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Water-cooled heat flux meter sensor bracket for external bonfire test of explosive

A sensor bracket and heat flux technology, applied in the field of sensor brackets, can solve the problems of affecting the danger level of the measured object, inaccurate measurement results, inaccurate aiming, etc., to improve practicability and convenience, and to promote and improve The effect of precision

Active Publication Date: 2019-01-11
广西出入境检验检疫局危险品检测技术中心
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Such a high price limits the use of sensors with water-cooled structural heat sinks
Moreover, all sensors currently on the market do not have a standard positioning device, and cannot accurately aim at the center of the measured object in the external fire test of the United Nations explosives [test 6 (c)]. In the test, the measurement results are often inaccurate and affect the target Judgment of the hazard level of the measured object

Method used

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  • Water-cooled heat flux meter sensor bracket for external bonfire test of explosive
  • Water-cooled heat flux meter sensor bracket for external bonfire test of explosive
  • Water-cooled heat flux meter sensor bracket for external bonfire test of explosive

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0036] A water-cooled heat fluxmeter sensor bracket for external fire tests of explosives (such as Figure 1-6 shown), including a base 1, an aiming frame 2, a water cooling head 3, a sensor 4, and a laser flashlight 5; one end of the base 1 is provided with a water cooling module slot 11; It is integrally installed on the water-cooling module slot 11 of the base 1; the two sides of the water-cooling module slot 11 are provided with connecting bolts 13; one end of the aiming frame 2 is provided with a connecting hook 24; the connecting hook 24 cooperates with the connecting bolt 13 to connect the base 1 with the The aiming frame 2 is connected together; The laser torch 5 is mounted on the aiming frame 2.

[0037] Aiming frame 2 is provided with laser flashlight slot 21, sight A 22 and sight B 23; sight B23 is arranged in the middle of sight frame 2, and sight A22 is arranged at one end of sight frame 2; sight B has a bridge hole 231, the laser flashlight slot 21 passes throug...

specific Embodiment approach

[0039] Specific implementation method: put the sample to be tested on the test frame and fix it, and mark its center with a laser projector. Use a tape measure or a laser rangefinder to measure a distance of 5m and 15m from the center of the sample and set a measurement point respectively.

[0040] Connect the quick-release plate 12 of the camera platform 1 on the base 1 to the camera platform at the measuring point, connect the connecting hook 24 of the aiming frame 2 to the connecting bolt 13 on the base 1, and use the sight A22 and the sight B23 to aim at the Measure the calibration vertical line on the sample, and initially adjust the position of the camera head.

[0041] Put the laser flashlight 5 into the laser flashlight slot 21, turn on the switch, adjust the vertical line of the cross laser flashlight 5 to be consistent with the calibrated vertical line on the sample to be tested, and fix the cross laser flashlight on the laser flashlight slot 21 with a rubber band p...

Embodiment 2

[0047] A water-cooled heat flux meter sensor bracket used for external fire tests of explosives, comprising a base 1, an aiming frame 2, a water cooling head 3, a sensor 4, and a laser flashlight 5; one end of the base 1 is provided with a water-cooling module slot 11; The sensor 4 is attached to the water cooling head 3, and is integrally installed with the water cooling head 3 on the water cooling module slot 11 of the base 1; the two sides of the water cooling module slot 11 are provided with connecting bolts 13; one end of the aiming frame 2 is provided with a connecting hook 24; the connecting hook 24 cooperates with the connecting bolt 13 to connect the base 1 and the aiming frame 2; the laser flashlight 5 is installed on the aiming frame 2.

[0048] The sight frame 2 is provided with a laser flashlight slot 21, a sight A22 and a sight B23; the sight B23 is arranged in the middle of the sight frame 2, and the sight A22 is arranged at one end of the sight frame 2; the sigh...

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PUM

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Abstract

The invention discloses a water-cooled heat flux meter sensor bracket for an external bonfire test of an explosive and belongs to the field of sensor brackets. The water-cooled heat flux meter sensorbracket disclosed by the invention comprises a base, a sight bracket, a water cooling head, a sensor and a laser flashlight; a water cooling module slot is formed in one end of the base; the sensor isfitted to the water cooling head, and the sensor and the water cooling head are integrally mounted on the water cooling module slot of the base; two sides of the water cooling module slot are provided with a connecting blot; one end of the sight bracket is provided with a connecting pothook; the connecting pothook and the connecting bolt are matched with each other to connect the base and the sight bracket together; and the laser flashlight is mounted on the sight bracket. The invention provides the water-cooled heat flux meter sensor bracket which is capable of meeting the operation requirement for the external bonfire test of the explosive in a test and criteria manual of united nation recommendations on the transport of dangerous goods, also realizing the sighting of a tested object and improving the accuracy and reproducibility of the external bonfire test of the explosive.

Description

technical field [0001] The invention belongs to the field of sensor brackets, in particular to a water-cooled heat flux meter sensor bracket used for external fire tests of explosives Background technique [0002] Section 16.6 of Part I of the United Nations Recommendations on the Transport of Dangerous Goods Manual of Tests and Criteria specifies the external fire test [Test 6(c)] method for classifying explosives, which is used to determine when an explosive is involved in a fire. Whether there is a mass explosion or risk of hazardous projections, radiant heat and / or violent combustion or any other hazardous effect. In this experiment, it is required to evaluate the heat flux at a distance of 5m and 15m from the center of the explosive, and the evaluation results are used to determine the hazard level of the object under test. [0003] Most of the heat flux sensors currently used are sheet-type sensors. The principle of this type of sensor is: infrared radiation causes th...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N25/20G01J5/20
CPCG01J5/20G01N25/20
Inventor 严春彭晓凤肖焕新商杰
Owner 广西出入境检验检疫局危险品检测技术中心