Thermal excitation device for infrared thermal imaging nondestructive detection on concrete structure

A technology of infrared thermal imaging and concrete structure, applied in the direction of material defect testing, etc., can solve the problems of high heating efficiency, large time gradient, small spatial gradient, etc., and achieve the effect of high heating efficiency, small spatial gradient, and fine controllable precision.

Active Publication Date: 2014-05-21
RES INST OF HIGHWAY MINIST OF TRANSPORT +1
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Problems solved by technology

[0016] The purpose of the present invention is to provide a thermal excitation device for infrared thermal imaging non-destructive testing of concrete structures to solve the problem that the heat source used in the non-destructive testing technology of infrared thermal imaging of concrete not only has small spatial gradient, large time gradient, high heating efficiency, and fine controllable heating temperature. , and can be easily moved, height and angle can be adjusted and other technical issues

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  • Thermal excitation device for infrared thermal imaging nondestructive detection on concrete structure
  • Thermal excitation device for infrared thermal imaging nondestructive detection on concrete structure
  • Thermal excitation device for infrared thermal imaging nondestructive detection on concrete structure

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Embodiment Construction

[0035] The present invention will be further described below in conjunction with the drawings and embodiments.

[0036] The thermal excitation device for infrared thermal imaging non-destructive testing of concrete structure according to the present invention can be found in figure 2 , 3 , The device includes an infrared radiation device, a furnace frame 1, a furnace frame rotation device, and a furnace frame lifting device; the infrared radiation device includes a radiator array composed of a number of ceramic radiators and a temperature control device electrically connected to the radiator; The array is fixed on the furnace frame, and the material of the furnace frame 1 is smooth stainless steel, and is connected with the movable part of the furnace frame lifting device through the furnace frame rotating device.

[0037] The infrared radiation device is divided into several temperature zones, each temperature zone controls the temperature independently, each temperature zone cont...

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Abstract

The invention discloses a thermal excitation device for infrared thermal imaging nondestructive detection on a concrete structure. The device comprises an infrared radiation device, a boiler cradle, a boiler cradle rotation device and a boiler cradle lifting device, wherein the infrared radiation device comprises a radiation device array consisting of a plurality of ceramic radiation devices and a temperature control device electrically connected with the radiation device array; the radiation device array is fixed on the boiler cradle which is made of smooth stainless steel, and is connected with a moving component of the boiler cradle lifting device by the boiler cradle rotation device. According to the invention, a thermal source used by the technique of infrared imaging nondestructive detection on concrete not only is small in spatial gradient, high in time gradient, high in heating efficiency, and high in heating temperature controllable precision, but also can move conveniently and can be regulated in height and angle.

Description

Technical field [0001] The invention relates to a thermal excitation device for infrared thermal imaging nondestructive detection of concrete internal defects. Background technique [0002] Seeking a non-destructive, fast, low-cost, large-scale concrete survey method is an issue of great concern to the civil engineering community, and has very practical significance. Infrared imaging detection technology was introduced into the field of civil engineering under this situation. Research on the application of infrared imaging technology first appeared in the United States in the 1960s. At the end of the 1970s, scholars have applied infrared imaging technology to diagnose heat loss, roof water seepage, wall defects, and find subsurface defects on roads. This technology started relatively late in my country. In the early 1990s, only scholars in my country combined infrared imaging diagnostic technology with civil engineering to conduct research on building heat loss, building materi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N25/72
Inventor 谢峻郑晓华曾丁安宁高小妮
Owner RES INST OF HIGHWAY MINIST OF TRANSPORT
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