CN213935407U - Convenient data plate bonding structure - Google Patents

Convenient data plate bonding structure Download PDF

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Publication number
CN213935407U
CN213935407U CN202023259275.7U CN202023259275U CN213935407U CN 213935407 U CN213935407 U CN 213935407U CN 202023259275 U CN202023259275 U CN 202023259275U CN 213935407 U CN213935407 U CN 213935407U
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China
Prior art keywords
nameplate
data plate
handle
convenient
handle layer
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CN202023259275.7U
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Chinese (zh)
Inventor
龙建勇
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Shenzhen Lichi Electronic Materials Co ltd
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Shenzhen Lichi Electronic Materials Co ltd
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Priority to CN202023259275.7U priority Critical patent/CN213935407U/en
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Abstract

The utility model discloses a convenient data plate bonding structure, including material area and data plate body, the data plate body passes through the double faced adhesive tape and bonds on the material area, still be provided with the handle layer between material area and the data plate body, the handle layer is used for assisting the data plate body to take off from the material area, the handle layer wholly sets up on the material area, the width on handle layer is greater than the width of data plate body. The setting up of the handle part on handle layer and cushion rubber block can enough form the isolation between material area and data plate body, can bond with the data plate again, forms the handle of being convenient for tear on the data plate. Can prevent that the double faced adhesive tape of data plate bottom from producing the bubble, can provide the handle that the two sides do not contain the double faced adhesive tape for the workman again when uncovering the data plate and bonding the data plate, prevent that the double faced adhesive tape of data plate bottom from arriving the workman staff on. The use efficiency and the paste quality have been improved in the use of data plate.

Description

Convenient data plate bonding structure
Technical Field
The utility model relates to a bond data plate adhesive structure on the product, especially a convenient data plate adhesive structure.
Background
The PC nameplate is widely applied to electronic communication products, electric appliances, automobile instrument panels, mechanical products and the like, is generally pasted in a product shell by matching double faced adhesive tapes, and some nameplate products need to be subjected to the technical processes of silk screen printing of white bottom, printing of two-dimensional codes on the front side and the like. In the prior art, a PC material is printed, then a whole piece of double faced adhesive tape is covered, a PET release film is covered on the bottommost layer, then a finished product is die-cut, and when the label is used, the nameplate is pasted on a shell after the release film on the bottom layer is manually uncovered. Adopt the manual work to take off the membrane to the data plate and when the pad pasting, the face of glue on the product is direct and workman's finger contact, is stained with the dust easily, even the workman wears professional gloves, the gloves still can be stuck to the powerful viscidity of double faced adhesive tape, is unfavorable for pasting the quality management and control and the efficient operation of product. In addition, in the product die-cut in the prior art, bubbles are easily generated on the surface of the double-sided adhesive tape, so that the nameplate cannot be smoothly attached to the shell, and the product quality is reduced.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model provides a set up the handle layer between data plate body and material area and take off convenient data plate adhesive structure of membrane, pad pasting with the convenience to the data plate body carries out the high quality.
The utility model provides a technical scheme that its technical problem adopted is:
the utility model provides a convenient data plate bonding structure, includes material area and data plate body, the data plate body passes through the double faced adhesive tape and bonds on the material area, still be provided with the handle layer between material area and the data plate body, the handle layer is used for assisting the data plate body to take off from the material area, the handle layer wholly sets up on the material area, the width on handle layer is greater than the width of data plate body.
As an improvement of the technical scheme, a cut-off line is arranged on the handle layer and used for dividing the handle layer into a handle and a cushion rubber block, the cushion rubber block is bonded between the material belt and the nameplate body, and the handle is bonded on the nameplate body.
As a further improvement of the above technical scheme, the cut-off line is arranged on the side edge of the handle layer and located at the bottom of the nameplate, the nameplate body is further provided with a positioning hole, the cut-off line is arranged at the bottom of the nameplate on the outer side edge of the positioning hole, and the cut-off line further comprises a connecting position between each two adjacent handles.
The handle is arranged on two sides of each nameplate body, the positioning holes are arranged at two ends of each nameplate body respectively, one group of positioning holes is arranged at two ends of each nameplate body, and the cutting lines are arranged at the bottoms of two outer side nameplates of the positioning holes at the two ends.
As a further improvement of the technical scheme, the handle layer is a PE release film, and the thickness of the handle layer is 0.1 mm.
As a further improvement of the above technical solution, the double-sided tape is a transparent double-sided tape, the transparent double-sided tape is divided into a plurality of regions at the bottom of the nameplate body, and the plurality of regions include a middle bonding region and handle bonding regions at two ends.
As a further improvement of the technical scheme, the thickness of the transparent double-sided adhesive tape is 0.05mm-0.15 mm.
As a further improvement of the technical scheme, the material belt comprises three layers, namely two layers of low-viscosity transparent PET and one layer of high-viscosity transparent PET.
As a further improvement of the technical scheme, the thicknesses of the low-viscosity transparent PET are 0.05mm-0.075mm and 0.075mm-0.1mm respectively, and the thickness of the high-viscosity transparent PET is 0.075mm-0.1 mm.
As a further improvement of the technical scheme, the nameplate body is a frosted PC, and the thickness of the frosted PC is 0.175-0.3 mm.
The utility model has the advantages that: the utility model discloses a data plate adhesive structure is last to have set up the handle layer of being convenient for take off the data plate from the material area, and the handle part on handle layer and the setting of cushion block can enough form between material area and data plate body and keep apart, can bond with the data plate again, form the handle of being convenient for to tear on the data plate. Can prevent that the double faced adhesive tape of data plate bottom from producing the bubble, can provide the handle that the two sides do not contain the double faced adhesive tape for the workman again when uncovering the data plate and bonding the data plate, prevent that the double faced adhesive tape of data plate bottom from arriving the workman staff on. The use efficiency and the paste quality have been improved in the use of data plate.
Drawings
The present invention will be further explained with reference to the drawings and examples.
FIG. 1 is a schematic view of the layered structure of the present invention;
FIG. 2 is a schematic view of the assembly structure of the present invention;
fig. 3 is a schematic view of the nameplate structure during use of the present invention.
1. A nameplate body; 11. positioning holes; 2. a material belt; 3. transparent double-sided adhesive tape; 4. a handle layer; 41. cutting off the line; 42. a handle; 43. and (6) a cushion rubber block.
Detailed Description
The conception, the specific structure, and the technical effects produced by the present invention will be clearly and completely described below in conjunction with the embodiments and the accompanying drawings to fully understand the objects, the features, and the effects of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all embodiments, and other embodiments obtained by those skilled in the art without inventive labor based on the embodiments of the present invention all belong to the protection scope of the present invention. In addition, all the connection/connection relations referred to in the patent do not mean that the components are directly connected, but mean that a better connection structure can be formed by adding or reducing connection auxiliary components according to specific implementation conditions. The utility model discloses each technical feature in the creation can the interactive combination under the prerequisite that does not contradict conflict each other.
Referring to fig. 1, a convenient data plate bonding structure, including material area 2 and data plate body 1, data plate body 1 bonds on material area 2 through the double faced adhesive tape, still be provided with handle layer 4 between material area 2 and the data plate body 1, handle layer 4 is used for assisting data plate body 1 to take off from material area 2, handle layer 4 wholly sets up on material area 2. The width of the handle layer 4 is larger than that of the nameplate body 1. The nameplate which is commonly used for playing a role in marking on the electronic product is usually required to be rolled up through the material belt 2 after production is completed, so that the electronic product is convenient to transport and store, a material roll is opened during use, then one nameplate can be taken off from the material roll, and then the nameplate is pasted at a required position. In the process of bonding the nameplate after being taken off, the non-setting adhesive at the bottom of the nameplate is easy to be adhered to the recognized hand, and the impurities on the recognized hand are also easy to be adhered to the bottom of the nameplate, so that the viscosity at the bottom of the nameplate is reduced, and the use of the nameplate is influenced. Therefore the utility model provides a be provided with data plate of handle 42, with the technology processing that handle layer 4 advanced needs, then on bonding material area 2, data plate body 1 can directly bond on handle layer 4. Because the width of handle layer 4 is greater than the width of data plate body 1, when taking off the data plate, the workman can hold between the fingers handle 42, takes off the data plate with handle 42 together, has avoided the data plate more to glue the workman on hand taking off the in-process back, has improved availability factor and has pasted the quality in the use of data plate.
Referring to fig. 2 and 3, in order to facilitate the production and use of the handle layer 4, the handle layer 4 is arranged in a whole piece, and the whole handle layer 4 is directly adhered to the material belt 2 after die cutting. The cutting line 41 is arranged on the handle layer 4, the cutting line 41 is used for dividing the handle layer 4 into a handle 42 and a cushion rubber block 43, the cushion rubber block 43 is bonded between the material belt 2 and the nameplate body 1, and the handle 42 is bonded on the nameplate body 1. The cutting line 41 is arranged on the side edge of the handle layer 4 and located at the bottom of the nameplate, the nameplate body 1 is further provided with a positioning hole 11, the cutting line 41 is arranged at the bottom of the nameplate on the outer side edge of the positioning hole 11, and the cutting line 41 further comprises a connecting position between each two adjacent handles 42. The handles 42 are respectively arranged at two sides of each nameplate body 1, the positioning holes 11 are respectively arranged at two ends of each nameplate body 1 in a group, and the cutting lines 41 are arranged at the bottoms of the nameplates at two outer side edges of the positioning holes 11 at the two ends. The handle layer 4 is a PE release film, and the thickness of the handle layer 4 is 0.1 mm. The cut lines 41 are die cut on the handle layer 4 to separate the handle 42 from the handle layer, the handle 42 is located at both ends of the handle layer 4, and one handle is located at each of both ends of each nameplate. When the nameplate is taken off, the handles 42 holding the two ends with hands are lifted upwards, because the cutting line 41 is arranged between the handles 42 and the cushion rubber block 43, when the handles 42 are lifted, the handles 42 can be separated from the cushion rubber block 43 and the two adjacent handles 42, the nameplate adhered to the upper layer of the handles 42 is lifted along with the handles 42, is also separated from the handle layer 4 and is taken off along with the handles 42, and when the nameplate is adhered, the handles 42 directly holding the two ends can adhere the nameplate to a needed place. The handle 42 is easy to produce and process, is easy to operate practically, facilitates the removal and bonding of the nameplate, improves the service efficiency of the nameplate and increases the service quality of the nameplate.
The double faced adhesive tape is transparent double faced adhesive tape 3, transparent double faced adhesive tape 3 divide into a plurality of regions in the bottom of data plate body 1, a plurality of regions are including the handle 42 bonding region at middle bonding region and both ends. The thickness of the transparent double-sided adhesive tape 3 is 0.05mm-0.15 mm. The separation of the adhesive area of the pull tab 42 from the intermediate adhesive area also allows for easier removal of the pull tab 42 from the bottom.
The material belt 2 comprises three layers, namely two layers of low-viscosity transparent PET and one layer of high-viscosity transparent PET. The thicknesses of the low-viscosity transparent PET are 0.05mm-0.075mm and 0.075mm-0.1mm respectively, and the thickness of the high-viscosity transparent PET is 0.075mm-0.1 mm. And meanwhile, the third layer of transparent double-sided adhesive tape 3 is arranged for grid cutting die cutting, so that air above the double-sided adhesive tape can be emptied, and bubbles and unevenness in attachment are avoided. The nameplate body 1 is a frosted PC, and the thickness of the frosted PC is 0.175mm-0.3 mm.
While the preferred embodiments of the present invention have been described, the present invention is not limited to the above embodiments, and those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present invention, and such equivalent modifications or substitutions are intended to be included within the scope of the present invention as defined by the appended claims.

Claims (10)

1. The utility model provides a convenient data plate bonding structure which characterized in that: including material area and data plate body, the data plate body passes through the double faced adhesive tape and bonds on the material area, still be provided with the handle layer between material area and the data plate body, the handle layer is used for assisting the data plate body to take off from the material area, the handle layer wholly sets up on the material area, the width on handle layer is greater than the width of data plate body.
2. The convenient nameplate bonding structure of claim 1, further comprising: the handle layer is provided with a cut-off line, the cut-off line is used for dividing the handle layer into a handle and a cushion rubber block, the cushion rubber block is bonded between the material belt and the nameplate body, and the handle is bonded on the nameplate body.
3. The convenient nameplate bonding structure of claim 2, further comprising: the cutting line is arranged on the side edge of the handle layer and located at the bottom of the nameplate, the nameplate body is further provided with a positioning hole, the cutting line is arranged at the bottom of the nameplate on the outer side edge of the positioning hole, and the cutting line further comprises a connecting position between every two adjacent handles.
4. The convenient nameplate bonding structure of claim 3, further comprising: the handle is arranged on two sides of each nameplate body, the positioning holes are arranged at two ends of each nameplate body respectively, one group of positioning holes is arranged at two ends of each nameplate body, and the cutting lines are arranged at the bottoms of two outer side nameplates of the positioning holes at the two ends.
5. The convenient nameplate bonding structure of claim 1, further comprising: the handle layer is a PE release film, and the thickness of the handle layer is 0.1 mm.
6. The convenient nameplate bonding structure of claim 1, further comprising: the double faced adhesive tape is transparent double faced adhesive tape, transparent double faced adhesive tape is divided into a plurality of regions in the bottom of data plate body, a plurality of regions bond the region including the handle at middle bonding region and both ends and bond the region.
7. The convenient nameplate bonding structure of claim 6, further comprising: the thickness of the transparent double-sided adhesive tape is 0.05mm-0.15 mm.
8. The convenient nameplate bonding structure of claim 1, further comprising: the material belt comprises three layers, namely two layers of low-viscosity transparent PET and one layer of high-viscosity transparent PET.
9. The convenient nameplate bonding structure of claim 8, further comprising: the thicknesses of the low-viscosity transparent PET are 0.05mm-0.075mm and 0.075mm-0.1mm respectively, and the thickness of the high-viscosity transparent PET is 0.075mm-0.1 mm.
10. The convenient nameplate bonding structure of claim 1, further comprising: the nameplate body is frosted PC, and the thickness of the frosted PC is 0.175mm-0.3 mm.
CN202023259275.7U 2020-12-29 2020-12-29 Convenient data plate bonding structure Active CN213935407U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023259275.7U CN213935407U (en) 2020-12-29 2020-12-29 Convenient data plate bonding structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023259275.7U CN213935407U (en) 2020-12-29 2020-12-29 Convenient data plate bonding structure

Publications (1)

Publication Number Publication Date
CN213935407U true CN213935407U (en) 2021-08-10

Family

ID=77157854

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023259275.7U Active CN213935407U (en) 2020-12-29 2020-12-29 Convenient data plate bonding structure

Country Status (1)

Country Link
CN (1) CN213935407U (en)

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