Efficient and environment-friendly automatic test tube decontamination equipment for chemical engineering
A chemical engineering and test tube technology, applied in the field of test tube automatic decontamination equipment, can solve the problems of unfavorable health of workers, threat to skin safety, high labor intensity, etc., and achieve the effect of simple structure, guaranteed cleaning effect and low labor intensity
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Embodiment 1
[0040] In this embodiment, a highly efficient and environmentally friendly test tube automatic decontamination equipment for chemical engineering is disclosed, specifically combining figure 1 , image 3 and Figure 4 As shown, the automatic decontamination equipment includes the following structure:
[0041] The equipment box 1, and the equipment box 1 includes a lower box 11 and an upper box 12 fixedly connected sequentially from bottom to top, the lower box 11 is a cylindrical structure with an open top, and the upper box 12 is a semi-cylindrical structure with an open bottom;
[0042] Rotate and fit with the porous disc 2 in the top opening of the lower box 11, and the test tube placement component 3 is installed on the porous disc 2;
[0043] Welded on the sealing rotating plate 4 in the middle of the top of the porous plate 2, the sealing rotating plate 4 cooperates with the upper box 12, and forms a sealed decontamination cleaning chamber 5 and an open placement area 6 o...
Embodiment approach 1
[0067] Concrete combination Figure 5 It can be seen that:
[0068] The clamping device comprises two limiting plates 35 symmetrically welded to the top of the movable ring 32, and the two limiting plates 35 run through movable guide rods 36, and the two movable guide rods 36 are provided with sliding sleeves 37, and A spring 371 is welded between each sliding sleeve 37 and the corresponding limiting plate 35;
[0069] The clamping device also includes two clamping blocks 38 arranged symmetrically, and a connecting rod 372 is rotatably connected between each clamping block 38 and each sliding sleeve 37 .
[0070] In this embodiment, the clamping principle of the clamping device is:
[0071] Squeeze the two symmetrical sliding sleeves 37 close to each other. At this time, based on the limitation of the limit plate 35, the two springs 371 are stretched, and at the same time, it is limited based on the rotation of the four connecting rods 372, so that the two clamping blocks 3...
Embodiment approach 2
[0073] Concrete combination Figure 6-Figure 7 It can be seen that:
[0074] The clamping device comprises two limiting plates 35 symmetrically welded to the top of the movable ring 32, and the two limiting plates 35 run through movable guide rods 36, and the two movable guide rods 36 are provided with sliding sleeves 37, and A spring 371 is welded between each sliding sleeve 37 and the corresponding limiting plate 35;
[0075] The clamping device also includes two clamping blocks 38 arranged symmetrically, and a connecting rod 372 is rotatably connected between each clamping block 38 and each sliding sleeve 37 .
[0076] Further, in this embodiment, one end of the movable guide rod 36 passes through the sliding sleeve 37 , and a rubber cushion 381 is provided on the end of the movable guide rod 36 and the side wall of the clamping block 38 . Based on this, it is guaranteed that the overall clamping device will not cause abrasion to the outer wall of the test tube when clamp...
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