CN203292492U - Four-axis double-system linked combined machining lathe - Google Patents

Four-axis double-system linked combined machining lathe Download PDF

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Publication number
CN203292492U
CN203292492U CN2013203592191U CN201320359219U CN203292492U CN 203292492 U CN203292492 U CN 203292492U CN 2013203592191 U CN2013203592191 U CN 2013203592191U CN 201320359219 U CN201320359219 U CN 201320359219U CN 203292492 U CN203292492 U CN 203292492U
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China
Prior art keywords
slide block
block slot
lathe
shaft coupling
slot
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Expired - Lifetime
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CN2013203592191U
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Chinese (zh)
Inventor
罗文敏
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TAIZHOU ZHONGHAO MACHINERY CO Ltd
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TAIZHOU ZHONGHAO MACHINERY CO Ltd
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Priority to CN2013203592191U priority Critical patent/CN203292492U/en
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Abstract

The utility model discloses a four-axis double-system linked combined machining lathe which comprises a lathe base and a chuck, wherein the edge of the lathe base extends upwards to be higher than a left baffle, a right baffle, a front baffle and a rear baffle, and a cover plate covers on the four baffles. A through groove is formed in the cover plate, and a cutting knife penetrates the through groove to cut off an oil cylinder connected in the lower portion. An outer circle cutting mechanism and an inner circle cutting mechanism are arranged on two sides of the through groove which serves as the center, the outer circle cutting mechanism comprises a routine mechanism A, a rotary oil cylinder is placed on the routine mechanism A, a knife clamp A is arranged on the rotary oil cylinder, the inner circle cutting mechanism comprises a routine mechanism B, and a knife clamp B is arranged on the routine mechanism B. The four-axis double-system linked combined machining lathe is reasonable in design, practical and efficient in material and piece processing.

Description

A kind of four axle dual system interlock combination lathe for machining
Technical field
The utility model relates to a kind of four axle dual system interlock combination lathe for machining.
Background technology
At present, on market, numerically controlled lathe all adopts the twin shaft single system to process materials and parts mostly, the outer processing of materials and parts and internal processing are all undertaken by the tool changing on a tool mounting, and only the travel position by X, Y-axis on the twin shaft single system changes the place that the arrival materials and parts need be processed, stroke when therefore this processing structure causes processing materials and parts is longer, and efficiency is lower.
Summary of the invention
Long and the inefficient technical problem of stroke when the utility model will solve existing numerically controlled lathe and causes processing materials and parts due to the processing structure that adopts the twin shaft single system.
The technical scheme in the invention for solving the above technical problem is:
The utility model discloses a kind of four axle dual system interlock combination lathe for machining, comprises lathe base and chuck, and it is characterized in that: described lathe base seat rim extends upward left-right and front-back four side shields, and four side shield tops are equipped with cover plate; Described cover plate is provided with one and wears groove, and cutoff tool passes from wear groove, and the cutoff tool below connects an oil cylinder; Both sides are respectively equipped with external cutting mechanism and inner circle cutting mechanism centered by wearing groove; Described external cutting mechanism comprises Strok mechanism A, and angling cylinder is placed on Strok mechanism A; Described angling cylinder is provided with tool mounting A; Described inner circle cutting mechanism comprises Strok mechanism B, and described Strok mechanism B is provided with tool mounting B.
Described Strok mechanism A comprises slide block slot A, and slide block slot A is provided with slide block A, and vertically screw mandrel A runs through slide block slot A, slide block A successively; Described vertical screw mandrel A one end is provided with shaft coupling A, and described shaft coupling A one end is connected with servomotor A; Slide block A is provided with slide block slot B, and slide block slot B is provided with slide block B, and cross lead screw B runs through slide block slot B, slide block B successively; Described cross lead screw B one end is provided with shaft coupling B, and shaft coupling B one end is connected with servo motor B; Described slide block B is provided with angling cylinder.
Described Strok mechanism B comprises slide block slot C, and described slide block slot C is placed on slide block slot C pedestal; Slide block slot C is provided with slide block C, and vertically screw mandrel C runs through slide block slot C, slide block C successively; Described vertical screw mandrel C one end is provided with shaft coupling C, and shaft coupling C one end is connected with servomotor C; Described slide block C is provided with slide block slot D, and slide block slot D is provided with slide block D; Described tool mounting B is placed on slide block D; Cross lead screw D runs through slide block slot D, slide block D successively; Described cross lead screw D one end is provided with shaft coupling D, and shaft coupling D one end is connected with servomotor D.
Described tool mounting A longitudinal direction and horizontal direction all are equipped with a handle Excircle machining cutter; Be equipped with the inner circle process tool on described tool mounting B.
The beneficial effects of the utility model are:
Compared with prior art, adopt four axle dual system interlock combination lathe for machining of the utility model structure, four axle dual system processing structures are processed materials and parts at the many increases of materials and parts opposite side X, a Y-axis twin shaft single system, not only the division of labor is clear and definite when materials and parts are carried out outer processing, interior processing, and the value volume and range of product of process tool has also obtained increase, four axle dual system interlock combination lathe for machining of the utility model structure are divided into the inside and outside procedure of twice, obtained shortening on stroke, efficiency is improved.
Description of drawings
Fig. 1 is the stereogram at a visual angle of the utility model four axle dual system interlock combination lathe for machining;
Fig. 2 is the stereogram at another visual angle of the utility model four axle dual system interlock combination lathe for machining;
Fig. 3 is the stereogram at a visual angle of the utility model external cutting mechanism;
Fig. 4 is the stereogram at a visual angle of the utility model inner circle cutting mechanism;
Fig. 5 is the stereogram at a visual angle being used in conjunction with of the utility model external cutting mechanism and inner circle cutting mechanism.
The present invention is further detailed explanation below in conjunction with the drawings and specific embodiments.
The specific embodiment
See also Fig. 1 to Fig. 5, the utility model provides a kind of four axle dual system interlock combination lathe for machining, comprise lathe base (8) and chuck (3), described lathe base (8) seat rim extends upward left-right and front-back four side shields, and four side shield tops are equipped with cover plate (9); Described cover plate (9) is provided with one and wears groove (6), and cutoff tool (4) passes from wear groove (6), and cutoff tool (4) below connects an oil cylinder (5);
Both sides are respectively equipped with external cutting mechanism (1) and inner circle cutting mechanism (2) centered by wearing groove (6); Described external cutting mechanism (1) comprises Strok mechanism A, and angling cylinder (11) is placed on Strok mechanism A; Described angling cylinder (11) is provided with tool mounting A (12); Described inner circle cutting mechanism (2) comprises Strok mechanism B, and described Strok mechanism B is provided with tool mounting B (21).
Described Strok mechanism A comprises slide block slot A (13), and slide block slot A (13) is provided with slide block A (14), and vertically screw mandrel A (15) runs through slide block slot A (13), slide block A (14) successively; Described vertical screw mandrel A (15) one ends are provided with shaft coupling A (16), and described shaft coupling A (16) one ends are connected with servomotor A (17);
Slide block A (14) is provided with slide block slot B (18), and slide block slot B (18) is provided with slide block B (19), and cross lead screw B (110) runs through slide block slot B (18), slide block B (19) successively; Described cross lead screw B (110) one ends are provided with shaft coupling B (111), and shaft coupling B (111) one ends are connected with servo motor B (112); Described slide block B (19) is provided with angling cylinder (11).
Described Strok mechanism B comprises slide block slot C (22), and described slide block slot C (22) is placed on slide block slot C pedestal (7); Slide block slot C (22) is provided with slide block C (23), and vertically screw mandrel C (24) runs through slide block slot C (22), slide block C (23) successively; Described vertical screw mandrel C (24) one ends are provided with shaft coupling C (25), and shaft coupling C (25) one ends are connected with servomotor C (26);
Described slide block C (23) is provided with slide block slot D (27), and slide block slot D (27) is provided with slide block D (28); Described tool mounting B (21) is placed on slide block D (28); Cross lead screw D (29) runs through slide block slot D (27), slide block D (28) successively; Described cross lead screw D (29) one ends are provided with shaft coupling D (210), and shaft coupling D (210) one ends are connected with servomotor D (211).
Described tool mounting A (12) longitudinal direction and horizontal direction all are equipped with a handle Excircle machining cutter (113); Be equipped with inner circle process tool (212) on described tool mounting B (21).
Using method of the present utility model is as follows:
the utility model four axle dual system interlock combination lathe for machining are provided with the feed mechanism that is used in conjunction with lathe chuck (3), cylindrical materials and parts with needs processing, be placed on the bracing frame in feed mechanism, send in lathe, pass from chuck (3), after arriving assigned address, chuck (3) is locked materials and parts, meanwhile, feed mechanism is out of service, drive the assigned address of Excircle machining cutter (113) and inner circle process tool (212) arrival processing by servomotor, external cutting mechanism controls two Excircle machining cutters (113) rotation transposing by angling cylinder (11), the inner circle cutting mechanism is controlled cross lead screw D (29) band movable slider D (28) motion by servomotor D (211), after reaching bite, drive cylindrical materials and parts gyration by the revolution oil hydraulic cylinder that is complementary with chuck (3) in lathe, external cutting mechanism and inner circle cutting mechanism are completed cutting task each other, when the cutting task is completed, external cutting mechanism and the rapid return of inner circle cutting mechanism, being located at oil cylinder (5) in lathe controls cutoff tool (4) and moves upward materials and parts are downcut, after completing one-stop operation, cutoff tool (4) is return original place, feed mechanism continues charging, start operation for the second time, by the feeding of feed mechanism discontinuity, can constantly process materials and parts, until cylindrical materials and parts are finished, the utility model is reasonable in design, practical, and the efficiency of processing materials and parts is efficient.

Claims (5)

1. an axle dual system interlock combination lathe for machining, comprise lathe base and chuck, and it is characterized in that: described lathe base seat rim extends upward left-right and front-back four side shields, and four side shield tops are equipped with cover plate; Described cover plate is provided with one and wears groove, and cutoff tool passes from wear groove, and the cutoff tool below connects an oil cylinder;
Both sides are respectively equipped with external cutting mechanism and inner circle cutting mechanism centered by wearing groove; Described external cutting mechanism comprises Strok mechanism A, and angling cylinder is placed on Strok mechanism A; Described angling cylinder is provided with tool mounting A; Described inner circle cutting mechanism comprises Strok mechanism B, and described Strok mechanism B is provided with tool mounting B.
2. lathe for machining are made up in a kind of four axle dual system interlocks according to claim 1, and it is characterized in that: described Strok mechanism A comprises slide block slot A, and slide block slot A is provided with slide block A, and vertically screw mandrel A runs through slide block slot A, slide block A successively; Described vertical screw mandrel A one end is provided with shaft coupling A, and described shaft coupling A one end is connected with servomotor A; Slide block A is provided with slide block slot B, and slide block slot B is provided with slide block B, and cross lead screw B runs through slide block slot B, slide block B successively; Described cross lead screw B one end is provided with shaft coupling B, and shaft coupling B one end is connected with servo motor B; Described slide block B is provided with angling cylinder.
3. lathe for machining are made up in a kind of four axle dual system interlocks according to claim 1, and it is characterized in that: described Strok mechanism B comprises slide block slot C, and described slide block slot C is placed on slide block slot C pedestal; Slide block slot C is provided with slide block C, and vertically screw mandrel C runs through slide block slot C, slide block C successively; Described vertical screw mandrel C one end is provided with shaft coupling C, and shaft coupling C one end is connected with servomotor C; Described slide block C is provided with slide block slot D, and slide block slot D is provided with slide block D; Described tool mounting B is placed on slide block D; Cross lead screw D runs through slide block slot D, slide block D successively; Described cross lead screw D one end is provided with shaft coupling D, and shaft coupling D one end is connected with servomotor D.
4. lathe for machining are made up in a kind of four axle dual system interlocks according to claim 1, and it is characterized in that: described tool mounting A longitudinal direction and horizontal direction all are equipped with a handle Excircle machining cutter.
5. a kind of four axle dual system interlock combination lathe for machining according to claim 1, is characterized in that: be equipped with the inner circle process tool on described tool mounting B.
CN2013203592191U 2013-06-22 2013-06-22 Four-axis double-system linked combined machining lathe Expired - Lifetime CN203292492U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2013203592191U CN203292492U (en) 2013-06-22 2013-06-22 Four-axis double-system linked combined machining lathe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2013203592191U CN203292492U (en) 2013-06-22 2013-06-22 Four-axis double-system linked combined machining lathe

Publications (1)

Publication Number Publication Date
CN203292492U true CN203292492U (en) 2013-11-20

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CN2013203592191U Expired - Lifetime CN203292492U (en) 2013-06-22 2013-06-22 Four-axis double-system linked combined machining lathe

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107598189A (en) * 2017-10-20 2018-01-19 浙江柏思达齿轮有限公司 A kind of in-car cylindrical integrated machine tool and its processing method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107598189A (en) * 2017-10-20 2018-01-19 浙江柏思达齿轮有限公司 A kind of in-car cylindrical integrated machine tool and its processing method

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Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: Four-axis double-system linked combined machining lathe

Effective date of registration: 20160927

Granted publication date: 20131120

Pledgee: Taizhou Luqiao rural cooperative bank, Zhejiang

Pledgor: TAIZHOU ZHONGHAO MACHINE CO.,LTD.

Registration number: 2016990000818

PLDC Enforcement, change and cancellation of contracts on pledge of patent right or utility model
PC01 Cancellation of the registration of the contract for pledge of patent right

Date of cancellation: 20181225

Granted publication date: 20131120

Pledgee: Zhejiang Luqiao Taizhou rural commercial bank Limited by Share Ltd.

Pledgor: TAIZHOU ZHONGHAO MACHINE CO.,LTD.

Registration number: 2016990000818

PC01 Cancellation of the registration of the contract for pledge of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: Four-axis double-system linked combined machining lathe

Effective date of registration: 20181226

Granted publication date: 20131120

Pledgee: Zhejiang Luqiao Taizhou rural commercial bank Limited by Share Ltd.

Pledgor: TAIZHOU ZHONGHAO MACHINE CO.,LTD.

Registration number: 2018330000523

PE01 Entry into force of the registration of the contract for pledge of patent right
PM01 Change of the registration of the contract for pledge of patent right

Change date: 20181225

Registration number: 2016990000818

Pledgee after: Zhejiang Luqiao Taizhou rural commercial bank Limited by Share Ltd.

Pledgee before: Taizhou Luqiao rural cooperative bank, Zhejiang

PM01 Change of the registration of the contract for pledge of patent right
CX01 Expiry of patent term

Granted publication date: 20131120

CX01 Expiry of patent term