Low-temperature transfer device for organ transplantation
A transfer device and low temperature technology, applied in the field of organ transplantation, can solve the problems of reducing device functionality, prone to shaking and vibration, and reducing device practicability, so as to increase operability and convenience, enhance balance and stability, Effects that increase functionality and practicality
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Embodiment 1
[0039] Example 1, such as Figure 1-4 As shown, when the rotating rod 3 needs to be rotated, the pull rope 309 can be pulled to drive the guide rod 306 to move horizontally under the cooperation of the guide wheel group, forcing the guide rod 306 to slide inside the guide sleeve 308 and compress the spring 307 , and through the cooperation of the pull ring and the positioning column, the position of the pull rope 309 is limited. At this time, the cross-shaped block 304 can be driven by the guide rod 306 to cancel the engagement and fixation with the cross-shaped groove 302, and then turn the rotating rod 3 as a whole. Drive the two sets of mounting plates 303 and the U-shaped positioning seat 301 and the moving seat 305 to turn over. When the specified angle is turned over, the fixing of the pull ring and the positioning column can be released, forcing the guide rod 306 to push ten times under the elastic reset of the spring 307. The font block 304 engages with the cross-shape...
Embodiment 2
[0040] Example 2, such as Figure 1-5 As shown, when the device is subjected to vibration and impact during the transfer work, the protective bin 4 can be used as an external protection structure to relieve the swaying of the protective bin 4 as a whole under the cooperation of the annular chamfering area 7 and the annular raised plate 8. The structural contact of the annular chamfering area 7 and the annular raised plate 8 is offset to reduce the impact force of the horizontal vibration, while the impact force of the vertical state can drive the second trapezoidal block 805 and the second trapezoidal block 805 and the A trapezoidal block 804 is contacted and squeezed, forcing the first trapezoidal block 804 to drive the slider 801 to slide under the guide of the chute 802. At this time, the connection and compression of the first trapezoidal block 804 and the buffer spring 803 can be used for shock absorption and relief, increasing The shock resistance and impact resistance d...
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