CN209410586U - Anti-static plastic-suction tray - Google Patents

Anti-static plastic-suction tray Download PDF

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Publication number
CN209410586U
CN209410586U CN201821849224.XU CN201821849224U CN209410586U CN 209410586 U CN209410586 U CN 209410586U CN 201821849224 U CN201821849224 U CN 201821849224U CN 209410586 U CN209410586 U CN 209410586U
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China
Prior art keywords
conductive layer
ontology
plastic
sucking disc
suction tray
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Active
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CN201821849224.XU
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Chinese (zh)
Inventor
顾华
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Suzhou Yupaike Packaging Material Co Ltd
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Suzhou Yupaike Packaging Material Co Ltd
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Priority to CN201821849224.XU priority Critical patent/CN209410586U/en
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Abstract

The utility model discloses a kind of Anti-static plastic-suction trays, the Anti-static plastic-suction tray includes plastic sucking disc ontology and several electrostatic prevention structures in plastic sucking disc ontology both side surface, the electrostatic prevention structure includes the first conductive layer on plastic sucking disc first body surface, the second conductive layer on plastic sucking disc second body surface, and the metal pressing part for being bonded to the first conductive layer and the second conductive lamination on plastic sucking disc ontology, the metal pressing part includes the supporting part being oppositely arranged and nip portion, supporting part and nip portion are respectively arranged on the first conductive layer and the second conductive layer, the supporting part includes the first noumenon and the container on the first noumenon, nip portion includes the second ontology and the pressing pawl on the second ontology, pressing pawl in nip portion runs through the second conductive layer, it is fixed on and holds after plastic sucking disc ontology and the first conductive layer In the container in load portion, the electrostatic between the first conductive layer and the second conductive layer is shifted by metal pressing part.

Description

Anti-static plastic-suction tray
Technical field
The utility model relates to transport agent technical fields, more particularly to a kind of Anti-static plastic-suction tray.
Background technique
Plastic sucking disc is also plastic-sucking tray or plastic pallet, and particular groove is made in plastic hard plate using plastic uptake technique Product is placed in groove by plastics, plays the role of protection and beautify product, also there is the pallet packing of transportation type, and pallet uses More is all based on facilitating.When needing high-volume transport product, it will usually carry out the multiple plastic sucking discs for having accommodated product Stack transport.
Electrostatic has very big harmfulness to electronic component, shows that electrostatic energy adsorbs dust, changes electronic circuit Between impedance, will affect function and the service life of product;Electrostatic field may destroy insulation or the conductor of element, prevent element from work Make;The heat that the electric field or electric current of moment generates can all make element injured, influence the electronic product service life, even result in it completely It damages.So electronics industry must be strictly controlled the storage, carrying and assembling process of electronic component, prevention static damage electricity Sub- component.
Plastic sucking disc in the prior art is prepared by plastic insulation material, when carrying out the carrying and transport of electronic component, Electrostatic on electronic component can not export, and can not prevent damage of the electrostatic to electronic component.
Therefore, in view of the above technical problems, it is necessary to which a kind of Anti-static plastic-suction tray is provided.
Utility model content
In view of this, the purpose of this utility model is to provide a kind of Anti-static plastic-suction trays.
To achieve the goals above, the technical solution that an embodiment of the present invention provides is as follows:
A kind of Anti-static plastic-suction tray, the Anti-static plastic-suction tray include plastic sucking disc ontology and be set to plastic sucking disc ontology two sides table Several electrostatic prevention structures on face, the electrostatic prevention structure include the first conductive layer on the plastic sucking disc first body surface, The second conductive layer on plastic sucking disc second body surface and for the first conductive layer and the second conductive lamination to be bonded to plastic uptake Metal pressing part on disk ontology, the metal pressing part include the supporting part being oppositely arranged and nip portion, supporting part and pressing Portion is respectively arranged on the first conductive layer and the second conductive layer, and the supporting part includes the first noumenon and the receipts on the first noumenon Tank, nip portion include the second ontology and the pressing pawl on the second ontology, and the pressing pawl in nip portion is conductive through second It is fixed in the container of supporting part after layer, plastic sucking disc ontology and the first conductive layer, between the first conductive layer and the second conductive layer Electrostatic shifted by metal pressing part.
First conductive layer is attached at plastic sucking disc by the first conductive adhesive layer as a further improvement of the utility model, On the first surface of ontology, second conductive layer is attached on the second surface of plastic sucking disc ontology by the second conductive adhesive layer.
Rounded hollow setting among the first noumenon as a further improvement of the utility model, container recess It is set on the first noumenon;The rounded hollow setting of second ontology, pressing pawl are installed vertically on the inward flange of the second ontology On.
The internal diameter of second ontology is greater than the internal diameter of the first noumenon as a further improvement of the utility model,.
The inward flange of second ontology is equipped with multiple equally distributed pressures as a further improvement of the utility model, Pawl is closed, the pressing pawl end is arranged in tip.
First conductive layer and the second conductive layer shape are expanded as a further improvement of the utility model, for both ends sets It sets, respectively includes the interconnecting piece for pressing for metal pressing part and the crawl section for crawl.
The material of the metal pressing part is copper, the first conductive layer and second as a further improvement of the utility model, The material of conductive layer is aluminium.
Second ontology and pressing pawl are integrally formed setting as a further improvement of the utility model,.
The beneficial effects of the utility model are:
Anti-static plastic-suction dish structure in the utility model is simple, easily manufactured, and metal pressing part can be by directly pressing Mode and conductive layer formed electrostatic prevention structure, be effectively performed electrostatic conduction, avoid electrostatic to electronics member device on plastic sucking disc The damage of part.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is only It is some embodiments recorded in the utility model, for those of ordinary skill in the art, is not making the creative labor Under the premise of, it is also possible to obtain other drawings based on these drawings.
Fig. 1 is the planar structure schematic diagram of Anti-static plastic-suction tray in one specific embodiment of the utility model;
Fig. 2 is the scheme of installation of electrostatic prevention structure in one specific embodiment of the utility model;
Fig. 3 is the schematic perspective view of supporting part in one specific embodiment of the utility model;
Fig. 4 is the schematic perspective view of nip portion in one specific embodiment of the utility model;
Fig. 5 is the planar structure schematic diagram of the first conductive layer and the second conductive layer in one specific embodiment of the utility model.
Specific embodiment
In order to make those skilled in the art more fully understand the technical solution in the utility model, below in conjunction with this reality With the attached drawing in new embodiment, the technical scheme in the utility model embodiment is clearly and completely described, it is clear that The described embodiments are only a part of the embodiments of the utility model, instead of all the embodiments.Based on the utility model In embodiment, every other implementation obtained by those of ordinary skill in the art without making creative efforts The range of the utility model protection all should belong in example.
In each diagram of the invention, for the ease of illustration, structure or partial certain sizes can be relative to other knots Therefore structure or partial enlargement are only used for the basic structure of diagram subject of the present invention.
The term of the representation space relative position used herein such as "upper", " top ", "lower", " lower section " is for just A unit as shown in the drawings or feature are described relative to another unit or the relationship of feature in the purpose of explanation.It is empty Between the term of relative position can be intended to include different direction of the equipment in use or work other than orientation as shown in the figure. For example, the unit for being described as being located at other units or feature " below " or " under " will if the equipment in figure overturn Positioned at other units or feature " top ".Therefore, exemplary term " lower section " can include above and below both orientation.
Join shown in Fig. 1, Fig. 2, one of one specific embodiment of the utility model Anti-static plastic-suction tray, Anti-static plastic-suction tray Several electrostatic prevention structures 20 including plastic sucking disc ontology 10 and in plastic sucking disc ontology both side surface, electrostatic prevention structure 20 include The first conductive layer 21 on 10 first surface of plastic sucking disc ontology (lower surface), be set to 10 second surface of plastic sucking disc ontology (on Surface) on the second conductive layer and for the first conductive layer 21 and the second conductive layer 22 to be pressure bonded to the gold on plastic sucking disc ontology Belong to pressing part 23, metal pressing part 23 includes the supporting part 231 being oppositely arranged and nip portion 232, supporting part 231 and nip portion 232 are respectively arranged on the first conductive layer 21 and the second conductive layer 22.
As shown in connection with fig. 3, supporting part 231 includes the first noumenon 2311 and the container 2312 on the first noumenon, knot It closes shown in Fig. 4, nip portion 232 includes the second ontology 2321 and the pressing pawl 2322 on the second ontology.
Nip portion and supporting part are laminated fixation, the pressing pawl 2322 in nip portion 232 through the second conductive layer 22, inhale It is fixed in the container 2312 of supporting part 231 after modeling disk ontology 10 and the first conductive layer 21, the first conductive layer 21 and second is led Electrostatic between electric layer 22 is shifted by metal pressing part.
Preferably, the first conductive layer 21 by the first conductive adhesive layer 24 is attached at the of plastic sucking disc ontology 10 in the present embodiment On one surface, the second conductive layer 22 is attached on the second surface of plastic sucking disc ontology 10 by the second conductive adhesive layer 25.
Join rounded hollow setting among the first noumenon 2311 shown in Fig. 3, Fig. 4, in the present embodiment, container 2312 is recessed It falls into and is set on the first noumenon 2311;The rounded hollow setting of second ontology 2321, pressing pawl 2322 are installed vertically on second On the inward flange of body 2321, it is preferable that the internal diameter of the second ontology 2321 is greater than the internal diameter of the first noumenon 2311.
2322 end of pawl is pressed to be arranged in tip, outward from the second ontology 2321, the width of pressing pawl 2322 is gradually reduced, Pressing pawl so may be implemented through plastic sucking disc ontology through pressing.Further, the second ontology 2321 and pressing pawl 2322 Be integrally formed setting.
Preferably, the inward flange of the second ontology 2321 is equipped with multiple equally distributed pressing pawls 2322, such as the present embodiment There are five pawl is pressed, the quantity for pressing pawl in other embodiments can be set to other quantity for middle setting.
As shown in connection with fig. 5, the first conductive layer 21 in the present embodiment and 22 shape of the second conductive layer are that setting is expanded at both ends, Respectively include the interconnecting piece 201 for pressing for metal pressing part and the crawl section 202 for crawl.
Preferably, the material of metal pressing part is copper in the present embodiment, and the material of the first conductive layer and the second conductive layer is Aluminium.
Supporting part when in use, can be placed in ground by the Anti-static plastic-suction tray in the present embodiment, be led when second When forming electrostatic in electric layer, electrostatic by nip portion by that can be conducted to supporting part and the first conductive layer, to avoid plastic uptake Disk upper surface remains electrostatic.
Plastic sucking disc in the utility model can be used for the transport of the products such as liquid crystal display panel, pcb board, no longer arrange one by one herein It lifts.
As can be seen from the above technical solutions, the utility model has the following beneficial effects:
Anti-static plastic-suction dish structure in the utility model is simple, easily manufactured, and metal pressing part can be by directly pressing Mode and conductive layer formed electrostatic prevention structure, be effectively performed electrostatic conduction, avoid electrostatic to electronics member device on plastic sucking disc The damage of part.
It is obvious to a person skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and And without departing substantially from the spirit or essential attributes of the utility model, it can realize that this is practical new in other specific forms Type.Therefore, in all respects, the present embodiments are to be considered as illustrative and not restrictive, this is practical new The range of type is indicated by the appended claims rather than the foregoing description, it is intended that containing for the equivalent requirements of the claims will be fallen in All changes in justice and range are embraced therein.It should not treat any reference in the claims as limiting Related claim.
In addition, it should be understood that although this specification is described in terms of embodiments, but not each embodiment is only wrapped Containing an independent technical solution, this description of the specification is merely for the sake of clarity, and those skilled in the art should It considers the specification as a whole, the technical solutions in the various embodiments may also be suitably combined, forms those skilled in the art The other embodiments being understood that.

Claims (8)

1. a kind of Anti-static plastic-suction tray, which is characterized in that the Anti-static plastic-suction tray include plastic sucking disc ontology and be set to plastic sucking disc Several electrostatic prevention structures in ontology both side surface, the electrostatic prevention structure include the on the plastic sucking disc first body surface One conductive layer, the second conductive layer on plastic sucking disc second body surface and for by the first conductive layer and the second conductive layer The metal pressing part being pressure bonded on plastic sucking disc ontology, the metal pressing part includes the supporting part being oppositely arranged and nip portion, is held Load portion and nip portion are respectively arranged on the first conductive layer and the second conductive layer, the supporting part include the first noumenon and be set to first Container on ontology, nip portion include the second ontology and the pressing pawl on the second ontology, and the pressing pawl in nip portion passes through It is fixed in the container of supporting part after wearing the second conductive layer, plastic sucking disc ontology and the first conductive layer, the first conductive layer and second Electrostatic between conductive layer is shifted by metal pressing part.
2. Anti-static plastic-suction tray according to claim 1, which is characterized in that first conductive layer passes through the first conducting resinl Layer is attached on the first surface of plastic sucking disc ontology, and second conductive layer is attached at plastic sucking disc ontology by the second conductive adhesive layer Second surface on.
3. Anti-static plastic-suction tray according to claim 1, which is characterized in that rounded among the first noumenon hollow to set It sets, container recess is set on the first noumenon;The rounded hollow setting of second ontology, pressing pawl are installed vertically on second On the inward flange of ontology.
4. Anti-static plastic-suction tray according to claim 3, which is characterized in that the internal diameter of second ontology is greater than first The internal diameter of body.
5. Anti-static plastic-suction tray according to claim 3, which is characterized in that the inward flange of second ontology is equipped with more A equally distributed pressing pawl, the pressing pawl end are arranged in tip.
6. Anti-static plastic-suction tray according to claim 1, which is characterized in that first conductive layer and the second conductive layer shape Shape is that setting is expanded at both ends, respectively includes the interconnecting piece for pressing for metal pressing part and the crawl section for crawl.
7. Anti-static plastic-suction tray according to claim 1, which is characterized in that the material of the metal pressing part is copper, the The material of one conductive layer and the second conductive layer is aluminium.
8. Anti-static plastic-suction tray according to claim 1, which is characterized in that second ontology and pressing pawl are integrated into Type setting.
CN201821849224.XU 2018-11-09 2018-11-09 Anti-static plastic-suction tray Active CN209410586U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821849224.XU CN209410586U (en) 2018-11-09 2018-11-09 Anti-static plastic-suction tray

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821849224.XU CN209410586U (en) 2018-11-09 2018-11-09 Anti-static plastic-suction tray

Publications (1)

Publication Number Publication Date
CN209410586U true CN209410586U (en) 2019-09-20

Family

ID=67933511

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821849224.XU Active CN209410586U (en) 2018-11-09 2018-11-09 Anti-static plastic-suction tray

Country Status (1)

Country Link
CN (1) CN209410586U (en)

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