Digger
A technology of a hole digging machine and a frame, which is applied to a hole digging device and a hole digging machine for stone processing. In this field, it can solve the problems of making profiling boards, low processing precision, and poor processing flexibility, and achieve the effects of flexible processing, quality improvement, and convenient processing accuracy.
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Embodiment 1
[0017] The hole digging machine comprises a frame 1, a workbench 2, a lifting seat 3 and a horizontal revolving seat 4.
[0018] The frame 1 includes a left door frame 1a positioned at the left side of the workbench 2 and a right door frame 1b positioned at the right side of the workbench 2. This hole digging machine adopts a gantry frame 1, which makes it easier to hoist large-scale platforms. The left door frame 1a and the right door frame 1b have the same structure. The left door frame 1a includes a base 1c and a guide rail seat 1d above the base 1c. The base 1c and the guide rail seat 1d are fixed by multiple sets of height-adjusting bolt assemblies 1e Connection, that is, by manipulating the height adjustment bolt assembly 1e can ensure that the guide rail seat 1d is in a horizontal state.
[0019] The workbench 2 has a crosspiece 2a and a column 2b, one end of the crosspiece 2a is fixedly connected to the left door frame 1a, the other end of the crosspiece 2a is fixedly ...
Embodiment 2
[0029] The structure and principle of this embodiment are basically the same as those of Embodiment 1. The basic similarities will not be described in detail, and only the differences will be described. The difference is that the first screw nut assembly is used in the forward and backward movement driving structure to replace The first gear and the first rack drive. Specifically, the two ends of the crossbeam 6 correspond to the left door frame 1a and the right door frame 1b through the first screw nut assembly, and a linkage rod is arranged in the two sets of first screw nut assemblies. , the linkage rod is connected in rotation with the frame; one end of the screw rod in the two sets of first screw nut assemblies is connected to the linkage rod through a bevel gear pair, and the housing of the forward and backward moving motor 8 is fixed on the frame , the rotating shaft of moving motor 8 forward and backward is connected with linkage rod transmission.
Embodiment 3
[0031] The structure and principle of this embodiment are basically the same as those of Embodiment 1. The basic similarities will not be described in detail, and only the differences will be described. The difference lies in that the second screw nut assembly is used in the left and right moving drive structure instead of The second gear and the second rack drive. Specifically, the beam 6 is connected to the translation seat 5 through the second screw nut assembly, the housing of the left and right moving motor 12 is fixedly connected with the cross beam 6, and the rotating shaft of the left and right moving motor 12 is connected to the second screw nut assembly. The screw drive connection in the assembly.
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