Electric vehicle controller copper bar reversible conveying device
A technology for electric vehicle controllers and conveying devices, which is applied in the direction of conveyor control devices, conveyors, conveyor objects, etc., which can solve the problems of uncontrollable turning effect, reduced detection efficiency, and high labor costs, so as to achieve automatic operation , Improve practicability, good effect
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Embodiment 1
[0044] combine Figure 1-8 As shown, the electric vehicle controller copper bar reversible conveying device provided by the present invention includes: a conveying detection mechanism 100, a turning mechanism 200, a discharge mechanism 300, a blanking mechanism 400, and an adjustment mechanism 500. The conveying detection mechanism 100 includes a Conveyor belt 110 for conveying copper bars, conveying rollers 120 arranged inside conveyor belt 110, mounting frame 130 supporting the operation of conveying rollers 120, image detector 140 installed on mounting frame 130 to detect passing copper bars below, and connected and driven The motor 150 that the conveyor roller 120 rotates can transport the copper bars through the conveyor belt 110, and the motor 150 is installed on the outside of the mounting frame 130, and the motor 150 drives the conveyor roller 120 to rotate, so that the conveyor belt 110 can be operated, and the mounting frame 130 The feeding end is designed with an in...
Embodiment 2
[0051] combine Image 6 As shown, on the basis of Embodiment 1, the conveyor belt 110 includes an endless base belt 111 for foundation support, an outer protective belt 112 arranged on the outer layer of the endless base belt 111 for pad protection, and an outer protective belt 112 arranged at the bottom of the endless base belt 111 for position limiting. The limit strip 113 can ensure the normal conveying strength of the conveyor belt 110 through the ring base belt 111, and prevent the copper bar from being damaged by the excessive weight of the conveyor belt 110. Especially in the flipping process, it can effectively improve the protection of the conveying copper bars. A series of deformable cushioning and anti-slip structures such as soft rubber pads and hard soft rubber pads can be used, and the limit strip 113 is at least There are two symmetrical groups to ensure the stability of the two sides of the conveyor belt 110, prevent the conveyor belt 110 from tilting or even d...
Embodiment 3
[0055] combine Figure 7 As shown, on the basis of Embodiment 1, the material placement assembly 360 includes a material placement platform 361 with an inclined top surface for material placement, an insertion rod groove 362 opened in the material placement platform 361 for easy unloading, and connected to the material placement platform 361. The material retaining plate 363 at the outer end of the table 361 is used to set the top surface of the material placing assembly 360 into an inclined shape, so that the stacked copper bars can be stacked together more closely, preventing the stacking from being unstable due to leaving gaps. Moreover, it also has a certain correction effect on the landing point of the copper bar, and the error in a small range can also be automatically compensated under the sliding of the copper bar, which further improves the reliability of the code material, and the insertion rod groove 362 is convenient for some forklift structures to stack. The coppe...
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