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Automatic cutting and extracting system for adsorption carbon tubes for air quality detection

An air quality detection and extraction system technology, applied in the direction of glass cutting devices, manufacturing tools, conveyor objects, etc., can solve the problems of affecting test results, low detection efficiency, easy to spill carbon particles, etc.

Active Publication Date: 2021-09-10
江苏康达检测技术股份有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] However, due to the inconvenience of manually cutting the hollow glass tube and then breaking it, the detection efficiency is low, and the carbon particles are easy to spill when breaking or dumping the carbon particles, which affects the test results. At the same time, it is not easy to manually add the amount of absorption liquid. control, which can reduce the accuracy of subsequent test results

Method used

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  • Automatic cutting and extracting system for adsorption carbon tubes for air quality detection
  • Automatic cutting and extracting system for adsorption carbon tubes for air quality detection
  • Automatic cutting and extracting system for adsorption carbon tubes for air quality detection

Examples

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Embodiment

[0060] Such as figure 1 as shown,

[0061] A kind of air sampling carbon tube automatic packing extraction system, such as Figure 2 to Figure 9 As shown, it includes: frame 2; the carbon tube feeding device 3 carried on the frame 2; the carbon tube breaking device 4 carried on the frame 2; the transfer device 5 carried on the frame 2; Adding and transferring device 6; static device 7 carried on frame 2; pipetting device 8 carried on frame 2; and receiving and storing device 9 carried on frame 2 for storing the detection bottle with capping completed .

[0062] Specifically, the carbon tube feeding device 3 includes: a feeding conveyor belt 31 for forwardly conveying the first loading trays 35 one by one, a first full tray warehouse 32 arranged on one side of the feeding conveyor belt 31, The first empty bin 33 on the other side of the feeding conveyor belt 31 and the carbon tube loading manipulator 34 for grabbing the carbon tubes one by one, the first loading tray 35 is loa...

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PUM

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Abstract

The invention relates to an automatic cutting and extracting system for adsorption carbon tubes for air quality detection. The automatic cutting and extracting system comprises a rack; a carbon tube feeding device which is borne on the rack; a carbon tube breaking device which is borne on the rack; a transfer device which is borne on the rack; a liquid adding and transferring device which is borne on the rack; and a material receiving device which is borne on the rack. The steps of automatic carbon tube cutting, carbon tube breaking, carbon granule transferring, absorption liquid quantitative filling, material receiving and the like can be achieved, the manual operation process is greatly simplified, only one worker is needed to carry out tray placing and taking actions, the labor cost is reduced, the phenomenon of carbon granule scattering is not prone to occurring in the treatment process, the controllability of the filling amount of the absorption liquid is higher, the accuracy of a subsequent test result is improved, meanwhile, the working efficiency is greatly improved, the sustainable working capacity of an automatic system is high, the daily handling capacity can be improved by multiple times, the requirement for large-batch testing is met, and the needed occupied space is smaller.

Description

technical field [0001] The invention relates to the technical field of automatic detection, in particular to an automatic cutting and extraction system for adsorption carbon tubes for air quality detection. Background technique [0002] Air quality testing is an important part of environmental testing, and carbon tubes are a product used for air testing, such as figure 1 As shown, the carbon tube 1 includes a hollow glass tube 11 with air holes 111 at both ends and a sealing sleeve 12 sleeved at both ends of the hollow glass tube 11, and a spacer cotton is arranged at about 1 / 3 of the hollow glass tube 11. Core 13, the outer wall of hollow glass tube 11 is provided with marking line 112 on the position corresponding to partition cotton core 13, and partition cotton core 13 divides the space in hollow glass tube 11 into a first chamber and a second chamber. Both the first chamber and the second chamber are filled with carbon particles 14 . [0003] During use, in the enviro...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C03B33/06B65G47/52B65G47/90
CPCC03B33/06B65G47/52B65G47/90
Inventor 李冠华高晨丁红叶
Owner 江苏康达检测技术股份有限公司
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