CN102458173B - Button mounting member - Google Patents

Button mounting member Download PDF

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Publication number
CN102458173B
CN102458173B CN200980159738.XA CN200980159738A CN102458173B CN 102458173 B CN102458173 B CN 102458173B CN 200980159738 A CN200980159738 A CN 200980159738A CN 102458173 B CN102458173 B CN 102458173B
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CN
China
Prior art keywords
inclined plane
mentioned
button
mounting member
post portion
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Application number
CN200980159738.XA
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Chinese (zh)
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CN102458173A (en
Inventor
长谷川建二
铃木和彦
杉山裕之
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YKK Corp
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YKK Corp
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Publication of CN102458173A publication Critical patent/CN102458173A/en
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Classifications

    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44BBUTTONS, PINS, BUCKLES, SLIDE FASTENERS, OR THE LIKE
    • A44B1/00Buttons
    • A44B1/18Buttons adapted for special ways of fastening
    • A44B1/44Buttons adapted for special ways of fastening with deformable counterpiece
    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44BBUTTONS, PINS, BUCKLES, SLIDE FASTENERS, OR THE LIKE
    • A44B17/00Press-button or snap fasteners
    • A44B17/0005Fastening 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

BUTTON-MOUNTING MEMBER
Technical field
The present invention relates to a kind of cloth at clothes, make the BUTTON-MOUNTING MEMBER that the flexible substrate such as the resin sheet of bag or chest are installed.
Background technology
Generally, female snap-fastener has BUTTON-MOUNTING MEMBER and female snap-fastener main body or male snap-fastener and has BUTTON-MOUNTING MEMBER and male snap-fastener main body, and this BUTTON-MOUNTING MEMBER has the post portion of holding up shape; Be formed with in this female snap-fastener main body the insert port inserted in the post portion for BUTTON-MOUNTING MEMBER or be formed with the insert port inserted in the post portion for BUTTON-MOUNTING MEMBER in this male snap-fastener main body; Make the post portion of BUTTON-MOUNTING MEMBER pass through the flexible substrate such as habited cloth, and the insertion of this post portion is located in female snap-fastener main body of the opposite side of this flexible substrate or the insert port of male snap-fastener main body, thus female snap-fastener or male snap-fastener are arranged in this flexible substrate.
When making BUTTON-MOUNTING MEMBER run through the flexible substrate such as cloth, according to the difference of the material, thickness etc. of flexible substrate, the contact resistance between BUTTON-MOUNTING MEMBER and flexible substrate likely increases.At this, in the cone shape situation that the front end of BUTTON-MOUNTING MEMBER is formed as sharp-pointed, when flexible substrate is clamp-oned in cone shape front end, the whole circumference of cone shape front end edge circumference contacts with flexible substrate, bears pressure from flexible substrate by whole even circumferential.Therefore, during running through flexible substrate, excessive load is applied to BUTTON-MOUNTING MEMBER, likely make BUTTON-MOUNTING MEMBER produce and buckle, in addition, likely produce in flexible substrate and reel off raw silk from cocoons.And, make BUTTON-MOUNTING MEMBER run through after expand the hole of flexible substrate time, also likely produce fold.
For the problems referred to above, the research of various BUTTON-MOUNTING MEMBER, exploitation are carried out.As this BUTTON-MOUNTING MEMBER, such as Patent Document 1 discloses a kind of button hobnail (tack), this button hobnail comprises: erect and be provided with from outstanding cylindrical post portion of the central authorities of flat seat board; The head in rectangular pyramid is integrally formed in the front end in post portion; Corner portion on the cardinal extremity periphery of head forms engaging portion in the mode of giving prominence to laterally than the outer peripheral face in post portion.
And, record and can provide a kind of button hobnail according to above-mentioned technical scheme, when using this button hobnail to pierce through cloth, not easily produce buckling phenomena, and it is locking to strengthen with button boss portion.
Patent document 1: Japanese Unexamined Patent Publication 2001-178505 publication
But, BUTTON-MOUNTING MEMBER (button hobnail) described in patent document 1 is formed with sharp keen crest line between four inclined planes of leading section (head of tetrapyamid shape), when BUTTON-MOUNTING MEMBER (button hobnail) runs through cloth, this crest line can be subject to excessive pressure from cloth.Now, when rib portion is not formed with face, namely when rib portion is formed as crest line, the pressure that rib portion is subject to from the line etc. forming flexible substrate is larger, therefore, due to this pressure, rib portion is damaged, thus be difficult to cutting line etc. well, and then also likely there is BUTTON-MOUNTING MEMBER (button hobnail) and produce the problem of buckling.
Summary of the invention
The present inventor has carried out conscientious research repeatedly, and it found that, can solve the problem according to the BUTTON-MOUNTING MEMBER that following technical scheme relates to.
Namely, the BUTTON-MOUNTING MEMBER that the present invention relates to has base portion and post portion, this post portion is formed in the mode of holding up in above-mentioned base surface and is column, the post portion of above-mentioned column has the post main part extended from above-mentioned base surface and the column top of continuing the Rhizoma Sparganii taper extended along the direction of this post main part prolongation from the front end of this post main part, above-mentioned column top has three the first inclined planes of three sides of the second inclined plane and formation triangular pyramid, and this second inclined plane is formed in the rib portion between this adjacent first inclined plane and towards front extreme direction.
According to above-mentioned technical scheme, when BUTTON-MOUNTING MEMBER runs through flexible substrate, because the first inclined plane plays the effect of release from the pressure of flexible substrate, this first inclined plane is formed in the column top of the Rhizoma Sparganii taper in post portion, and therefore pressure is applied to the rib portion between the first inclined plane.Now, owing to being formed with the second inclined plane tilted towards front extreme direction in rib portion, therefore not with line but bear the pressure from line (form cloth etc. lines) etc. with face, thus can prevent rib portion from damaging, and can cutting line etc. well, and BUTTON-MOUNTING MEMBER can be suppressed well to produce buckle.
In addition, the BUTTON-MOUNTING MEMBER that the present invention relates to is in a technical scheme, the part being always formed into the summit in above-mentioned post portion is played from the centre position (centre position of this description refers to, the part between rib portion two-end-point) in above-mentioned rib portion in the direction that second inclined plane in above-mentioned post portion is holded up in above-mentioned post portion.
According to above-mentioned technical scheme, because second inclined plane in post portion to be formed to the summit in post portion from the centre position in rib portion, when therefore making BUTTON-MOUNTING MEMBER run through flexible substrate, second inclined plane is subject to the pressure from flexible substrate immediately, as this second inclined plane above-mentioned to be formed to the summit in post portion from the centre position in rib portion, thus can prevent rib portion from damaging, and the cut-out of line etc. can be carried out further well, in addition, BUTTON-MOUNTING MEMBER can be suppressed further well to produce buckle.
In addition, the BUTTON-MOUNTING MEMBER that the present invention relates to and then in another technical scheme, in above-mentioned rib portion, second inclined plane in post portion is formed in apart to be had on the position of predetermined distance with the summit in above-mentioned post portion.
According to above-mentioned technical scheme, apart have on the position of predetermined distance with the summit in post portion owing to being formed in second inclined plane in post portion of rib portion, when therefore making BUTTON-MOUNTING MEMBER run through flexible substrate, first the sharp keen rib portion near the front end making post portion clamp-ons flexible substrate relatively easily, bears the pressure from flexible substrate afterwards by the second inclined plane of the centre position part being only formed at rib portion.Therefore, it is possible to inhibit the state of buckling of BUTTON-MOUNTING MEMBER to make BUTTON-MOUNTING MEMBER more easily run through flexible substrate well.
In addition, the BUTTON-MOUNTING MEMBER that the present invention relates to and then in another technical scheme, above-mentioned all rib portions are formed with above-mentioned second inclined plane.
According to above-mentioned technical scheme, because the second inclined plane is formed in all rib portions between multiple the first adjacent inclined plane, when therefore making BUTTON-MOUNTING MEMBER run through flexible substrate, the larger pressure be applied in the rib portion in post portion can be born by the second inclined plane be formed in all rib portions.Thus, buckling of BUTTON-MOUNTING MEMBER can be suppressed better.
In addition, the BUTTON-MOUNTING MEMBER that the present invention relates to and then in another technical scheme, the acute angle of inclination angle for being formed between above-mentioned first inclined plane and the plane perpendicular to above-mentioned post portion bearing of trend of above-mentioned first inclined plane, and the inclination angle of above-mentioned first inclined plane is mutually equal.
According to above-mentioned technical scheme, the inclination angle due to the first inclined plane is formed as mutually equal, and therefore when BUTTON-MOUNTING MEMBER runs through flexible substrate, inclination angle is formed as the first mutually equal inclined plane balancedly can bear pressure from flexible substrate.Thus, buckling of BUTTON-MOUNTING MEMBER can be suppressed better.
In addition, the BUTTON-MOUNTING MEMBER that the present invention relates to and then in another technical scheme, the acute angle of inclination angle for being formed between above-mentioned second inclined plane and the plane perpendicular to above-mentioned post portion bearing of trend of the second inclined plane, and the inclination angle that above-mentioned second inclined plane is is formed as mutually equal.
According to above-mentioned technical scheme, inclination angle due to the second inclined plane is formed as mutually equal, therefore, when BUTTON-MOUNTING MEMBER runs through flexible substrate, inclination angle is formed as the second mutually equal inclined plane balancedly can bear the pressure from flexible substrate be applied in the rib portion in post portion.Thus, buckling of BUTTON-MOUNTING MEMBER can be suppressed better.
In addition, the BUTTON-MOUNTING MEMBER that the present invention relates to and then in another technical scheme, the inclination angle of above-mentioned second inclined plane is less than the inclination angle of above-mentioned first inclined plane.
According to above-mentioned technical scheme, inclination angle due to the second inclined plane is less than the inclination angle of the first inclined plane, therefore when making BUTTON-MOUNTING MEMBER run through flexible substrate, second inclined plane to contact with flexible substrate prior to the first inclined plane and bears pressure, thus can carry out the cut-out of the line of flexible substrate etc. well.
In addition, the BUTTON-MOUNTING MEMBER that the present invention relates to and then in another technical scheme, above-mentioned post portion is overlooked directly over above-mentioned post portion, when the angle expanded along the circumference in above-mentioned post portion centered by the summit in above-mentioned post portion of above-mentioned inclined plane is set to the first drift angle, the second drift angle respectively, drift angle second drift angle of the second inclined plane is less than drift angle first drift angle of the first inclined plane.
According to above-mentioned technical scheme, the drift angle due to the second inclined plane is less than the drift angle of the first inclined plane, and therefore the second inclined plane can carry out the cut-out of the line of flexible substrate etc. better.
According to the present invention, a kind of BUTTON-MOUNTING MEMBER can be obtained, when flexible substrate installs this BUTTON-MOUNTING MEMBER, the line etc. of flexible substrate can be cut off well, and the generation of this BUTTON-MOUNTING MEMBER can be suppressed well to buckle.
Accompanying drawing explanation
Fig. 1 is the stereogram of the BUTTON-MOUNTING MEMBER that the first embodiment relates to.
Fig. 2 is the top view in the post portion of the BUTTON-MOUNTING MEMBER that the first embodiment relates to.
Fig. 3 is the B-B horizontal cross of the Fig. 4 in the post portion of the BUTTON-MOUNTING MEMBER that the first embodiment relates to.
Fig. 4 is the A-A sectional view of the Fig. 2 in the post portion of the BUTTON-MOUNTING MEMBER that the first embodiment relates to.
Fig. 5 is the sectional view of BUTTON-MOUNTING MEMBER, flexible substrate and the female snap-fastener main body inserted before post portion.
Fig. 6 be the post portion of BUTTON-MOUNTING MEMBER and flexible substrate facing time post portion and the top view of flexible substrate.
Fig. 7 inserts post portion under the state of jack-up flexible substrate, the amplification view of the BUTTON-MOUNTING MEMBER near insert port, flexible substrate and female snap-fastener main body to insert port.
Fig. 8 inserts the state that post portion makes post portion run through flexible substrate to insert port from the state of Fig. 5 further, the amplification view of the BUTTON-MOUNTING MEMBER near insert port, flexible substrate and female snap-fastener main body.
Fig. 9 inserts post portion and the sectional view of BUTTON-MOUNTING MEMBER, flexible substrate and female snap-fastener main body after BUTTON-MOUNTING MEMBER and female snap-fastener main body being fixed completely.
Figure 10 is the top view in the post portion of the BUTTON-MOUNTING MEMBER that the second embodiment relates to.
Figure 11 is the sectional view in the post portion of the BUTTON-MOUNTING MEMBER that the second embodiment relates to.
Figure 12 is the top view in the post portion of the BUTTON-MOUNTING MEMBER that the 3rd embodiment relates to.
Figure 13 is the front view that the front, rib portion in the post portion of the BUTTON-MOUNTING MEMBER related to from the 3rd embodiment is observed.
Figure 14 is the front view that the roughly front of first inclined plane in the post portion of the BUTTON-MOUNTING MEMBER related to from the 3rd embodiment is observed.
Figure 15 is the stereogram of the BUTTON-MOUNTING MEMBER that the 4th embodiment relates to.
Figure 16 is the top view of the BUTTON-MOUNTING MEMBER that the 4th embodiment relates to.
Figure 17 is the sectional view of the BUTTON-MOUNTING MEMBER that the 4th embodiment relates to.
Figure 18 is the C-C horizontal cross of Figure 17.
Figure 19 is the sectional view of BUTTON-MOUNTING MEMBER, flexible substrate and the button main body inserted before post portion.
Detailed description of the invention
Below, the structure of the BUTTON-MOUNTING MEMBER that the present invention relates to is described with reference to the accompanying drawings in detail.In addition, structure shown below illustrates, the present invention is not limited thereto.
first embodiment
the structure of BUTTON-MOUNTING MEMBER 10
Fig. 1 represents the stereogram of the BUTTON-MOUNTING MEMBER 10 that the first embodiment relates to.Fig. 2 represents the top view in the post portion 12 of BUTTON-MOUNTING MEMBER 10.Fig. 3 represents the B-B horizontal cross of the Fig. 4 in the post portion 12 of BUTTON-MOUNTING MEMBER 10.Fig. 4 represents the A-A sectional view of the Fig. 2 in the post portion 12 of BUTTON-MOUNTING MEMBER 10.Fig. 5 represents the sectional view of BUTTON-MOUNTING MEMBER 10, flexible substrate 40 and the female snap-fastener main body 20 inserted before post portion 12.
Female snap-fastener 30 has BUTTON-MOUNTING MEMBER 10 and female snap-fastener main body 20.
BUTTON-MOUNTING MEMBER 10 has base portion 11 and post portion 12, and this post portion 12 is formed in the mode of holding up in the substantially central portion on base portion 11 surface, and for passing through the flexible substrate such as habited cloth 40.Base portion 11 is formed as such as circular, substantially rectangular etc. tabular.Post portion 12 is formed as the column of holding up on the surface of base portion 11.Post portion 12 has the post main part 18 extended from base portion 11 surface and the column top 19 of extending along the direction that post main part 18 extends from the front end continuation of post main part 18.Post main part 18 is formed as roughly cylindric.Post main part 18 is not limited to cylindric, such as, also can be formed as the prism-shaped such as triangular prism, quadrangular.Column top 19 is diminishingly formed as the Rhizoma Sparganii taper of tip towards summit 16 wall thickness (sectional area).Column top 19 has the second inclined plane 14 and three the first inclined planes 13, and these three the first inclined planes 13 form three sides of triangular pyramid, and tilt towards front extreme direction; This second inclined plane 14 is formed in the rib portion 15 between the first adjacent inclined plane 13, and tilts towards front extreme direction.
The vertex angle theta of the first inclined plane 13 1(Fig. 2 represents, when overlooking post portion 12 directly over post portion 12, along the angle that the circumference of the first inclined plane 13 is expanded centered by the summit 16 in post portion 12) is such as 90 ° ~ 110 °, and is formed as mutually equal.
First inclined plane 13 and the plane m perpendicular to post portion 12 bearing of trend 1between form inclination angle that acute angle is the first inclined plane 13 (at the angle α that Fig. 4 represents 1), the inclination angle of this first inclined plane 13 does not limit, such as, be 40 ° ~ 85 °, and be formed as mutually equal.In the present embodiment, because column top 19 is formed as positive Rhizoma Sparganii taper, therefore in fig. 2, the first inclined plane 13 is formed at respectively relative on point-symmetric position, summit 16.
The rib portion 15 between the first inclined plane 13 that is formed at is formed in the mode of the front end gentle dip in orientation column portion 12.
In post portion 12, the second inclined plane 14 is formed in the rib portion 15 between the first adjacent inclined plane 13 in the mode that extreme direction tilts forward.Second inclined plane 14 is formed at the part on the summit 16 in centre position to the post portion 12 from rib portion 15 on the direction of holding up in post portion 12 in rib portion 15.Second inclined plane 14 is formed in all rib portions 15 between the first adjacent inclined plane 13.The vertex angle theta of the second inclined plane 14 2(Fig. 2 represents, when overlooking post portion 12 directly over post portion 12, along the angle that the circumference of the second inclined plane 14 is expanded centered by the summit 16 in post portion 12) is such as 10 ° ~ 30 °, and the vertex angle theta of the second inclined plane 14 2mutually equal.The vertex angle theta of the second inclined plane 14 2be formed as the vertex angle theta being less than above-mentioned first inclined plane 13 1.Second inclined plane 14 and the plane m perpendicular to post portion 12 bearing of trend 2between the acute angle that formed inclination angle (the angle α shown in Fig. 4 that is the second inclined plane 14 2), the inclination angle of the second inclined plane 14 is such as 35 ° ~ 80 °, and the inclination angle of the second inclined plane 14 is mutually equal.The inclined angle alpha of the second inclined plane 14 2be preferably formed to the inclined angle alpha being less than the first inclined plane 13 1, to make when flexible substrate 40 is run through in post portion 12, the second inclined plane 14 bears the pressure from flexible substrate prior to the first inclined plane 13,
Base portion 11 and post portion 12 such as can be formed by resin material or metal material etc.Wherein, the particularly preferred resin material based on aspects such as cost, weight reductions, easily formability.As resin material, such as, can use polyacetal resin, mylar or PBT resin (polybutylene terephthalate resin) etc.Base portion 11 is integrally formed with post portion 12.
Female snap-fastener main body 20 comprises: main body substrate 23, and this main body substrate 23 is formed as 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 in the rear side of main body substrate 23.Fitting portion 24 is formed as cylindric, and has engaging portion 21 outstanding inside radial direction in upper edge part.When female snap-fastener main body 20 is chimeric with male snap-fastener main body 20, the engaging portion 21 of fitting portion 24 has hook and the function of fixing public snap-fastener main body.Insertion section 26 is formed in the substantially central portion of main body substrate 23.Insertion section 26 has the insert port 27 of toroidal in the rear side of main body substrate 23.The post portion 12 of BUTTON-MOUNTING MEMBER 10 runs through flexible substrate 40 and is inserted in insertion section 26 afterwards.Protruding part 22 is integrally formed with female snap-fastener main body 20, and is configured with multiple protruding part 22 in the rear side of main body substrate 23, and above-mentioned multiple protruding part 22 is formed as the cusp-shaped as come to a point downward respectively.
Female snap-fastener main body 20 can be made up of resin material elastomeric material or metal material etc.Wherein, the particularly preferred resin material based on aspects such as cost, weight reductions, easily formability.As resin material, such as, can use polyacetal resin, mylar or PBT resin (polybutylene terephthalate resin) etc.
the installation method of female snap-fastener 30
Then, the flexible substrate 40 such as cloth described in detail with reference to the accompanying drawings to clothes installs the method for the female snap-fastener 30 that the present invention relates to.In addition, in the present embodiment, the method utilizing female snap-fastener erecting device (not shown) to install BUTTON-MOUNTING MEMBER 10 and female snap-fastener main body 20 in flexible substrate 40 is illustrated.
First, prepare above-mentioned BUTTON-MOUNTING MEMBER 10, female snap-fastener main body 20 and become the flexible substrate 40 such as garment panel of mounting object of female snap-fastener 30.In addition, female snap-fastener erecting device (not shown) is also prepared.Female snap-fastener erecting device has fixed station, carry out the stamping tool of lifting action relative to fixed station and be located at the hammer (all not shown) in mandrel portion of stamping tool.
Then, by BUTTON-MOUNTING MEMBER 10 with side, post portion 12 upward mode be arranged on the fixed station of female snap-fastener erecting device, female snap-fastener main body 20 is arranged on stamping tool in insert port 27 mode down.
Then, flexure member 40 tightened and makes this flexure member 40 between BUTTON-MOUNTING MEMBER 10 and female snap-fastener main body 20, in the above-described state, the stamping tool of female snap-fastener erecting device being declined.As shown in Figure 5, when stamping tool declines, in the both sides across the flexible substrate 40 tightened, the post portion 12 of BUTTON-MOUNTING MEMBER 10 is relative with the insertion section 26 of female snap-fastener main body 20.
As shown in Figure 6, now, if flexible substrate 40 is the clothes etc. be such as made into by line 41, then the summit 16 of the column top 19 of the positive Rhizoma Sparganii taper in post portion 12 can enter in the hole between the line 41 of flexible substrate 40 and line 41 relatively easily.
As shown in Figure 7, when making stamping tool decline further from the state of Fig. 5, the post portion 12 of BUTTON-MOUNTING MEMBER 10 inserts and jack-up flexible substrate 40 to the insert port 27 of the insertion section 26 of female snap-fastener main body 20.
Along with the insertion in post portion 12, be involved in the inside of insertion section 26 by the flexible substrate 40 of jack-up.In addition, multiple protruding parts 22 of female snap-fastener main body 20 are clamp-oned flexible substrate 40 and form hook.
Now, BUTTON-MOUNTING MEMBER 10 enters in flexible substrate 40 from the summit in post portion 12, after above-mentioned BUTTON-MOUNTING MEMBER 10 enters, first, the second inclined plane 14 in rib portion 15 take the lead in face intensively (partly) bear initial pressure from flexible substrate 40.Like this, not the pressure utilizing line but utilize face to bear from line (being made into the line of cloth) etc., prevent from thus damaging rib portion 15, and carry out the cut-out of line 41 well.
As shown in Figure 8, when making stamping tool decline further from the state of Fig. 7, flexible substrate 40 is run through in post portion 12.Now, as mentioned above, owing to utilizing the second inclined plane 14 in rib portion 15 intensively to bear pressure from flexible substrate 40, the pressure being therefore applied to the first inclined plane 13 is less.Therefore, it is possible to suppress buckling and reeling off raw silk from cocoons in flexible substrate 40 of BUTTON-MOUNTING MEMBER 10 well.
Then, make stamping tool decline further, post portion 12 is inserted in insertion section 26 completely.Now, the surface of the base portion 11 of BUTTON-MOUNTING MEMBER 10 and the surface of female snap-fastener main body 20 press respectively and fix flexible substrate 40.In addition, the column top 19 in post portion 12 is completely outstanding from insertion section 26.
In this condition, further, make stamping tool continue to decline, the front end being located at the hammer shock post portion 12 in the mandrel portion of stamping tool thus makes post portion 12 expansion deformation (formation flange), thus as shown in Figure 9, be fixed with female snap-fastener main body 20 by riveted joint BUTTON-MOUNTING MEMBER 10.
second embodiment
BUTTON-MOUNTING MEMBER is not limited to the structure described in the first embodiment, such as, also can be the structure that following second embodiment that will illustrate relates to.
Figure 10 represents the top view in the post portion 52 of the BUTTON-MOUNTING MEMBER 50 that the second embodiment relates to.Figure 11 represents the sectional view in the post portion 52 of the BUTTON-MOUNTING MEMBER 50 that the second embodiment relates to.
BUTTON-MOUNTING MEMBER 50 has base portion (not shown) and post portion 52, and this post portion 52 is formed in the mode of holding up in the substantially central portion of base surface, and for running through the flexible substrate such as garment panel.Base portion is formed as such as circular, substantially rectangular etc. tabular.Post portion 52 has the post main part 58 extended from base surface and the column top 59 of extending along the direction that post main part 58 extends from the front end continuation of post main part 58.Post main part 58 is formed as roughly cylindric.Post main part 58 is not limited to cylindric, such as, also can be formed as the prism-shaped such as triangular prism, quadrangular.Column top 59 reduces gradually towards summit 56 wall thickness (sectional area) thus is formed as the Rhizoma Sparganii taper of tip.Column top 59 has the second inclined plane 54 and three the first inclined planes 53, and these three the first inclined planes 53 form three sides of triangular pyramid, and tilt towards front extreme direction; This second inclined plane 54 is formed in the rib portion 55 between the first adjacent inclined plane 53, and tilts towards front extreme direction.
The inclination angle of the first inclined plane 53 does not limit, such as, be 40 ° ~ 85 °, and be formed as mutually equal.In the present embodiment, because column top 59 is formed as positive Rhizoma Sparganii taper, therefore in Fig. 10, the inclination angle of the first inclined plane 53 is respectively formed at relative to summit 56 in point-symmetric position.The rib portion 55 between the first inclined plane 53 that is formed at is formed in the mode of the front end gentle dip in orientation column portion 52.
The vertex angle theta of the first inclined plane 53 3(Figure 10 represents, when overlooking post portion 52 directly over post portion 52, along the angle that the circumference of the first inclined plane 53 is expanded centered by the summit 56 in post portion 52) is such as 90 ° ~ 110 °, and is formed as mutually equal.
In post portion 52, the second inclined plane 54 is formed in the rib portion 55 between the first adjacent inclined plane 53, and is formed as the curved that extreme direction front end narrows gently before post portion 52.The vertex angle theta of the second inclined plane 54 4(Figure 10 represents, when overlooking post portion 52 directly over post portion 52, along the angle that the circumference of the second inclined plane 54 is expanded centered by the summit 56 in post portion 52) is such as 10 ° ~ 30 °, and is formed as mutually equal.The vertex angle theta of the second inclined plane 54 4be formed as the vertex angle theta being less than above-mentioned first inclined plane 53 3.
Base portion and post portion 52 such as can be formed by resin material, metal material etc.Wherein, the particularly preferred resin material based on aspects such as cost, weight reductions, easily formability.As resin material, such as, can use polyacetal resin, mylar or PBT resin (polybutylene terephthalate resin) etc.Base portion and post portion 52 integrally formed.
Even if second inclined plane 54 in post portion 52 is formed as curved as above, when BUTTON-MOUNTING MEMBER 50 runs through flexible substrate, also the second inclined plane 54 can be utilized to bear the larger pressure be applied in the rib portion 55 in post portion 52, BUTTON-MOUNTING MEMBER 50 can be suppressed thus well to buckle.
3rd embodiment
BUTTON-MOUNTING MEMBER is not limited to the structure described in first, second embodiment, such as, also can be the structure of following 3rd embodiment that will illustrate.
Figure 12 represents the top view in the post portion 62 of the BUTTON-MOUNTING MEMBER 60 that the 3rd embodiment relates to.Figure 13 represents the front view that the front in the rib portion 65 in the post portion 62 of the BUTTON-MOUNTING MEMBER 60 related to from the 3rd embodiment is observed.Figure 14 represents the front view that the roughly front of first inclined plane 63 in the post portion 62 of the BUTTON-MOUNTING MEMBER 60 related to from the 3rd embodiment is observed.
BUTTON-MOUNTING MEMBER 60 has base portion (not shown) and post portion 62, and this post portion 62 is formed in the mode of holding up in the substantially central portion of base surface, and for running through the flexible substrate such as garment panel.Base portion is formed as such as circular, substantially rectangular etc. tabular.Post portion 62 has the post main part 68 extended from base surface and the column top 69 of continuing the Rhizoma Sparganii taper extended along post main part 68 extending direction from the front end of post main part 68.Post main part 68 is formed as roughly cylindric.Post main part 68 is not limited to cylindric, such as, also can be formed as the prism-shaped such as triangular prism, quadrangular.Column top 69 is formed as reducing gradually towards summit 66 wall thickness (sectional area) thus is formed as the Rhizoma Sparganii taper of tip.Column top 69 has the second inclined plane 64 and three the first inclined planes 63, and these three the first inclined planes 63 form three sides of triangular pyramid, and tilt towards front extreme direction; This second inclined plane 64 is formed in the rib portion 65 between the first adjacent inclined plane 63, and tilts towards front extreme direction.
The inclination angle of the first inclined plane 63 does not limit, such as, be 40 ° ~ 85 °, and be formed as mutually equal.In the present embodiment, because column top 69 is formed as positive Rhizoma Sparganii taper, therefore in fig. 12, the inclination angle of the first inclined plane 63 is respectively formed at relative to summit 66 in point-symmetric position.
The vertex angle theta of the first inclined plane 63 5(Figure 12 represents, when overlooking post portion 62 directly over post portion 62, along the angle that the circumference of the first inclined plane 63 is expanded centered by the summit 66 in post portion 62) is 120 ° respectively.
In the rib portion 65 of post portion 62 between the first adjacent inclined plane 63, the second inclined plane 64 is formed in the position having predetermined distance with the summit in post portion 62 apart, is namely only formed at the centre position part on the direction of holding up in post portion 62 in rib portion 65.Therefore, compared with the structure of the first embodiment and the second embodiment, the column top 69 in post portion 62 is more sharp-pointed near summit 66.Second inclined plane 64 can be formed at the optional position met the following conditions, and namely in rib portion 65, has the position of predetermined distance apart with the summit in post portion 62, the middle section such as, obtained after also can being formed in trisection rib portion 65.
The vertex angle theta of the second inclined plane 64 6(Figure 12 represents, when overlooking post portion 62 directly over post portion 62, along the angle that the circumference of the second inclined plane 64 is expanded centered by the summit 66 ' of the second inclined plane 64 in rib portion 65) is such as 50 ° ~ 70 °, and is formed as mutually equal.The vertex angle theta of the second inclined plane 64 6be formed as the vertex angle theta being less than above-mentioned first inclined plane 63 5.
Base portion and post portion 62 such as can be formed by resin material, metal material etc.Wherein, the particularly preferred resin material based on aspects such as cost, weight reductions, easily formability.As resin material, such as, can use polyacetal resin, mylar or PBT resin (polybutylene terephthalate resin) etc.Base portion and post portion 62 integrally formed.
Second inclined plane 64 in post portion 62 is formed in the rib portion 65 between the first adjacent inclined plane 63, and is only formed at the centre position part on the direction of holding up in post portion 62 in rib portion 65.Therefore, when making BUTTON-MOUNTING MEMBER 60 run through flexible substrate, first the sharp keen rib portion 65 that the front end one in post portion 62 is with clamp-ons flexible substrate relatively easily, bears the pressure from flexible substrate afterwards by the second inclined plane 64 of the centre position part being only formed at rib portion 65.Thus, can, under the state that inhibit BUTTON-MOUNTING MEMBER 60 to buckle well, BUTTON-MOUNTING MEMBER 60 be made more easily to run through flexible substrate.
4th embodiment
BUTTON-MOUNTING MEMBER is not limited to the structure described in the first ~ three embodiment, such as, also can be the structure of following 4th embodiment that will illustrate.
Figure 15 represents the stereogram in the post portion 72 of the BUTTON-MOUNTING MEMBER 70 that the 4th embodiment relates to.Figure 16 represents the top view of the BUTTON-MOUNTING MEMBER that the 4th embodiment relates to.Figure 17 represents the sectional view of the BUTTON-MOUNTING MEMBER that the 4th embodiment relates to.Figure 18 represents the C-C horizontal cross of Figure 17.
BUTTON-MOUNTING MEMBER 70 has base portion 71 and post portion 72, and this post portion 72 is formed in the mode of holding up in the substantially central portion on base portion 71 surface, and for passing through the flexible substrate such as habited cloth.Base portion 71 is formed as such as circular, substantially rectangular etc. tabular.Post portion 72 is formed as hollow shape, and this post portion 72 has the post main part 78 extended from base portion 71 surface and the column top 79 of continuing the Rhizoma Sparganii taper extended along post main part 78 extending direction from the front end of post main part 78.Post main part 78 is formed as roughly cylindric.Post main part 78 is not limited to cylindric, such as, also can be formed as the prism-shaped such as triangular prism, quadrangular.Column top 79 reduces gradually towards summit 76 sectional area thus is formed as the Rhizoma Sparganii taper of tip.Column top 79 has the second inclined plane 74 and three the first inclined planes 73, and these three the first inclined planes 73 form three sides of triangular pyramid, and tilt towards front extreme direction; Second inclined plane 74 is formed in the rib portion 75 between the first adjacent inclined plane 73, and tilts towards front extreme direction.
The inclination angle of the first inclined plane 73 does not limit, such as, be 40 ° ~ 85 °, and be formed as mutually equal.In the present embodiment, because column top 79 is formed as positive Rhizoma Sparganii taper, therefore in figure 16, the inclination angle of the first inclined plane 73 is respectively formed at relative to summit 76 in point-symmetric position.
The rib portion 75 between the first inclined plane 73 that is formed at is formed in the mode of the front end gentle dip in orientation column portion 72.
In post portion 72, the 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 to the summit 76 in post portion 72 from the centre position in rib portion 75.Second inclined plane 74 is formed in all rib portions 75 between the first adjacent inclined plane 73.The inclination angle of the second inclined plane 74 is such as 35 ° ~ 80 °, and is formed as mutually equal.The inclination angle of the second inclined plane 74 is preferably formed to the inclination angle being less than the first inclined plane 73, and to make when flexible substrate is run through in post portion 72, the second inclined plane 74 bears the pressure from flexible substrate prior to the first inclined plane 73.
Base portion 71 and post portion 72 such as can be formed by resin material, metal material etc.Wherein, the particularly preferred resin material based on aspects such as cost, light weights, easily formability.As resin material, such as, can use polyacetal resin, mylar or PBT resin (polybutylene terephthalate resin) etc.Base portion and post portion 72 integrally formed.
Because BUTTON-MOUNTING MEMBER 70 has above-mentioned second inclined plane 74 in post portion 72, when therefore making BUTTON-MOUNTING MEMBER 70 run through flexible substrate, the second inclined plane 74 can be utilized to bear the larger pressure in the rib portion 75 being applied to post portion 72, BUTTON-MOUNTING MEMBER 70 can be suppressed thus well to buckle.And, because post portion 72 is formed as hollow shape, therefore low cost of manufacture, and BUTTON-MOUNTING MEMBER 70 lightens.
In addition, formation and installation method thereof that BUTTON-MOUNTING MEMBER is installed to female snap-fastener main body is illustrated in above-mentioned first ~ four embodiment, but the BUTTON-MOUNTING MEMBER that the present invention relates to is not limited to this, also to public snap-fastener main body, BUTTON-MOUNTING MEMBER can be installed.
In addition, the BUTTON-MOUNTING MEMBER that the present invention relates to also can be installed to button main body.As this button main body, be not particularly limited, such as, can exemplify out the component of type as shown in figure 19.Figure 19 is the sectional view of BUTTON-MOUNTING MEMBER 10, flexible substrate 40 and button main body 81 before the post portion 12 of the BUTTON-MOUNTING MEMBER 10 shown in insertion first embodiment.At this, the button 82 that button main body 81 comprises hollow shape, the flat board 84 being inlaid in the lid 83 on button 82 and being located at button 82 and covering between 83.Button 82 has the hollow cylinder 86 of holding up from bottom 85 in center of inside, have the flange 87 of the plate-like of setting-in lid 83 in outer upper ends.Hollow cylinder 86 has the bend 90 bent laterally in upper end.
Button main body 81 as constructed as above and BUTTON-MOUNTING MEMBER 10 are arranged in flexible substrate 40 in such a way.That is, first, after flexible substrate 40 is run through in the post portion 12 of BUTTON-MOUNTING MEMBER 10, column top bumps against on the flat board 84 of button main body 81.The column top bumped against on dull and stereotyped 84 is the distortion of expanding shape, and is hooked in bend 90.Thus, button main body 81 and BUTTON-MOUNTING MEMBER 10 are installed in flexible substrate 40.
description of reference numerals
10, BUTTON-MOUNTING MEMBER; 11, base portion; 12, post portion; 13, the first inclined plane; 14, the 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-MOUNTING MEMBER; 52, post portion; 53, the first inclined plane; 54, the second inclined plane; 55, rib portion; 58, post main part; 59, column top; 60, BUTTON-MOUNTING MEMBER; 62, post portion; 63, the first inclined plane; 64, the second inclined plane; 65, rib portion; 66, summit; 68, post main part; 69, column top; 70, BUTTON-MOUNTING MEMBER; 71, base portion; 72, post portion; 73, the first inclined plane; 74, the second inclined plane; 75, rib portion; 78, post main part; 79, column top.

Claims (6)

1. a BUTTON-MOUNTING MEMBER, the feature of this BUTTON-MOUNTING MEMBER (10,50,60,70) is,
Have base portion (11,71) and post portion (12,52,62,72), this post portion (12,52,62,72) are formed in the mode of holding up on above-mentioned base portion (11,71) surface and are column,
The post portion (12,52,62,72) of above-mentioned column has the post main part (18,58,68,78) extended from above-mentioned base portion (11,71) surface and the column top (19,59,69,79) of continuing the Rhizoma Sparganii taper extended along the direction that this post main part (18,58,68,78) extends from the front end of this post main part (18,58,68,78)
Above-mentioned column top (19,59,69,79) has three first inclined planes (13,53,63,73) of three sides of the second inclined plane (14,54,64,74) and formation triangular pyramid, the rib portion (15,55,65,75) that this second inclined plane (14,54,64,74) is formed between adjacent this first inclined plane (13,53,63,73) goes up and tilts towards front extreme direction
Second inclined plane (14) of above-mentioned post portion (12) is formed into the summit (16) of above-mentioned post portion (12) on the direction that above-mentioned post portion (12) is holded up from the centre position of above-mentioned rib portion (15) always.
2. BUTTON-MOUNTING MEMBER according to claim 1 (10,50,60,70), is characterized in that,
Above-mentioned all rib portions (15,55,65,75) are formed with above-mentioned second inclined plane (14,54,64,74).
3. BUTTON-MOUNTING MEMBER according to claim 1 (10), is characterized in that,
Inclination angle (the α of above-mentioned first inclined plane (13) 1) acute angle for being formed between above-mentioned first inclined plane (13) and the plane perpendicular to above-mentioned post portion (12) bearing of trend, and the inclination angle (α of above-mentioned first inclined plane (13) 1) mutually equal.
4. BUTTON-MOUNTING MEMBER according to claim 1 (10), is characterized in that,
Inclination angle (the α of above-mentioned second inclined plane (14) 2) acute angle for being formed between above-mentioned second inclined plane (14) and the plane in direction extended perpendicular to above-mentioned post portion (12), and the inclination angle (α of the second inclined plane (14) 2) mutually equal.
5. BUTTON-MOUNTING MEMBER according to claim 1 (10), is characterized in that,
Inclination angle (the α of above-mentioned second inclined plane (14) 2) be less than the inclination angle (α of above-mentioned first inclined plane (13) 1).
6. BUTTON-MOUNTING MEMBER according to claim 1 (10,50), is characterized in that,
When above-mentioned post portion (12,52) will be overlooked directly over above-mentioned post portion (12,52), the angle expanded along the circumference in above-mentioned post portion centered by the summit of above-mentioned post portion (12,52) (16,56) of above-mentioned first inclined plane (13,53) is set to the first drift angle (θ 1, θ 3), the angle expanded along the circumference in above-mentioned post portion centered by the summit of above-mentioned post portion (12,52) (16,56) of above-mentioned second inclined plane (14,54) is set to the second drift angle (θ 2, θ 4) time, the second drift angle (θ of above-mentioned second inclined plane (14,54) 2, θ 4) be less than the first drift angle (θ of above-mentioned first inclined plane (13,53) 1, θ 3).
CN200980159738.XA 2009-06-08 2009-06-08 Button mounting member Active CN102458173B (en)

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

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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
WO2015097895A1 (en) * 2013-12-27 2015-07-02 Ykk株式会社 Button fastener

Family Cites Families (9)

* Cited by examiner, † Cited by third party
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
AU557267B2 (en) * 1983-04-13 1986-12-18 Nippon Notion Kogyo Co. Ltd. Button
JPS60109410U (en) * 1983-12-29 1985-07-25 日本ノ−シヨン工業株式会社 Studs for buttons, etc.
JPS6083406U (en) * 1983-11-16 1985-06-08 日本ノーシヨン工業株式会社 Studs for buttons, etc.
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

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