WO2015151183A1 - Élément d'assemblage - Google Patents

Élément d'assemblage Download PDF

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Publication number
WO2015151183A1
WO2015151183A1 PCT/JP2014/059512 JP2014059512W WO2015151183A1 WO 2015151183 A1 WO2015151183 A1 WO 2015151183A1 JP 2014059512 W JP2014059512 W JP 2014059512W WO 2015151183 A1 WO2015151183 A1 WO 2015151183A1
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WO
WIPO (PCT)
Prior art keywords
sheet
attached
assembly
assembly member
component
Prior art date
Application number
PCT/JP2014/059512
Other languages
English (en)
Japanese (ja)
Inventor
晃 ▲桑▼原
Original Assignee
株式会社ニューテックシンセイ
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 株式会社ニューテックシンセイ filed Critical 株式会社ニューテックシンセイ
Priority to PCT/JP2014/059512 priority Critical patent/WO2015151183A1/fr
Publication of WO2015151183A1 publication Critical patent/WO2015151183A1/fr

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/04Building blocks, strips, or similar building parts
    • A63H33/06Building blocks, strips, or similar building parts to be assembled without the use of additional elements
    • A63H33/08Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails
    • A63H33/088Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails with holes
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/04Building blocks, strips, or similar building parts
    • A63H33/06Building blocks, strips, or similar building parts to be assembled without the use of additional elements
    • A63H33/08Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails
    • A63H33/084Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails with grooves
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/16Models made by folding paper

Definitions

  • the present invention relates to an assembly member used for assembling a three-dimensional object.
  • Patent Document 1 describes that a plurality of assembly members are assembled to form a three-dimensional object such as a three-dimensional puzzle (three-dimensional puzzle).
  • This assembly member is provided at the peripheral edge of the flat plate of a triangular, square, or pentagonal plastic plate that forms the main body of the assembly member, and is used to connect the peripheral edge of the flat plate of another assembly member. Connected portions (coupling means and engaging means).
  • an object of the present invention is to improve the degree of freedom of bending in a main body portion of an assembly member.
  • the assembly member used for assembling the three-dimensional object is a polygonal sheet-like member having flexibility, and is attached to the surface of the sheet-like member and is harder than the sheet-like member.
  • each of a plurality of strip-like regions extending radially from the reference position preset in the sheet-like member toward each corner of the polygon can be bent without attaching a component piece.
  • a first bent portion is formed.
  • a component piece is attached to the surface of the area
  • the assembly member used for assembling the three-dimensional object is a hexagonal sheet-like member having flexibility, and a plurality of wooden triangular plates attached to the surface of the sheet-like member. And a connecting portion that is provided at the peripheral portion of the sheet-like member and used for connection with the peripheral portion of the sheet-like member of another assembly member.
  • each of the six belt-like regions extending radially from the reference position preset in the sheet-like member toward the respective hexagonal corners can be bent without attaching a component piece.
  • a first bent portion is formed.
  • a component piece is attached to the surface of the area
  • the assembly member used for assembling the three-dimensional object is a hexagonal sheet-like member having flexibility, and a plurality of wooden triangular plates attached to the surface of the sheet-like member. And a connecting portion that is provided at the peripheral portion of the sheet-like member and used for connection with the peripheral portion of the sheet-like member of another assembly member.
  • each of the six belt-like regions extending radially from the reference position preset in the sheet-like member toward the respective hexagonal corners can be bent without attaching a component piece.
  • a first bent portion is formed.
  • a component piece is attached to the surface of the area
  • the reference position of the sheet-like member is eccentric with respect to the position of the center of gravity of the sheet-like member.
  • the assembly member used for assembling the three-dimensional object includes a hexagonal sheet-like member having flexibility, and a plurality of wooden triangular plates attached to the surface of the sheet-like member. And a connecting portion that is provided at the peripheral edge of the sheet-like member and is used for connection with the peripheral edge of the sheet-like member of another assembly member.
  • each of the six belt-like regions extending radially from the reference position preset in the sheet-like member toward the respective hexagonal corners can be bent without attaching a component piece.
  • a first bent portion is formed.
  • a component piece is attached to the surface of the area
  • the lengths of adjacent sides are different from each other.
  • the sheet-like member constituting the main body of the assembly member has a plurality of first bent portions.
  • FIG. 1 is a plan view of an assembly member according to the first embodiment of the present invention.
  • 2 is a cross-sectional view taken along the line II of FIG.
  • the assembly member 1 is used for assembling three-dimensional objects such as interior products and toys.
  • the three-dimensional object is assembled by connecting a large number of assembly members 1 to each other via the respective connection portions 30.
  • the assembly member 1 has, as its main body, one sheet-like member 2 having a front surface (first surface) and a back surface (second surface), and six components attached to the surface of the sheet-like member 2. And pieces 3a to 3f.
  • the sheet-like member 2 has a polygonal shape with rounded corners. In this embodiment, the hexagonal sheet-like member 2 will be described as an example of the polygonal sheet-like member 2, but the shape of the sheet-like member 2 is not limited thereto.
  • the sheet-like member 2 has flexibility.
  • the sheet-like member 2 is formed of felt.
  • examples of felt include press felt, needle felt, woven felt, and the like.
  • the press felt is a felt formed by pressing natural fibers such as wool with a press.
  • the needle felt is a felt formed by solidifying a chemical fiber such as polyester with a needle.
  • the woven felt is a felt that is woven and finished without using the aforementioned press or needle.
  • the thickness of the sheet-like member 2 is preferably in the range of 0.1 mm or more and 10.0 mm or less. Further, the thickness of the sheet-like member 2 is more preferably in the range of 0.5 mm or more and 6.0 mm or less. Further, the thickness of the sheet-like member 2 is more preferably in the range of 1.0 mm or more and 4.0 mm or less. In the present embodiment, the thickness of the sheet-like member 2 is about 1.5 mm.
  • the lengths of the sides 22a to 22f are 80% or more of the average value Ls and 120 of the average value Ls, respectively. % Is preferably in the range of% or less.
  • the lengths of the sides 22a to 22f are more preferably in the range of 90% or more of the average value Ls and 110% or less of the average value Ls.
  • the lengths of the sides 22a to 22f are more preferably in the range of 92% or more of the average value Ls and 108% or less of the average value Ls.
  • it is preferable that the lengths of adjacent sides are different from each other.
  • the length of the side 22a is about 51.5 mm.
  • the length of the side 22b is about 47.5 mm.
  • the length of the side 22c is about 53.5 mm.
  • the length of the side 22d is about 51.5 mm.
  • the length of the side 22e is about 51.5 mm.
  • the length of the side 22f is about 49.0 mm.
  • the total length of the sides 22a to 22f is about 304.5 mm.
  • the average value Ls is about 50.8 mm.
  • the lengths of the sides 22a to 22f are in the range of about 93% or more of the average value Ls and about 106% or less of the average value Ls.
  • the sides 22a, 22d, and 22e have the same length, but the lengths of the sides 22a to 22f may be different from each other. In this case, for each of the sides 22a to 22f, the lengths of adjacent sides are different from each other.
  • a reference position (reference point) Ps is set in advance.
  • the reference position Ps is eccentric with respect to the gravity center position Pg of the sheet-like member 2. In other words, the reference position Ps is deviated from the gravity center position Pg of the sheet-like member 2.
  • an opening 23 penetrating the sheet-like member 2 on the front and back sides is formed.
  • the diameter of the opening 23 is, for example, about 4 mm.
  • each of a plurality (six in the figure) of strip-like regions 24a to 24f extending radially from the reference position Ps toward the corners 21a to 21f is provided with component pieces 3a to 3f.
  • the first bent portions 25a to 25f that can be bent without being formed are formed.
  • the lengths of the band-like regions 24a to 24f (first bent portions 25a to 25f) are different from each other.
  • the width of the band-like regions 24a to 24f (first bent portions 25a to 25f) is 1.
  • the width of the band-like regions 24a to 24f is more preferably in the range of 1.5 mm or more and 10.0 mm or less.
  • the width of the band-like regions 24a to 24f is more preferably in the range of 2.0 mm or more and 6.0 mm or less.
  • the width of the band-like regions 24a to 24f (first bent portions 25a to 25f) is in the range of 2.0 mm or more and 4.0 mm or less.
  • component pieces 3 a to 3 f are attached to the surface of the region between the adjacent first bent portions.
  • the component piece 3a is attached to the surface of the region 26a between the first bent portions 25a and 25b.
  • the component piece 3b is attached to the surface of the area
  • the component piece 3c is attached to the surface of the area
  • the component piece 3d is attached to the surface of the region 26d between the first bent portions 25d and 25e.
  • the component piece 3e is attached to the surface of the area
  • the component piece 3f is attached to the surface of the area
  • the region 26a has a triangular shape surrounded by the first bent portions 25a and 25b and a peripheral portion 27a described later.
  • the region 26b has a triangular shape surrounded by the first bent portions 25b and 25c and a peripheral portion 27b described later.
  • the region 26c has a triangular shape surrounded by the first bent portions 25c and 25d and a peripheral portion 27c described later.
  • the region 26d has a triangular shape surrounded by the first bent portions 25d and 25e and a peripheral portion 27d described later.
  • the region 26e has a triangular shape surrounded by the first bent portions 25e and 25f and a peripheral portion 27e described later.
  • the region 26f has a triangular shape surrounded by the first bent portions 25f and 25a and a peripheral portion 27f described later.
  • the areas 26a to 26f have different surface areas.
  • Each of the component pieces 3 a to 3 f is harder than the sheet-like member 2.
  • Each of the component pieces 3a to 3f has a wooden triangular plate shape and includes a front surface (first surface) and a back surface (second surface). Here, the corners of the component pieces 3a to 3f are rounded. Further, the component pieces 3a to 3f can be formed by cutting and grinding wood.
  • the component pieces 3 a to 3 f are attached to the front surfaces of the regions 26 a to 26 f of the sheet-like member 2, respectively. In this attachment, for example, the component pieces 3a to 3f are respectively fixed to the surfaces of the regions 26a to 26f of the sheet-like member 2 with an adhesive.
  • the gap between the component pieces 3a and 3b attached to the surface of the sheet-like member 2 corresponds to the width of the band-like region 24b (first bent portion 25b). Further, the gap between the component pieces 3b and 3c attached to the surface of the sheet-like member 2 corresponds to the width of the band-like region 24c (first bent portion 25c). Further, the gap between the component pieces 3c and 3d attached to the surface of the sheet-like member 2 corresponds to the width of the band-like region 24d (first bent portion 25d). Further, a gap between the component pieces 3d and 3e attached to the surface of the sheet-like member 2 corresponds to the width of the band-like region 24e (first bent portion 25e).
  • the gap between the component pieces 3e and 3f attached to the surface of the sheet-like member 2 corresponds to the width of the band-like region 24f (first bent portion 25f). Further, the gap between the component pieces 3f and 3a attached to the surface of the sheet-like member 2 corresponds to the width of the band-like region 24a (first bent portion 25a). Accordingly, the component pieces 3a to 3f are attached to the surface of the sheet-like member 2 with a gap therebetween.
  • the thickness of the triangular plate-like component pieces 3a to 3f is preferably in the range of 1.0 mm or more and 10.0 mm or less. Further, the thickness of the triangular plate-shaped component pieces 3a to 3f is more preferably in the range of 1.5 mm or more and 6.0 mm or less. Further, the thickness of the triangular plate-shaped component pieces 3a to 3f is more preferably in the range of 2.0 mm or more and 4.0 mm or less. In the present embodiment, the thickness of each of the triangular plate-like component pieces 3a to 3f is about 3.0 mm.
  • the lengths of the three sides of the triangular back surface (surface on the side in contact with the surface of the sheet-like member 2) of the component piece 3a before the corners are rounded are about 43.5 mm, respectively. , About 44.5 mm, about 59.0 mm.
  • the lengths of the three sides of the triangular surface of the component piece 3a (the surface opposite to the side in contact with the surface of the sheet-like member 2) are about 34.5 mm, about 37.0 mm, and about 47, respectively. .5 mm.
  • the lengths of the three sides on the triangular back surface (the surface on the side in contact with the surface of the sheet-like member 2) of the component piece 3b before the corners are rounded are about 37.0 mm, respectively. , About 40.5 mm, about 44.5 mm.
  • the lengths of the three sides of the triangular surface of the component piece 3b (the surface opposite to the side in contact with the surface of the sheet-like member 2) are about 27.0 mm, about 33.0 mm, and about 34, respectively. 0.0 mm.
  • the lengths of the three sides of the triangular back surface (surface on the side in contact with the surface of the sheet-like member 2) of the component piece 3c before the corners are rounded are about 32.0 mm, respectively. , About 34.5 mm, about 42.5 mm.
  • the lengths of the three sides of the triangular surface of the component piece 3c (the surface opposite to the side in contact with the surface of the sheet-like member 2) are about 23.0 mm, about 24.5 mm, and about 30, respectively. .5 mm.
  • the lengths of the three sides of the triangular back surface (the surface on the side in contact with the surface of the sheet-like member 2) of the component piece 3d before the corners are rounded are about 39.0 mm, respectively. , Approximately 41.5 mm, approximately 46.0 mm. Further, the lengths of the three sides of the triangular surface of the component piece 3d (the surface opposite to the side in contact with the surface of the sheet-like member 2) are about 26.5 mm, about 33.5 mm, and about 35, respectively. .5 mm.
  • the lengths of the three sides of the triangular back surface (surface on the side in contact with the surface of the sheet-like member 2) of the component piece 3e before the corners are rounded are about 41.5 mm, respectively. , About 45.5 mm, about 52.5 mm.
  • the lengths of the three sides of the triangular surface of the component piece 3e (the surface opposite to the side in contact with the surface of the sheet-like member 2) are about 34.0 mm, about 37.5 mm, and about 43, respectively. 0.0 mm.
  • the length of the three sides of the triangular back surface (the surface on the side in contact with the surface of the sheet-like member 2) of the component piece 3f before the corners are rounded is about 42.0 mm, respectively. , About 51.5 mm, about 61.5 mm.
  • the lengths of the three sides of the triangular surface of the component piece 3f (the surface opposite to the side in contact with the surface of the sheet-like member 2) are about 34.5 mm, about 43.0 mm, and about 50, respectively. 0.0 mm.
  • the peripheral portions 27a to 27f of the sheet-like member 2 mean belt-like regions between the sides 22a to 22f and the component pieces 3a to 3f of the sheet-like member 2.
  • the width of the peripheral portions 27a to 27f (the length in the direction orthogonal to the sides 22a to 22f) is preferably in the range of 1.0 mm or more and 15.0 mm or less.
  • the width of the peripheral portions 27a to 27f is more preferably in the range of 1.5 mm or more and 10.0 mm or less.
  • the width of the peripheral portions 27a to 27f is more preferably in the range of 1.5 mm or more and 8.0 mm or less.
  • the widths of the peripheral portions 27a to 27f are in the range of 2.0 mm or more and 4.0 mm or less.
  • the peripheral portions 27a to 27f of the sheet-like member 2 are provided with connecting portions 30 each having a long hole portion 28 and an engaging convex portion 29 at the central portion thereof.
  • the long hole portion 28 is formed so as to penetrate the sheet-like member 2 on the front and back sides.
  • the long hole portion 28 is formed in the sheet-like member 2 such that its long side is substantially parallel to the nearby sides 22a to 22f.
  • the long hole portion 28 is provided in the vicinity of the component pieces 3a to 3f. As a result, the vicinity of the long hole portion 28 of the sheet-like member 2 is reinforced by the component pieces 3a to 3f, so that the occurrence of breakage of the long hole portion 28 and the like can be suppressed.
  • the engaging convex portion 29 is formed of felt so as to protrude outward from the sides 22a to 22f of the sheet-like member 2.
  • the engagement convex part 29 consists of the engagement head part 29a which comprises the front end side part, and the engagement neck part 29b which comprises the base end side part.
  • the shape and dimension of the engagement head 29a and the engagement neck part 29b are set so that it can be inserted in the long hole part 28 of the other assembly member 1, and can be engaged. Therefore, when the two assembly members 1 are connected to each other via the respective connection portions 30, the engagement convex portion 29 of one assembly member 1 is inserted into the elongated hole portion 28 of the other assembly member 1 and engaged.
  • the engaging projections 29 of the other assembly member 1 are inserted into and engaged with the long hole portions 28 of the one assembly member 1 so that the peripheral portions 27a to 27f of the two assembly members 1 are connected to each other. .
  • an assembly member 1 used for assembling a three-dimensional object is a polygonal sheet-like member 2 having flexibility, and is attached to the surface of the sheet-like member 2 and is harder than the sheet-like member 2.
  • a plurality of component pieces 3a to 3f and connecting portions provided on the peripheral portions 27a to 27f of the sheet-like member 2 and used to connect the peripheral portions 27a to 27f of the sheet-like member 2 of the other assembly member 1 30.
  • each of the plurality of strip-like regions 24a to 24f extending radially from the reference position Ps preset in the sheet-like member 2 toward the polygonal corners 21a to 21f is a component.
  • the first bent portions 25a to 25f that can be bent without the pieces 3a to 3f being attached are formed.
  • the component pieces 3a to 3f are attached to the surfaces of the regions 26a to 26f between the adjacent first bent portions.
  • the degree of bending (such as the angle of bending) can be arbitrarily selected for each of the first bent portions 25a to 25f, so that bending can be performed at the main body of the assembly member 1. Can be improved.
  • the reference position Ps of the sheet-like member 2 is eccentric with respect to the gravity center position Pg of the sheet-like member 2. Accordingly, the lengths of the first bent portions 25a to 25f (lengths in the direction from the reference position Ps toward the corner portions 21a to 21f) can be made different from each other. Can be deformed into various shapes.
  • the lengths of adjacent sides among the sides 22a to 22f can be different from each other. Therefore, when connecting the two assembly members 1 via the connection part 30, the combination of the sides connected via the connection part 30 can be varied, so the assembly member 1 formed by the connection The shape of can also be varied.
  • the opening 23 which penetrates the sheet-like member 2 in the front and back is formed in the reference position Ps of the sheet-like member 2.
  • the regions 26a to 26f between the adjacent first bent portions of the sheet-like member 2 have a triangular shape. Accordingly, the first bent portions 25a to 25f of the sheet-like member 2 can be easily formed by attaching the triangular plate-shaped component pieces 3a to 3f to the regions 26a to 26f.
  • the component pieces 3a to 3f have a triangular plate shape. Thereby, the component pieces 3a to 3f can be formed relatively easily. According to the present embodiment, the component pieces 3a to 3f are made of wood. Thereby, the user can feel the feel and scent of wood when using the assembly member 1.
  • the sheet-like member 2 is hexagonal. Thereby, the main body of the assembly member 1 can be bent by the six first bent portions 25a to 25f. Moreover, according to this embodiment, the sheet-like member 2 is formed of felt. Accordingly, the first bent portions 25a to 25f of the assembly member 1 can be bent so as to be creased. Further, when an external force that deforms the sheet-like member 2 is acting on the sheet-like member 2, the deformation state of the assembly member 1 can be maintained, and when the action of the external force disappears, the sheet-like member 2 is flat. It is possible to return to the shape. Therefore, when the assembly member 1 is not used, a large number of assembly members 1 can be stacked and stored compactly.
  • the assembly member 1 used for assembling the three-dimensional object is a hexagonal sheet-like member 2 having flexibility, and a plurality of wooden triangular plates attached to the surface of the sheet-like member 2.
  • Connecting parts 30 provided to the peripheral parts 27a to 27f of the sheet-like member 2 and used to connect the peripheral parts 27a to 27f of the sheet-like member 2 of the other assembly member 1, It is comprised including.
  • each of the six belt-like regions 24a to 24f extending radially from the reference position Ps preset in the sheet-like member 2 toward the hexagonal corners 21a to 21f is a component.
  • the first bent portions 25a to 25f that can be bent without the pieces 3a to 3f being attached are formed.
  • the component pieces 3a to 3f are attached to the surfaces of the regions 26a to 26f between the adjacent first bent portions. Thereby, the user can feel the feel and scent of wood when using the assembly member 1.
  • the assembly member 1 used for assembling the three-dimensional object is a hexagonal sheet-like member 2 having flexibility, and a plurality of wooden triangular plates attached to the surface of the sheet-like member 2.
  • Connecting parts 30 provided to the peripheral parts 27a to 27f of the sheet-like member 2 and used to connect the peripheral parts 27a to 27f of the sheet-like member 2 of the other assembly member 1, It is comprised including.
  • each of the six belt-like regions 24a to 24f extending radially from the reference position Ps preset in the sheet-like member 2 toward the hexagonal corners 21a to 21f is a component.
  • the first bent portions 25a to 25f that can be bent without the pieces 3a to 3f being attached are formed.
  • the component pieces 3a to 3f are attached to the surfaces of the regions 26a to 26f between the adjacent first bent portions.
  • the reference position Ps of the sheet-like member 2 is eccentric with respect to the gravity center position Pg of the sheet-like member 2. Accordingly, the lengths of the first bent portions 25a to 25f (lengths in the direction from the reference position Ps toward the corner portions 21a to 21f) can be made different from each other. Can be deformed into various shapes.
  • the assembly member 1 used for assembling the three-dimensional object is a hexagonal sheet-like member 2 having flexibility, and a plurality of wooden triangular plates attached to the surface of the sheet-like member 2.
  • Connecting parts 30 provided to the peripheral parts 27a to 27f of the sheet-like member 2 and used to connect the peripheral parts 27a to 27f of the sheet-like member 2 of the other assembly member 1, It is comprised including.
  • each of the six belt-like regions 24a to 24f extending radially from the reference position Ps preset in the sheet-like member 2 toward the hexagonal corners 21a to 21f is a component.
  • the first bent portions 25a to 25f that can be bent without the pieces 3a to 3f being attached are formed.
  • the component pieces 3a to 3f are attached to the surfaces of the regions 26a to 26f between the adjacent first bent portions.
  • the lengths of adjacent sides can be different from each other.
  • FIG. 3 is a plan view of the assembly member 1 according to the second embodiment of the present invention. Differences from the first embodiment shown in FIGS. 1 and 2 will be described.
  • belt-like regions 34a to 34f that extend radially from the reference position Ps to the sides 22a to 22f and reach the sides 22a to 22f divide the regions 26a to 26f into two regions.
  • the area 34a divides the area 26a into two areas 26a1 and 26a2.
  • the area 34b divides the area 26b into two areas 26b1 and 26b2.
  • the region 34c divides the region 26c into two regions 26c1 and 26c2.
  • the area 34d divides the area 26d into two areas 26d1 and 26d2.
  • the area 34e divides the area 26e into two areas 26e1 and 26e2.
  • the area 34f divides the area 26f into two areas 26f1 and 26f2.
  • the component pieces 3a to 3f are divided into two in the above-described regions 34a to 34f. Therefore, the component piece 3a is divided into two triangular plate-like component pieces 33a1 and 33a2.
  • the component piece 3b is divided into two triangular plate-like component pieces 33b1 and 33b2.
  • the component piece 3c is divided into two triangular plate-like component pieces 33c1 and 33c2.
  • the component piece 3d is divided into two triangular plate-like component pieces 33d1 and 33d2.
  • the component piece 3e is divided into two triangular plate-shaped component pieces 33e1 and 33e2.
  • the component piece 3f is divided into two triangular plate-like component pieces 33f1 and 33f2.
  • the triangular plate-like component pieces 33a1 to 33f2 are also formed with inclined surfaces on the respective triangular sides, as in the case of the component pieces 3a to 3f described above.
  • the regions 34a to 34f described above form second bent portions 35a to 35f that can be bent without the component pieces 33a1 to 33f2 being attached.
  • component pieces 33 a 1 to 33 f 1 are attached to a region between the adjacent first bent portion and the second bent portion.
  • the component piece 33 a 1 is attached to a region 26 a 1 between the first bent portion 25 a and the second bent portion 35 a.
  • the strip-shaped regions 34a to 34f extending so as to divide the region between the adjacent first bent portions of the sheet-like member 2 are attached with the component pieces 33a1 to 33f2.
  • the second bent portions 35a to 35f that can be bent without being formed are formed.
  • FIG. 4 is a plan view of the assembly member 1 according to the third embodiment of the present invention. Differences from the first embodiment shown in FIGS. 1 and 2 will be described.
  • strip-like regions 44a to 44f extending so as to connect the central portions of the adjacent first bent portions divide the regions 26a to 26f into two regions, respectively.
  • the area 44a divides the area 26a into two areas 26a3 and 26a4.
  • the area 44b divides the area 26b into two areas 26b3 and 26b4.
  • the area 44c divides the area 26c into two areas 26c3 and 26c4.
  • the area 44d divides the area 26d into two areas 26d3 and 26d4.
  • the area 44e divides the area 26e into two areas 26e3 and 26e4.
  • the area 44f divides the area 26f into two areas 26f3 and 26f4.
  • the component pieces 3a to 3f are divided into two parts in the aforementioned regions 44a to 44f. Therefore, the component piece 3a is divided into a triangular plate-shaped component piece 33a3 and a trapezoidal plate-shaped component piece 33a4.
  • the component piece 3b is divided into a triangular plate-like component piece 33b3 and a trapezoidal plate-like component piece 33b4.
  • the component piece 3c is divided into a triangular plate-like component piece 33c3 and a trapezoidal plate-like component piece 33c4.
  • the component piece 3d is divided into a triangular plate-like component piece 33d3 and a trapezoidal plate-like component piece 33d4.
  • the component piece 3e is divided into a triangular plate-shaped component piece 33e3 and a trapezoidal plate-shaped component piece 33e4.
  • the component piece 3f is divided into a triangular plate-like component piece 33f3 and a trapezoidal plate-like component piece 33f4.
  • the inclined surfaces are formed on the respective triangular or trapezoidal sides in the same manner as the above-described component pieces 3a to 3f4.
  • the aforementioned regions 44a to 44f form second bent portions 45a to 45f that can be bent without the component pieces 33a3 to 33f4 being attached.
  • openings 23a penetrating the sheet-like member 2 on the front and back sides are formed at portions where the first bent portions 25a to 25f and the second bent portions 45a to 45f intersect. . Thereby, formation of a wrinkle at the time of bending of the sheet-like member 2 can be suppressed.
  • the strip-like regions 44a to 44f extending so as to divide the region between the adjacent first bent portions of the sheet-like member 2 are attached with the component pieces 33a3 to 33f4.
  • the second bent portions 45a to 45f that can be bent without being formed are formed.
  • FIG. 5 is a plan view of the assembly member 1 according to the fourth embodiment of the present invention. Differences from the first embodiment shown in FIGS. 1 and 2 will be described.
  • a large number of cylindrical component pieces 3g are used in place of the triangular plate-like component pieces 3a to 3f.
  • the cylindrical part piece 3g is made of wood and is harder than the sheet-like member 2.
  • the height of the cylindrical part piece 3g can be set in the same manner as the thickness of the triangular plate-like part pieces 3a to 3f described above.
  • the component piece 3g can be formed by cutting and grinding wood.
  • a large number of component pieces 3g are attached so as to fill the surfaces of the regions 26a to 26f of the sheet-like member 2.
  • the large number of component pieces 3g function in the same manner as the triangular plate-shaped component pieces 3a to 3f described above and are in a flat state. Can be maintained.
  • a plurality of strip-like regions extending radially from the reference position Ps preset in the sheet-like member 2 toward the polygonal corners 21a to 21f.
  • Each of 24a to 24f forms first bent portions 25a to 25f that can be bent without attaching the component piece 3g.
  • a large number of component pieces 3g are attached to the surface of the regions 26a to 26f between the adjacent first bent portions of the sheet-like member 2.
  • the degree of bending (such as the angle of bending) can be arbitrarily selected for each of the first bent portions 25a to 25f, so that bending can be performed at the main body of the assembly member 1. Can be improved.
  • FIG. 6 is a plan view of the assembly member 1 according to the fifth embodiment of the present invention. Differences from the first embodiment shown in FIGS. 1 and 2 will be described.
  • the shape of the connecting portion 30 is different between the present embodiment and the first embodiment.
  • the engagement head 29a ′ of the engagement protrusion 29 of the present embodiment is formed larger than the engagement head 29a described above. Further, the engaging head 29a ′ is formed in a tapered shape so as to become narrower toward the tip. Further, the long side of the long hole portion 28 ′ of the present embodiment is longer than the long side of the long hole portion 28 described above.
  • the engagement head 29a 'of the engagement protrusion 29 is relatively large, the user can easily pick the engagement protrusion 29, so that the assembly members 1 can be easily attached and detached. It can be carried out.
  • the engaging convex portion 29 of the connecting portion 30 of the assembly member 1 is formed of felt, but in addition to this, non-felt nonwoven fabric, woven fabric, elastomer, or It may be formed of paper such as cardboard or cardboard sheet.
  • FIG. 7 is a plan view of the assembly member 1 according to the sixth embodiment of the present invention. Differences from the first embodiment shown in FIGS. 1 and 2 will be described.
  • connection portions 30 ′ are provided on the peripheral portions 27 a to 27 f of the sheet-like member 2.
  • Connection part 30 ' is comprised by the trapezoidal surface fastener.
  • a hook engaging element and a loop engaging element are planted on the front and back surfaces of the surface fastener, respectively. Therefore, when the two assembly members 1 are connected to each other via the respective connection portions 30 ', the hook-and-loop fastener of the connection portion 30' of one assembly member 1 is connected to the other assembly member 1 regardless of the front and back sides.
  • the peripheral portions 27a to 27f of the two assembly members 1 are connected to each other by being detachably attached to the surface fastener of the portion 30 ′.
  • connection portion 30 ′ provided on the peripheral edge portions 27a to 27f of the sheet-like member 2 and used for connection to the peripheral edge portions 27a to 27f of the sheet-like member 2 of the other assembly members 1 is provided. It is constituted by a hook-and-loop fastener. Thereby, the assembly members 1 can be easily detachably fixed with a relatively simple configuration.
  • the sheet-like member 2 is formed of felt. However, if the sheet-like member 2 has flexibility, the configuration of the sheet-like member 2 is not limited thereto. Not exclusively.
  • the sheet-like member 2 may be formed of non-felt non-woven fabric or woven fabric, elastomer, or paper such as cardboard or cardboard sheet.
  • the hexagonal sheet-like member 2 has been described as an example of the polygonal sheet-like member 2, but the shape of the sheet-like member 2 is not limited thereto.
  • the sheet-like member 2 may be rectangular or pentagonal.
  • the component pieces 3a to 3g are made of wood, but the configuration of the component pieces 3a to 3g is not limited to this.
  • the component pieces 3a to 3g may be made of a resin harder than the sheet-like member 2, or may be made of metal.
  • the component pieces 3a to 3g are attached to the sheet-like member 2 with an adhesive.
  • the method for attaching the component pieces 3a to 3g to the sheet-like member 2 is not limited thereto. Absent.
  • the component pieces 3a to 3g are seated by a surface fastener member comprising a male surface fastener member in which a plurality of hook engaging elements are implanted and a female surface fastener member in which a plurality of loop engaging elements are implanted. You may attach to the shaped member 2 so that attachment or detachment is possible.
  • the male surface fastener member is provided in a part of the component pieces 3a to 3g that is fixed to the sheet-like member 2, while the female surface fastener member is provided to the component pieces 3a to 3g of the sheet-like member 2. It is provided in the part fixed to 3g.
  • first bent portions 25a to 25f of the first to sixth embodiments described above, the second bent portions 35a to 35f of the second embodiment, and the second bent portions 45a of the third embodiment may be employed.
  • Voronoi division method may be employed for forming .about.45f.
  • each part of the assembly member 1 shown in the first to sixth embodiments is merely examples.
  • the dimensions of each part of the assembly member 1 can be appropriately set in consideration of the function of each part of the assembly member 1 and the overall structure of the assembly member 1.
  • the size of each part of the assembly member 1 is made approximately twice the size of each part of the assembly member 1 shown in the first to sixth embodiments, so that the assembly member 1 is enlarged as a whole. It is possible to make it.

Landscapes

  • Cleaning Implements For Floors, Carpets, Furniture, Walls, And The Like (AREA)

Abstract

L'invention vise à améliorer la capacité de pliage d'une partie de corps d'un élément d'assemblage. Un élément d'assemblage (10) comprend un élément de feuille polygonale flexible (2), une pluralité de pièces de composant dur (3a-3f) fixées à la surface de l'élément de feuille, et une section de connexion (30) qui est prévue sur le bord périphérique (27a-27f) de l'élément de feuille (2) et qui est utilisée pour une connexion à un autre élément d'assemblage (1). Sur l'élément de feuille (2), chacune d'une pluralité de régions de type bandes (24a-24f) qui s'étendent radialement vers chaque angle de polygone (21a-21f) à partir d'une position de référence (Ps) prédéfinie sur l'élément de feuille (2) forme une première section de courbure (25a-25f) à laquelle aucun composant (3a-3f) n'est fixé et capable de se plier. Un composant (3a-3f) est fixé sur la surface de l'élément de feuille (2) au niveau d'une région (26a-26f) entre deux premières sections de pliage mutuellement adjacentes.
PCT/JP2014/059512 2014-03-31 2014-03-31 Élément d'assemblage WO2015151183A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/JP2014/059512 WO2015151183A1 (fr) 2014-03-31 2014-03-31 Élément d'assemblage

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2014/059512 WO2015151183A1 (fr) 2014-03-31 2014-03-31 Élément d'assemblage

Publications (1)

Publication Number Publication Date
WO2015151183A1 true WO2015151183A1 (fr) 2015-10-08

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3689431A4 (fr) * 2017-09-29 2020-11-04 Kabushiki Kaisha Miyake Design Jimusho Corps en forme de feuille et structure le comprenant

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH04103199U (ja) * 1991-01-18 1992-09-04 丸栄株式会社 紙製組立て玩具
JPH08266751A (ja) * 1995-03-30 1996-10-15 Shozo Yoshie 環状造形玩具及び環状造形玩具用ブランク
JP3119330U (ja) * 2005-12-02 2006-02-23 恒男 有井 簡易組み立てハウス
JP2006132762A (ja) * 2004-10-04 2006-05-25 Yoshiritsu Co Ltd 組立てブロック
WO2012026226A1 (fr) * 2010-08-23 2012-03-01 ヨシリツ株式会社 Bloc de construction

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH04103199U (ja) * 1991-01-18 1992-09-04 丸栄株式会社 紙製組立て玩具
JPH08266751A (ja) * 1995-03-30 1996-10-15 Shozo Yoshie 環状造形玩具及び環状造形玩具用ブランク
JP2006132762A (ja) * 2004-10-04 2006-05-25 Yoshiritsu Co Ltd 組立てブロック
JP3119330U (ja) * 2005-12-02 2006-02-23 恒男 有井 簡易組み立てハウス
WO2012026226A1 (fr) * 2010-08-23 2012-03-01 ヨシリツ株式会社 Bloc de construction

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3689431A4 (fr) * 2017-09-29 2020-11-04 Kabushiki Kaisha Miyake Design Jimusho Corps en forme de feuille et structure le comprenant

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