INDEXABLE MILL
20180318941 ยท 2018-11-08
Inventors
Cpc classification
B23C5/10
PERFORMING OPERATIONS; TRANSPORTING
B23C2200/20
PERFORMING OPERATIONS; TRANSPORTING
B23C3/12
PERFORMING OPERATIONS; TRANSPORTING
B23C5/202
PERFORMING OPERATIONS; TRANSPORTING
B23C2210/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An indexable mill includes a tool holder and an indexable bit. The tool holder has a positioning shaft whose one side is provided with a braking block that has curved mortises. The positioning shaft is centrally provided with a threaded hole. The indexable bit is centrally provided with a positioning hole. The positioning hole of the indexable bit has its one side formed with a braking notch. The plug-socket like connection between the positioning shaft of the tool holder and the positioning hole of the indexable bit provides a first positioning function. The wrapping, curved surface contact between the braking block and the braking notch provides a second positioning function. The dual positioning enhances stability and rigidity of the combination.
Claims
1. An indexable mill, comprising: a tool holder, having one end thereof provided with a positioning shaft, wherein the positioning shaft has one side thereof provided with a braking block, and the positioning shaft is centrally formed with a threaded hole; and an indexable bit is centrally provided with a positioning hole and a through hole, the positioning hole being configured to receive the positioning shaft, the positioning hole of the indexable bit having one side thereof formed with a gap, the gap forming a braking notch, the braking block and the braking notch being in plug-socket like connection, and the through hole being configured to receive a screw bolt that fixes the indexable bit to the tool holder.
2. The indexable mill of claim 1, wherein the tool holder has the end thereof provided with a core, and the positioning shaft is deposited on the core, in which the core is configured to be inserted into an edge following wheel and the indexable bit, and the screw bolt fixes the core.
3. The indexable mill of claim 2, wherein the screw bolt is a countersunk screw, and the through hole is a countersunk hole configured to receive the countersunk screw.
4. The indexable mill of claim 2, wherein the screw bolt has a flange to retain the edge following wheel.
5. The indexable mill of claim 1, wherein the braking block has two sides thereof formed as curved mortises, and the braking notch has two sides thereof formed as curved tenons, so that the curved mortises embrace and limit the tenons.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014]
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0032] Referring to
[0033] The tool holder 10 has its one end provided with a positioning shaft 11. The positioning shaft 11 has its one side provided with a braking block 12. The braking block 12 has its two sides formed as curved mortises 121. The positioning shaft 11 is centrally formed with a threaded hole 13.
[0034] The indexable bit 20 has its main body peripherally provided with more than one chamfer blade 21. The indexable bit 20 is centrally formed with a positioning hole 22 and a through hole. The through hole is a countersunk hole 23. The positioning hole 22 is configured to receive and thereby align and position the positioning shaft 11. The positioning hole 22 of the indexable bit 20 has a gap at its one side. The gap forms a braking notch 24. The braking notch 24 has its two sides formed as curved tenons 241 for increased contact area and functions of positioning, retaining and interlinking. The countersunk hole 23 is configured to receive a screw bolt 30 that fixes the indexable bit 20 to the tool holder 10.
[0035] Referring to
[0036] Referring to
[0037] The curved surface contact between the braking block 12 and the braking notch 24 provides a second positioning function. The curved mortises 121 of the braking block 12 embrace and limit the tenons 241 of the braking notch 24, so mutual containment formed between the braking block 12 and the braking notch 24, thereby securing the indexable bit 20 and the tool holder 10 in the form of plug-socket like connection. When working with the positioning between the positioning shaft 11 and the positioning hole 22, the second positioning function contributes to dual positioning, high combination rigidity and low vibration. The dual positioning eliminates problems associated with excessive limit or excessive positioning. The point is that the positioning shaft 11 and the curved mortise 121 at the two sides of the braking block 12 of the tool holder 10 can be formed with a single tool in one operation, and the positioning hole 22 and the curved tenons 241 at the two sides of the braking notch 24 of the indexable bit 20 can be also formed with a single tool in one operation, thereby minimizing accumulation of tolerance and ensuring high machining accuracy.
[0038] Referring to
[0039] The indexable bit 20 has its one end provided with a positioning hole 22. The positioning hole 22 is configured to engage with the core 14 at the front end of the tool holder 10. At the other end of the indexable bit 20, there is a countersunk hole 23 for receiving a screw bolt 30. In the present embodiment, the indexable bit 20 is a side mill. In the embodiment of
[0040] The edge following wheel 40 may be a bearing or a ring that is configured to roll when moving along the profile of a cast or a workpiece, and thereby leads the indexable bit 20 to perform milling along the outline of the cast or the workpiece. Additionally, the edge following wheel 40 may be peripherally mounted with a bushing 41 having various levels of thickness, as shown in
[0041] In the embodiment shown in
[0042] Referring to
[0043] Referring to
[0044] With the configuration described above, the combination of the tool holder and the indexable bit in the present invention provides improved stability and rigidity thanks to the dual positioning formed by the first positioning function raised from the plug-socket like connection between the positioning shaft of the tool holder and the positioning hole of the indexable bit, and the second positioning function raised from the embracing and curved surface contact between the braking block and the braking notch, in addition to the conventional screw fastening. Such a structure is first disclosed by the present invention and has not been seen in like products. During fabrication, the improved processing procedure prevents excessive limit and excessive positioning, and since the shear strength and the transmissible torque are increased to 1.257 times and 1.257 times, respectively, the present invention eliminates the problems about excessive machining and excessive positioning as seen in the prior art. In addition, the present invention replaces polishing with milling, thereby reducing contamination in the working environment, and being suitable for both large- and small-scale production. The edge following wheel rolls along the profile of the cast or workpiece to the tool is working on, so the indexable bit is led to move along the parting line on the cast or workpiece to trim burrs, making the present invention practical and inventive.