CN214817690U - Mechanical slotting polishing pad for blue glass - Google Patents

Mechanical slotting polishing pad for blue glass Download PDF

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Publication number
CN214817690U
CN214817690U CN202121411899.8U CN202121411899U CN214817690U CN 214817690 U CN214817690 U CN 214817690U CN 202121411899 U CN202121411899 U CN 202121411899U CN 214817690 U CN214817690 U CN 214817690U
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polishing
layer
cotton
basic unit
convex
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CN202121411899.8U
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陈福枝
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Dongguan Xinpade Photoelectric Technology Co ltd
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Dongguan Xinpade Photoelectric Technology Co ltd
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Abstract

The utility model provides a pair of blue glass's mechanical fluting polishing pad contains from last polishing layer, the cotton layer of stock solution, the subbase of down superpose in proper order, and the polishing layer contains polishing basic unit and is the polishing convex surface of rectangle array distribution at polishing basic unit top face, and polishing convex surface interval sets up at polishing basic unit top surface formation vertically and horizontally staggered's water conservancy diversion slot, and it has a plurality of imbibition micropores to run through between polishing convex surface and the polishing basic unit. During the use, the polishing pad rotates under the drive of burnishing machine drive head, and the cotton layer of stock solution is compressed under the external pressure effect to the polishing convex surface, and the cotton layer of stock solution forms the adsorption effect of air cushion formula, and unnecessary polishing solution will be absorbed by the cotton layer of stock solution through the imbibition micropore to it can in time supply to the polishing surface at the polishing in-process, and the sediment bits that the polishing produced will flow into the water conservancy diversion slot under the flow assistance of polishing solution, in time discharges away the sediment bits, improves polishing effect effectively, reduces the use amount of polishing solution, reduction in production cost.

Description

Mechanical slotting polishing pad for blue glass
Technical Field
The utility model relates to a polishing tool, in particular to a mechanical slotting polishing pad for blue glass.
Background
The blue glass is special optical glass capable of filtering infrared light with a wavelength of more than 630nm, and is mainly applied to the fields of environmental protection detection, medical equipment, infrared cameras, optical instruments and the like. According to the product requirement, mechanical grooving can be carried out on the blue glass, the grooved position of the blue glass needs to be polished after grooving, and the grooved position of the blue glass needs to be polished smoothly. The polishing of the mechanical slotting of the blue glass generally uses a softer polishing fabric for polishing, so that a polishing surface is tightly attached to the surface of the blue glass during polishing, polishing liquid can not well cover the polishing surface during polishing often, slag generated during polishing can not flow away along with the polishing liquid in time, the polishing effect is influenced, the polishing efficiency is reduced, and the consumption of the polishing liquid is increased.
Disclosure of Invention
The utility model aims to solve the problem that a mechanical fluting polishing pad of blue glass is provided, can let the polishing solution cover well on the polished surface, in time removes the sediment bits that the polishing produced, promotes polishing effect, reduces the waste of polishing solution.
Solve above-mentioned technical problem and want according to the utility model provides a pair of blue glass's mechanical fluting polishing pad contains from last polishing layer, the cotton layer of stock solution, the subbase of down superpose in proper order, and the polishing layer contains polishing basic unit and is the polishing convex surface of rectangle array distribution at polishing basic unit top face, and the setting of polishing convex surface interval forms vertically and horizontally staggered's water conservancy diversion slot at polishing basic unit top surface, runs through between polishing convex surface and the polishing basic unit to be provided with a plurality of imbibition micropores that adjoin with the cotton layer top surface of stock solution.
Preferably, the cotton layer of stock solution comprises the cotton piece of imbibition that is rectangular array distribution and the infusion silver of connecting adjacent cotton piece of imbibition, the subbase top is rectangular array distribution and has the reservoir that matches with the cotton piece of imbibition, the intercommunication is provided with the infusion guide slot that matches with the infusion silver between two adjacent reservoir tops, when the cotton layer of stock solution bonds on the subbase, each cotton piece of imbibition and infusion silver can counterpoint respectively and imbed corresponding reservoir and infusion guide slot on, when the polishing layer bonds on the cotton layer of stock solution, each polishing convex surface corresponds respectively and is located each cotton piece upside of imbibition and imbibition micropore one end borders on in cotton piece top surface.
Preferably, the cross sections of the liquid storage tank and the polishing convex surface are both square, and the cross section area of the liquid storage tank is smaller than that of the polishing convex surface, so that the two sides of the liquid storage tank can support the polishing layer when the polishing convex surface is pressed.
Preferably, the four sides of the top end of the polishing convex surface are provided with flow guide arc surfaces.
Preferably, a double-sided adhesive layer is adhered to the bottom end face of the bottom base layer, and double-sided adhesive base paper is adhered to the bottom end face of the double-sided adhesive layer.
Preferably, the polishing convex surface is soft polyurethane foam, and the polishing base layer is polyurethane synthetic leather.
The utility model has the advantages that: the utility model provides a mechanical slotting polishing pad for blue glass, which is provided with a unique assembly structure, when in use, the polishing pad is arranged on a driving head of a polishing machine, a polishing convex surface is propped against a polishing surface of the blue glass during polishing, the polishing pad rotates under the driving of the driving head, because of the conduction function of the liquid absorption micropores, the polishing convex surface can not be tightly attached to the polishing surface, the polishing liquid can flow on the polishing surface in a covering manner, the polishing convex surface compresses the liquid storage cotton layer under the action of external pressure and forms an air cushion type adsorption effect, redundant polishing liquid is absorbed by the liquid storage cotton layer through the liquid absorption micropores, and the polishing liquid can be timely supplemented to a polishing surface in the polishing process, and the slag generated by polishing flows into the flow guide groove under the flow assistance of the polishing liquid, so that the slag is timely discharged, the polishing effect is effectively improved, the use amount of the polishing liquid is reduced, and the production cost is reduced.
Drawings
Fig. 1 illustrates a schematic cross-sectional structure of the present invention.
Figure 2 illustrates a top view of the polishing layer of the present invention.
Fig. 3 illustrates a top view of the liquid storage cotton layer of the present invention.
Figure 4 illustrates a top view of the underlayment of the present invention.
The reference numbers illustrate: the polishing pad comprises a polishing layer 1, a polishing base layer 10, a polishing convex surface 11, a flow guide groove 12, a liquid absorption micropore 110, a flow guide arc surface 111, a liquid storage cotton layer 2, a liquid absorption cotton block 20, an infusion cotton sliver 21, a bottom base layer 3, a liquid storage tank 30, an infusion guide groove 31, a double-sided adhesive layer 4 and double-sided adhesive backing paper 5.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present disclosure more apparent, the technical solutions of the embodiments of the present disclosure will be described clearly and completely with reference to the drawings of the embodiments of the present disclosure. It is to be understood that the described embodiments are only a few embodiments of the present disclosure, and not all embodiments.
All other embodiments of the person skilled in the art, which are obtained without inventive work on the basis of the described embodiments of the present disclosure, are within the scope of protection of the present disclosure.
Refer to fig. 1-4.
The utility model provides a blue glass's mechanical fluting polishing pad contains from last polishing layer 1, the cotton layer 2 of stock solution, sub-base 3 of down superpose in proper order, and polishing layer 1 contains polishing basic unit 10 and is the polishing convex surface 11 of rectangle array distribution at polishing basic unit 10 top face, and polishing convex surface 11 interval sets up at polishing basic unit 10 top surface formation vertically and horizontally staggered's water conservancy diversion slot 12, runs through between polishing convex surface 11 and the polishing basic unit 10 and is provided with a plurality of imbibition micropores 110 that adjoin with the cotton layer 2 top surface of stock solution.
The specific use principle is that when the polishing pad is used, the polishing pad is arranged on a driving head of a polishing machine, the underlayer 3 is attached to the driving head of the polishing machine, the polishing convex surface 11 is abutted against a polishing surface of blue glass during polishing, the polishing pad is driven by the driving head to rotate, polishing liquid is sprayed to a polishing position, due to the conduction effect of the liquid absorption micropores 110 between the liquid storage cotton layer 2 and the polishing surface, the polishing convex surface 11 is not tightly attached to the polishing surface, the polishing liquid can flow on the polishing surface during polishing, the liquid storage cotton layer 2 is compressed by the polishing convex surface 11 under the action of external pressure to form an air cushion type adsorption effect, redundant polishing liquid at the polishing position is absorbed by the liquid storage cotton layer 2 through the liquid absorption micropores 110 and can be timely supplemented to the polishing surface during polishing, and slag generated during polishing can flow into the flow guide grooves 12 under the assistance of the polishing liquid to timely remove the slag, effectively improves the polishing effect, reduces the using amount of the polishing solution and reduces the production cost.
Based on the above-mentioned embodiment, the liquid storage cotton layer 2 comprises the cotton piece 20 of imbibition that is the rectangular array distribution and the infusion cotton silver 21 that links up adjacent cotton piece 20 of imbibition, the subbase 3 top is the rectangular array and distributes the reservoir 30 that matches with cotton piece 20 of imbibition, it is provided with the infusion guide slot 31 that matches with infusion cotton silver 21 to communicate between two adjacent reservoir 30 tops, when the cotton layer 2 of liquid storage is bonded on subbase 3, each cotton piece 20 of imbibition and infusion cotton silver 21 can be counterpointed respectively and imbed on corresponding reservoir 30 and infusion guide slot 31, when polishing layer 1 bonds on the cotton layer 2 of liquid storage, each polishing convex surface 11 corresponds respectively and is located each cotton piece 20 upside of imbibition and imbibition micropore 110 one end borders on cotton piece 20 top surface of imbibition. Can ensure polishing layer 1, the cotton layer 2 of stock solution, the polishing convex surface 11 of the relevant position department after the underlayer 3 makes up, imbibition cotton piece 20, reservoir 30 from last down accurate counterpoint, polishing convex surface 11 compresses imbibition cotton piece 20 under the exogenic action during polishing, let imbibition cotton piece 20 form the adsorption efficiency of air cushion type at the flexible in-process of elasticity, thereby permeate through imbibition micropore 110 with unnecessary polishing solution and be absorbed by imbibition cotton piece 20 and store, and be released at any time and utilize in polishing process. Infusion silver 21 couples together adjacent imbibition cotton piece 20, can let the cotton piece 20 of the more imbibition of local stock solution volume shunt to the cotton piece 20 department of the less imbibition of local stock solution volume, reach the balanced effect of reposition of redundant personnel, guarantee that the whole polishing effect of polishing pad is steady, improve polishing efficiency.
Based on above-mentioned embodiment, reservoir 30 and the 11 cross sections of polishing convex surface all set up to the square, and reservoir 30's cross-sectional area is less than the cross-sectional area of polishing convex surface 11 to reservoir 30 both sides can play the supporting role to polishing layer 1 when pressing polishing convex surface 11, and polishing convex surface 11 is excessive to the compression of stock solution cotton layer 2 when can avoiding polishing, reduces the flexible range of polishing convex surface 11, can improve the polishing dynamics, improves polishing efficiency.
Based on the above embodiment, the flow guiding arc surfaces 111 are disposed on four sides of the top end of the convex polishing surface 11. During polishing, the polishing convex surface 11 rotates and polishes on the polishing surface under the driving of the driving shaft of the polishing machine, and the arrangement of the flow guide arc surface 111 can accelerate the slag to flow out of the polishing surface, so that the polishing effect is improved.
Based on the above embodiment, the bottom end face of the bottom base layer 3 is adhered with the double-sided adhesive layer 4, and the bottom end face of the double-sided adhesive layer 4 is adhered with the double-sided adhesive backing paper 5, so that the polishing pad can be conveniently adhered to the driving head of the polishing machine.
Based on the above embodiment, the polishing convex surface 11 is made of soft polyurethane foam, and the polishing base layer 10 is made of polyurethane synthetic leather. The soft polyurethane foam has a microporous structure, has certain elasticity, can absorb polishing solution, is suitable for mechanical grooving and polishing of blue glass, has excellent mechanical properties such as excellent bonding property with a base material, abrasion resistance, aging resistance and the like, and can prolong the service life of the polishing pad.
The above embodiments are only for describing the preferred embodiments of the present invention, and are not intended to limit the scope of the present invention, and various modifications and improvements made by the technical solution of the present invention by those skilled in the art are all within the scope of the present invention as defined by the claims.

Claims (6)

1. The utility model provides a blue glass's mechanical fluting polishing pad, its characterized in that contains from last polishing layer (1), the cotton layer of stock solution (2), subbase (3) of down superpose in proper order, polishing layer (1) contains polishing basic unit (10) and is the rectangle array and distributes polishing convex surface (11) of polishing basic unit (10) top terminal surface, polishing convex surface (11) interval sets up polishing basic unit (10) top surface forms vertically and horizontally staggered's water conservancy diversion slot (12), polishing convex surface (11) with run through between polishing basic unit (10) be provided with a plurality of with imbibition micropore (110) that stock solution cotton layer (2) top surface borders on.
2. The mechanical slotting polishing pad for blue glass according to claim 1, wherein the liquid storage cotton layer (2) is composed of liquid absorption cotton blocks (20) distributed in a rectangular array and infusion cotton slivers (21) connecting the adjacent liquid absorption cotton blocks (20), liquid storage tanks (30) matched with the liquid absorption cotton blocks (20) are distributed on the top of the base layer (3) in a rectangular array, an infusion guide groove (31) matched with the infusion cotton slivers (21) is arranged between the tops of the adjacent liquid storage tanks (30), when the liquid storage cotton layer (2) is bonded on the base layer (3), each liquid absorption cotton block (20) and the infusion cotton sliver (21) can be respectively embedded on the corresponding liquid storage tank (30) and the infusion guide groove (31) in an aligned mode, when the polishing layer (1) is bonded on the liquid storage cotton layer (2), the polishing convex surfaces (11) are respectively and correspondingly positioned at the upper side of the liquid absorption cotton block (20) and one end of the liquid absorption micropore (110) is adjacent to the top surface of the liquid absorption cotton block (20).
3. A blue glass mechanical grooving polishing pad according to claim 2, wherein the reservoir (30) and the convex polishing surface (11) are each square in cross-section, and the cross-sectional area of the reservoir (30) is smaller than that of the convex polishing surface (11), so that both sides of the reservoir (30) support the polishing layer (1) when the convex polishing surface (11) is pressed.
4. The blue glass mechanical grooving polishing pad according to claim 3, wherein flow guiding cambered surfaces (111) are arranged on four sides of the top end of the convex polishing surface (11).
5. The blue glass mechanical grooving polishing pad according to claim 1, wherein a double-sided adhesive layer (4) is adhered to a bottom end face of the sub-base layer (3), and a double-sided adhesive base paper (5) is adhered to a bottom end face of the double-sided adhesive layer (4).
6. The blue glass mechanical grooving polishing pad according to claim 1, wherein the convex polishing surface (11) is a soft polyurethane foam, and the base polishing layer (10) is a polyurethane synthetic leather.
CN202121411899.8U 2021-06-24 2021-06-24 Mechanical slotting polishing pad for blue glass Active CN214817690U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121411899.8U CN214817690U (en) 2021-06-24 2021-06-24 Mechanical slotting polishing pad for blue glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121411899.8U CN214817690U (en) 2021-06-24 2021-06-24 Mechanical slotting polishing pad for blue glass

Publications (1)

Publication Number Publication Date
CN214817690U true CN214817690U (en) 2021-11-23

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CN202121411899.8U Active CN214817690U (en) 2021-06-24 2021-06-24 Mechanical slotting polishing pad for blue glass

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114800254A (en) * 2022-03-21 2022-07-29 安徽禾臣新材料有限公司 Wax-free pad for polishing and preparation method thereof
CN114952642A (en) * 2022-06-15 2022-08-30 安徽禾臣新材料有限公司 Damping cloth for polishing sapphire protective cover plate and production process thereof

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114800254A (en) * 2022-03-21 2022-07-29 安徽禾臣新材料有限公司 Wax-free pad for polishing and preparation method thereof
CN114952642A (en) * 2022-06-15 2022-08-30 安徽禾臣新材料有限公司 Damping cloth for polishing sapphire protective cover plate and production process thereof
CN114952642B (en) * 2022-06-15 2023-10-31 安徽禾臣新材料有限公司 Damping cloth for polishing sapphire protective cover plate and production process thereof

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Address after: Room 602, Building 3, Shidai Zhirui Technology, No. 159 Luwu Sanlian Road, Changping Town, Dongguan City, Guangdong Province, 523000

Patentee after: Dongguan xinpade Photoelectric Technology Co.,Ltd.

Address before: 523000 third floor, No. 37, Shengye Road, Tianmei community, Huangjiang Town, Dongguan City, Guangdong Province

Patentee before: Dongguan xinpade Photoelectric Technology Co.,Ltd.