Automatic fin loading and arranging device suitable for radiating fins of evaporator
A technology of automatic feeding and cooling fins, applied in the directions of feeding devices, positioning devices, storage devices, etc., can solve the problems of wasting resources, reducing the synchronous movement speed and accuracy of motors, and low production efficiency, so as to improve accuracy, improve The effect of chip arrangement efficiency and improving production efficiency
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Embodiment 1
[0043] Such as Figure 1-4 , an automatic feeding and arranging device for heat sinks of evaporators, comprising: a punch 1 for cutting heat sinks; one is arranged below the punch 1, and is suitable for supporting the heat sinks that fall after cutting, and A slicer that arranges the heat sinks alternately up and down;
[0044] The slicer includes:
[0045] The guide rod 2 corresponds to the position of the insertion hole of the heat dissipation pipe on the falling heat sink, and is suitable for passing through the insertion hole when the heat sink falls;
[0046] The sorting frame 3 is suitable for successively supporting the heat sinks pierced by the guide rod 2;
[0047] The slot plate mechanism 4 includes: a left slot plate 401 and a right slot plate 402 respectively arranged on both sides of the sorting frame 3, and the left and right slot plates are provided with a plurality of cooling fins suitable for being held together. The short sides of the clamping grooves 403 ...
Embodiment 2
[0059] See Figure 1-4 , the working method of a kind of automatic feeding sheet arrangement device realized on the basis of embodiment 1, comprises the following steps:
[0060] ①. The punching machine 1 located above the automatic feeding and arranging device completes the cutting of the heat sink, and the cut heat sink falls into the sorting frame 3 of the automatic feeding and arranging device;
[0061] Wherein, the guide rod 2 is connected in the insertion hole;
[0062] ②. When the heat sinks fall one by one, the central controller detects the falling signal of each heat sink through a photoelectric sensor, and controls each group of support rods 601 in the support rod assembly from bottom to bottom through each support rod driver 602. The top moves toward each other in order to support the cooling fins that have fallen one by one in sequence and respectively;
[0063] Wherein, when each group of support rods 601 moves, the two support rods 601 of the same group move t...
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