CN102357837A - Automatically-rotary surface-replacing device for engraving shoe mould - Google Patents
Automatically-rotary surface-replacing device for engraving shoe mould Download PDFInfo
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- CN102357837A CN102357837A CN2011103349519A CN201110334951A CN102357837A CN 102357837 A CN102357837 A CN 102357837A CN 2011103349519 A CN2011103349519 A CN 2011103349519A CN 201110334951 A CN201110334951 A CN 201110334951A CN 102357837 A CN102357837 A CN 102357837A
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- turbine
- engraving
- wheel decelerator
- worm screw
- automatically
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Abstract
The invention discloses an automatically-rotary surface-replacing device for engraving a shoe mould. The automatically-rotary surface-replacing device comprises a turbine speed reducer (1), a positioning clamping base (2) and a servo motor (3). The defects of low efficiency, low accuracy, low quality and high cost in the prior art are overcome by using the technical scheme that: when operating, the automatically-rotary surface-replacing device which consists of the servo motor, the turbine speed reducer and the positioning clamping base is arranged on a workbench of a numerical control engraving and milling machine, a blank of the shoe mould is fixed on the positioning clamping base, a numerical control system of the numerical control engraving and milling machine controls the servo motor according to a machining program to drive the turbine speed reducer and the positioning clamping base to drive the blank of the shoe mould to rotate, and the blank is engraved in coordination with an electric main shaft and an engraving and milling cutting tool. Surfaces are replaced in a numerical control automatically-rotary mode, so that the defect of clamping and aligning the shoe mould repeatedly in the engraving and milling process is overcome, the shoe mould can be machined automatically in modes of one person for multiple machines and unmanned duty, and the aims of improving efficiency, accuracy and quality and reducing cost are fulfilled.
Description
Technical field
The present invention relates to the device that a kind of carving mills processing footwear mould, be meant that specifically carving mills processing sole model on numerical controlled engraving and milling device, be used to rotate the automatic rotation face change device of a kind of Carving Machining footwear mould of changing machined surface.
Background technology
Processing sole model on numerical controlled engraving and milling device; Need through rough milling, finish-milling, engraving operation, the per pass operation all need be rotated the machined surface of transposing model, a common footwear mould only side just needs to rotate four machined surfaces of transposing; Prior art adopts and changes machined surface by artificial clamping; Each clamping of per pass operation all needs centering calibration reference face and leading zero's again, and low, the low precision of efficient very easily produces defective products; Add man-hour, every numerical controlled engraving and milling device all needs the staff on duty operation, and cost of labor occupies high, and therefore, prior art exists that efficient is low, low precision, quality is bad, cost is high problems and shortcomings.
Summary of the invention
Problems and shortcomings to above-mentioned prior art existence; The present invention adopts the device that is made up of servomotor, pot wheel decelerator, positioning and clamping seat; During work this device is contained on the workbench of numerical controlled engraving and milling device, the blank of footwear mould is fixed on the positioning and clamping seat, by the digital control system of numerical controlled engraving and milling device press procedure control driven by servomotor pot wheel decelerator, the positioning and clamping seat drives the rotation of footwear mould blank; Corresponding matching electricity main shaft, carving mill the technical scheme that the cutlery carving mills processing; A kind of automatic rotation face change device of Carving Machining footwear mould is provided, is intended to, make the carving of footwear mould mill the drawback that the multiple clamping centering is avoided in processing through the automatic Rotation With Changing face of numerical control; Realize that people's multimachine, unmanned process automatically, reach the purpose of raising the efficiency, improving precision, improve quality, reduce cost.
The objective of the invention is to realize like this: a kind of automatic rotation face change device of Carving Machining footwear mould; Comprise a pot wheel decelerator, positioning and clamping seat, servomotor, wherein: 40: 1 the decelerator of described pot wheel decelerator for constituting by shell, turbine, worm screw; Said shell is for carrying the steel box section of the hollow of holding said turbine, worm screw, and the bottom of shell is called base, and the top of shell is called datum level, is parallel to each other above the following and said datum level of said base; Said turbine, worm screw are placed in the chamber of enclosure, threaded portion of worm screw and turbine teeth portion sliding engaged, the mutual projection quadrature of the axis of worm screw and the axis of turbine; The axle portion of worm screw is the input of pot wheel decelerator; The center fixation of turbine is provided with the rotating shaft of steel, and the side of the protruding shell of an end of said rotating shaft is called the output of pot wheel decelerator;
Described positioning and clamping seat is for carrying the upright steel tabular component of rectangle of clamping footwear mould blank;
Described servomotor is the electric execution element that is rotated by input signal control;
The one side of positioning and clamping seat is fixedly connected with the output quadrature of pot wheel decelerator; The another side of positioning and clamping seat is called the clamping face, is used for clamping footwear mould blank; Servomotor is fixed on pot side of wheel decelerator input, and the armature spindle of servomotor is connected with the input of pot wheel decelerator.
Operation principle and beneficial effect
During application; The base of pot wheel decelerator is installed on numerical controlled engraving and milling device workbench above; The blank of footwear mould is fixed on the clamping face of positioning and clamping seat; The pilot of servomotor is connected with the digital control system of numerical controlled engraving and milling device, by the digital control system of numerical controlled engraving and milling device press procedure control servomotor and drive a pot wheel decelerator, the positioning and clamping seat drives the rotation of footwear mould blank, corresponding matching electricity main shaft, carving mill cutlery and carve and mill processing; Clamping can accomplish automatically from rough mill, the carving of finish-milling, engraving mills the processing overall process; Owing to add and need not man-hour frequently to change machined surface by artificial clamping; Therefore can realize that people's multimachine, unmanned process automatically, reduce cost, avoid the drawback of multiple clamping centering to save manual work; Datum level is to be used for numerical controlled engraving and milling device to confirm initial processing zero point and tool changing tool setting purposes.
Above-mentioned; The present invention adopts the device that is made up of servomotor, pot wheel decelerator, positioning and clamping seat; During work this device is contained on the workbench of numerical controlled engraving and milling device; The blank of footwear mould is fixed on the positioning and clamping seat, presses procedure control driven by servomotor pot wheel decelerator, the rotation of positioning and clamping seat drive footwear mould blank by the digital control system of numerical controlled engraving and milling device, corresponding matching electricity main shaft, carving mill the technical scheme that the cutlery carving mills processing; Overcome that prior art exists that efficient is low, low precision, quality is bad, cost is high problems and shortcomings; The automatic rotation face change device of a kind of Carving Machining footwear mould that is provided through the automatic Rotation With Changing face of numerical control, makes the carving of footwear mould mill the drawback that the multiple clamping centering has been avoided in processing; Realize that people's multimachine, unmanned process automatically, reached the purpose of raising the efficiency, improving precision, improve quality, reduce cost.
Description of drawings
Fig. 1 is the structural representation of the automatic rotation face change device of a kind of Carving Machining footwear mould of the present invention;
Fig. 2 is a kind of Facad structure sketch map of footwear mechanograph;
Fig. 3 is the automatic rotation face change device of a kind of Carving Machining footwear mould of the present invention, is applied in the principle schematic on the numerical controlled engraving and milling device.
Embodiment below in conjunction with in the accompanying drawing does further explain to the present invention, but should not be construed as any restriction of the present invention.
Among the figure: pot wheel decelerator 1, rotating shaft 11, base 12, datum level 13, positioning and clamping seat 2, servomotor 3, workbench 01, numerical controlled engraving and milling device 02, footwear mould 03, electric main shaft 04, carving mill cutlery 05.
The specific embodiment
Consult Fig. 1~Fig. 3; The automatic rotation face change device of a kind of Carving Machining footwear mould of the present invention; Comprise pot wheel decelerator 1, positioning and clamping seat 2, servomotor 3, wherein: described pot wheel decelerator 1 is 40: 1 the decelerator that is made up of shell, turbine, worm screw; Said shell is for carrying the steel box section of the hollow of holding said turbine, worm screw, and the bottom of shell is called base 12, and the top of shell is called datum level 13, is parallel to each other above the following and said datum level 13 of said base 12; Said turbine, worm screw are placed in the chamber of enclosure, threaded portion of worm screw and turbine teeth portion sliding engaged, the mutual projection quadrature of the axis of worm screw and the axis of turbine; The axle portion of worm screw is the input of pot wheel decelerator 1; The center fixation of turbine is provided with the rotating shaft 11 of steel, and the side of the protruding shell of an end of said rotating shaft 11 is called the output of pot wheel decelerator 1;
Described positioning and clamping seat 2 is for carrying the upright steel tabular component of rectangle of clamping footwear mould 03 blank;
Described servomotor 3 is the electric execution element that is rotated by input signal control;
The one side of positioning and clamping seat 2 is fixedly connected with the output quadrature of pot wheel decelerator 1; The another side of positioning and clamping seat 2 is called the clamping face, is used for clamping footwear mould 03 blank; Servomotor 3 is fixed on the side of pot wheel decelerator 1 input, and the armature spindle of servomotor 3 is connected with the input of pot wheel decelerator 1.
Operation principle and beneficial effect
During application; The base 12 of pot wheel decelerator 1 is installed on numerical controlled engraving and milling device 02 workbench 01 above; The blank of footwear mould 03 is fixed on the clamping face of positioning and clamping seat 2; The pilot of servomotor 3 is connected with the digital control system of numerical controlled engraving and milling device 02, by the digital control system of numerical controlled engraving and milling device 02 press procedure control servomotor 3 and drive a pot wheel decelerator 1, positioning and clamping seat 2 drives the rotation of footwear moulds 03 blank, corresponding matching electricity main shaft 04, carving mill cutlery 05 and carve and mill processing; Clamping can accomplish automatically from rough mill, the carving of finish-milling, engraving mills the processing overall process; Owing to add and need not man-hour frequently to change machined surface by artificial clamping; Therefore can realize that people's multimachine, unmanned process automatically, reduce cost, avoid the drawback of multiple clamping centering to save manual work; Datum level 13 is to be used for numerical controlled engraving and milling device 02 to confirm initial processing zero point and tool changing tool setting purposes.
Claims (1)
1. the automatic rotation face change device of a Carving Machining footwear mould; It is characterized in that: comprise a pot wheel decelerator (1), positioning and clamping seat (2), servomotor (3), wherein: 40: 1 the decelerator of described pot wheel decelerator (1) for constituting by shell, turbine, worm screw; Said shell is for carrying the steel box section of the hollow of holding said turbine, worm screw, and the bottom of shell is called base (12), and the top of shell is called datum level (13), is parallel to each other above the following and said datum level (13) of said base (12); Said turbine, worm screw are placed in the chamber of enclosure, threaded portion of worm screw and turbine teeth portion sliding engaged, the mutual projection quadrature of the axis of worm screw and the axis of turbine; The axle portion of worm screw is the input of pot wheel decelerator (1); The center fixation of turbine is provided with the rotating shaft (11) of steel, and the side of the protruding shell of an end of said rotating shaft (11) is called the output of a pot wheel decelerator (1);
Described positioning and clamping seat (2) is for carrying the upright steel tabular component of rectangle of clamping footwear moulds (03) blank;
Described servomotor (3) is the electric execution element that is rotated by input signal control;
The one side of positioning and clamping seat (2) is fixedly connected with the output quadrature of pot wheel decelerator (1); The another side of positioning and clamping seat (2) is called the clamping face, is used for clamping footwear mould (03) blank; Servomotor (3) is fixed on the side of a pot wheel decelerator (1) input, and the armature spindle of servomotor (3) is connected with the input of pot wheel decelerator (1).
Priority Applications (1)
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CN2011103349519A CN102357837A (en) | 2011-10-20 | 2011-10-20 | Automatically-rotary surface-replacing device for engraving shoe mould |
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CN2011103349519A CN102357837A (en) | 2011-10-20 | 2011-10-20 | Automatically-rotary surface-replacing device for engraving shoe mould |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105033671A (en) * | 2015-08-20 | 2015-11-11 | 宁波市凯博数控机械有限公司 | Two-shaft numerical control device used for machining shoe molds |
CN108750686A (en) * | 2018-07-23 | 2018-11-06 | 浙江琦星电子有限公司 | The method of feeding of automation lifting rollway |
CN111924483A (en) * | 2020-07-09 | 2020-11-13 | 江苏安全技术职业学院 | Turning device for machining |
Citations (6)
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US4010502A (en) * | 1975-05-15 | 1977-03-08 | Circle Machine Co., Inc. | Apparatus for edge processing work and particularly non-circular work |
JPS57115202A (en) * | 1980-12-31 | 1982-07-17 | Kenichi Tanose | Method and apparatus for shaping and grinding footwear sole |
WO2004073442A1 (en) * | 2003-02-21 | 2004-09-02 | Meccanica Pio Simoni Ditta Individuale | Machine for machining shoe soles |
CN101032765A (en) * | 2007-04-11 | 2007-09-12 | 孙莹 | Computerized numerical controlled engraving and milling machine with symmetrical double station of shoe modules |
CN201116054Y (en) * | 2007-08-28 | 2008-09-17 | 吴善旺 | Workpiece clamping device of numerically-controlled stereo carving machine |
CN202292283U (en) * | 2011-10-20 | 2012-07-04 | 宁波凯盛高科数控机床有限公司 | Automatic rotating surface changing device for engraving and machining shoe mold |
-
2011
- 2011-10-20 CN CN2011103349519A patent/CN102357837A/en active Pending
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4010502A (en) * | 1975-05-15 | 1977-03-08 | Circle Machine Co., Inc. | Apparatus for edge processing work and particularly non-circular work |
JPS57115202A (en) * | 1980-12-31 | 1982-07-17 | Kenichi Tanose | Method and apparatus for shaping and grinding footwear sole |
WO2004073442A1 (en) * | 2003-02-21 | 2004-09-02 | Meccanica Pio Simoni Ditta Individuale | Machine for machining shoe soles |
CN101032765A (en) * | 2007-04-11 | 2007-09-12 | 孙莹 | Computerized numerical controlled engraving and milling machine with symmetrical double station of shoe modules |
CN201116054Y (en) * | 2007-08-28 | 2008-09-17 | 吴善旺 | Workpiece clamping device of numerically-controlled stereo carving machine |
CN202292283U (en) * | 2011-10-20 | 2012-07-04 | 宁波凯盛高科数控机床有限公司 | Automatic rotating surface changing device for engraving and machining shoe mold |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105033671A (en) * | 2015-08-20 | 2015-11-11 | 宁波市凯博数控机械有限公司 | Two-shaft numerical control device used for machining shoe molds |
CN108750686A (en) * | 2018-07-23 | 2018-11-06 | 浙江琦星电子有限公司 | The method of feeding of automation lifting rollway |
CN111924483A (en) * | 2020-07-09 | 2020-11-13 | 江苏安全技术职业学院 | Turning device for machining |
CN111924483B (en) * | 2020-07-09 | 2021-07-30 | 江苏安全技术职业学院 | Turning device for machining |
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Application publication date: 20120222 |