WO2017073707A1 - 腕時計バンドとその製造方法、及び腕時計 - Google Patents
腕時計バンドとその製造方法、及び腕時計 Download PDFInfo
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- WO2017073707A1 WO2017073707A1 PCT/JP2016/081989 JP2016081989W WO2017073707A1 WO 2017073707 A1 WO2017073707 A1 WO 2017073707A1 JP 2016081989 W JP2016081989 W JP 2016081989W WO 2017073707 A1 WO2017073707 A1 WO 2017073707A1
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- Prior art keywords
- piece
- pieces
- wristwatch
- integrally formed
- band
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- A—HUMAN NECESSITIES
- A44—HABERDASHERY; JEWELLERY
- A44C—PERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
- A44C5/00—Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps
- A44C5/02—Link constructions
- A44C5/10—Link constructions not extensible
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- A—HUMAN NECESSITIES
- A44—HABERDASHERY; JEWELLERY
- A44C—PERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
- A44C5/00—Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps
- A44C5/02—Link constructions
- A44C5/10—Link constructions not extensible
- A44C5/107—Link constructions not extensible with links made of more than two elements including connecting elements
Definitions
- the present invention relates to a wristwatch band, a manufacturing method thereof, and a wristwatch.
- FIG. 5 of Patent Document 1 a wristwatch band using a precious stone is cited as an example.
- the structure of the band piece 104 is formed and polished with holes 101 for attaching the attachment portions 100 on both side surfaces in the connecting direction.
- a metal mounting portion 100 is fixed by an adhesive 103.
- the attachment portion 100 is sequentially connected with screws, pins, or the like.
- the fixing portion of the adhesive 103 has deteriorated over time, and there is a problem in reliability of the fixing force. Specifically, since the attachment portion 100 is fixed to the hole 101 by the adhesive 103, the reliability of the fixing force against humidity or the like was lacking with the aging of the fixing portion by the adhesive 103. Therefore, there is a possibility that the attaching portion 100 is detached from the piece 102 and the wristwatch band falls from the arm.
- the present invention has been made in view of the above problems, and by reducing the number of parts and the number of manufacturing steps, it is possible to improve mass productivity, reduce costs, and accompany aging degradation. It is an object of the present invention to provide a wristwatch band, a manufacturing method thereof, and a wristwatch in which a decrease in reliability is prevented.
- the wristwatch band of the present invention is a wristwatch band composed of at least an inner piece and an outer piece, and the integrally formed piece formed by integrally molding the inner piece and the outer piece is at least in a direction perpendicular to the longitudinal direction of the watchband.
- a hole is formed in the outer piece
- a through hole is formed in the inner piece
- a rod is inserted into the stop hole
- the two outer pieces are connected
- the inner pieces are connected to each other.
- the watch band manufacturing method of the present invention is a watch band manufacturing method comprising at least an inner piece and an outer piece, wherein the inner piece and the outer piece are integrally formed, and the inner piece and the outer piece are integrally formed. At least two integrally formed pieces are formed, a stop hole is formed in each of the two outer pieces, a through hole is formed in the inner piece, and a rod is inserted into the stop hole to connect the two outer pieces.
- the two inner pieces are fixed to each other, the rod is inserted into the through hole, the inner piece and the outer piece are assembled to form a single band piece block, and both ends of the rod inserted into the through hole are connected to the other single piece.
- the single band piece block is connected to each other in a direction perpendicular to the longitudinal direction of the rod.
- the wristwatch of the present invention is provided with the above-described wristwatch band.
- the manufacturing method thereof and the wristwatch according to the present invention it is possible to form a single band piece block without using an adhesive, and to bond even when the single band piece blocks are connected to each other. Since no agent is used, it becomes possible to improve the reliability associated with the aging of the wristwatch band and the wristwatch.
- the number of parts of the watch band other than the pieces is limited to only two bars, thereby reducing the number of parts and manufacturing processes, and reducing the cost of the watch band and the watch. I can do it. Further, as the number of parts is reduced, the number of parts to be fixed can be reduced, and the possibility of aging deterioration can be reduced, so that the reliability of the entire wristwatch band can be improved.
- FIG. 2 is an exploded perspective view schematically showing an assembled state of two integrally formed pieces and one rod in a band piece block, which constitutes a wristwatch band of an embodiment according to the present invention, It is a disassembled perspective view which shows the state which inserts the both ends of a stick
- FIG. 2 is an exploded perspective view schematically showing an assembled state of two integrally formed pieces and one rod in a band piece block, which constitutes a wristwatch band of an embodiment according to the present invention, It is a disassembled perspective view which shows the state which rotates the other integral molding piece in the state in which the both ends of the stick
- FIG. 6 is an exploded perspective view schematically showing a state in which another rod is assembled to the components of the wristwatch band assembled according to FIG. 5.
- (a) A schematic view showing a fixed state of locking pieces between inner pieces in two integrally formed pieces constituting the wristwatch band of the embodiment according to the present invention.
- FIG. 8 is a schematic view showing a state in which the locking pieces of FIG.
- the first feature of the present embodiment is that in the wristwatch band composed of at least the inner piece and the outer piece, the integrally formed piece formed by integrally molding the inner piece and the outer piece is orthogonal to the longitudinal direction of the watch band. There are at least two in the direction, a stop hole is formed in the outer piece, a through hole is formed in the inner piece, a rod is inserted into the stop hole, and the two outer pieces are connected, The inner piece is fixed to each other and a rod is inserted into the through hole, so that the wristwatch band is assembled with the inner piece and the outer piece.
- the second feature of the present embodiment is that in the method of manufacturing a wristwatch band including at least an inner piece and an outer piece, the inner piece and the outer piece are integrally formed, and the inner piece and the outer piece are integrally formed.
- the inner piece and the outer piece are assembled to form a single band piece block, and both ends of the rod inserted into the through hole are connected to the other single band.
- This is a method for manufacturing a wristwatch band in which a single band piece block is connected to each other in a direction perpendicular to the longitudinal direction of the rod by being inserted into a stop hole of an outer piece of the piece block.
- the third feature of the present embodiment is that the wristwatch is provided with the wristwatch band.
- the longitudinal direction of the wristwatch band is a direction in which the wristwatch band extends, and a plurality of (two or more) single band piece blocks are also connected to each other.
- a single band piece block can be formed without using an adhesive, and an adhesive is not used when connecting the single band piece blocks. It becomes possible to improve the reliability associated with the aging of the wristwatch.
- the number of parts of the watch band other than the pieces is limited to only two bars, thereby reducing the number of parts and manufacturing processes, and reducing the cost of the watch band and the watch. I can do it.
- the reduction in the number of parts it is possible to reduce the number of fixed parts between parts, which can reduce the possibility of deterioration over time, for example, the possibility of detachment from the wristband of the wristwatch band is reduced, and the reliability of the wristwatch band as a whole is improved. Can be planned.
- the fourth feature of the present embodiment is that the inner piece and / or the outer piece is made of cemented carbide, noble metal, noble metal alloy, copper, copper alloy, stainless steel, aluminum, resin, ceramics, metallic glass. It is to make with either.
- the cemented carbide includes at least tungsten carbide (WC), tantalum carbide (TaC), titanium carbide (TiC), and niobium carbide (NbC).
- ceramics include at least zirconia ceramics, alumina ceramics, and titanium nitride ceramics.
- the noble metal include at least gold, platinum, and silver.
- the noble metal alloy includes at least an alloy containing gold, and the alloy containing gold further includes K18 (18 gold), K22 (22 gold), or K24 (24 gold).
- the aluminum includes those in which an aluminum oxide film is formed by performing an alumite treatment on the surface.
- a wristwatch band that is not easily scratched can be manufactured by manufacturing the integrally formed piece from such various materials.
- it can be easily manufactured by using ceramics, and various colors can be given to the integrally formed piece, which can improve the texture and decorativeness of the wristwatch band. It becomes.
- by producing with metal glass it becomes possible to produce and realize an integrally formed piece with a highly accurate shape.
- the fifth feature of the present embodiment is that the metallic glass contains Au, Pt, Zr, Cu, Pd, or Ti as a main component.
- the sixth feature of the present embodiment is that the colors of at least the surfaces of the two integrally formed pieces are different from each other.
- the seventh feature of the present embodiment is that at least surface treatments of the two integrally formed pieces are made different from each other.
- the eighth feature of the present embodiment is that at least the surface treatment of one inner piece and the other outer piece of the two integrally formed pieces is the same, and at least the surface treatment of the other inner piece and the one outer piece is changed to the inner side of one. It is different from the surface treatment of the piece.
- the single band piece block 2 in the wristwatch band 1 of the present embodiment supports and fixes at least two integral molding pieces 3 and 4 and two integral molding pieces 3 and 4 in the left-right direction. It is composed of two cylindrical rods 5a and 5b.
- the two integrally formed pieces 3 and 4 are formed by integrally forming the inner pieces 3a and 4a and the outer pieces 3b and 4b, respectively, so that the outer shape is substantially elliptical. Further, the two outer pieces 3b and 4b are respectively formed with stop holes 3b1 and 4b1 which are formed so as not to penetrate each one. On the other hand, through holes 3a1 and 4a1 are formed in the two inner pieces 3a and 4a, respectively.
- the inner pieces 3a, 4a and the outer pieces 3b, 4b are integrally molded to form the integrally formed pieces 3, 4, respectively, thereby fixing between the inner pieces 3a, 4a and the outer pieces 3b, 4b.
- No parts or fixing points are required. Therefore, the number of parts and fixing points can be reduced, the possibility of causing deterioration over time can be reduced, and the process of fixing the inner pieces 3a, 4a and the outer pieces 3b, 4b is also reduced, improving the mass productivity of the wristwatch band 1. Cost reduction is possible.
- a concave groove 3a2 and a convex locking piece 3a3 are integrally formed on the inner piece 3a of one integral molding piece 3 on the lower surface on the other side where the outer piece 3b is formed. Yes.
- the inner piece 4a of the other integral molding piece 4 is formed by integral molding with a concave groove 4a2 and a convex locking piece 4a3 so as to extend from the other side surface where the outer piece 4b is formed. ing.
- a part of the through hole 3a1 is formed by integral molding in the locking piece 3a3, and a part of the through hole 3a1 is also formed by integral molding on the side surface of the groove 3a2.
- a part of the through hole 4a1 is integrally formed on the locking piece 4a3, and the through hole 4a1 is also formed on the side surface of the groove 4a2 by integral molding over a part or the entire circumference.
- the inner pieces 3a, 4a and / or the outer pieces 3b, 4b are each made of cemented carbide, precious metal, precious metal alloy, copper, copper alloy, stainless steel, aluminum, resin, ceramics, or metallic glass.
- cemented carbide include at least tungsten carbide (WC), tantalum carbide (TaC), titanium carbide (TiC), and niobium carbide (NbC).
- ceramics include at least zirconia ceramics, alumina ceramics, and titanium nitride ceramics.
- the noble metal include at least gold, platinum, and silver.
- the noble metal alloy includes at least an alloy containing gold, and the alloy containing gold further includes K18 (18 gold), K22 (22 gold), or K24 (24 gold).
- the aluminum includes those in which an aluminum oxide film is formed by performing an alumite treatment on the surface.
- the metallic glass includes metallic glass including a vitreous metallic single phase, metallic glass including a vitreous metallic single phase having a supercooled liquid temperature range of 30 K or more at a heating rate of 0.67 K / s, It is selected from any one of metallic glasses containing crystals having a grain size of 100 nm or less, or metallic glasses containing a glassy metallic structure containing 50% or more by volume.
- a metallic glass including a glassy metal single phase or a crystal having a particle size of 100 nm or less has a texture structure exhibiting surface smoothness. Since there is no particle defect from this, it becomes possible to produce the integrally formed pieces 3 and 4 having a smooth surface. Furthermore, manufacturing variations can be more reliably eliminated. Accordingly, it is possible to realize the integrally formed pieces 3 and 4 having a highly accurate shape.
- the grain size of the crystals mixed in the matrix of the metallic glass structure is 100 nm or less.
- a metal glass including a vitreous metal single phase having a supercooling temperature region of 30 K or more at a heating rate of 0.67 K / s has high stability as a solid glass. Therefore, by using an inexpensive molding process with high shape reproducibility such as injection molding by viscous flow, it becomes possible to manufacture each of the integrally molded pieces 3 and 4 with high accuracy and more reliably in manufacturing variations. Can be resolved.
- the volume fraction of the vitreous metal structure in the metal glass is preferably 50% or more.
- the wristband 1 which is not easily damaged can be produced.
- any one of Au, Pt, Zr, Cu, Pd, and Ti is used from the viewpoint of improving the texture of the wristwatch band 1 by gloss and improving the appearance decoration.
- a metal glass having a main component is more preferable.
- Pt 48.75, Pd 9.75, Cu 19.5, P 22 (Pt 48.75 Pd 9.75 Cu 19.5 P 22 alloy) can be cited as the composition (at%) of Pt-based metallic glass.
- the surfaces of the inner pieces 3a and 4a and the outer pieces 3b and 4b are ground and polished to give a mirror finish.
- the material of the integrally formed pieces 3 and 4 is a super hard material such as cemented carbide or ceramics
- mirror finishing is performed by grinding and polishing with a diamond wheel.
- the optional surface treatment method include mat processing, satin processing, and hairline processing in addition to the mirror surface processing.
- the mat processing may be performed by providing irregularities on the surface of one of the integrally formed pieces by sandblasting.
- Hairline processing applies a continuous line by surface treatment. Satin processing provides discontinuous lines by surface treatment.
- the surface of the integrally formed piece 3 is mirror-finished, and the surface of the other integrally formed piece 4 is subjected to mat processing, satin processing, hairline processing, or the like. A difference in surface finish can be imparted, and a new decorative property can be imparted to the appearance of the wristwatch band 1.
- the processing on at least the surfaces of the inner piece 3a of one integral molding piece 3 and the outer piece 4b of the other integral molding piece 4 of the two integral molding pieces 3 and 4 is the same surface treatment.
- the surface treatment is performed so that the treatment on at least the surface of the inner piece 4a of the other integral molding piece 4 and the outer piece 3b of the one integral molding piece 3 is different from the surface treatment of the one inner piece 3a. May be applied.
- an arbitrary processing method such as the mirror surface processing, mat processing, satin processing, hairline processing, or the like can be selected.
- At least the surface colors of the two integral molding pieces 3 and 4 may be different from each other.
- the integrally formed piece 3 or 4 may be arbitrarily combined in the design of the wristwatch band 1, and the integrally formed pieces 3 or 4 may be made of the same material and unified to the same color. However, different colors may be set with different materials.
- the integrally formed piece 3 or 4 By producing the integrally formed piece 3 or 4 with zirconia ceramics, it becomes possible to impart black, blue and pink colors to the integrally formed piece 3 or 4. Moreover, white can be provided by producing the integrally formed piece 3 or 4 with WC, TiC, NbC, alumina ceramics, zirconia ceramics, or titanium nitride ceramics. In particular, a pearl white color can be imparted by producing the zirconia ceramic. Alternatively, a gold color can be imparted by producing the integrally formed piece 3 or 4 with a titanium nitride ceramic. By selecting the material in this way, it is possible to arbitrarily give various colors to the integrally formed piece 3 or 4 and to further improve the texture and decorativeness of the wristwatch band 1.
- the integrally formed piece 3 or 4 is made of a cemented carbide
- the size of the integrally formed piece 3 or 4 is sintered near the net shape to the finished shape.
- a processed material is obtained. After this processed material is obtained, it is only necessary to provide decorative surface polishing and chamfering parts, etc., and it is easy to apply grinding and polishing with a diamond wheel to each surface without using electric discharge machining at all. Can be shaped and mirrored.
- the integrally formed piece 3 or 4 may be made of a cemented carbide by powder injection molding.
- the integrally formed piece 3 or 4 is manufactured using ceramics, it can be easily manufactured by performing powder injection molding.
- the integrally formed piece 3 or 4 is made of a noble metal, an alloy of noble metal, copper or an alloy of copper, it is produced by cutting or injection molding. Moreover, when producing with stainless steel, the stainless steel material should be cut and the integral molding piece 3 or 4 of a desired shape and a dimension should be produced.
- the integrally formed piece 3 or 4 is made of metal glass, it is made by machining such as die casting, injection molding, or cutting.
- die casting (die ⁇ casting) and injection molding can produce the single-piece molding piece 3 or 4 with low cost and good shape reproducibility, and can be easily produced with high dimensional accuracy. This is more preferable because manufacturing variations can be eliminated more reliably and mass productivity can be improved and costs can be reduced.
- the integral molding piece 3 or 4 When forming the integral molding piece 3 or 4 by die casting or injection molding, firstly prepare a mold in which the external shape of the integral molding piece 3 or 4 and the stop hole and the through hole are formed. Further, any of the metallic glasses is melted, and the molten metallic glass is poured into the mold and cooled. In this way, the integrally formed piece 3 or 4 having a predetermined shape and size is produced by integral molding.
- the injection molding is regarded as a kind of casting, and the injection molding is defined as including a manufacturing method using molten metal glass.
- the temperature of the molten metal glass is set to be equal to or higher than the melting point.
- the melting method of metallic glass is not specifically limited.
- the temperature of the molten metal glass is set to the melting point or higher even in the injection molding.
- the integral molding piece 3 or 4 having a predetermined shape can be produced by a single molding, so that it is a low-cost and excellent in mass productivity.
- the molding piece 3 or 4 can be provided.
- the base member 2a and the intermediate plate 2b can be manufactured with good reproducibility by casting, the base member 2a and the intermediate plate 2b can be manufactured with high quality.
- the stop holes 3b1 and 4b1 and the through holes 3a1 and 4a1 may be formed individually by machining, but may be formed at a time by integral molding, and the integral molding is more accurate and easier to produce. It is more desirable because it can.
- FIGS. 4 to 7 show the assembled state of the integrally formed pieces 3 and 4 manufactured as described above and two rods 5a and 5b separately prepared, respectively.
- the two outer pieces 3b and 4b are connected by the rod 5a by inserting and fitting the end portions of the rod 5a into the retaining holes 3b1 and 4b1 of the integrally formed pieces 3 or 4, respectively. .
- the rod 5a is inserted until each end of the rod 5a comes into contact with the bottom surfaces of the retaining holes 3b1 and 4b1. Since the bar 5a is inserted into the retaining holes 3b1 and 4b1, the end of the bar 5a is not exposed to the appearance of the wristwatch band 1.
- the appearance of the wristwatch band 1 can be improved, and the insertion portion is not exposed to the outside, so that the insertion portion is not exposed to the external wind or water droplets, thereby preventing deterioration of the insertion portion over time. It becomes possible.
- FIG. 5 shows a state in which the other integrally formed piece 4 is rotated by an arrow in the drawing as an example of rotation of the integrally formed piece.
- through holes 3a1 and 4a1 are continuously formed over the entire width of the two inner pieces 3a and 4a at the same time when the locking pieces 3a3 and 4a3 are fitted together.
- the inner piece 3a, 4a and the outer piece 3b, 4b are assembled by inserting the rod 5b into the continuous through holes 3a1 and 4a1 as shown in FIG. A single band piece block 2 as shown is formed.
- the plurality of band piece blocks 2 are arranged in the longitudinal direction of the rod 5a or 5b.
- the wristwatch band 1 as shown in FIG. In FIG. 8, one side of the wristwatch band 1 is connected to a wristwatch case 6 such as a movement and a dial, and the other side of the wristwatch band 1 is connected to a stopper (buckle) (not shown).
- the longitudinal direction of the wristwatch band is a direction in which the wristwatch band 1 extends, and a plurality of (two or more) single band piece blocks 2 are also connected to each other.
- the fixing structure between the inner pieces 3a, 4a may be other than the fitting of the grooves 3a2, 4a2 and the locking pieces 3a3, 4a3, for example, a combination of a projection and a hole for fitting the projection. Functionally, when the inner pieces 3a and 4a are fixed and a tensile load is applied in the longitudinal direction of the rod 5a or 5b, it is possible to prevent the inner pieces 3a and 4a from separating in the longitudinal direction of the rod 5a. If it is a structure, it will not specifically limit.
- the entire wristwatch is formed by providing the wristwatch band 1.
- the fitting of the bar 5a or 5b and the retaining holes 3b1, 4b1 or the through holes 3a1, 4a1 without using an adhesive is possible.
- a single band piece block 2 can be assembled and formed.
- no adhesive is used when the single band piece blocks 2 are connected to each other, it is possible to improve the reliability associated with the aging of the wristband 1 and the wristwatch.
- the components of the watch band 1 other than the pieces are limited to only two bars 5a, 5b, the number of parts and the manufacturing process can be reduced.
- the cost of the wristwatch band 1 and the wristwatch can be reduced.
- the reduction in the number of parts it is possible to reduce the number of fixed parts between parts, and the possibility of causing deterioration over time can be reduced. For example, the possibility of the wristband 1 being detached from the arm is reduced. Reliability can be improved.
- the present invention is not limited to the above-described embodiment, and can be implemented with configurations within a range that does not deviate from the contents described in the respective claims. That is, the invention has been illustrated and described with particular reference to particular embodiments, but with respect to the embodiments described above without departing from the spirit and scope of the invention, Those skilled in the art can add various modifications to the detailed configuration. As an example, as shown in FIG. 10, the integrally formed pieces 3 and 4 having a shape in which the ridge lines of the integrally formed portions of the inner piece 3 a and the outer piece 3 b and the inner piece 4 a and the outer piece 4 b are eliminated may be formed. .
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Abstract
Description
2 バンド駒ブロック
3、4 一体成形駒
3a、4a 内側駒
3b、4b 外側駒
3a1、4a1 貫通穴
3a2、4a2 溝
3a3、4a3 係止片
3b1、4b1 止め穴
5a、5b 棒
6 腕時計ケース
Claims (13)
- 内側駒と外側駒とから少なくとも構成される腕時計バンドにおいて、
内側駒と外側駒が一体成形されて成る一体成形駒が、腕時計バンドの長手方向と直交する方向に少なくとも二つ備えられており、
外側駒に止め穴が形成されていると共に、内側駒に貫通穴が形成され、
止め穴に棒が挿入されて二つの外側駒が連結されていると共に、内側駒どうしが互いに固定され更に貫通穴に棒が挿入されていることで、内側駒と外側駒が組み立てられていることを特徴とする腕時計バンド。 - 前記内側駒、及び/又は、前記外側駒が、超硬合金、貴金属、貴金属の合金、銅、銅の合金、ステンレス鋼、アルミニウム、樹脂、セラミックス、金属ガラスの何れかで作製されていることを特徴とする請求項1記載の腕時計バンド。
- 前記金属ガラスが、Au、Pt、Zr、Cu、Pd、Tiの何れかを主成分とすることを特徴とする請求項2に記載の腕時計バンド。
- 二つの前記一体成形駒の少なくとも表面の色が、互いに異なることを特徴とする請求項1~3の何れかに記載の腕時計バンド。
- 二つの前記一体成形駒の少なくとも表面処理が、互いに異なることを特徴とする請求項1~4の何れかに記載の腕時計バンド。
- 二つの前記一体成形駒の、一方の前記内側駒と他方の前記外側駒の少なくとも表面処理が同一であり、他方の前記内側駒と一方の前記外側駒の少なくとも表面処理が、一方の前記内側駒の表面処理と異なることを特徴とする請求項1~4の何れかに記載の腕時計バンド。
- 内側駒と外側駒とから少なくとも構成される腕時計バンドの製造方法において、
内側駒と外側駒を一体成形して、内側駒と外側駒が一体成形されて成る一体成形駒を少なくとも二つ形成し、
二つの外側駒にそれぞれ止め穴を形成すると共に、内側駒に貫通穴を形成し、
止め穴に棒を挿入して二つの外側駒を連結すると共に、二つの内側駒を互いに固定し、更に貫通穴に棒を挿入して、内側駒と外側駒を組み立てて単体のバンド駒ブロックを形成し、
貫通穴に挿入した棒の両端を、他の単体のバンド駒ブロックの外側駒の止め穴に挿入して、単体のバンド駒ブロックを棒の長手方向と直交する方向で互いに連結することを特徴とする腕時計バンドの製造方法。 - 前記内側駒、及び/又は、前記外側駒を、超硬合金、貴金属、貴金属の合金、銅、銅の合金、ステンレス鋼、アルミニウム、樹脂、セラミックス、金属ガラスの何れかで作製することを特徴とする請求項7記載の腕時計バンドの製造方法。
- 前記金属ガラスが、Au、Pt、Zr、Cu、Pd、Tiの何れかを主成分とすることを特徴とする請求項8に記載の腕時計バンドの製造方法。
- 二つの前記一体成形駒の少なくとも表面の色を、互いに異ならせることを特徴とする請求項7~9の何れかに記載の腕時計バンドの製造方法。
- 二つの前記一体成形駒の少なくとも表面処理を、互いに異ならせることを特徴とする請求項7~10の何れかに記載の腕時計バンドの製造方法。
- 二つの前記一体成形駒の、一方の前記内側駒と他方の前記外側駒の少なくとも表面処理を同一とし、他方の前記内側駒と一方の前記外側駒の少なくとも表面処理を、一方の前記内側駒の表面処理と異ならせることを特徴とする請求項7~10の何れかに記載の腕時計バンドの製造方法。
- 請求項1~6の何れかに記載の腕時計バンドを備えたことを特徴とする腕時計。
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CH00546/18A CH713314B1 (de) | 2015-10-29 | 2016-10-28 | Armbanduhrband, dessen Herstellungsverfahren und Armbanduhr mit einem solchen Armbanduhrband. |
JP2017547874A JPWO2017073707A1 (ja) | 2015-10-29 | 2016-10-28 | 腕時計バンドとその製造方法、及び腕時計 |
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PCT/JP2016/081989 WO2017073707A1 (ja) | 2015-10-29 | 2016-10-28 | 腕時計バンドとその製造方法、及び腕時計 |
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JP (1) | JPWO2017073707A1 (ja) |
CH (1) | CH713314B1 (ja) |
WO (1) | WO2017073707A1 (ja) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2019076431A (ja) * | 2017-10-25 | 2019-05-23 | アダマンド並木精密宝石株式会社 | 腕時計バンド、腕時計及び腕時計バンドの製造方法 |
EP3639691A1 (en) * | 2018-10-17 | 2020-04-22 | Seiko Epson Corporation | Timepiece band, external part for a timepiece, and timepiece |
IT202000017176A1 (it) * | 2020-07-15 | 2022-01-15 | Colpo & Zilio S P A | Componente per articoli di gioielleria e/o bigiotteria |
Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS63311905A (ja) * | 1987-06-15 | 1988-12-20 | セイコーエプソン株式会社 | バンド結合装置 |
JPH0268004A (ja) * | 1988-09-05 | 1990-03-07 | Citizen Watch Co Ltd | バンド |
JPH0292711U (ja) * | 1989-01-06 | 1990-07-24 | ||
FR2693355A1 (fr) * | 1992-07-09 | 1994-01-14 | Stylor France Sa | Dispositif d'assemblage de maillons pour la réalisation de bracelets. |
WO2015079859A1 (ja) * | 2013-11-28 | 2015-06-04 | 並木精密宝石株式会社 | 腕時計バンド及びその製造方法 |
Family Cites Families (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS4612378Y1 (ja) * | 1968-08-05 | 1971-04-28 |
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2016
- 2016-10-28 WO PCT/JP2016/081989 patent/WO2017073707A1/ja active Application Filing
- 2016-10-28 JP JP2017547874A patent/JPWO2017073707A1/ja active Pending
- 2016-10-28 CH CH00546/18A patent/CH713314B1/de unknown
Patent Citations (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS63311905A (ja) * | 1987-06-15 | 1988-12-20 | セイコーエプソン株式会社 | バンド結合装置 |
JPH0268004A (ja) * | 1988-09-05 | 1990-03-07 | Citizen Watch Co Ltd | バンド |
JPH0292711U (ja) * | 1989-01-06 | 1990-07-24 | ||
FR2693355A1 (fr) * | 1992-07-09 | 1994-01-14 | Stylor France Sa | Dispositif d'assemblage de maillons pour la réalisation de bracelets. |
WO2015079859A1 (ja) * | 2013-11-28 | 2015-06-04 | 並木精密宝石株式会社 | 腕時計バンド及びその製造方法 |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP2019076431A (ja) * | 2017-10-25 | 2019-05-23 | アダマンド並木精密宝石株式会社 | 腕時計バンド、腕時計及び腕時計バンドの製造方法 |
EP3639691A1 (en) * | 2018-10-17 | 2020-04-22 | Seiko Epson Corporation | Timepiece band, external part for a timepiece, and timepiece |
IT202000017176A1 (it) * | 2020-07-15 | 2022-01-15 | Colpo & Zilio S P A | Componente per articoli di gioielleria e/o bigiotteria |
WO2022013669A1 (en) * | 2020-07-15 | 2022-01-20 | Colpo & Zilio S.P.A. | Component for jewellery and/or costume jewellery items |
Also Published As
Publication number | Publication date |
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JPWO2017073707A1 (ja) | 2018-10-04 |
CH713314B1 (de) | 2021-01-29 |
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