CN208759253U - Lower groove grinding device in a kind of automatic loading/unloading formula - Google Patents

Lower groove grinding device in a kind of automatic loading/unloading formula Download PDF

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Publication number
CN208759253U
CN208759253U CN201820620186.4U CN201820620186U CN208759253U CN 208759253 U CN208759253 U CN 208759253U CN 201820620186 U CN201820620186 U CN 201820620186U CN 208759253 U CN208759253 U CN 208759253U
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Prior art keywords
millstone
mounting base
lower groove
component
polishing
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CN201820620186.4U
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Chinese (zh)
Inventor
吴加富
缪磊
马纪飞
郭依优
王跃跃
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Suzhou RS Technology Co Ltd
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Suzhou RS Technology Co Ltd
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Abstract

The utility model discloses lower groove grinding devices in a kind of automatic loading/unloading formula, comprising: upper lower groove sander;The charging and discharging mechanism being connected to each other with upper lower groove sander;And the secondary positioning mechanism in charging and discharging mechanism, wherein charging and discharging mechanism includes: rack;And feeding guide rail and feeding guide in rack, upper lower groove sander includes: fixing seat;The attachment base being slidably connected on fixing seat;And it is slidably connected to the mill mounting base on attachment base, according to the utility model, its is small in size, it is compact-sized, percent of automatization with higher, improve loading and unloading efficiency, the workpiece that polishing can not only be treated carries out stable holding, it can also realize the degree of automation of piece-holder and polishing, clamping process and the mutually matched matching degree of polishing operation can also be improved simultaneously, moreover it is possible to carry out online finishing to mill after abrasion occurs in mill, grinding accuracy and grinding efficiency are substantially increased.

Description

Lower groove grinding device in a kind of automatic loading/unloading formula
Technical field
The utility model relates to non-standard automatic field, in particular to lower groove polishing dress in a kind of automatic loading/unloading formula It sets.
Background technique
It on non-standard automatic process line, generally requires to use sander, for being played the workpiece after processing Grinding and polishing light is upper and lower surface groove body for the workpiece position for needing to polish to meet the surface roughness of design, existing to beat The step of mill structure is complicated, and the degree of automation is lower, needs human assistance is more, thereby results in that grinding efficiency is low and polishing essence Spend it is low, in addition, existing sander, which will also lack, will not influence while workpiece stable holding and the microscope carrier machine of grinding efficiency Structure, causes in bruting process that workpiece is easy to loosen or fixture causes to interfere to polishing position, further leads to grinding accuracy Low and grinding efficiency is low, meanwhile, the loading and unloading step of existing sander still be unable to do without the mode of artificial loading, thus makes At workpiece is easily contaminated and loading and unloading inefficiency.
In view of this, it is really necessary to develop lower groove grinding device in a kind of automatic loading/unloading formula, to solve above-mentioned ask Topic.
Utility model content
For the shortcomings of the prior art, the purpose of the utility model is to provide in a kind of automatic loading/unloading formula Lower groove grinding device, small in size, compact-sized, percent of automatization with higher improves loading and unloading efficiency, can not only The workpiece for treating polishing carries out stable holding, additionally it is possible to realize the degree of automation of piece-holder and polishing, while can also improve Process and the mutually matched matching degree of polishing operation are clamped, moreover it is possible to carry out after abrasion occurs in mill to mill online Formula finishing extends equipment adjustment, maintenance period, substantially increases grinding accuracy and grinding efficiency, have a vast market and answer Use prospect.
In order to realize above-mentioned purpose according to the present utility model and other advantages, a kind of automatic loading/unloading formula or more is provided Groove body grinding device, comprising:
Upper lower groove sander;
The charging and discharging mechanism being connected to each other with upper lower groove sander;And
Secondary positioning mechanism in charging and discharging mechanism,
Wherein, charging and discharging mechanism includes:
Rack;And
Feeding guide rail and feeding guide in rack,
Upper lower groove sander includes:
Fixing seat;
The attachment base being slidably connected on fixing seat;And
The mill mounting base being slidably connected on attachment base,
Wherein, the same side of mill mounting base is equipped with the upper millstone component and lower millstone component being oppositely arranged up and down, The front side of the upper millstone component and lower millstone component is equipped with the microscope carrier mechanism for carrying workpiece to be polished, feeding guide rail with give Expect that guide rail is parallel and interval setting, secondary positioning mechanism are set between feeding guide rail and feeding guide, the end of feeding guide with Microscope carrier mechanism is connected to each other.
Preferably, secondary positioning mechanism includes:
Substrate;
At least three support columns on substrate;And
The support plate supported by support column,
Wherein, support plate periphery is equipped at least one set of applies the X of clamping force to positioning component and along the y axis along the x axis Apply the Y-direction positioning component of clamping force.
Preferably, substrate and support plate interval are arranged to form the positioning component installation space being located between the two, and X is to calmly Hyte part and Y-direction positioning component are set in the positioning component installation space.
Preferably, the upper millstone component includes:
The upper millstone mounting base being installed in mill mounting base;
The upper millstone being installed in upper millstone mounting base;And
Upper millstone driver for driving upper millstone to rotate in perpendicular,
The lower millstone component includes:
The lower millstone mounting base being installed in mill mounting base;
The lower millstone being installed in lower millstone mounting base;And
Lower millstone driver for driving lower millstone to rotate in perpendicular,
Wherein, upper millstone and lower millstone are located in the same vertical plane and be spaceds setting to be formed positioned at beating between the two Grind channel.
Preferably, the periphery of upper millstone and the periphery of lower millstone are opposite, the rotation direction of upper millstone and turning for lower millstone It moves contrary.
Preferably, the side of mill mounting base is equipped with a pair of riser guide extended along the vertical direction, upper millstone peace It fills seat and lower millstone mounting base and slides mating with riser guide.
Preferably, the upper millstone component further includes for driving upper millstone mounting base selectively to go up and down along riser guide Upper lift actuator, the lower millstone component further includes for driving lower millstone mounting base selectively to go up and down along riser guide Lower lift actuator.
Preferably, microscope carrier mechanism includes:
Bracket;
Set on the support plate of cradle top;And
Clamping component on support plate,
Wherein, support plate is offsettingly set to the side of bracket so that be formed with lower polishing space below support plate, support plate it is upper It is formed with the workpiece holding tank linearly extended right above surface, the lower polishing space, shape in the workpiece holding tank At the polishing through slot having through support plate, the offset side of support plate is between upper millstone and lower millstone so that workpiece holding tank is in In the polishing channel.
Preferably, polish through slot width be slightly less than workpiece holding tank width so that workpiece to be polished lower surface Groove body is completely exposed in lower polishing space described in polishing through slot.
Preferably, the side of through slot of polishing is equipped at least one corner lifting cylinder, and the power of corner lifting cylinder is defeated Outlet is drivingly connected with briquetting, and briquetting can be spirally risen or fallen under the driving of corner lifting cylinder to selectivity Workpiece in workpiece holding tank is fixed by ground in the vertical direction.
The utility model compared with prior art, the beneficial effect is that: it is small in size, it is compact-sized, it is with higher automatic Rate improves loading and unloading efficiency, can not only treat polishing workpiece carry out stable holding, additionally it is possible to realize piece-holder and The degree of automation of polishing, while clamping process and the mutually matched matching degree of polishing operation can also be improved, moreover it is possible to Mill carries out online finishing to mill after there is abrasion, extends equipment adjustment, maintenance period, substantially increases grinding accuracy And grinding efficiency, have a vast market application prospect.
Detailed description of the invention
Fig. 1 is the three-dimensional structure view according to lower groove grinding device in automatic loading/unloading formula described in the utility model;
Fig. 2 is to be beaten according to described in the utility model for lower groove upper in lower groove grinding device in automatic loading/unloading formula The three-dimensional structure view of grinding machine;
Fig. 3 is to be beaten according to described in the utility model for lower groove upper in lower groove grinding device in automatic loading/unloading formula The front view of grinding machine;
Fig. 4 is to be beaten according to described in the utility model for lower groove upper in lower groove grinding device in automatic loading/unloading formula The right view of grinding machine;
Fig. 5 is according to described in the utility model for microscope carrier mechanism in lower groove grinding device in automatic loading/unloading formula Three-dimensional structure view;
Fig. 6 is to be existed according to described in the utility model for microscope carrier mechanism in lower groove grinding device in automatic loading/unloading formula Three-dimensional structure view under another visual angle;
Fig. 7 is according to described in the utility model for microscope carrier mechanism in lower groove grinding device in automatic loading/unloading formula Top view;
Fig. 8 is according to described in the utility model for microscope carrier mechanism in lower groove grinding device in automatic loading/unloading formula Explosive view;
Fig. 9 is according to the three-dimensional described in the utility model for briquetting in lower groove grinding device in automatic loading/unloading formula Machine topology view;
Figure 10 be according to described in the utility model for briquetting in lower groove grinding device in automatic loading/unloading formula just View;
Figure 11 is according to described in the utility model for briquetting in lower groove grinding device in automatic loading/unloading formula and load The front view that plate matches;
Figure 12 is according to described in the utility model for charging & discharging machine in lower groove grinding device in automatic loading/unloading formula The three-dimensional structure view that structure is matched with secondary positioning mechanism;
Figure 13 is according to described in the utility model for charging & discharging machine in lower groove grinding device in automatic loading/unloading formula The top view that structure is matched with secondary positioning mechanism;
Figure 14 is according to described in the utility model for secondary positioning in lower groove grinding device in automatic loading/unloading formula The three-dimensional structure view of mechanism;
Figure 15 is according to described in the utility model for secondary positioning in lower groove grinding device in automatic loading/unloading formula The explosive view of mechanism.
Specific embodiment
The following describes the utility model in further detail with reference to the accompanying drawings, the aforementioned and other mesh of the utility model , features, aspects and advantages will be apparent, to enable those skilled in the art's refer to the instruction text real accordingly It applies.In the accompanying drawings, for clarity, shape and size can be amplified, and identical attached drawing mark will be used in all figures Note is to indicate the same or similar component.In the following description, such as center, thickness, height, length, front, back, rear portion, The words such as the left side, the right, top, bottom, top, lower part are to be based on the orientation or positional relationship shown in the drawings.Particularly, " high Degree " is equivalent to size from the top to the bottom, and " width " is equivalent to size from left to right, and " depth " is equivalent to be arrived in the past Size afterwards.These relative terms are to be not intended to need specifically to be orientated for convenience and usually.Be related to attachment, Connection etc. term (for example, " connection " and " attachment ") refer to these structures pass through intermediate structure directly or indirectly to one another fixation or The relationship of attachment and movable or rigidly attached or relationship, unless otherwise clearly stating.
Referring to Fig.1, Figure 11 and Figure 12, lower groove grinding device includes: in automatic loading/unloading formula
Upper lower groove sander 6;
The charging and discharging mechanism 2 being connected to each other with upper lower groove sander 6;And
Secondary positioning mechanism 8 in charging and discharging mechanism 2,
Wherein, charging and discharging mechanism 2 includes:
Rack 21;And
Feeding guide rail 23 and feeding guide 24 in rack 21,
Upper lower groove sander 6 includes:
Fixing seat 61;
The attachment base 62 being slidably connected on fixing seat 61;And
The mill mounting base 63 being slidably connected on attachment base 62,
Wherein, the same side of mill mounting base 63 is equipped with the upper millstone component being oppositely arranged up and down and lower millstone group The front side of part, the upper millstone component and lower millstone component is equipped with the microscope carrier mechanism 67 for carrying workpiece to be polished, and feeding is led Rail 23 is parallel with feeding guide 24 and interval setting, secondary positioning mechanism 8 are set between feeding guide rail 23 and feeding guide 24, The end of feeding guide 24 is connected to each other with microscope carrier mechanism 67.In a preferred embodiment, rack 21 include braced frame 211 with And the mounting platform 212 supported by braced frame 211, feeding guide rail 23 are all provided with feeding guide 24 and secondary positioning mechanism 8 On mounting platform 212.
2 and Figure 13 referring to Fig.1, secondary positioning mechanism 8 include:
Substrate 81;
At least three support columns 82 on substrate 81;And
The positioning support plate 83 supported by support column 82,
Wherein, positioning 83 periphery of support plate is equipped at least one set of X for applying clamping force along the x axis to positioning component 85 and edge The Y-direction positioning component 84 of Y direction application clamping force.
Further, the area for positioning support plate 83 is not more than the area of substrate 81.
In a preferred embodiment, X is relatively provided with two groups to positioning component 85 and Y-direction positioning component 84.
4 and Figure 15 referring to Fig.1, two groups of X are opposite respectively to positioning component 85 and two groups of Y-direction positioning components 84 and interval is arranged With the located space formed between them.
Further, substrate 81 and positioning support plate 83 interval are arranged empty positioned at positioning component installation between the two to be formed Between, X is set in the positioning component installation space to positioning component 85 and Y-direction positioning component 84.
3 and Figure 14 referring to Fig.1 is positioned and is offered the X for being connected to its edge on support plate 83 to resigning through slot 831 and Y-direction resigning Through slot 832, X to resigning through slot 831 and Y-direction resigning through slot 832 respectively with X to positioning component 85 and Y-direction positioning component 84 one by one It is correspondingly arranged.
In a preferred embodiment, X is to resigning through slot 831 and Y-direction resigning through slot 832 in convex shape structure.
Further, X is drivingly connected with X on positioning component 85 to locating plate 851, is driven on Y-direction positioning component 84 Ground is connected with Y-direction locating plate 841, and X is to locating plate 851 and Y-direction locating plate 841 respectively in X to positioning component and Y-direction positioning group Selectively workpiece is positioned to clamping on the inside of positioning support plate 83 under the driving of part 84.
Referring to Fig. 2~Fig. 4, upper lower groove sander 6 includes:
Fixing seat 61;
The attachment base 62 being slidably connected on fixing seat 61;And
The mill mounting base 63 being slidably connected on attachment base 62,
Wherein, the same side of mill mounting base 63 is equipped with the upper millstone component being oppositely arranged up and down and lower millstone group The front side of part, the upper millstone component and lower millstone component is equipped with the microscope carrier mechanism 67 for carrying workpiece to be polished.
Further, the upper millstone component includes:
The upper millstone mounting base 641 being installed in mill mounting base 63;
The upper millstone 64 being installed in upper millstone mounting base 641;And
Upper millstone driver for driving upper millstone 64 to rotate in perpendicular,
The lower millstone component includes:
The lower millstone mounting base 651 being installed in mill mounting base 63;
The lower millstone 65 being installed in lower millstone mounting base 651;And
Lower millstone driver for driving lower millstone 65 to rotate in perpendicular,
Wherein, upper millstone 64 and lower millstone 65 are located in the same vertical plane and are spaced setting and be located between the two with being formed Polishing channel.When polishing, workpiece to be polished is admitted in the polishing channel and polishes, after polishing again after having polished Workpiece sent out from the polishing channel.
Further, the periphery of upper millstone 64 is opposite with the periphery of lower millstone 65, the rotation direction of upper millstone 64 and lower mill The rotation direction of disk 65 is opposite.
Referring to Fig. 2 and Fig. 3, the side of mill mounting base 63 is equipped with a pair of riser guide 631 extended along the vertical direction, Upper millstone mounting base 641 and lower millstone mounting base 651, which are slided with riser guide 631, to be coupled.
Further, the upper millstone component further includes for driving upper millstone mounting base 641 to select along riser guide 631 Property lifting upper lift actuator 642, the lower millstone component further includes for driving lower millstone mounting base 651 along riser guide The 631 lower lift actuators 652 selectively gone up and down.
Referring to Fig. 5 and Fig. 8, microscope carrier mechanism 67 includes:
Bracket 671;
Support plate 672 set on 671 top of bracket;And
Clamping component on support plate 672,
Wherein, support plate 672 is offsettingly set to the side of bracket 671, so that the lower section of support plate 672 is formed with lower polishing sky Between, the workpiece holding tank linearly extended is formed with right above the upper surface of support plate 672, the lower polishing space 6721, the polishing through slot 6723 of support plate 672 is formed through in the workpiece holding tank 6721, the offset side of support plate 672 is located at upper So that workpiece holding tank 6721 is in the polishing channel between mill 64 and lower millstone 65.
Referring to Fig. 8, the width of polishing through slot 6723 is slightly less than the width of workpiece holding tank 6721 so that workpiece to be polished Lower surface groove body be completely exposed in lower polishing space described in polishing through slot 6723.
Further, the two sides of workpiece holding tank 6721 offer at least one respectively and are connected with workpiece holding tank 6721 Logical locating slot 6722, and the locating slot 6722 is located at the side of polishing through slot 6723, it is fixed to be equipped in each locating slot 6722 Position block 673.In a preferred embodiment, the two sides of workpiece holding tank 6721 are opened up respectively there are two locating slot 6722, two-by-two Locating slot 6722 is symmetrical arranged about workpiece holding tank 6721.
Further, locating piece 673 can be close to or far from the center line of workpiece holding tank 6721, according to different workpieces ruler The width of very little adjustment workpiece holding tank 6721.
Further, the upper surface of support plate 672, each locating slot 6722 surface be removably connected with cover board 674, Locating piece 673 is pressed to the bottom of locating slot 6722 to be fixed locating piece 673 in the vertical direction by cover board 674.
Further, the side of polishing through slot 6723 is equipped at least one corner lifting cylinder 675, corner lifting cylinder 675 power output end is drivingly connected with briquetting 676, and briquetting 676 can be spirally under the driving of corner lifting cylinder 675 It rises or falls selectively to be fixed the workpiece in workpiece holding tank 6721 in the vertical direction.Preferred real It applies in mode, the two sides of polishing through slot 6723 are respectively provided with a corner lifting cylinder 675.
Referring to Fig. 9 and Figure 10, briquetting 676 includes the horizontal segment with the power output end Joint of corner lifting cylinder 675 6761 and for workpiece pressing vertical section 6762, horizontal segment 6761 integrally combined with vertical section 6762 to form L-shaped Briquetting 676.
Referring to Fig.1 1, the lower surface of horizontal segment 6761 is formed with stitching surface, is formed on the side of workpiece holding tank 6721 The continuing surface being adapted with the stitching surface.
Further, which is characterized in that the stitching surface includes:
From the outside of horizontal segment 6761 horizontal-extending horizontal plane S1 inwardly;And
With the inclined-plane S2 for connecting and extending obliquely downward on the inside of horizontal plane S1,
Wherein, the end of inclined-plane S2 is formed with nip portion S3 raised straight down.
Further, the continuing surface includes:
The undertaking plane P1 being adapted with horizontal plane S1;And
The undertaking inclined-plane P2 being adapted with inclined-plane S2,
Wherein, when briquetting 676 is mutually pressed with workpiece, horizontal plane S1 fits with plane P1 is accepted, inclined-plane S2 and undertaking Inclined-plane P2 fits, and nip portion S3 is in contact with workpiece.
Referring to Fig. 2~Fig. 4, the side of microscope carrier mechanism 67, which is equipped with, is used for mill dressing mechanism 66.In preferred embodiment In, fixing seat 61 is equipped with a pair of Y-direction guide rail 611 extended along the y axis, and attachment base 62 is matched with the sliding of Y-direction guide rail 611 It connects, it is sliding to guide rail 621, mill mounting base 63 and X to guide rail 621 that attachment base 62 is equipped with a pair of X extended along the x axis Dynamic mating is driven for being drivingly connected seat 62 along the attachment base of Y-direction guide rail 611 toward polyslip in general, being additionally provided on attachment base 62 Device is moved, the mounting base for driving mill mounting base 63 along X to guide rail 621 toward polyslip is additionally provided in mill mounting base 63 and is driven Dynamic device, riser guide 631 are set to the front side of mill mounting base 63, and mill dressing mechanism 66 is located at the left side of microscope carrier mechanism 67, together When, the place plane and the place co-planar of upper millstone 64 and lower millstone 65 of the finishing mill of mill dressing mechanism 66, thus So that when upper millstone 64 or lower millstone 65 are worn, it is only necessary to by upper millstone 64 or lower millstone 65 along Y-direction guide rail 611 It is moved at the finishing mill, so that the periphery of the finishing mill and upper millstone 64 or 65 periphery of lower millstone are tangent i.e. It can carry out dressing operation.
Number of devices and treatment scale described herein are the explanations for simplifying the utility model.To the utility model Application, modifications and variations will be readily apparent to persons skilled in the art.
Although the embodiments of the present invention have been disclosed as above, it is not limited in institute in specification and embodiments Column use, it can be applied to various fields suitable for the present invention completely, for those skilled in the art, can Easily realize other modification, therefore without departing from the general concept defined in the claims and the equivalent scope, this is practical It is novel to be not limited to specific details and legend shown and described herein.

Claims (10)

1. lower groove grinding device in a kind of automatic loading/unloading formula characterized by comprising
Upper lower groove sander (6);
The charging and discharging mechanism (2) being connected to each other with upper lower groove sander (6);And
Secondary positioning mechanism (8) in charging and discharging mechanism (2),
Wherein, charging and discharging mechanism (2) includes:
Rack (21);And
Feeding guide rail (23) and feeding guide (24) on rack (21),
Upper lower groove sander (6) includes:
Fixing seat (61);
The attachment base (62) being slidably connected on fixing seat (61);And
The mill mounting base (63) being slidably connected on attachment base (62),
Wherein, the same side of mill mounting base (63) is equipped with the upper millstone component and lower millstone component being oppositely arranged up and down, The front side of the upper millstone component and lower millstone component is equipped with the microscope carrier mechanism (67) for carrying workpiece to be polished, feeding guide rail (23) parallel with feeding guide (24) and interval setting, secondary positioning mechanism (8) are set to feeding guide rail (23) and feeding guide (24) between, end and the microscope carrier mechanism (67) of feeding guide (24) are connected to each other.
2. lower groove grinding device in automatic loading/unloading formula as described in claim 1, which is characterized in that secondary positioning mechanism (8) include:
Substrate (81);
At least three support columns (82) on substrate (81);And
The positioning support plate (83) supported by support column (82),
Wherein, positioning support plate (83) periphery is equipped at least one set of X for applying clamping force along the x axis to positioning component (85) and edge The Y-direction positioning component (84) of Y direction application clamping force.
3. lower groove grinding device in automatic loading/unloading formula as claimed in claim 2, which is characterized in that substrate (81) and positioning To form the positioning component installation space being located between the two, X is positioned the setting of support plate (83) interval to positioning component (85) and Y-direction Component (84) is set in the positioning component installation space.
4. lower groove grinding device in automatic loading/unloading formula as described in claim 1, which is characterized in that the upper millstone component Include:
The upper millstone mounting base (641) being installed on mill mounting base (63);
The upper millstone (64) being installed on upper millstone mounting base (641);And
Upper millstone driver for driving upper millstone (64) to rotate in perpendicular,
The lower millstone component includes:
The lower millstone mounting base (651) being installed on mill mounting base (63);
The lower millstone (65) being installed on lower millstone mounting base (651);And
Lower millstone driver for driving lower millstone (65) to rotate in perpendicular,
Wherein, upper millstone (64) and lower millstone (65) are located in the same vertical plane and are spaced setting and are located between the two with being formed Polishing channel.
5. lower groove grinding device in automatic loading/unloading formula as claimed in claim 4, which is characterized in that outside upper millstone (64) Week is opposite with the periphery of lower millstone (65), and the rotation direction of upper millstone (64) is opposite with the rotation direction of lower millstone (65).
6. lower groove grinding device in automatic loading/unloading formula as claimed in claim 4, which is characterized in that mill mounting base (63) Side be equipped with a pair of riser guide (631) extended along the vertical direction, upper millstone mounting base (641) and lower millstone mounting base (651) it slides and is coupled with riser guide (631).
7. lower groove grinding device in automatic loading/unloading formula as claimed in claim 6, which is characterized in that the upper millstone component It further include the upper lift actuator (642) for driving upper millstone mounting base (641) selectively to go up and down along riser guide (631), The lower millstone component further includes the lower liter for driving lower millstone mounting base (651) selectively to go up and down along riser guide (631) It drops driver (652).
8. lower groove grinding device in automatic loading/unloading formula as claimed in claim 4, which is characterized in that microscope carrier mechanism (67) packet It includes:
Bracket (671);
Support plate (672) at the top of bracket (671);And
Clamping component on support plate (672),
Wherein, support plate (672) is offsettingly set to the side of bracket (671), so that it is empty to be formed with lower polishing below support plate (672) Between, the workpiece holding tank linearly extended is formed with right above the upper surface of support plate (672), the lower polishing space (6721), be formed through the polishing through slot (6723) of support plate (672) in the workpiece holding tank (6721), support plate (672) it is inclined End is set between upper millstone (64) and lower millstone (65) so that workpiece holding tank (6721) is in the polishing channel.
9. lower groove grinding device in automatic loading/unloading formula as claimed in claim 8, which is characterized in that polishing through slot (6723) Width be slightly less than the width of workpiece holding tank (6721) so that the lower surface groove body of workpiece to be polished is completely exposed to polish In through slot (6723) the lower polishing space.
10. lower groove grinding device in automatic loading/unloading formula as claimed in claim 9, which is characterized in that polishing through slot (6723) side is equipped at least one corner lifting cylinder (675), and the power output end of corner lifting cylinder (675) is drivingly Be connected with briquetting (676), briquetting (676) can spirally be risen or fallen under the driving of corner lifting cylinder (675) to Selectively the workpiece in workpiece holding tank (6721) is fixed in the vertical direction.
CN201820620186.4U 2018-04-27 2018-04-27 Lower groove grinding device in a kind of automatic loading/unloading formula Active CN208759253U (en)

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Application Number Priority Date Filing Date Title
CN201820620186.4U CN208759253U (en) 2018-04-27 2018-04-27 Lower groove grinding device in a kind of automatic loading/unloading formula

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Application Number Priority Date Filing Date Title
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Publication Number Publication Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108406539A (en) * 2018-04-27 2018-08-17 苏州富强科技有限公司 Lower groove grinding device in a kind of automatic loading/unloading formula

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108406539A (en) * 2018-04-27 2018-08-17 苏州富强科技有限公司 Lower groove grinding device in a kind of automatic loading/unloading formula
CN108406539B (en) * 2018-04-27 2024-01-23 苏州富强科技有限公司 Automatic go up unloading formula cell body grinding device from top to bottom

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