Waste tire retreading and grinding equipment
A technology for waste tires and equipment, applied in the field of waste tire retreading and grinding equipment, can solve problems such as trouble, achieve simple and labor-saving operation, clear and reasonable component layout, and overcome poor grinding effect.
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Embodiment approach 1
[0016] Implementation mode one: if figure 1 As shown, the waste tire retreading and grinding equipment includes a frame 1, a grinding mechanism and a guide rail group, wherein the guide rail group is arranged on the frame 1, the grinding mechanism includes a wheel frame 2 and a connecting seat 3, and the guide rail group includes front and rear Guide rail 4, left and right guide rail 5 and slide frame 6, wherein front and rear guide rail 4 is fixed on the frame 1, left and right guide rail 5 is fixed in the slide frame 6, and slide frame 6 is slidingly matched on the front and rear guide rail 4; Seat 3 is slidably fitted on the left and right guide rails, wheel frame 2 is rotatably installed on connection seat 3, wheel frame 2 is provided with grinding wheel 7 and grinding drive motor 8, and grinding drive motor 8 drives grinding wheel 7 through transmission belt, Described frame 1 is provided with active tire chuck 9 and driven tire chuck 10, and active tire chuck 9 is fixed ...
Embodiment approach 2
[0021] Embodiment 2: a rotating drive motor is provided between the wheel frame 2 and the connecting seat 3, and the wheel frame and the connecting seat are respectively provided with a dial and a pointer, and a camera is arranged above the pointer, and a display screen is provided. A control panel 15 is arranged on the front of the refurbished polishing equipment, and the control switch of the display screen and the rotating drive motor is arranged on the control panel 15, and the rest of the structures are as described in Embodiment 1, and the figure is omitted.
Embodiment approach 3
[0022] Embodiment 3: A rotation drive motor is provided between the wheel frame 2 and the connecting seat 3, and a rotation angle sensor and a PLC controller are provided. The rotation angle sensor and the rotation drive motor are all connected to the PLC controller, and the rest of the structures are as implemented As described in method 1, the diagram is omitted.
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