The present invention relates to a rim drilling and milling machine, and more particularly to a rim drilling and milling machine that can firmly and stably clamp a wheel rim.
With reference to
However, the conventional rim drilling and milling machine has the following shortcomings:
1. A distance L2 defined from a top of the fixture unit 96 to a bottom of the base 91 is around 1333 millimeters. When a wheel rim is clamped by the fixture unit 96, a distance L1 defined from a top of the wheel rim to the bottom of the base 91 is around 1650 millimeters. Consequently, the wheel rim is located too high from the ground, and it is difficult for a user to see a processing area of the wheel rim while operating the conventional rim drilling and milling machine. Therefore, it is inconvenient to operate the conventional rim drilling and milling machine.
2. A bottom of each one of the clamping seats 961 is an inclined surface 962. While the clamping seats 961 are sliding inwardly, the wheel rim can slide relative to the clamping seats 961 along the inclined surfaces 962 of the clamping seats 961 to abut against the claws 963 of the clamping seats 961. However, when drilling or processing the wheel rim by the conventional rim drilling and milling machine, the wheel rim is vibrated easily because the bottom of the wheel rim is held on the inclined surfaces 962 of the clamping seats 961. Consequently, the fixture unit 96 cannot firmly and stably clamp the wheel rim, which reduces the machining quality.
To overcome the shortcomings, the present invention tends to provide a rim drilling and milling machine to mitigate or obviate the aforementioned problems.
The main objective of the invention is to provide a rim drilling and milling machine that can firmly and stably clamp a wheel rim, and the wheel rim can be clamped at a position for a user to easily see a processing area of the wheel rim.
The rim drilling and milling machine has a bottom base, a column, a turret, a saddle, a table, and a clamping unit. The column is fixed on the bottom base and protrudes upwardly from a top of the bottom base. The turret is connected with the column and is vertically and linearly slidable. The saddle is connected with the bottom base and is horizontally and linearly slidable. The table is horizontally, linearly and slidably connected with the saddle, and a sliding direction of the table is perpendicular to a sliding direction of the saddle. The clamping unit is fixed on a top of the table and has a clamping base and multiple clamping members. The clamping base is mounted on the table and has a center. The clamping members are arranged around the center of the clamping base at angular intervals, and are radially and slidably connected with the clamping base. Each one of the clamping members has at least one jaw.
Each one of the at least one jaw has a jaw body, a clamping groove recessed in a side of the jaw body facing the center of the clamping base, and an abutting protrusion. The jaw body of each one of the at least one jaw is formed on a top of the clamping member and protrudes upwardly. The clamping groove of each one of the at least one jaw has a top surface spaced from a top surface of the jaw body, a bottom surface spaced from the top surface of the clamping groove, and a side surface extending from an edge of the top surface of the clamping groove away from the center of the clamping base to an edge of the bottom surface of the clamping groove away from the center of the clamping base.
The abutting protrusion is formed between the top surface of the jaw body and the top surface of the clamping groove and extends from the side surface of the clamping groove toward the center of the clamping base. A distance defined from the bottom surface of the clamping groove of each of the at least one jaw of each one of the clamping members of the clamping unit to a bottom surface of the bottom base ranges from 850 millimeters to 1000 millimeters.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
With reference to
The column 20 is fixed on the bottom base 10 and protrudes upwardly from the top of the bottom base 10. The turret 30 is connected with the column 20 and is vertically and linearly slidable. A vertical rail unit 21 extending along the third axis Z is mounted between the column 20 and the turret 30 to drive the turret 30 to vertically slide relative to the column 20.
The saddle 40 is connected with the bottom base 10 and is horizontally and linearly slidable along the first axis X. A first rail unit 15 is mounted between the bottom base 10 and the saddle 40 to drive the saddle 40 to slide relative to the bottom base 10 along the first axis X. The first rail unit 15 may be a lead screw device.
The table 50 is horizontally, linearly and slidably connected with the saddle 40 along the second axis Y and has a sliding direction perpendicular to a sliding direction of the saddle 40. A second rail unit 45 is mounted between the table 50 and the saddle 40 to drive the table 50 to slide relative to the saddle 40 along the second axis Y. The second rail unit 45 may be a lead screw device.
With reference to
In the embodiment, the clamping unit 60 has three clamping members 63 arranged around the center 611 of the clamping base 61 at equiangular intervals. Each one of the clamping members 63 is connected with the clamping base 61 by a sliding seat 615. Each one of the sliding seats 615 is radially and slidably mounted in the clamping base 61 and drives a corresponding one of the clamping members 63 to radially slide relative to the clamping base 61. The sliding seats 615 are connected with each other by a linkage unit such that the sliding seats 615 can be driven to radially slide relative to each other at the same time by the linkage unit. The linkage unit may be conventional, and the detailed description thereof is omitted.
With reference to
The clamping groove 642 further has a chamfer 647 extending obliquely and downwardly from an edge of the bottom surface 644 of the clamping groove 642 near the center 611 of the clamping base 61. The abutting protrusion 646 is formed between the top surface of the jaw body 641 and the top surface 643 of the clamping groove 642 and extends from the side surface 645 of the clamping groove 642 toward the center 611 of the clamping base 61.
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Therefore, the wheel rim 70 will not be located too high from the ground and will be located at a proper height for a user to easily see a processing area of the wheel rim 70. The user can easily operate the rim drilling and milling machine of the present invention to drill or process the wheel rim 70. With such arrangement, the rim drilling and milling machine in accordance with the present invention can firmly and stably clamp a wheel rim 70. Vibration of the wheel rim 70 during drilling and processing can be reduced. The user can easily see the processing area of the wheel rim 70. The operating convenience and the processing quality of the rim drilling and milling machine can be enhanced.