This invention relates to a two-piece clip, in which the structure can be simplified by providing a provisional fastening part only on a pin, so that a force of insertion of the pin can be reduced.
Conventionally, there is known a fastening tool, in which a projection for provisional fastening is provided on a hole edge of an insertion hole of a grommet to project toward the inside of the insertion hole, and an elastic arm part to be elastically caught on the aforementioned projection is provided on a tip part of a shaft part of a pin (for example, see paragraph [0016] and FIG. 4 of Patent Document 1).
Specifically, the projection for provisional fastening on the grommet is elastically caught between a base of the elastic arm part of the pin and a projection positioned below (for example, see paragraph [0016] and FIG. 4 of Patent Document 1).
Patent Document 1: Japanese Unexamined Patent Publication No. 2004-263811
However, in the aforementioned conventional fastening tool, there is a problem that the elastic arm part and the projection positioned below both must bend in order to elastically catch the projection for provisional fastening on the grommet between the base of the elastic arm part of the pin and the projection positioned below, and a force of insertion of the pin may be increased.
The present invention was created in consideration of the abovementioned problem of the prior art, and an object thereof is that the provisional fastening part should bend, so that the force of insertion of the pin can be reduced.
The present invention was created in order to achieve the abovementioned objects, and the present invention has the following characteristics.
Firstly, the present invention is a two-piece clip comprising a grommet and a pin.
Secondly, the grommet has the following configuration.
(1) Flange Part
(2) Leg Part
The leg part extends in cylindrical form from a lower face of the flange part.
(3) Insertion Hole
The insertion hole runs through the leg part from the flange part and allows insertion of the pin.
(4) Slits
The slits divide the leg part into a plurality of divided pieces capable of expanding.
Thirdly, the pin has the following configuration.
(5) Head Part
The head part has a larger outer diameter than the insertion hole.
(6) Shaft Part
The shaft part extends from a lower face of the head part, and is used for expanding the divided pieces by being inserted into the insertion hole.
Fourthly, the shaft part is provided with a provisional fastening part projecting to curve outwardly in a radial direction on a tip part thereof, for elastically contacting with an inner edge part on an upper face of the opening of the insertion hole.
The present invention may be characterized by the following point.
An upper end part of the provisional fastening part is continuous with the shaft part, and a lower end part thereof serves as a free end part. The provisional fastening part can then be made easier to bend by providing the free end part on the provisional fastening part.
The present invention may be characterized by the following point.
A space part, into which the provisional fastening part is allowed to bend, is provided between an inside face of the provisional fastening part and an outer perimeter face of the shaft part. The provisional fastening part can then bend into the space part.
The present invention may be characterized by the following point.
A timing for release of provisional fastening, in which the provisional fastening part moves away from the inner edge part of the insertion hole, when the pin is pushed into the insertion hole from a provisionally fastened state in which the provisional fastening part has contacted the inner edge part on the upper face of the opening of the insertion part, and a timing for expanding, in which the divided pieces expand, being pushed by the shaft part advancing toward a depth inside the insertion hole, are set to be simultaneous, or are set so that the timing for expanding is started earlier than the timing for release of provisional fastening. The movement from the provisionally fastened state to a fully fastened state can then be performed quickly and smoothly.
The present invention may be characterized by the following point.
A total length of the shaft part is set so that end faces of tip parts of the divided pieces align with an end face of the tip part of the shaft part in a state in which the shaft part is inserted inside the insertion hole and the divided pieces are caused to expand. The pin can then be prevented from jumping out from the grommet after fastening.
Space saving can therefore be accomplished by reduction of a space under the plate on the side where the leg part of the grommet projects.
According to the present invention, the provisional fastening part should bend, and the force of insertion of the pin can be reduced.
(Two-Piece Clip 10)
In
Although an automobile is given as an example as a place for use of the clip 10, the invention is not limited to this, and the place may be on a train, ship, airplane, or other passenger vehicle, or it may be a building, furniture, home electronic product, office equipment, or the like.
The clip 10, broadly divided, has the following parts, as illustrated in
The following (1) and (2) are to be described. Also, the parts of the clip 10 are not limited to the following (1) and (2).
(1) Grommet 40
(2) Pin 50
The pin 50 is used for expanding the grommet 40 in diameter by being inserted inside the grommet 40, as illustrated in
(Fastened Member 20 and Panel 30)
Installation holes 21 and 31 are provided respectively on the fastened member 20 and the panel 30, running through top to bottom, for inserting the grommet 40, as illustrated in
(Grommet 40)
The grommet 40 is inserted consecutively into both installation holes 21 and 31, as illustrated in
Specifically, the grommet 40, broadly divided, has the following parts, as illustrated in
The following (1) to (6) are to be described.
(1) Flange Part 41
(2) Leg Part 42
(3) Insertion Hole 43
(4) Slits 44
(5) Divided Pieces 45
(6) Elastic Projecting Edge Part 46
The parts of the grommet 40 are not limited to the abovementioned (1) to (6).
(Pin 50)
The pin 50 has the following parts, as illustrated in
(1) Head Part 51
(2) Shaft Part 52
(3) Large-Diameter Part 53
(4) Provisional Fastening Part 54
The parts of the pin 50 are not limited to the abovementioned (1) to (4).
(Flange Part 41)
The flange part 41 is formed in a disk shape as illustrated in
A plurality, for example, four projecting edge parts 41a is provided on the perimeter of the upper face of the flange part 41 to project upwardly radially centered on the insertion hole 43 to be described, as illustrated in
Although four is given as an example of the number of projecting edge parts 41a, the invention is not limited to this, and the number may be one, or two or three, or five or more.
(Leg Part 42)
The leg part 42 extends in cylindrical form from the lower face of the flange part 41, as illustrated in
(Insertion Hole 43)
The insertion hole 43 runs through the leg part 42 from the flange part 41, and allows insertion of the pin 50 to be described, as illustrated in
Also, a total of four key slots 43a and 43b are provided on the insertion hole 43, extending radially from the center, for example, in a “+” (plus) shape, as illustrated in
Two opposing first key slots 43a among the four key slots 43a and 43b are cut in deeply.
The other two second key slots 43b are cut in shallowly compared with the first key slots 43a.
Although four is given as an example of the number of key slots 43a and 43b, the invention is not limited to this, and the number may be two or three, or five or more.
(Slits 44)
The slits 44 divide the leg part 42 into a plurality of divided pieces 45 capable of expanding, as illustrated in
The slits 44 divide the head part 42 into four divided pieces 45, extending radially from the center of the leg part 42, for example, in a “+” (plus) shape. The positions of the slits 44 are arranged to coincide with the positions of the key slots 43a and 43b.
Although four is given as an example of the number of slits 44, the invention is not limited to this, and the number may be two or three, or five or more. Also, although four is given as an example of the number of divided pieces 45, the invention is not limited to this, and the number may be two or three, or five or more.
(Divided Pieces 45)
The divided pieces 45 are formed between adjacent slits 44, the upper end parts are connected to the lower face of the flange part 41 and serve as hinges, and the tip parts, being the lower end parts, serve as free end parts, as illustrated in
A thick part 45a is formed on the tip part, being the lower end part of the divided piece, gradually increasing in thickness going toward the tip part, as illustrated in
(Elastic Projecting Edge Part 46)
The elastic projecting edge part 46 is used for elastically contacting with the provisional fastening part 54 of the pin 50 to be described, and provisionally fastening in a state in which the shaft part 52 of the pin 50 is inserted shallowly into the insertion hole 43, as illustrated in
Specifically, the elastic projecting edge part 46 is positioned on the depth side of the second key slot 43b cut in shallowly. A circular cutout part 47 is formed on the outer perimeter of the elastic projecting edge part 46, running through the upper and lower faces of the flange part 41. The elastic projecting edge part 46 is therefore positioned between the second key slot 43b and the cutout part 47, and curves in a circular form so as to bend toward the cutout part 47.
(Head Part 51)
The head part 51 is formed in a disk shape as illustrated in
(Shaft Part 52)
The shaft part 52 extends from the lower face of the head part 51 as illustrated in
Also, the total length of the shaft part 52 is set so that the end faces of tip parts of the divided pieces 45 and the end face of the tip part, being the large-diameter part 53 to be described, of the shaft part 52 become roughly on a single plane, in a state in which the shaft part is inserted inside the insertion hole 43 and the divided pieces 45 are caused to expand, as illustrated in
(Large-Diameter Part 53)
The large-diameter part 53 extends in a conical-trapezoidal shape in which the outer diameter gradually becomes larger from the tip part of the shaft part 52 as illustrated in
The large-diameter part 53 slidingly contacts the inside faces of the thick parts 45a of the divided pieces 45 and expands the divided pieces 45, as illustrated in
A total of four key projections 53a and 53b are provided on the large-diameter part 53, extending radially from the center, for example, in a “+” (plus) shape, as illustrated in
Also, the thickness of the four key projections 53a and 53b is set equal to or smaller than the slit width of the slits 44. The key projections 53a and 53b are therefore inserted into the slits 44 after passing through the key slots 43a and 43b of the insertion hole 43, and check rotation of the shaft part 52 of the pin 50 inside the insertion hole 43 of the grommet 40.
(Provisional Fastening Part 54)
The provisional fastening part 54 projects to curve outwardly in a radial direction from the tip part of the shaft part 52 as illustrated in
Specifically, the upper end part of the provisional fastening part 54 is connected by a hinge part 54a at midway of the height of the shaft part 52, and the tip part, being the lower end part, is positioned slightly at a distance from the upper face of the large-diameter part 53, and serves as a free end part.
Also, a space part 55, into which the provisional fastening part 54 is allowed to bend, is provided between the inside face of the provisional fastening part 54 and the outer perimeter face of the shaft part 52, as illustrated in
A timing for release of provisional fastening, in which the provisional fastening part 54 moves away from the inner edge part of the insertion hole 43 (see
Although the timing for release of provisional fastening and the timing for expanding are set to coincide, that is, to be simultaneous, the invention is not limited to this, and the timing for expanding may be set to be started earlier than the timing for release of provisional fastening.
(Method of Use)
The method of use of the two-piece clip 10 having the abovementioned configuration is next described below.
(Provisionally Fastened State)
The case when provisionally fastening the pin 50 in the grommet 40 is first described, as illustrated in
The shaft part 52 of the pin 50 is inserted fitting into the insertion hole 43 of the grommet 40 as illustrated in
At this time, the positions of the key slots 43a and 43b of the insertion hole 43 and the key projections 53a and 53b of the shaft part 52 are arranged to coincide.
When the shaft part 52 is inserted, the large-diameter part 53 inserted into the second key slot 43b cut in shallowly contacts the elastic projecting edge part 46 positioned on the depth side of the second key slot 43b.
Here, when the shaft part 52 is pushed in forcefully, the elastic projecting edge part 46 bends in toward the cutout part 47, whereby the large-diameter part 53 advances inside the insertion hole 43.
Also, when the large-diameter part 53 passes the elastic projecting edge part 46, the elastic projecting edge part 46 returns by the elastic return force of the resin, whereby the upper face of the large-diameter part 53 and the lower face of the elastic projecting edge part 46 contact each other as illustrated in
At this time, the elastic projecting edge part 46 having returned and the provisional fastening part 54 of the pin 50 elastically contact each other as illustrated in
Because the shaft part 52 is in a state being inserted shallowly into the insertion hole 43 in the provisionally fastened state of the pin 50, the pin 50 can also be held by the head part 51 or the shaft part 52. The clip 10 in which the pin 50 is provisionally fastened can therefore be held easily.
(Fully Fastened State)
Full fastening, in which the fastened member 20 and the panel 30 are fastened in an overlaid state, using the clip 10 in which the pin 10 is provisionally fastened, as illustrated in
The leg part 42 of the grommet 40 is first inserted fitting into the installation hole 21 of the fastened member 20 as illustrated in
Although the clip 10 is first installed in the fastened member 20 and then installed in the panel 30, the invention is not limited to this, and the head part 42 of the grommet 40 may be inserted consecutively into both installation holes 21 and 31 upon having overlaid the fastened member 20 and the panel 30 and aligned both installation holes 21 and 31.
The pin 50 is next pushed into the insertion hole 43 of the grommet 40 as illustrated in
When the pin is pushed in, the provisional fastening part 54 is pressed by the elastic projecting edge part 46 and bends in toward the space part 55. When the top of the provisional fastening part 54 is passed, the provisional fastening part 54 moves away from the elastic projecting edge part 46 (see
At the same time, the large-diameter part 53 of the shaft part 52 advancing toward the depth inside the insertion hole 43 contacts the inside faces of the thick parts 45a of the divided pieces 45.
Here, when the head part 51 of the pin 50 is pushed forcefully in the direction approaching the flange part 41 of the grommet 40, the inside faces of the thick parts 45a are pressed by the outside face of the large-diameter part 53, and the divided pieces 45 expand (see
At this time, the divided pieces 45 expand gradually because the inside face of the thick part 45a is inclined diagonally so that the inner diameter of the insertion hole 43 is gradually narrowed going toward the tip part. Also, when the large-diameter part 53 rides past the internal projection 45b of the thick part 45a, the divided pieces 45 return by the elastic return force of the resin, whereby the large-diameter part 53 is caught on the internal projection 45b and cannot escape from the insertion hole 43, as illustrated in
At this time, the lower face of the head part 51 is closely affixed to the upper face of the flange part 41 of the grommet 40.
The divided pieces 45 expand on the lower surface side of the panel 30, whereby the fastened member 20 and the panel 30 in an overlaid state are held in the space formed together with the flange part 41 contacting with the upper face of the fastened member 20, as illustrated in
The fastened member 20 is therefore fastened to the panel 30 by the clip 10 as illustrated in
The entire contents of the specification, claims, drawings, and abstract of Japanese Patent Application No. 2009-166841 filed on Jul. 15, 2009 are incorporated by reference herein as a disclosure of the specification of the present invention.
Number | Date | Country | Kind |
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2009-166841 | Jul 2009 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2010/061846 | 7/13/2010 | WO | 00 | 2/6/2012 |
Publishing Document | Publishing Date | Country | Kind |
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WO2011/007781 | 1/20/2011 | WO | A |
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