Bagged material poking mechanism and automatic loading equipment
A distribution mechanism and loading equipment technology, applied in loading/unloading, conveyor objects, transportation and packaging, etc., can solve problems such as card pack shutdown materials, improve loading efficiency, eliminate hazards, and realize automated unmanned operations Effect
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Embodiment 1
[0051] Such as Figure 1 to Figure 5 As shown, an automatic loading equipment for bagged materials includes a distribution mechanism, an equipment rack 1 and a control unit 2,
[0052] The distribution mechanism includes the first power mechanism 3, the support arm 4 and the material shifting mechanism connected in sequence. The first power mechanism adopts a combined structure of a motor and a reducer (it can also use a telescopic cylinder, a combination of a gear and a rack, and a linear motor. and other structures, but when adopted, the output end of the power mechanism will be changed to be connected with the support arm or support), installed on the equipment rack 1, and the support arm 4 is one, one end is connected with the first power mechanism 3, and the other end A connecting member 5 is set, the connecting member 5 is an isosceles trapezoidal structure, and there are two sets of material shifting mechanisms, each set of material shifting mechanisms includes a bracke...
Embodiment 2
[0060] The structure of this implementation is basically the same as that of Embodiment 1, the difference is: as Figure 6 As shown, the support 6 is horizontally arranged, and the support is a frame structure provided with a hollow part. The material shifting plate 7 is hinged on one side of the support 6, and the upper ends of the two supports 6 are fixedly connected to a common bearing plate 26, the bearing plate The lower end surface of 26 is hinged with two first telescopic cylinders 27, and the output shaft of one of the first telescopic cylinders 27 extends out of the hollow part of the support 6 and is hinged with one of the shifting plates 7, and the shifting plate 7 is in the first telescopic cylinder. Driven, on one side of the bracket 6, the limit bar 8 flips up and down within the limit range;
Embodiment 3
[0062] The structure of this implementation is basically the same as that of Embodiment 1, the difference is: as Figure 7As shown, the support 6 is set horizontally, the shifting plate 7 is hinged on one side of the support 6, the support 6 is provided with an auxiliary plate 28, the auxiliary plate 28 is provided with a steering gear 29, and the output shaft of the steering gear 29 is connected to the shifting plate 7 in transmission , the shifting plate is driven by the steering gear 29, and flips up and down on one side of the bracket 6. It should be pointed out that the axis of the output shaft of the steering gear 29 and the hinge shaft 30 that the shifting plate 7 is hinged on the bracket 6 The shaft center is designed to be on the same line, the transmission arm 31 of the steering gear 29 is connected with the material shifting plate 7, and the material shifting plate 7 is driven by the steering gear 29, on one side of the bracket 6, the limit stopper rod 8 Turn up and...
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