CN102458173A - Button mounting member - Google Patents
Button mounting member Download PDFInfo
- Publication number
- CN102458173A CN102458173A CN200980159738XA CN200980159738A CN102458173A CN 102458173 A CN102458173 A CN 102458173A CN 200980159738X A CN200980159738X A CN 200980159738XA CN 200980159738 A CN200980159738 A CN 200980159738A CN 102458173 A CN102458173 A CN 102458173A
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- China
- Prior art keywords
- inclined plane
- mentioned
- post portion
- installation component
- button installation
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Classifications
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- A—HUMAN NECESSITIES
- A44—HABERDASHERY; JEWELLERY
- A44B—BUTTONS, PINS, BUCKLES, SLIDE FASTENERS, OR THE LIKE
- A44B1/00—Buttons
- A44B1/18—Buttons adapted for special ways of fastening
- A44B1/44—Buttons adapted for special ways of fastening with deformable counterpiece
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- A—HUMAN NECESSITIES
- A44—HABERDASHERY; JEWELLERY
- A44B—BUTTONS, PINS, BUCKLES, SLIDE FASTENERS, OR THE LIKE
- A44B17/00—Press-button or snap fasteners
- A44B17/0005—Fastening of press-button fasteners
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- Slide Fasteners, Snap Fasteners, And Hook Fasteners (AREA)
Abstract
A button mounting member (10) is equipped with a base (11, 71) and a columnar post (12, 52, 62, 72) formed to stand upright on the surface of the base (11, 71). The columnar post (12, 52, 62, 72) is equipped with a post barrel part (18, 58, 68, 78) extending from the surface of the base (11, 71) and a triangular cone-shaped post top part (19, 59, 69, 79) extending from the post barrel part (18, 58, 68, 78). The post top part (19, 59, 69, 79) is provided with three first inclined surfaces (13, 53, 63, 73) that form the three side surfaces of the triangular cone, and second inclined surfaces (14, 54, 64, 74) that are inclined toward the tip and are formed on ridge parts (15, 55, 65, 75) between the adjacent first inclined surfaces (13, 53, 63, 73).
Description
Technical field
The present invention relates to a kind of cloth, make the button installation component of installing on the flexible base materials such as resin sheet of bag or chest at clothes.
Background technology
Generally, female snap fastener has button installation component and female snap fastener main body or public snap fastener and has button installation component and public snap fastener main body, and this button installation component has the post portion of holding up shape; Be formed with insertion mouth that the post portion that supplies the button installation component inserts or be formed with the insertion mouth that the post portion that supplies the button installation component inserts in this mother's snap fastener main body in this public affairs snap fastener main body; Make the post portion of button installation component run through the flexible base materials such as cloth of clothes, and this post portion inserted in the insertion mouth of female snap fastener main body or public snap fastener main body of the opposite side that is located at this flexible substrate, thereby female snap fastener or public snap fastener are installed on this flexible substrate.
When making the button installation component run through flexible base materials such as cloth, according to the difference of the material of flexible substrate, thickness etc., the contact resistance between button installation component and the flexible substrate might increase.At this; Front end at the button installation component forms under the sharp-pointed cone shape situation; When cone shape front end was clamp-oned flexible substrate, the circumferential whole circumference of cone shape front end edge contacted with flexible substrate, bears the pressure from flexible substrate equably by whole circumference.Therefore, run through flexible substrate during the button installation component is applied excessive load, the button installation component is produced buckle, in addition, might on flexible substrate, produce and reel off raw silk from cocoons.And, when making the button installation component expand the hole of flexible substrate after running through, also might produce fold.
To the problems referred to above, research, the exploitation of various button installation components have been carried out.As this button installation component, a kind of button is for example disclosed in patent documentation 1 with hobnail (tack), this button comprises with hobnail: erect the outstanding cylindrical post portion from the central authorities of flat seat board that is provided with; At the integrally formed head that is rectangular pyramid of the front end of post portion; Corner portion on the cardinal extremity periphery of head forms fastening portion with the mode more outstanding laterally than the outer peripheral face of post portion.
And recording according to above-mentioned technical scheme to provide a kind of button to use hobnail, when using this button to wear the cloth with hobnail thorn, is difficult for producing the fold phenomenon, and can strengthens the fastening with the button boss portion.
Patent documentation 1: TOHKEMY 2001-178505 communique
But; The button installation component (button is used hobnail) that patent documentation 1 is put down in writing is formed with sharp keen crest line between four inclined planes of leading section (head of tetrapyamid shape); When button installation component (button is used hobnail) when running through cloth, this crest line can receive excessive pressure from cloth.At this moment, be not formed with in rib portion under the situation of face, promptly rib portion forms under the situation of crest line; Rib portion is bigger from the pressure that the line that constitutes flexible substrate etc. receives; Therefore, because this pressure, rib portion is damaged; Thereby be difficult to cut off well line etc., and then the problem that button installation component (button is used hobnail) generation is buckled also might take place.
Summary of the invention
The inventor has carried out conscientious research repeatedly, and its result finds that the button installation component that relates to according to following technical scheme can address the above problem.
Promptly; The button installation component that the present invention relates to has base portion and post portion; This post portion forms with the mode of holding up in above-mentioned base surface and is column; The post portion of above-mentioned column has the column top of the extended triangular taper of direction that continues from the extended post main part of above-mentioned base surface with from the front end of this post main part to prolong along this post main part; Above-mentioned column top has three first inclined planes of second inclined plane and three sides that constitute triangular pyramid, and this second inclined plane is formed in the rib portion between this adjacent first inclined plane and towards preceding extreme direction.
According to above-mentioned technical scheme; When the button installation component runs through flexible substrate; Because the effect of release from the pressure of flexible substrate played on first inclined plane, this first inclined plane is formed on the column top of the triangular taper of post portion, so pressure is applied to the rib portion between first inclined plane.At this moment; Owing to be formed with second inclined plane towards preceding extreme direction inclination in rib portion; Therefore not with line but bear pressure from line (lines of formation cloth etc.) etc. with face; Thereby can prevent that rib portion from damaging, and can cut off line etc. well, and can suppress the generation of button installation component well and buckle.
In addition; The button installation component that the present invention relates to is in a technical scheme; The part on the summit that always is formed into above-mentioned post portion is played on second inclined plane of above-mentioned post portion from the centre position (centre position of this specification is meant, the part between the rib portion two-end-point) of above-mentioned rib portion on the direction that above-mentioned post portion holds up.
According to above-mentioned technical scheme, because second inclined plane of post portion is formed up to the summit of post portion from the centre position of rib portion, when therefore making the button installation component run through flexible substrate; Second inclined plane receives the pressure from flexible substrate immediately; Be formed up to the summit of post portion from the centre position of rib portion like above-mentioned this second inclined plane, thereby can prevent that rib portion from damaging, and can further carry out the cut-out of line etc. well; In addition, can further suppress the generation of button installation component well buckles.
In addition, the button installation component that the present invention relates to and then in another technical scheme, in above-mentioned rib portion, the summit that second inclined plane of post portion is formed on above-mentioned post portion apart has on the position of predetermined distance.
According to above-mentioned technical scheme; Owing to the summit that is formed on second inclined plane of post portion of rib portion with post portion apart has on the position of predetermined distance; When therefore making the button installation component run through flexible substrate; At first near the sharp keen rib portion the front end that makes post portion more easily clamp-ons flexible substrate, bears the pressure from flexible substrate by second inclined plane of the centre position part that only is formed at rib portion afterwards.Therefore, can make the button installation component more easily run through flexible substrate with the state of buckling that has suppressed the button installation component well.
In addition, the button installation component that the present invention relates to and then in another technical scheme is formed with above-mentioned second inclined plane in above-mentioned all rib portions.
According to above-mentioned technical scheme; Because second inclined plane is formed in all the rib portions between a plurality of adjacent first inclined planes; When therefore making the button installation component run through flexible substrate, can bear the bigger pressure in the rib portion that is applied to post portion by second inclined plane that is formed in all rib portions.Thereby, can suppress buckling of button installation component better.
In addition; The button installation component that the present invention relates to and then in another technical scheme; The inclination angle on above-mentioned first inclined plane is above-mentioned first inclined plane and perpendicular to formed acute angle between the plane of above-mentioned post portion bearing of trend, and the inclination angle on above-mentioned first inclined plane equates each other.
According to above-mentioned technical scheme,, the inclination angle on first inclined plane equates that therefore when the button installation component ran through flexible substrate, the inclination angle forms first inclined plane that equates each other can balancedly bear the pressure from flexible substrate because forming each other.Thereby, can suppress buckling of button installation component better.
In addition; The button installation component that the present invention relates to and then in another technical scheme; The inclination angle on second inclined plane is above-mentioned second inclined plane and perpendicular to formed acute angle between the plane of above-mentioned post portion bearing of trend, and the inclination angle that is, above-mentioned second inclined plane forms each other and equates.
According to above-mentioned technical scheme; Because forming each other, the inclination angle on second inclined plane equates; Therefore when the button installation component ran through flexible substrate, the inclination angle forms second inclined plane that equates each other can balancedly bear the pressure from flexible substrate in the rib portion that is applied to post portion.Thereby, can suppress buckling of button installation component better.
In addition, the button installation component that the present invention relates to and then in another technical scheme, the inclination angle on above-mentioned second inclined plane is less than the inclination angle on above-mentioned first inclined plane.
According to above-mentioned technical scheme; Because the inclination angle on second inclined plane is less than the inclination angle on first inclined plane; Therefore when making the button installation component run through flexible substrate; Second inclined plane contacts with flexible substrate prior to first inclined plane and bears pressure, thereby can carry out the cut-out of the line etc. of flexible substrate well.
In addition; The button installation component that the present invention relates to and then in another technical scheme; Directly over above-mentioned post portion, overlook above-mentioned post portion; When to be the center along the angle of the circumferential expansion of above-mentioned post portion be made as first drift angle, second drift angle respectively with the summit with above-mentioned post portion on above-mentioned inclined plane, drift angle second drift angle on second inclined plane was less than drift angle first drift angle on first inclined plane.
According to above-mentioned technical scheme, because the drift angle on second inclined plane is less than the drift angle on first inclined plane, therefore second inclined plane can be carried out the cut-out of the line etc. of flexible substrate better.
According to the present invention, can obtain a kind of button installation component, when flexible substrate is installed this button installation component, can cut off the line of flexible substrate etc. well, and can suppress this button installation component generation well and buckle.
Description of drawings
Fig. 1 is the stereogram of the button installation component that relates to of first embodiment.
Fig. 2 is the vertical view of the post portion of the button installation component that relates to of first embodiment.
Fig. 3 is the B-B horizontal cross of Fig. 4 of the post portion of the button installation component that relates to of first embodiment.
Fig. 4 is the A-A cutaway view of Fig. 2 of the post portion of the button installation component that relates to of first embodiment.
Fig. 5 is the cutaway view that inserts post portion button installation component, flexible substrate and female snap fastener main body before.
Fig. 6 be the button installation component post portion and flexible substrate mutually in the face of the time post portion and the vertical view of flexible substrate.
Fig. 7 is under the state that inserts mouthful insertion post portion and jack-up flexible substrate, inserts near mouthful amplification view of button installation component, flexible substrate and female snap fastener main body.
Fig. 8 has further run through under the state of flexible substrate post portion to inserting a mouthful insertion post portion from the state of Fig. 5, near the amplification view of button installation component, flexible substrate and female snap fastener main body inserting mouthful.
Fig. 9 be insert post portion fully and button installation component and female snap fastener main body fixed after the cutaway view of button installation component, flexible substrate and female snap fastener main body.
Figure 10 is the vertical view of the post portion of the button installation component that relates to of second embodiment.
Figure 11 is the cutaway view of the post portion of the button installation component that relates to of second embodiment.
Figure 12 is the vertical view of the post portion of the button installation component that relates to of the 3rd embodiment.
Figure 13 be the button installation component that relates to from the 3rd embodiment post portion the top view of rib portion to front view.
Figure 14 be the button installation component that relates to from the 3rd embodiment post portion first inclined plane roughly top view to front view.
Figure 15 is the stereogram of the button installation component that relates to of the 4th embodiment.
Figure 16 is the vertical view of the button installation component that relates to of the 4th embodiment.
Figure 17 is the cutaway view of the button installation component that relates to of the 4th embodiment.
Figure 18 is the C-C horizontal cross of Figure 17.
Figure 19 is the cutaway view that inserts post portion button installation component, flexible substrate and button main body before.
The specific embodiment
Below, the structure of the button installation component that detailed description the present invention relates to according to accompanying drawing.In addition, below shown in structure be to illustrate, the present invention is not limited thereto.
First embodiment
The structure of button installation component 10
Fig. 1 representes the stereogram of the button installation component 10 that first embodiment relates to.Fig. 2 representes the vertical view of the post portion 12 of button installation component 10.Fig. 3 representes the B-B horizontal cross of Fig. 4 of the post portion 12 of button installation component 10.Fig. 4 representes the A-A cutaway view of Fig. 2 of the post portion 12 of button installation component 10.Fig. 5 representes to insert the cutaway view of post portion 12 button installation component 10, flexible substrate 40 and female snap fastener main body 20 before.
The vertex angle theta on first inclined plane 13
1(Fig. 2 representes, when directly over post portion 12, overlooking post portion 12, is the angle of center along the circumferential expansion on first inclined plane 13 with the summit 16 of post portion 12) for example is 90 °~110 °, and forms each other and equate.
First inclined plane 13 and plane m perpendicular to post portion 12 bearing of trends
1Between the acute angle that forms be that the inclination angle on first inclined plane 13 is (at the angle α that Fig. 4 representes
1), qualification is not done at the inclination angle on this first inclined plane 13, for example is 40 °~85 °, and forms equal each other.In this embodiment, because column top 19 forms just triangular taper, therefore in Fig. 2, first inclined plane 13 is formed at respectively with respect on the 16 point-symmetric positions, summit.
The rib portion 15 that is formed between first inclined plane 13 forms with the mode of the front end gentle dip of orientation column portion 12.
In post portion 12, second inclined plane 14 is formed in the rib portion 15 between the first adjacent inclined plane 13 with the mode of extreme direction inclination forward.Second inclined plane 14 is formed at the part from the summit 16 of centre position to the post portion 12 of rib portion 15 on the direction that post portion 12 holds up of rib portion 15.Second inclined plane 14 is formed in all the rib portions 15 between the first adjacent inclined plane 13.The vertex angle theta on second inclined plane 14
2(Fig. 2 representes, when directly over post portion 12, overlooking post portion 12, is the angle of center along the circumferential expansion on second inclined plane 14 with the summit 16 of post portion 12) for example is 10 °~30 °, and the vertex angle theta on second inclined plane 14
2Equate each other.The vertex angle theta on second inclined plane 14
2Form vertex angle theta less than above-mentioned first inclined plane 13
1Second inclined plane 14 and plane m perpendicular to post portion 12 bearing of trends
2Between formed acute angle be inclination angle (the angle α shown in Figure 4 on second inclined plane 14
2), the inclination angle on second inclined plane 14 for example is 35 °~80 °, and the inclination angle on second inclined plane 14 equates each other.The inclined angle alpha on second inclined plane 14
2Be preferably formed and be inclined angle alpha less than first inclined plane 13
1, so that when running through flexible substrate 40 in post portion 12, the pressure from flexible substrate is born prior to first inclined plane 13 in second inclined plane 14,
Female snap fastener main body 20 comprises: main body substrate 23, this main body substrate 23 form roughly discoid etc.; The fitting portion 24 of concavity, this fitting portion 24 is outstanding to face side from the periphery of main body substrate 23; And protruding part 22, this protruding part 22 is formed on the rear side of main body substrate 23.Fitting portion 24 forms cylindric, and has side-prominent fastening portion 21 in the radial direction at the upper end edge portion branch.When female snap fastener main body 20 and public snap fastener main body 20 were chimeric, the fastening portion 21 of fitting portion 24 had hook and fixing public snap fastener main functions.Substantial middle portion at main body substrate 23 is formed with insertion section 26.Insertion section 26 has the insertion mouth 27 of toroidal in the rear side of main body substrate 23.The post portion 12 of button installation component 10 is inserted in the insertion section 26 after running through flexible substrate 40.Protruding part 22 and female snap fastener main body 20 are integrally formed, and dispose a plurality of protruding parts 22 in the rear side of main body substrate 23, and above-mentioned a plurality of protruding parts 22 form the cusp-shaped as coming to a point towards the below respectively.
Female snap fastener main body 20 can be made up of resin material elastomeric material or metal material etc.Wherein, particularly based on cost, weight reduction, be prone to aspect such as formability and the preferred resin material.As resin material, for example can use polyacetal resin, mylar or PBT resin (polybutylene terephthalate resin) etc.
The installation method of female snap fastener 30
Then, specify the method for the female snap fastener 30 that the present invention relates to being installed according to accompanying drawing to the flexible base materials 40 such as cloth of clothes.In addition, in this embodiment, illustrate and utilize female snap fastener erecting device (not shown) that the method for button installation component 10 and female snap fastener main body 20 is installed in flexible substrate 40.
At first, prepare above-mentioned button installation component 10, female snap fastener main body 20 and the flexible base materials 40 such as clothes cloth that become the mounting object of female snap fastener 30.In addition, also prepare female snap fastener erecting device (not shown).The hammer (all not shown) that female snap fastener erecting device has fixed station, carries out the stamping tool of lifting action and be located at the mandrel portion of stamping tool with respect to fixed station.
Then, button installation component 10 is installed in towards upper type on the fixed station of female snap fastener erecting device with post portion 12 sides, female snap fastener main body 20 is installed on the stamping tool to insert mouth 27 mode down.
Then, make flexure member 40 tighten and make this flexure member 40 between button installation component 10 and female snap fastener main body 20, under above-mentioned state, the stamping tool of female snap fastener erecting device is descended.As shown in Figure 5, when stamping tool descended, across the both sides of the flexible substrate of tightening 40, the post portion 12 of button installation component 10 was relative with the insertion section 26 of female snap fastener main body 20.
As shown in Figure 6, at this moment, if flexible substrate 40 is clothes of for example being made into by line 41 etc., then the summit 16 of the column top 19 of the just triangular taper of post portion 12 can more easily get in the line 41 and the hole between the line 41 of flexible substrate 40.
As shown in Figure 7, when the state of Fig. 5 further made stamping tool descend, the post portion 12 of button installation component 10 inserted and jack-up flexible substrate 40 to the insertion mouth 27 of the insertion section 26 of female snap fastener main body 20.
Along with the insertion of post portion 12, be involved in the inside of insertion section 26 by the flexible substrate 40 of jack-up.In addition, a plurality of protruding parts 22 of female snap fastener main body 20 are clamp-oned flexible substrate 40 and are formed hook.
At this moment, button installation component 10 gets in the flexible substrate 40 from the summit of post portion 12, and after above-mentioned button installation component 10 got into, at first, second inclined plane 14 in the rib portion 15 took the lead in bearing the initial pressure from flexible substrate 40 with face concentrated area (partly).Like this, not to utilize line but utilize face to bear pressure from line (being made into the line of cloth) etc., prevent to damage rib portion 15 thus, and carry out the cut-out of line 41 well.
As shown in Figure 8, when the state of Fig. 7 further made stamping tool descend, flexible substrate 40 was run through in post portion 12.At this moment, as stated, owing to utilize second inclined plane 14 in the rib portion 15 to come the concentrated area to bear the pressure from flexible substrate 40, the pressure that therefore is applied to first inclined plane 13 is less.Therefore, can suppress buckling and reeling off raw silk from cocoons of button installation component 10 well in flexible substrate 40.
Then, stamping tool is descended, post portion 12 is inserted in the insertion section 26 fully.At this moment, push respectively and fixing flexible substrate 40 on the surface of the surface of the base portion 11 of button installation component 10 and female snap fastener main body 20.In addition, the column top 19 of post portion 12 is 26 outstanding fully from the insertion section.
Under this state; Further, stamping tool continue to be descended, the front end of hammer bump post portion 12 that is located at the mandrel portion of stamping tool thus makes post portion 12 expansion deformations (formation flange); Thereby as shown in Figure 9, be fixed with female snap fastener main body 20 through riveted joint button installation component 10.
Second embodiment
The button installation component is not limited to the structure that first embodiment is put down in writing, and for example also can be the structure that following second embodiment that will explain relates to.
Figure 10 representes the vertical view of the post portion 52 of the button installation component 50 that second embodiment relates to.Figure 11 representes the cutaway view of the post portion 52 of the button installation component 50 that second embodiment relates to.
Qualification is not done at the inclination angle on first inclined plane 53, for example is 40 °~85 °, and forms equal each other.In this embodiment, because column top 59 forms just triangular taper, therefore in Figure 10, the inclination angle on first inclined plane 53 is respectively formed at respect to summit 56 and is point-symmetric position.The rib portion 55 that is formed between first inclined plane 53 forms with the mode of the front end gentle dip of orientation column portion 52.
The vertex angle theta on first inclined plane 53
3(Figure 10 representes, when directly over post portion 52, overlooking post portion 52, is the angle of center along the circumferential expansion on first inclined plane 53 with the summit 56 of post portion 52) for example is 90 °~110 °, and forms each other and equate.
In post portion 52, second inclined plane 54 is formed on the rib portion 55 between the first adjacent inclined plane 53, and forms the curved surface shape that narrows down gently towards the preceding extreme direction front end of post portion 52.The vertex angle theta on second inclined plane 54
4(Figure 10 representes, when directly over post portion 52, overlooking post portion 52, is the angle of center along the circumferential expansion on second inclined plane 54 with the summit 56 of post portion 52) for example is 10 °~30 °, and forms each other and equate.The vertex angle theta on second inclined plane 54
4Form vertex angle theta less than above-mentioned first inclined plane 53
3
Base portion and post portion 52 for example can be formed by resin material, metal material etc.Wherein, particularly based on cost, weight reduction, be prone to aspect such as formability and the preferred resin material.As resin material, for example can use polyacetal resin, mylar or PBT resin (polybutylene terephthalate resin) etc.Base portion and post portion 52 are integrally formed.
Even second inclined plane 54 of post portion 52 forms aforesaid curved surface shape; When button installation component 50 runs through flexible substrate; Also can utilize second inclined plane 54 to bear the bigger pressure in the rib portion 55 that is applied to post portion 52, can suppress button installation component 50 thus well and buckle.
The 3rd embodiment
The button installation component is not limited to the described structure of first, second embodiment, for example also can be the structure of following the 3rd embodiment that will explain.
Figure 12 representes the vertical view of the post portion 62 of the button installation component 60 that the 3rd embodiment relates to.The top view of the rib portion 65 of the post portion 62 of the button installation component 60 that Figure 13 representes to relate to from the 3rd embodiment to front view.The roughly top view on first inclined plane 63 of the post portion 62 of the button installation component 60 that Figure 14 representes to relate to from the 3rd embodiment to front view.
Qualification is not done at the inclination angle on first inclined plane 63, for example is 40 °~85 °, and forms equal each other.In this embodiment, because column top 69 forms just triangular taper, therefore in Figure 12, the inclination angle on first inclined plane 63 is respectively formed at respect to summit 66 and is point-symmetric position.
The vertex angle theta on first inclined plane 63
5(Figure 12 representes, when directly over post portion 62, overlooking post portion 62, is the angle of center along the circumferential expansion on first inclined plane 63 with the summit 66 of post portion 62) is respectively 120 °.
In the rib portion 65 between the first adjacent inclined plane 63, second inclined plane 64 is formed on the position that predetermined distance is arranged with the summit of post portion 62 apart in post portion 62, promptly only is formed at the centre position part on the direction that post portion 62 holds up of rib portion 65.Therefore, compare with the structure of first embodiment and second embodiment, the column top 69 of post portion 62 is more sharp-pointed near summit 66.Second inclined plane 64 can be formed at the optional position that meets the following conditions, and the position of predetermined distance is promptly apart arranged with the summit of post portion 62 in rib portion 65, for example also can be formed on the middle section that obtains after the trisection rib portion 65.
The vertex angle theta on second inclined plane 64
6(Figure 12 representes, when directly over post portion 62, overlooking post portion 62, is the angle of center along the circumferential expansion on second inclined plane 64 with the summit 66 ' on second inclined plane 64 in the rib portion 65) for example is 50 °~70 °, and forms each other and equate.The vertex angle theta on second inclined plane 64
6Form vertex angle theta less than above-mentioned first inclined plane 63
5
Base portion and post portion 62 for example can be formed by resin material, metal material etc.Wherein, particularly based on cost, weight reduction, be prone to aspect such as formability and the preferred resin material.As resin material, for example can use polyacetal resin, mylar or PBT resin (polybutylene terephthalate resin) etc.Base portion and post portion 62 are integrally formed.
Second inclined plane 64 of post portion 62 is formed in the rib portion 65 between the first adjacent inclined plane 63, and only is formed at the centre position part on the direction that post portion 62 holds up of rib portion 65.Therefore; When making button installation component 60 run through flexible substrate; At first the sharp keen rib portion 65 of front end one band of post portion 62 more easily clamp-ons flexible substrate, bears the pressure from flexible substrate by second inclined plane 64 of the centre position part that only is formed at rib portion 65 afterwards.Thereby, can suppress to make the button installation component 60 more easily run through flexible substrate under the state that button installation component 60 buckles well.
The 4th embodiment
The button installation component is not limited to the described structure of first~the 3rd embodiment, for example also can be the structure of following the 4th embodiment that will explain.
Figure 15 representes the stereogram of the post portion 72 of the button installation component 70 that the 4th embodiment relates to.Figure 16 representes the vertical view of the button installation component that the 4th embodiment relates to.Figure 17 representes the cutaway view of the button installation component that the 4th embodiment relates to.Figure 18 representes the C-C horizontal cross of Figure 17.
Qualification is not done at the inclination angle on first inclined plane 73, for example is 40 °~85 °, and forms equal each other.In this embodiment, because column top 79 forms just triangular taper, therefore in Figure 16, the inclination angle on first inclined plane 73 is respectively formed at respect to summit 76 and is point-symmetric position.
The rib portion 75 that is formed between first inclined plane 73 forms with the mode of the front end gentle dip of orientation column portion 72.
In post portion 72, second inclined plane 74 is formed in the rib portion 75 between the first adjacent inclined plane 73, and extreme direction tilts forward.Second inclined plane 74 is formed up to the summit 76 of post portion 72 from the centre position of rib portion 75.Second inclined plane 74 is formed in all the rib portions 75 between the first adjacent inclined plane 73.The inclination angle on second inclined plane 74 for example is 35 °~80 °, and forms equal each other.The inclination angle on second inclined plane 74 is preferably formed and is the inclination angle less than first inclined plane 73, so that when running through flexible substrate in post portion 72, the pressure from flexible substrate is born prior to first inclined plane 73 in second inclined plane 74.
Because button installation component 70 has above-mentioned second inclined plane 74 in post portion 72; When therefore making button installation component 70 run through flexible substrate; Can utilize second inclined plane 74 to bear the bigger pressure of the rib portion 75 that is applied to post portion 72, can suppress button installation component 70 thus well and buckle.And, because post portion 72 forms hollow shape, so low cost of manufacture, and button installation component 70 lightens.
In addition; In above-mentioned first~the 4th embodiment illustrated to female snap fastener main body the formation and the installation method thereof of button installation component are installed; But the button installation component that the present invention relates to is not limited to this, also can the button installation component be installed to public snap fastener main body.
In addition, the button installation component that the present invention relates to also can be installed to the button main body.As this button main body, do not have special qualification, the member of the type shown in figure 19 of for example can giving an example out.Figure 19 is the cutaway view that inserts post portion 12 button installation component 10, flexible substrate 40 and the button main body 81 before of the button installation component 10 shown in first embodiment.At this, button main body 81 comprise hollow shape button 82, be inlaid in the lid 83 on the button 82 and be located at button 82 and the flat board 84 of lid between 83.Button 82 has from the bottom the 85 hollow portions 86 of holding up in central interior, and externally the upper end has the flange 87 of the plate-like of setting-in lid 83.Hollow portion 86 has the bend 90 of bending laterally in the upper end.
The button main body 81 and the button installation component 10 that as above constitute are installed on the flexible substrate 40 in such a way.That is, at first, the post portion 12 of button installation component 10 runs through after the flexible substrate 40, and the column top bumps against on the flat board 84 of button main body 81.The column top that bumps against on dull and stereotyped 84 is the distortion of hole enlargement shape, and is hooked in bend 90.Thus, button main body 81 is installed on the flexible substrate 40 with button installation component 10.
Description of reference numerals
10, button installation component; 11, base portion; 12, post portion; 13, first inclined plane; 14, second inclined plane; 15, rib portion; 16, summit; 18, post main part; 19, column top; 20, female snap fastener main body; 26, insertion section; 30, female snap fastener; 40, flexible substrate; 50, button installation component; 52, post portion; 53, first inclined plane; 54, second inclined plane; 55, rib portion; 58, post main part; 59, column top; 60, button installation component; 62, post portion; 63, first inclined plane; 64, second inclined plane; 65, rib portion; 66, summit; 68, post main part; 69, column top; 70, button installation component; 71, base portion; 72, post portion; 73, first inclined plane; 74, second inclined plane; 75, rib portion; 78, post main part; 79, column top.
Claims (8)
1. button installation component, this button installation component (10,50,60,70) be characterised in that,
Have base portion (11,71) and post portion (12,52,62,72), this post portion (12,52,62,72) forms with the mode in above-mentioned base portion (11,71) surface and is column,
The post portion of above-mentioned column (12,52,62,72) has the column top (19,59,69,79) of the extended triangular taper of direction that continues from the surperficial extended post main part of above-mentioned base portion (11,71) (18,58,68,78) with from the front end of this post main part (18,58,68,78) to prolong along this post main part (18,58,68,78)
Above-mentioned column top (19,59,69,79) has second inclined plane (14,54,64,74) and constitutes three first inclined planes (13,53,63,73) of three sides of triangular pyramid, and the rib portion (15,55,65,75) that this second inclined plane (14,54,64,74) are formed between adjacent this first inclined plane (13,53,63,73) upward and towards preceding extreme direction tilts.
2. button installation component according to claim 1 (10) is characterized in that,
Second inclined plane (14) of above-mentioned post portion (12) is formed into the summit (16) of above-mentioned post portion (12) always from the centre position of above-mentioned rib portion (15) on the direction that above-mentioned post portion (12) holds up.
3. button installation component according to claim 1 (60) is characterized in that,
In above-mentioned rib portion (65), second inclined plane (64) of above-mentioned post portion (62) is formed on the position that predetermined distance is arranged with the summit (66) of above-mentioned post portion (62) apart.
4. according to each described button installation component (10,50,60,70) in the claim 1~3, it is characterized in that,
In above-mentioned all rib portions (15,55,65,75), be formed with above-mentioned second inclined plane (14,54,64,74).
5. according to each described button installation component (10) in the claim 1~3, it is characterized in that,
Inclination angle (the α on above-mentioned first inclined plane (13)
1) be formed acute angle on above-mentioned first inclined plane (13) and between perpendicular to the plane of above-mentioned post portion (12) bearing of trend, and the inclination angle (α on above-mentioned first inclined plane (13)
1) equate each other.
6. according to each described button installation component (10) in the claim 1~3, it is characterized in that,
Inclination angle (the α on above-mentioned second inclined plane (14)
2) be formed acute angle between the plane of above-mentioned second inclined plane (14) and the direction of extending perpendicular to above-mentioned post portion (12), and the inclination angle (α of second inclined plane (14)
2) equate each other.
7. according to each described button installation component (10) in the claim 1~3, it is characterized in that,
Inclination angle (the α on above-mentioned second inclined plane (14)
2) less than the inclination angle (α on above-mentioned first inclined plane (13)
1).
8. according to each described button installation component (10,50) in the claim 1~3, it is characterized in that,
In the time will directly over above-mentioned post portion (12,52), overlooking above-mentioned post portion (12,52), the summit (16,56) with above-mentioned post portion (12,52) of above-mentioned first inclined plane (13,53) is that the angle of the circumferential expansion of edge, center above-mentioned post portion is made as the first drift angle (θ
1, θ
3), to be the center be made as the second drift angle (θ along the angle of the circumferential expansion of above-mentioned post portion for the summit (16,56) with above-mentioned post portion (12,52) of above-mentioned second inclined plane (14,54)
2, θ
4) time, the second drift angle (θ of above-mentioned second inclined plane (14,54)
2, θ
4) less than the first drift angle (θ of above-mentioned first inclined plane (13,53)
1, θ
3).
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
PCT/JP2009/060467 WO2010143256A1 (en) | 2009-06-08 | 2009-06-08 | Button mounting member |
Publications (2)
Publication Number | Publication Date |
---|---|
CN102458173A true CN102458173A (en) | 2012-05-16 |
CN102458173B CN102458173B (en) | 2015-06-03 |
Family
ID=43308527
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN200980159738.XA Active CN102458173B (en) | 2009-06-08 | 2009-06-08 | Button mounting member |
Country Status (3)
Country | Link |
---|---|
JP (1) | JP5399488B2 (en) |
CN (1) | CN102458173B (en) |
WO (1) | WO2010143256A1 (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105848509A (en) * | 2013-12-27 | 2016-08-10 | Ykk株式会社 | Button fastener |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102318935A (en) * | 2011-07-22 | 2012-01-18 | 关伟成 | Metal button pedestal and manufacturing technology thereof |
Citations (6)
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---|---|---|---|---|
GB2137868A (en) * | 1983-04-13 | 1984-10-17 | Nippon Notion Kogyo | Button |
US4607415A (en) * | 1983-11-16 | 1986-08-26 | Nippon Notion Kogyo Co., Ltd. | Button for garment |
CN2242008Y (en) * | 1995-08-17 | 1996-12-11 | 吴泓铭 | Alloy button with arc like surface |
JP2001178505A (en) * | 1999-12-24 | 2001-07-03 | Ykk Corp | Tack for button |
JP2003093111A (en) * | 2001-09-25 | 2003-04-02 | Ykk Corp | Engaging structure for socket and tack |
JP2005152059A (en) * | 2003-11-21 | 2005-06-16 | Takeda Seiki Kk | Snap fastener |
Family Cites Families (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
SE416612B (en) * | 1978-03-16 | 1981-01-26 | Petersson New Prod Bengt | PROCEDURE FOR FIXING FORMS OF FABRIC AND FILES AND APPARATUS FOR IMPLEMENTATION OF THE PROCEDURE |
JPS59169637A (en) * | 1983-03-18 | 1984-09-25 | Nippon Nooshiyon Kogyo Kk | Rivet and its manufacture |
JPS60109410U (en) * | 1983-12-29 | 1985-07-25 | 日本ノ−シヨン工業株式会社 | Studs for buttons, etc. |
-
2009
- 2009-06-08 WO PCT/JP2009/060467 patent/WO2010143256A1/en active Application Filing
- 2009-06-08 JP JP2011518156A patent/JP5399488B2/en active Active
- 2009-06-08 CN CN200980159738.XA patent/CN102458173B/en active Active
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
GB2137868A (en) * | 1983-04-13 | 1984-10-17 | Nippon Notion Kogyo | Button |
US4607415A (en) * | 1983-11-16 | 1986-08-26 | Nippon Notion Kogyo Co., Ltd. | Button for garment |
CN2242008Y (en) * | 1995-08-17 | 1996-12-11 | 吴泓铭 | Alloy button with arc like surface |
JP2001178505A (en) * | 1999-12-24 | 2001-07-03 | Ykk Corp | Tack for button |
JP2003093111A (en) * | 2001-09-25 | 2003-04-02 | Ykk Corp | Engaging structure for socket and tack |
JP2005152059A (en) * | 2003-11-21 | 2005-06-16 | Takeda Seiki Kk | Snap fastener |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105848509A (en) * | 2013-12-27 | 2016-08-10 | Ykk株式会社 | Button fastener |
CN105848509B (en) * | 2013-12-27 | 2019-01-18 | Ykk株式会社 | Snap fasteners |
Also Published As
Publication number | Publication date |
---|---|
JPWO2010143256A1 (en) | 2012-11-22 |
WO2010143256A1 (en) | 2010-12-16 |
CN102458173B (en) | 2015-06-03 |
JP5399488B2 (en) | 2014-01-29 |
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