CN105269086A - Screw numerical control grinding machine - Google Patents

Screw numerical control grinding machine Download PDF

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Publication number
CN105269086A
CN105269086A CN201510654328.XA CN201510654328A CN105269086A CN 105269086 A CN105269086 A CN 105269086A CN 201510654328 A CN201510654328 A CN 201510654328A CN 105269086 A CN105269086 A CN 105269086A
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CN
China
Prior art keywords
gripper shoe
screw mandrel
carriage
horizontal slip
slip device
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201510654328.XA
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Chinese (zh)
Inventor
许林
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Chongqing Dacheng Youmei Digital Technology Co Ltd
Original Assignee
Chongqing Dacheng Youmei Digital Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Chongqing Dacheng Youmei Digital Technology Co Ltd filed Critical Chongqing Dacheng Youmei Digital Technology Co Ltd
Priority to CN201510654328.XA priority Critical patent/CN105269086A/en
Publication of CN105269086A publication Critical patent/CN105269086A/en
Pending legal-status Critical Current

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Abstract

The invention discloses a screw numerical control grinding machine which comprises a workbench, a first horizontal sliding device, a second horizontal sliding device, a workpiece clamping mechanism, a grinding abrasive wheel and an abrasive wheel dressing device. The abrasive wheel dressing device comprises a sliding table base. An x-direction sliding device is arranged on the sliding table base and provided with a y-direction sliding device. The y-direction sliding device is provided with two idler wheel motors. The included angle between the axes of output shafts of the two idler wheel motors ranges from 45 degrees to 48 degrees. Diamond dressing wheels are installed on the output shafts of the two idler wheel motors respectively. By the adoption of the scheme, the screw numerical control grinding machine has the remarkable beneficial effects that the moving distances of the diamond dressing wheels in the x direction and the y direction can be accurately controlled, and the two diamond dressing wheels can be accurately located in any position in a plane and are matched for dressing the grinding abrasive wheel; the dressing device is simple and compact in structure and small in size, the dressing effect on a screw is better, and the grinding effect of the screw numerical control grinding machine is good.

Description

Screw rod numerically control grinder
Technical field
The present invention relates to a kind of grinding machine, be specifically related to a kind of screw rod numerically control grinder.
Background technology
Widely, as CNC machine, numerically controlled lathe, injection machine, Linear cut, grinding machine, milling machine, PCB drilling machine, carving machine, carves milling machine, spark discharge machine, biting teeth machine, planer, large-scale vertical lathe gantry mill etc. in the application of screw rod on various machine.The processing of screw rod is carried out on screw rod grinding machine, is arranged on emery wheel on screw rod grinding machine by High Rotation Speed grinding, processing screw flight.Type device repaiied by the emery wheel be arranged on screw rod grinding machine can repair the various shaping emery wheels that are made up of straight line and circular arc with the needs of satisfied processing, to ensure the parameters such as the angle of emery wheel, thickness and concentricity, thus ensures the crudy of screw rod.It is more complicated, not compact that type device structure repaiied by the emery wheel of existing screw rod grinding machine, grinding machine takes up room comparatively large, and it is bad to repair type effect.
Summary of the invention
For solving above technical problem, the invention provides a kind of screw rod numerically control grinder.
Scheme is as follows:
A kind of screw rod numerically control grinder, comprise workbench, this workbench is provided with the first horizontal slip device, this the first horizontal slip device is provided with the second horizontal slip device, described first horizontal slip device is mutually vertical with the second horizontal slip device glide direction, described first horizontal slip device is provided with workpiece clamping mechanism, described second horizontal slip device is provided with abrasive grinding wheel and type device repaiied by emery wheel, its key is: described emery wheel is repaiied type device and comprised the slide unit base be arranged on the second horizontal slip device, this slide unit base is provided with x to carriage, this x is parallel with described first horizontal slip device glide direction to carriage, on carriage, y is provided with to carriage in this x-axis, this y to the glide direction of carriage perpendicular to horizontal plane, on carriage, two roller motors are provided with at described y, angle between the output shaft axis of two described roller motors is 45 ~ 48 °, the output shaft of two described roller motors is separately installed with and repaiies type emery wheel, described abrasive grinding wheel is between two described roller motors,
Described x comprises two the first line slideways be parallel to each other to carriage, the slide rail of described first line slideway is fixedly mounted on the upper surface of described slide unit base, the slide block of two described first line slideways is installed with same first gripper shoe, the first screw mandrel contiguous block is fixedly installed at the lower surface of this first gripper shoe, this the first screw mandrel contiguous block is between two described first line slideways, on this first screw mandrel contiguous block, screw thread is equipped with x to screw mandrel, in the edge of described slide unit base, the first buncher is installed, described x is connected to one end of screw mandrel and the output shaft axial restraint of this first buncher,
Described y comprises two the second line slideways be parallel to each other to carriage, the slide rail of described second line slideway is fixedly mounted on the upper surface of described first gripper shoe, the slide block of two described second line slideways is installed with same second gripper shoe, the second screw mandrel contiguous block is fixedly installed at the lower surface of this second gripper shoe, this the second screw mandrel contiguous block is between two described second line slideways, on this second screw mandrel contiguous block, screw thread is equipped with y to screw mandrel, in the edge of described first gripper shoe, the second buncher is installed, described y is connected to one end of screw mandrel and the output shaft axial restraint of this second buncher.
The remarkable result of above technical scheme is adopted to be, orthogonal x to carriage and y to carriage respectively along both direction sliding extension, form two dimensional surface, make each point place motion in this two dimensional surface of type of the repairing emery wheel of two roller driven by motor, abrasive grinding wheel is repaired, structure is simple, compact, compact; Two the first line slideways make x more steady to slip, and to be arranged on the lower surface of the first gripper shoe to the first screw mandrel contiguous block that wire rod thread is connected by with x, make x compacter to the structure of carriage, volume is smaller and more exquisite; Two the second line slideways make y more steady to slip, and to be arranged on the lower surface of the second gripper shoe to the second screw mandrel contiguous block that wire rod thread is connected by with y, make y compacter to the structure of carriage, the volume of screw rod numerically control grinder is smaller and more exquisite.
In order to better realize the present invention, can be further:
Above-mentioned rollers motor is fixedly mounted on the upper surface of described second gripper shoe, two described roller motors are all near the edge of described second gripper shoe, the output shaft of two described roller motors is all parallel with described second gripper shoe, the output shaft of two described roller motors stretches out the edge of described second gripper shoe respectively, the output shaft of two described roller motors about y to symmetry.Adopt above technical scheme, type is repaiied to abrasive grinding wheel effective.
Above-mentioned first buncher and the second buncher are servomotor.Adopt above technical scheme, servomotor can to screw mandrel and y to the rotation of screw mandrel, improve and repair the kinematic accuracy of type diamond wheel on x direction and y direction by control x accurately.
Above-mentioned first line slideway and the second line slideway are roller line slideway.Adopt above technical scheme, the precision of roller line slideway is high, convenient control.
Beneficial effect: adopt screw rod numerically control grinder of the present invention, can control accurately to repair the displacement of type diamond wheel on x direction and y direction, repair any position that type diamond wheel accurately can be positioned at plane for two, repair the cooperation of type diamond wheel for two to repair abrasive grinding wheel, repair that type device structure is simple, compact, volume is little, to type of the repairing better effects if of screw rod, screw rod numerically control grinder ground effect is good.
Accompanying drawing explanation
Fig. 1 is structural representation of the present invention;
Detailed description of the invention
As shown in Figure 1, a kind of screw rod numerically control grinder, comprise workbench a, this workbench a is provided with the first horizontal slip device b, this the first horizontal slip device b is provided with the second horizontal slip device c, described first horizontal slip device b is mutually vertical with the second horizontal slip device c glide direction, described first horizontal slip device b is provided with workpiece clamping mechanism d, described second horizontal slip device c is provided with abrasive grinding wheel e and type device f repaiied by emery wheel, described emery wheel is repaiied type device f and is comprised the slide unit base 1 be arranged on the second horizontal slip device c, this slide unit base 1 is provided with x to carriage 2, this x is parallel with described first horizontal slip device b glide direction to carriage 2, on carriage 2, y is provided with to carriage 3 in this x-axis, this y to the glide direction of carriage 3 perpendicular to horizontal plane, on carriage 3, two roller motors 5 are provided with at described y, angle between the output shaft axis of two described roller motors 5 is 45 ~ 48 °, the output shaft of two described roller motors 5 is separately installed with and repaiies type emery wheel 6, described abrasive grinding wheel e is between two described roller motors 5,
Described x comprises two the first line slideways 21 be parallel to each other to carriage 2, the slide rail of described first line slideway 21 is fixedly mounted on the upper surface of described slide unit base 1, the slide block of two described first line slideways 21 is installed with same first gripper shoe 22, the first screw mandrel contiguous block 23 is fixedly installed at the lower surface of this first gripper shoe 22, this the first screw mandrel contiguous block 23 is between two described first line slideways 21, on this first screw mandrel contiguous block 23, screw thread is equipped with x to screw mandrel 24, in the edge of described slide unit base 1, first buncher 25 is installed, described x is connected to one end of screw mandrel 24 and the output shaft axial restraint of this first buncher 25,
Described y comprises two the second line slideways 31 be parallel to each other to carriage 3, the slide rail of described second line slideway 31 is fixedly mounted on the upper surface of described first gripper shoe 22, the slide block of two described second line slideways 31 is installed with same second gripper shoe 32, the second screw mandrel contiguous block 33 is fixedly installed at the lower surface of this second gripper shoe 32, this the second screw mandrel contiguous block 33 is between two described second line slideways 31, on this second screw mandrel contiguous block 33, screw thread is equipped with y to screw mandrel 34, in the edge of described first gripper shoe 22, second buncher 35 is installed, described y is connected to one end of screw mandrel 34 and the output shaft axial restraint of this second buncher 35.
Described roller motor 5 is fixedly mounted on the upper surface of described second gripper shoe 32, two described roller motors 5 are all near the edge of described second gripper shoe 32, the output shaft of two described roller motors 5 is all parallel with described second gripper shoe 32, the output shaft of two described roller motors 5 stretches out the edge of described second gripper shoe 32 respectively, the output shaft of two described roller motors 5 about y to symmetry.

Claims (1)

1. a screw rod numerically control grinder, comprise workbench (a), this workbench (a) is provided with the first horizontal slip device (b), this first horizontal slip device (b) is provided with the second horizontal slip device (c), described first horizontal slip device (b) is mutually vertical with the second horizontal slip device (c) glide direction, described first horizontal slip device (b) is provided with workpiece clamping mechanism (d), described second horizontal slip device (c) is provided with abrasive grinding wheel (e) and repaiies type device (f) with emery wheel, it is characterized in that: described emery wheel is repaiied type device (f) and comprised the slide unit base (1) be arranged in the second horizontal slip device (c), this slide unit base (1) is provided with x to carriage (2), this x is parallel with described first horizontal slip device (b) glide direction to carriage (2), on carriage (2), y is provided with to carriage (3) in this x-axis, this y to the glide direction of carriage (3) perpendicular to horizontal plane, on carriage (3), two roller motors (5) are provided with at described y, angle between the output shaft axis of two described roller motors (5) is 46 ~ 47 °, the output shaft of two described roller motors (5) is separately installed with and repaiies type emery wheel (6), described abrasive grinding wheel (e) is positioned between two described roller motors (5), described x comprises two the first line slideways (21) be parallel to each other to carriage (2), the slide rail of described first line slideway (21) is fixedly mounted on the upper surface of described slide unit base (1), the slide block of two described first line slideways (21) is installed with same first gripper shoe (22), the first screw mandrel contiguous block (23) is fixedly installed at the lower surface of this first gripper shoe (22), this the first screw mandrel contiguous block (23) is positioned between two described first line slideways (21), x is equipped with to screw mandrel (24) at the upper screw thread of this first screw mandrel contiguous block (23), in the edge of described slide unit base (1), the first buncher (25) is installed, described x is connected to one end of screw mandrel (24) with the output shaft axial restraint of this first buncher (25), described y comprises two the second line slideways (31) be parallel to each other to carriage (3), the slide rail of described second line slideway (31) is fixedly mounted on the upper surface of described first gripper shoe (22), the slide block of two described second line slideways (31) is installed with same second gripper shoe (32), the second screw mandrel contiguous block (33) is fixedly installed at the lower surface of this second gripper shoe (32), this the second screw mandrel contiguous block (33) is positioned between two described second line slideways (31), y is equipped with to screw mandrel (34) at the upper screw thread of this second screw mandrel contiguous block (33), in the edge of described first gripper shoe (22), the second buncher (35) is installed, described y is connected to one end of screw mandrel (34) with the output shaft axial restraint of this second buncher (35), described roller motor (5) is fixedly mounted on the upper surface of described second gripper shoe (32), two described roller motors (5) are all near the edge of described second gripper shoe (32), the output shaft of two described roller motors (5) is all parallel with described second gripper shoe (32), the output shaft of two described roller motors (5) stretches out the edge of described second gripper shoe (32) respectively, the output shaft of two described roller motors (5) about y to symmetry, described first buncher (25) and the second buncher (35) are DC brushless motor, described first line slideway (21) and the second line slideway (31) are roller line slideway.
CN201510654328.XA 2015-10-12 2015-10-12 Screw numerical control grinding machine Pending CN105269086A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510654328.XA CN105269086A (en) 2015-10-12 2015-10-12 Screw numerical control grinding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510654328.XA CN105269086A (en) 2015-10-12 2015-10-12 Screw numerical control grinding machine

Publications (1)

Publication Number Publication Date
CN105269086A true CN105269086A (en) 2016-01-27

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510654328.XA Pending CN105269086A (en) 2015-10-12 2015-10-12 Screw numerical control grinding machine

Country Status (1)

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CN (1) CN105269086A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106892556A (en) * 2017-04-28 2017-06-27 成都中住光纤有限公司 A kind of on-line control system of drawing optical fibers chuck

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106892556A (en) * 2017-04-28 2017-06-27 成都中住光纤有限公司 A kind of on-line control system of drawing optical fibers chuck

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Application publication date: 20160127