Machine tool for cylindrical workpieces
11628526 ยท 2023-04-18
Assignee
Inventors
Cpc classification
B23B3/065
PERFORMING OPERATIONS; TRANSPORTING
B23Q2701/01
PERFORMING OPERATIONS; TRANSPORTING
Y10T29/5114
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B23Q1/03
PERFORMING OPERATIONS; TRANSPORTING
B23Q39/021
PERFORMING OPERATIONS; TRANSPORTING
B23P23/02
PERFORMING OPERATIONS; TRANSPORTING
Y10T82/2593
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T82/2566
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B23B11/00
PERFORMING OPERATIONS; TRANSPORTING
B23B3/06
PERFORMING OPERATIONS; TRANSPORTING
B23P23/02
PERFORMING OPERATIONS; TRANSPORTING
B23Q1/01
PERFORMING OPERATIONS; TRANSPORTING
B23Q1/03
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A complex machine tool for cylindrical workpieces has a bed, a headstock assembly, at least one supporting assembly, and at least one machining assembly. The bed has three tracks being respectively a first track, a second track, a third track arranged in order. Each one of the three tracks defines a respective guiding direction, and the three guiding directions of the three tracks are mutually parallel. The headstock assembly is connected to the bed, and is located near one of two ends of the second track. The at least one supporting assembly is mounted on one of the three tracks and is used for supporting the cylindrical workpiece. The at least one machining assembly is mounted on one of the three tracks, is slidable along the track, and is located on a position at a spaced interval from the at least one supporting assembly.
Claims
1. A machine tool for cylindrical workpieces, the machine tool comprising: a bed having; three tracks being respectively a first track, a second track, a third track in serial order, wherein the second track is located between the first track and the third track, each one of the three tracks defines a respective guiding direction, and the three guiding directions of the three tracks are mutually parallel, each one of the three tracks has a respective two rails, wherein the two rails of the first track form a height difference therebetween, the two rails of the third track form a height difference therebetween, and the two rails of the second track are located at least higher than a lower one of the two rails of the first track and a lower one of the two rails of the third track; a base; a platform disposed on the base, wherein a top surface of the platform is located higher than a top surface of the base; the machine further comprising: a headstock assembly connected to the bed, located at one of two ends of the second track, and configured for holding a cylindrical workpiece; at least one supporting assembly mounted on one of the first track, the second track, and the third track, and configured for supporting the cylindrical workpiece; and at least one machining assembly mounted on one of the first track, the second track, and the third track, and the at least one machining assembly being slidable along the track on which the at least one machining assembly is mounted, and located at a spaced interval from the at least one supporting assembly; wherein the two rails of the second track are located on the top surface of the platform; wherein the two rails of the first track are respectively located on the top surface of the base and the top surface of the platform; and wherein the third track is located on a side of the second track away from a side of the second track at which the first track is located, and the two rails of the third track are respectively located on the top surface of the base and the top surface of the platform.
2. The machine tool for cylindrical workpieces as claimed in claim 1, wherein said at least one supporting assembly is one of a tailstock assembly and a C-shaped steady rest.
3. The machine tool for cylindrical workpieces as claimed in claim 1, wherein said at least one machining assembly is one of a turning assembly and a milling assembly.
4. The machine tool for cylindrical workpieces as claimed in claim 3, wherein said supporting assembly is one of a tailstock assembly and a C-shaped steady rest.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(10) In order to understand the technical features and practical effects of the present invention in detail, and to implement the present invention by following the content of the specification, the preferred embodiment shown in the drawings is further described in detail as follows.
(11) With reference to
(12) With reference to
(13) With reference to
(14) In other words, each one of the three tracks 11, 12, 13 has two respective said rails 111, 121, 131. The two rails 111 of the first track 11 form said height difference therebetween, the two rails 131 of the third track 13 form said height difference therebetween, and the two rails 121 of the second track 12 are at least located higher than a lower one of the two rails 111 of the first track 11 and a lower one of the two rails 131 of the third track 13.
(15) Moreover, the technical features of the height differences between the two rails 111 of the first track 11 and the two rails 131 of the third track 13 are contributive to reduce an overall width of the complex machine tool for cylindrical workpieces. With reference to
(16) In other embodiments, the bed 10 may be integrally casted. Alternatively, each one of the three tracks 11, 12, 13 is integrally formed on a respective structural unit, and the three structural units are assembled with each other afterwards to form the bed 10. Optionally, two of the three tracks 11, 12, 13 (e.g. the first track 11 and the second track 12, or the second track 12 and the third track 13) may be jointly formed on a structural unit, and the rest track (the third track 13 or the first track 11) is formed on another structural unit. The two structural units are afterwards assembled to form the bed 10.
(17) What needs particular explanation is that the three tracks 11, 12, 13 may also be formed on a horizontal plane. Nevertheless, intervals between the three tracks 11, 12, 13 in this configuration must be larger than intervals between the three tracks 11, 12, 13 of the preferred embodiment of the present invention.
(18) With reference to
(19) In the preferred embodiment of the present invention, with reference to
(20) The second supporting assembly 32 is slidably mounted on the two rails 131 of the third track 13, and is movable along the guiding direction D3 of the third track 13. The second supporting assembly 32 is a hydraulic steady rest having two arms 321 and forming a C-shaped structure. The two arms 321 extend above the second track 12, and clamp the cylindrical workpiece to provide support on a middle portion of the cylindrical workpiece.
(21) The third supporting assembly 33 is also slidably mounted on the two rails 131 of the third track 13, and is movable along the guiding direction D3 of the third track 13. The third supporting assembly 33 is a manual steady rest which has a C-shaped configuration, extends above the second track 12, and clamps a middle portion of the cylindrical workpiece to provide support.
(22) The first supporting assembly 31 and the second supporting assembly 32 are merely examples of said supporting assemblies 30. In other embodiments, the complex machine tool for cylindrical workpieces in accordance with the present invention may be equipped without the tailstock assembly. Instead the complex machine tool may be equipped with multiple C-shaped second supporting assemblies 32 to clamp different positions of the workpiece along with the headstock assembly 20. Besides, said second supporting assembly 32 may also be mounted on the first track 11 or the second track 12 depending on demands.
(23) Moreover, in the preferred embodiment of the present invention, the two machining assemblies 40 are respectively a first machining assembly 41 and a second machining assembly 42. The first machining assembly 41 is slidably mounted on the two rails 111 of the first track 11, and is movable along the guiding direction D1 of the first track 11. The first machining assembly 41 is a turning assembly which can process turning on the cylindrical workpiece. Further, the first machining assembly 41 has a turning tool magazine 411, so turning tools may be substituted. Technical features and a method for changing the turning tools are same as the prior art, so detailed descriptions are omitted.
(24) The second machining assembly 42 is slidably mounted on the two rails 111 of the first track 11, and is movable along the guiding direction D1 of the first track 11. The second machining assembly 42 is a milling assembly which can process milling on the cylindrical workpiece. Besides, the first machining assembly 41 or the second machining assembly 42 can also be a grinder in other embodiments, wherein the grinder can process grinding on the cylindrical workpiece.
(25) Positions of the first machining assembly 41 and the second machining assembly 42 may be exchanged, and another said machining assembly 40 may be mounted on the second track 12. For instance, if the complex machine tool for cylindrical workpieces are equipped without a tailstock assembly, the complex machine tool may comprise a boring machine serving as said machining assembly 40. To briefly conclude, the complex machine tool of the present invention may solely finish turning, milling, grinding, and boring processes.
(26) Each one of the supporting assemblies 30 and each one of the machining assemblies 40 are all removable from the bed 10. Hence, a user may increase or replace suitable sorts of the supporting assemblies 30 and sorts of machining assemblies 40 as needed, or the user may reduce the number of the supporting assemblies 30 and the machining assemblies 40 to avoid interferences of movements.
(27) With reference to
(28) With reference to
(29) In the preferred embodiment, the second supporting assembly 32 and the third supporting assembly 33 are both mounted on the third track 13, and the first machining assembly 41 and the second machining assembly 42 are both mounted on the first track 11. However, one of the machining assemblies 40 may be located beside each one of the supporting assemblies 30 in practice, and vice versa.
(30) According to the above-mentioned technical features, through the three tracks 11, 12, 13 of the bed 10, different supporting assemblies 30 and different machining assemblies 40 may be mounted on an appropriate one of the three tracks 11, 12, 13, so the present invention may be applied for demand on multiple machining processes. Further, such configuration effectively avoids the problem of interference which is caused by multiple machining assemblies mounted on the way of the conventional complex machine tool. Also, because the complex machine tool may solely complete multiple different machining processes, and the cylindrical workpiece need not be shifted to different complex machine tools, thus the number of machines in a factory may be reduced, spatial efficiency may be improved, and propagation of errors may be further avoided.
(31) Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
DESCRIPTION OF NUMERICAL CHARACTERS
(32) 10: bed 101: base 102: platform 11: first track 12: second track 13: third track 111, 121, 131: rail 20: headstock assembly 30: supporting assembly 31: first supporting assembly 32: second supporting assembly 321: arm 33: third supporting assembly 40: machining assembly 41: first machining assembly 411: turning tool magazine 42: second machining assembly 50: carriage 51: sliding base 52: cross slide D1, D2, D3: guiding direction