CN109037993A - A kind of buckle structure and snap method for sheet metal in charging interface - Google Patents

A kind of buckle structure and snap method for sheet metal in charging interface Download PDF

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Publication number
CN109037993A
CN109037993A CN201810564626.3A CN201810564626A CN109037993A CN 109037993 A CN109037993 A CN 109037993A CN 201810564626 A CN201810564626 A CN 201810564626A CN 109037993 A CN109037993 A CN 109037993A
Authority
CN
China
Prior art keywords
sheet metal
buckle
metal body
charging interface
plastic part
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201810564626.3A
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Chinese (zh)
Inventor
李春生
白明光
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kunshan Chengzhihong Electronic Technology Co Ltd
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Kunshan Chengzhihong Electronic Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Kunshan Chengzhihong Electronic Technology Co Ltd filed Critical Kunshan Chengzhihong Electronic Technology Co Ltd
Priority to CN201810564626.3A priority Critical patent/CN109037993A/en
Publication of CN109037993A publication Critical patent/CN109037993A/en
Pending legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/02Contact members
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/26Power supply means, e.g. regulation thereof
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R43/00Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
    • H01R43/16Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for manufacturing contact members, e.g. by punching and by bending
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R2201/00Connectors or connections adapted for particular applications
    • H01R2201/06Connectors or connections adapted for particular applications for computer periphery

Abstract

A kind of buckle structure and snap method for sheet metal in charging interface, plastic part body thickness two sides are equipped with the first sheet metal body, second sheet metal body, the length both ends of two metal sheets ontology are equipped with matched buckle structure and are connected by buckle structure, two metal sheets body length both ends buckle fixation in a manner of being close to and wrap up plastic part body length both ends, buckle structure involved in the invention patent makes the snapping connection instead of radium-shine welding manner in the prior art mechanically of two metal sheets length end in charging interface, on the one hand the capital investment of radium-shine bonding machine is eliminated and manually to the cost of labor of positive pad, it on the other hand will not be since it is desired that reserving welding position at sheet metal both ends and the waste of sheet material being caused to even result in the excessive phenomenon of charging interface volume, in addition to this, buckle structure connects The mode of connecing avoids stain and cleaning process after radium-shine welding.

Description

A kind of buckle structure and snap method for sheet metal in charging interface
Technical field
The present invention relates to the mechanical structured member technical fields of computer components, specially a kind of for metal in charging interface The buckle structure and snap method of piece.
Background technique
Present computer has become that people's life, work one of essential tool, type, brand, the size of computer And performance configuration is varied.The energy or power supply of computer now, so all including on computer architecture can be with external world's supply electricity The charging interface component of source connection, the thickness two sides of plastic part ontology are pasted with two panels sheet metal in charging interface component, only Have for be fixed together at the length both ends of this two panels sheet metal and be just able to achieve the electric energy transfer function of charging interface, guarantees computer The supply of normal electricity, in the prior art to be welded together two metal plates using radium-shine welding technique, radium-shine welding is solid The mode for determining sheet metal has the following deficiencies: first, and radium-shine welding needs radium-shine welding equipment, and equipment price itself compared with Height improves the production and assembly cost of charging interface;Second, sheet metal length both ends be required to extend plastic plate ontology with Just radium-shine welding position is reserved, while wasting sheet metal, increases the volume of charging interface structure;Third, radium-shine welding Charging interface afterwards can leave stain in the pad of sheet metal, the later period is needed to clear up, increase structure and assemble complexity;The Four: needing manual-alignment pad in radium-shine welding process, artificial investment is also required in later period cleaning process.
Summary of the invention
A kind of buckle structure for sheet metal in charging interface, comprising: 1 thickness two sides of plastic part ontology are equipped with stainless steel Material and same thickness, the first sheet metal body 21 of length dimension, the second sheet metal body 22, the first sheet metal body 21, The length both ends of second sheet metal body 22 are equipped with matched buckle structure and are connected by buckle structure, the first sheet metal Ontology 21, the second sheet metal body 22 length both ends buckled in a manner of being close to and wrapping up 1 length both ends of plastic part ontology It is fixed.
Two metal sheets length end snapping connection instead of radium-shine welding in the prior art mechanically in charging interface On the one hand mode eliminates the capital investment of radium-shine bonding machine and manually to the cost of labor of positive pad, on the other hand will not Since it is desired that reserving welding position at sheet metal both ends and the waste of sheet material being caused to even result in charging interface volume mistake Big phenomenon, in addition to this, buckle structure connection type avoid stain and cleaning process after radium-shine welding.
Preferably, the buckle structure for sheet metal in charging interface, the same end buckle structure include processing not With the buckle mounting groove 31 on sheet metal, buckle protrusion 32, buckle protrusion 32 is placed in two sheet metals in buckle mounting groove 31 Ontology buckle is fixed, and plastic part ontology 1 is close in the sheet metal end for being machined with buckle protrusion 32, and buckle protrusion 32 is located at sheet metal The upper side plate face far from plastic part ontology 1.
The buckle structure being related in the prior art is varied, but the ring enclosed snapped connection is both needed at this both ends In the case where, the buckle structure of too complex will increase the operation complexity that sheet metal end is fixed in charging interface, improve card The error rate of connection is detained, the above-mentioned buckle structure being related to simplifies buckle on guaranteeing metal bit end portion connection buckle firm foundations Operation, yields are up to 98% or more.
Preferably, the buckle structure for sheet metal in charging interface, the left end setting of the first sheet metal body 21 There are buckle mounting groove 31, right end to be provided with buckle protrusion 32, on the contrary, it is convex that the left end of the second sheet metal body 22 is provided with buckle It plays 32, right end and is provided with buckle mounting groove 31.
The setting that above-mentioned two sheet metal both ends buckle structure is switched, makes two sheet metals the two of plastic part ontology 1 End forms staggered form buckle structure, i.e. the left end of plastic part ontology 1 is that plastic part sheet is close in 22 end of the second sheet metal body 1 end face of body, plastic part ontology 1 right end be 21 end of the first sheet metal body be close to 1 end face of plastic part ontology, this crossed card The arrangement mode of button further enhances the connectivity robustness of two sheet metals, and (left and right end herein is only for facilitating structure to retouch It states, not to the restriction in charging interface direction).
Preferably, the buckle structure for sheet metal in charging interface, buckle mounting groove 31 can be round hole or four Square hole, correspondingly, buckle protrusion 32 is to be machined with the unfilled corner type cylindrical protrusions or unfilled corner type square protrusion of inclination sliding surface 321 And raised 32 height of projection maximum sides are buckled against the inner side edge of buckle mounting groove 31.
Buckle structure is processed into the identical shape of shape, is convenient for as long as the size setting of buckle structure rationally can guarantee It can avoid the mobile dislocation between buckle structure on the basis of the assembling of buckle structure again;Secondly, the setting of inclination sliding surface 321 is just It installs and operates in the buckle of buckle mounting groove 31 and buckle protrusion 32.
A kind of snap method for sheet metal buckle structure in above-mentioned charging interface, steps are as follows for snap-action:
01: by the first sheet metal body 21 of straightened condition, 22 location and installation of the second sheet metal body in plastic part ontology 1 In the plate face of front and back (it is machined with the positioning protrusion structure for the interspersed positioning of sheet metal on plastic part ontology 1 in the prior art, is convenient for Sheet metal is arrived into the thickness two sides of plastic part ontology 1 by pressing direct location and installation, no longer huge legendary turtle states positioning and ties in this patent Structure);
02: by first sheet metal body 21 of the location and installation on plastic part ontology 1,22 end of the second sheet metal body Buckling raised 32 part bendings makes it be close to the end face of plastic part ontology 1;
03: by the first sheet metal body 21, the buckle 31 part bending of mounting groove of 22 other end of the second sheet metal body and making Buckle protrusion 32 is buckled in buckle mounting groove 31.
A kind of snap method for sheet metal buckle structure in above-mentioned charging interface, steps are as follows for snap-action:
01: the first sheet metal body 21 of " the U-shape state " after bending is distinguished at both ends, the second sheet metal body 22 is distinguished It is placed in 1 front and back plate face two sides of plastic part ontology;
02: by the first sheet metal body 21, the second sheet metal body 22 alignment plastic part ontology 1 location and installation position with Pressing mode moves the first sheet metal body 21, the second sheet metal body 22 towards 1 direction of plastic part ontology;
It is machined with 1 endface position of sheet metal tip inside face face plastic part ontology of buckle protrusion 32, and is machined with card The sheet metal tip inside identity distance of mounting groove 31 is detained with a distance from 1 end face L of plastic part ontology, wherein L is equal to the first sheet metal body 21, the thickness of the second sheet metal body 22;
03: two metal sheets ontology is adjacent to each other when the front and back plate face of abutting plastic part ontology 1, two metal sheets ontology two The buckle protrusion 32 of end is buckled in just in buckle mounting groove 31.
The snap method of above two buckle structure can all realize snap-action, the former is to straightened condition sheet metal body Bending needs the lesser dedicated bending equipment of active area, due to be first installation navigate on plastic part ontology 1 after rolled over Curved, snap-action, so the process that the sheet metal body of stainless steel material will not undergo the latter's flexible deformation to buckle, compared to rear Person, the buckle part power of a test of buckle structure is higher, buckle fastness is preferable.
In comparison, the latter is after first carrying out bending to sheet metal body both ends, then to be aligned on plastic part ontology 1 and determine Position installation site and push sheet metal body make the snap part at its both ends buckle I how mixed together, block compared to the former Button method, the latter do not need to buy the lesser dedicated bending equipment of sphere of action, substantially reduce charging interface production cost.
Preferably, the maximum gauge of the buckle structure for sheet metal in charging interface, buckle protrusion 32 is less than card Detain the thickness of mounting groove 31.Guarantee that raised 32 top end parts of the buckle being mounted in buckle mounting groove 31 will not protrude buckle mounting groove 31, it will not influence the normal work of charging interface.
Preferably, the buckle structure for sheet metal in charging interface, buckle protrusion 32 is close to card in buckle structure The position of button mounting groove 31 is machined with clip notch 322, and the partially embedded clip of inside edge of buckle mounting groove 31 is buckling In protrusion 32, buckle stability is greatly improved.
Preferably, the buckle structure for sheet metal in charging interface, it is tight that buckle mounting groove 31 is snapped protrusion 32 The inner side edge position of patch is machined with clip notch 311, buckles raised 32 embedded type clamps in clip notch 311, greatly improves Buckle stability.
Preferably, the buckle structure for sheet metal in charging interface, the first sheet metal body 21, the second sheet metal Ontology 22 has installed chamfering structure 4 close to two-end part, and chamfering structure 4 is located at buckle mounting groove 31, buckles raised 32 front parts The seamed edge corner of position and face plastic part ontology 1.
Detailed description of the invention:
Specific embodiment is further described with reference to the accompanying drawing, in which:
Fig. 1 a, 1b difference charging interface in the prior art, charging interface structural schematic diagram of the present invention;
Fig. 2 is sheet metal structure schematic diagram in the buckle structure of the present invention for sheet metal in charging interface;
Fig. 3 is buckle structure assembling figure in the buckle structure of the present invention for sheet metal in charging interface;
Fig. 4 is the structure of cylindrical buckle protrusion in the buckle structure of the present invention for sheet metal in charging interface Schematic diagram;
Fig. 5 a is the knot of square buckle protrusion in the buckle structure of the present invention for sheet metal in charging interface Structure schematic diagram;
Fig. 5 b is buckle structure assembling figure in the buckle structure of the present invention for sheet metal in charging interface;
Fig. 6 is the schematic diagram of the present invention for the snap method of sheet metal buckle structure in charging interface;
Fig. 7 is the schematic diagram of the present invention for the snap method of sheet metal buckle structure in charging interface;
It is as follows to number corresponding specific structure:
Plastic part ontology 1, the first sheet metal body 21, the second sheet metal body 22 buckle mounting groove 31, clip notch 311, buckle protrusion 32 tilts sliding surface 321, clip notch 322, chamfering structure 4;
Specific embodiment
The present invention that the following detailed description will be further explained with reference to the above drawings.
Case 1 is embodied:
A kind of buckle structure for sheet metal in charging interface, comprising: 1 thickness two sides of plastic part ontology are equipped with stainless steel Material and same thickness, the first sheet metal body 21 of length dimension, the second sheet metal body 22, the first sheet metal body 21, The length both ends of second sheet metal body 22 are equipped with matched buckle structure and are connected by buckle structure, the first sheet metal Ontology 21, the second sheet metal body 22 length both ends buckled in a manner of being close to and wrapping up 1 length both ends of plastic part ontology It is fixed.
Wherein, the same end buckle structure includes buckle mounting groove 31, the buckle raised 32 processed in different metal on piece, card Button protrusion 32, which is placed in buckle mounting groove 31, fixes two sheet metal body buckles, is machined with the metal bit end of buckle protrusion 32 Plastic part ontology 1 is close in portion, and buckle protrusion 32 is located at the side plate face on sheet metal far from plastic part ontology 1.
Wherein, the left end of the first sheet metal body 21 is provided with buckle mounting groove 31, right end is provided with buckle protrusion 32, phase Anti-, the left end of the second sheet metal body 22 is provided with buckle protrusion 32, right end is provided with buckle mounting groove 31.
For the snap method of sheet metal buckle structure in above-mentioned charging interface, steps are as follows for snap-action:
01: by the first sheet metal body 21 of straightened condition, 22 location and installation of the second sheet metal body in plastic part ontology 1 In the plate face of front and back (it is machined with the positioning protrusion structure for the interspersed positioning of sheet metal on plastic part ontology 1 in the prior art, is convenient for Sheet metal is arrived into the thickness two sides of plastic part ontology 1 by pressing direct location and installation, no longer huge legendary turtle states positioning and ties in this patent Structure);
02: by first sheet metal body 21 of the location and installation on plastic part ontology 1,22 end of the second sheet metal body Buckling raised 32 part bendings makes it be close to the end face of plastic part ontology 1;
03: by the first sheet metal body 21, the buckle 31 part bending of mounting groove of 22 other end of the second sheet metal body and making Buckle protrusion 32 is buckled in buckle mounting groove 31.
Further, buckle mounting groove 31 is round hole, correspondingly, buckle protrusion 32 is to be machined with inclination sliding surface 321 Unfilled corner shape cylindrical protrusions and the raised 32 height of projection maximum sides of buckle abut the inner side edge of buckle mounting groove 31.
Further, the maximum gauge of buckle protrusion 32 is less than the thickness of buckle mounting groove 31.
Further, the position that 32 abutting buckle mounting groove 31 of protrusion is buckled in buckle structure is machined with clip notch 322, The partially embedded clip of inside edge of mounting groove 31 is buckled in buckle protrusion 32, greatly improves buckle stability.
Selectable, the first sheet metal body 21, the second sheet metal body 22 have installed chamfering structure close to two-end part 4, the seamed edge corner that chamfering structure 4 is located at buckle mounting groove 31, buckles raised 32 front positions and face plastic part ontology 1.
Buckle structure and bayonet method of the present invention for sheet metal in charging interface makes two gold medal in charging interface Belong to leaf length end snapping connection instead of radium-shine welding manner in the prior art mechanically, on the one hand eliminates radium-shine weldering The capital investment that picks and manually to the cost of labor of positive pad, on the other hand will not be since it is desired that reserved at sheet metal both ends Welding position and cause the waste of sheet material to even result in the excessive phenomenon of charging interface volume, in addition to this, buckle knot Structure connection type avoids stain and cleaning process after radium-shine welding.
Case 2 is embodied:
A kind of buckle structure for sheet metal in charging interface, comprising: 1 thickness two sides of plastic part ontology are equipped with stainless steel Material and same thickness, the first sheet metal body 21 of length dimension, the second sheet metal body 22, the first sheet metal body 21, The length both ends of second sheet metal body 22 are equipped with matched buckle structure and are connected by buckle structure, the first sheet metal Ontology 21, the second sheet metal body 22 length both ends buckled in a manner of being close to and wrapping up 1 length both ends of plastic part ontology It is fixed.
Wherein, the same end buckle structure includes buckle mounting groove 31, the buckle raised 32 processed in different metal on piece, card Button protrusion 32, which is placed in buckle mounting groove 31, fixes two sheet metal body buckles, is machined with the metal bit end of buckle protrusion 32 Plastic part ontology 1 is close in portion, and buckle protrusion 32 is located at the side plate face on sheet metal far from plastic part ontology 1.
Wherein, the left end of the first sheet metal body 21 is provided with buckle mounting groove 31, right end is provided with buckle protrusion 32, phase Anti-, the left end of the second sheet metal body 22 is provided with buckle protrusion 32, right end is provided with buckle mounting groove 31.
For the snap method of sheet metal buckle structure in above-mentioned charging interface, steps are as follows for snap-action:
01: the first sheet metal body 21 of " the U-shape state " after bending is distinguished at both ends, the second sheet metal body 22 is distinguished It is placed in 1 front and back plate face two sides of plastic part ontology;
02: by the first sheet metal body 21, the second sheet metal body 22 alignment plastic part ontology 1 location and installation position with Pressing mode moves the first sheet metal body 21, the second sheet metal body 22 towards 1 direction of plastic part ontology;
It is machined with 1 endface position of sheet metal tip inside face face plastic part ontology of buckle protrusion 32, and is machined with card The sheet metal tip inside identity distance of mounting groove 31 is detained with a distance from 1 end face L of plastic part ontology, wherein L is equal to the first sheet metal body 21, the thickness of the second sheet metal body 22;
03: two metal sheets ontology is adjacent to each other when the front and back plate face of abutting plastic part ontology 1, two metal sheets ontology two The buckle protrusion 32 of end is buckled in just in buckle mounting groove 31.
Further, buckle mounting groove 31 is square hole, correspondingly, buckle protrusion 32 is to be machined with inclination sliding surface 321 Square protrusion and the raised 32 height of projection maximum sides of buckle abut the inner side edge of buckle mounting groove 31.
Further, the maximum gauge of buckle protrusion 32 is less than the thickness of buckle mounting groove 31.
Further, the position that 32 abutting buckle mounting groove 31 of protrusion is buckled in buckle structure is machined with clip notch 322, The partially embedded clip of inside edge of mounting groove 31 is buckled in buckle protrusion 32, greatly improves buckle stability.
Selectable, the first sheet metal body 21, the second sheet metal body 22 have installed chamfering structure close to two-end part 4, the seamed edge corner that chamfering structure 4 is located at buckle mounting groove 31, buckles raised 32 front positions and face plastic part ontology 1.
Buckle structure and bayonet method of the present invention for sheet metal in charging interface makes two gold medal in charging interface Belong to leaf length end snapping connection instead of radium-shine welding manner in the prior art mechanically, on the one hand eliminates radium-shine weldering The capital investment that picks and manually to the cost of labor of positive pad, on the other hand will not be since it is desired that reserved at sheet metal both ends Welding position and cause the waste of sheet material to even result in the excessive phenomenon of charging interface volume, in addition to this, buckle knot Structure connection type avoids stain and cleaning process after radium-shine welding.
The embodiments described above only express several embodiments of the present invention, and the description thereof is more specific and detailed, but simultaneously Limitations on the scope of the patent of the present invention therefore cannot be interpreted as.It should be pointed out that for those of ordinary skill in the art For, without departing from the inventive concept of the premise, various modifications and improvements can be made, these belong to guarantor of the invention Protect range.Therefore, the scope of protection of the patent of the invention shall be subject to the appended claims.

Claims (10)

1. a kind of buckle structure for sheet metal in charging interface, plastic part body thickness two sides are equipped with stainless steel material and phase Stack pile, the first sheet metal body of length dimension, the second sheet metal body, the first sheet metal body, the second sheet metal body Length both ends be equipped with matched buckle structure and by buckle structure connect, the first sheet metal body, the second sheet metal The length both ends of ontology buckle fixation in a manner of being close to and wrap up plastic part body length both ends.
2. the buckle structure for sheet metal in charging interface as described in claim 1, its feature is as follows: the buckle knot of one end Structure include process respectively different metal on piece buckle mounting groove, buckle protrusion, buckle protrusion be placed in buckle mounting groove in will Two sheet metal body end anchors are fixed, and plastic part ontology, buckle protrusion are close in the sheet metal end for being machined with buckle protrusion Far from the side plate face of plastic part ontology on sheet metal.
3. the buckle structure for sheet metal in charging interface as claimed in claim 2, its feature is as follows: the first sheet metal body Left end be provided with buckle mounting groove, right end and be provided with buckle protrusion, opposite, the left end of the second sheet metal body is provided with card Button protrusion, right end are provided with buckle mounting groove.
4. the buckle structure as described in any in claim 3 for sheet metal in charging interface, its feature is as follows: buckle installation Slot is round hole or square hole, and corresponding buckle protrusion is to be machined with the unfilled corner type cylindrical protrusions or unfilled corner type four of inclination sliding surface Square protruding buckles inner side edge of the height of projection maximum side against buckle mounting groove of protrusion.
5. the buckle structure for sheet metal in charging interface as claimed in claim 4, its feature is as follows: the maximum of buckle protrusion Thickness is less than the thickness of buckle mounting groove.
6. the buckle structure for sheet metal in charging interface as claimed in claim 2, its feature is as follows: being buckled in buckle structure The position that protrusion is close to buckle mounting groove is machined with clip notch, buckles the partially embedded clip of inside edge of mounting groove in card In button protrusion.
7. the buckle structure for sheet metal in charging interface as claimed in claim 2, its feature is as follows: buckle mounting groove is by card The inner side edge position that button protrusion is close to is machined with clip notch, buckles raised embedded type clamp in clip notch.
8. the buckle structure for sheet metal in charging interface as claimed in claim 2, its feature is as follows: the first sheet metal sheet Body, the second sheet metal body have installed chamfering structure close to two-end part, before chamfering structure is located at buckle mounting groove, buckle protrusion The seamed edge corner of square position and face plastic part ontology.
9. the snap method as described in any in Claims 1 to 4 for sheet metal buckle structure in charging interface, step is such as Under:
01: by the first sheet metal body of straightened condition, the second sheet metal body location and installation plate face before and after plastic part ontology On;
02: first sheet metal body, the buckle of second sheet metal body end of the location and installation on plastic part ontology is raised Part bending makes it be close to the end face of plastic part ontology;
03: by the first sheet metal body, the installation slot part bending of second sheet metal body other end buckle and making to buckle raised card It is buckled in buckle mounting groove.
10. the snap method as described in any in Claims 1 to 4 for sheet metal buckle structure in charging interface, step is such as Under:
01: the first sheet metal body, the second sheet metal body that " U-shape state " after bending is distinguished at both ends are respectively placed in plastics Plate face two sides before and after part ontology;
02: the first sheet metal body, the second sheet metal body are directed at the location and installation position of plastic part ontology in a manner of pressing Move the first sheet metal body, the second sheet metal body towards plastic part ontology direction;
It is machined with the sheet metal tip inside face face plastic part ontology endface position of buckle protrusion, and is machined with buckle mounting groove Sheet metal tip inside identity distance with a distance from plastic part ontology end face L, wherein L be equal to the first sheet metal body, the second sheet metal The thickness of ontology;
03: two metal sheets ontology is adjacent to each other when the front and back plate face of abutting plastic part ontology, two metal sheets ontology both ends Buckle protrusion just be buckled in buckle mounting groove in.
CN201810564626.3A 2018-06-04 2018-06-04 A kind of buckle structure and snap method for sheet metal in charging interface Pending CN109037993A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810564626.3A CN109037993A (en) 2018-06-04 2018-06-04 A kind of buckle structure and snap method for sheet metal in charging interface

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Application Number Priority Date Filing Date Title
CN201810564626.3A CN109037993A (en) 2018-06-04 2018-06-04 A kind of buckle structure and snap method for sheet metal in charging interface

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Publication Number Publication Date
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Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020192998A1 (en) * 2001-06-14 2002-12-19 Sumitomo Wiring Systems, Ltd. Connector
CN2679873Y (en) * 2004-02-04 2005-02-16 许程印 Structure of flexible winding displacement connector
CN201204285Y (en) * 2008-04-16 2009-03-04 富士康(昆山)电脑接插件有限公司 Cable connector
CN201829647U (en) * 2010-04-26 2011-05-11 陈松佑 Electric connector
CN102185189A (en) * 2010-12-31 2011-09-14 东莞市胜蓝电子有限公司 FFC (flexible flat cable) electric connector
CN103378493A (en) * 2012-04-16 2013-10-30 达昌电子科技(苏州)有限公司 Electric connector
CN203466370U (en) * 2013-09-18 2014-03-05 金工精密制造(深圳)有限公司 FFC plugging element
CN105048116A (en) * 2015-08-12 2015-11-11 昆山高健电子工业有限公司 Out-of-positive-intrinsic-negative diode (PIN) lapping connector
CN208538081U (en) * 2018-06-04 2019-02-22 昆山诚智鸿电子科技有限公司 A kind of sheet metal fixing structure for buckle for charging interface

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020192998A1 (en) * 2001-06-14 2002-12-19 Sumitomo Wiring Systems, Ltd. Connector
CN2679873Y (en) * 2004-02-04 2005-02-16 许程印 Structure of flexible winding displacement connector
CN201204285Y (en) * 2008-04-16 2009-03-04 富士康(昆山)电脑接插件有限公司 Cable connector
CN201829647U (en) * 2010-04-26 2011-05-11 陈松佑 Electric connector
CN102185189A (en) * 2010-12-31 2011-09-14 东莞市胜蓝电子有限公司 FFC (flexible flat cable) electric connector
CN103378493A (en) * 2012-04-16 2013-10-30 达昌电子科技(苏州)有限公司 Electric connector
CN203466370U (en) * 2013-09-18 2014-03-05 金工精密制造(深圳)有限公司 FFC plugging element
CN105048116A (en) * 2015-08-12 2015-11-11 昆山高健电子工业有限公司 Out-of-positive-intrinsic-negative diode (PIN) lapping connector
CN208538081U (en) * 2018-06-04 2019-02-22 昆山诚智鸿电子科技有限公司 A kind of sheet metal fixing structure for buckle for charging interface

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