研究了屋面渗漏位置的红外热像检测技术,以及应用有限元法对其进行模拟与分析。
the theoretical model for pulse-heating infrared thermography nondestructive testing and the system developed are introduced.
介绍脉沖加热红外热成象无损检测技术的理论模型和自制的实验系统。
experimental study on the physical phenomenon of the fire whirlwind temperature field by infrared thermography is carried out.
应用热成像方法测取了火旋风,发现了火旋风大高度直径比的特有物理现象;
infrared thermography (irt) cameras can see what human eyes can’t: heat.
红外热成像摄像机可以看见人眼所看不见的东西:热。