Constant-temperature transportation box for dangerous chemicals
A technology for dangerous chemicals and transportation boxes, which is applied in the field of constant temperature transportation boxes for dangerous chemicals, which can solve the problems of increasing the impact force between liquids, increasing the risk, and unfavorable temperature uniformity of chemicals, so as to reduce the impact force and reduce the Risk, the effect of enhancing the thermal insulation effect
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Embodiment 1
[0029] see Figure 1-6 , the present invention provides a technical solution: a constant temperature transport box for hazardous chemicals, including a constant temperature box 1, one end of the first fixed column 3 is fixed to the outer wall of the constant temperature box 1, and the other end of the first fixed column 3 The inner wall surface of the vacuum box 2 is affixed; the inner bottom surface of the thermostat 1 is affixed to one end of the second fixed column 4, the other end of the second fixed column 4 is affixed to the sleeve 5, and the inner bottom surface of the sleeve 5 is affixed to two double Layer slide rail 6, the front of vacuum box 2 is provided with port 9, and port is hinged with seal cover 10.
[0030] The sleeve 5 is fixedly connected to the back of the thermostat 1 , and the sleeve 5 runs through the front of the thermostat 1 and communicates with the port 9 .
[0031] The sealing cover 10 is fixedly connected with a silica gel pad 8, the silica gel ...
Embodiment 2
[0038] see Figure 7-Figure 8 Insulation material is also filled between the thermostat box 1 and the vacuum box 2, and a heating wire 260 and a refrigeration plate 310 are installed on the outer wall of the thermostat box 1. Box 1; the locking cooling plate 310 is closely attached to the cooling surface of the semiconductor cooling sheet 250, the heating surface of the semiconductor cooling sheet 250 is closely attached to the cooling plate 320, and the cooling plate 320 is provided with a cooling fin 321;
[0039] The heat sink 321 is facing the air outlet of the fan 220, and the fan 220 blows air to the heat sink after starting, thereby taking away the heat on the heat sink. A plurality of temperature probes 230 are installed in the incubator 1, and the temperature probes 230 are connected to the temperature sensors to detect the temperature in the incubator 1 at multiple points. The temperature sensors are installed in the numerical control box 210, and the numerical contr...
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