Feather planting frame, feather piece and shuttlecock
By using a fusion bonding method between the feather frame and the feather pieces, the problem of weak glue adhesion was solved, resulting in a tighter connection and a lighter shuttlecock. At the same time, the use of guide holes improved the flight stability of the shuttlecock.
Patent Information
- Application Number
- CN202422785791.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-11-15
AI Technical Summary
In the existing technology, when artificial feathers are glued to the feathering frame, there is a problem of instability. At the same time, the glue increases the weight of the shuttlecock, affecting the hitting effect.
The feathering frame and feather pieces are connected by melting each other. The feather pieces are tightly connected to the feathering rod through the first connector of the feathering frame and the opening on the feathering rod, avoiding the use of glue.
It improves the connection strength between the feathers and the feather frame, reduces the weight of the shuttlecock, and creates a stable disturbance during hitting through the guide hole, promoting the spin and stable flight of the shuttlecock.
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Figure CN223682998U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of sports goods, in particular to a feather mounting frame, a feather sheet and a shuttlecock. BACKGROUND
[0002] Shuttlecock is an indoor sports project that uses a long handle net racket to hit a small ball made of feathers and cork across the net. The existing shuttlecock is generally composed of a frame body, a feather sheet and a ball head. The feather sheet is generally made of natural goose or duck feathers, but natural feathers have biological specificity, and their specifications and sizes are difficult to unify. Even if the selection is made before manufacturing the shuttlecock, there will still be specification deviations. Therefore, artificial feather sheets that can be mass-produced are born. However, the artificial feather sheets are generally directly bonded to the feather mounting frame by glue, but the dosage of the glue used during the bonding is usually not constant, so the artificial feather sheets may not be firmly bonded, and the use of the glue will also increase the weight of the shuttlecock and affect the hitting effect of the shuttlecock. CONTENT OF THE UTILITY MODEL
[0003] The present application mainly solves the technical problem that the artificial feather sheet bonded to the feather mounting frame by glue in the prior art is not firm and the glue increases the weight of the shuttlecock. A feather mounting frame, a feather sheet and a shuttlecock connected by mutual melting are provided.
[0004] In order to solve the above technical problem, the present application provides a feather mounting frame for inserting a feather sheet, wherein the feather mounting frame comprises
[0005] a first connecting piece arranged along a first direction, a center line arranged in the first connecting piece along the first direction;
[0006] a feather mounting rod and a second connecting piece, the feather mounting rod is circumferentially spaced around the center line, and the feather mounting rod is connected to the first connecting piece through the second connecting piece; wherein the feather mounting rod is provided with a feather mounting hole, the feather mounting rod is provided with an opening, the opening is in communication with the feather mounting hole, and the feather mounting rod is connected to the feather sheet in a mutual melting manner through the feather mounting hole.
[0007] In an implementable manner, the opening comprises
[0008] a first opening located on the upper surface of the feather mounting rod along the first direction;
[0009] a second opening located on the side surface of the feather mounting rod along the second direction, and the first opening intersects with the second opening.
[0010] In an implementable manner, the feather mounting frame further comprises
[0011] a mechanical connecting part, which is arranged on the first connecting piece;
[0012] The first connecting piece is arranged with a reference surface near the side of the feathering rod, and a first included angle is formed between the feathering rod and the reference surface.
[0013] The first connecting piece is arranged with a first connecting hole in the first direction, and the first connecting piece is arranged with the mechanical connecting part and the reference surface at the two ends in the first direction.
[0014] In an embodiment, the feathering frame comprises a first limiting piece, which is arranged in the first direction in the feathering hole, and the first limiting piece is connected to the feathering rod.
[0015] Another aspect of the present application provides a feather piece, which is applied to the feathering frame of embodiment 1, and the feather piece is inserted into the feathering frame, and the feather piece comprises,
[0016] a feather piece;
[0017] a feather rod, the feather piece is arranged at the first end of the feather rod, the feather piece is connected to the feather rod, and the second end of the feather rod is arranged with a fitting section which is matched with the feather hole in the feathering frame.
[0018] In an embodiment, the feather piece further comprises,
[0019] a second limiting piece, which is arranged on the fitting section in the second direction, and the second limiting piece forms a limiting in the first direction after acting with the first limiting piece in the feathering rod.
[0020] In an embodiment, the feather piece further comprises,
[0021] a flow guide hole, which is arranged on the feather piece of at least one side of the feather rod in the first direction; wherein,
[0022] The flow guide hole is a dot structure or a long strip structure arranged on the feather piece.
[0023] Another aspect of the present application provides a shuttlecock, which comprises,
[0024] the feathering frame of embodiment 1;
[0025] the feather piece of embodiment 2;
[0026] The ball head is connected to the feathering frame along the first direction and away from the feather piece; wherein, the ball head is provided with a connecting surface on one side along the first direction, and a second connecting hole is formed inside the ball head, the second connecting hole being formed by extending downward from the connecting surface into the interior of the ball head, and a mechanical mating part is formed inside the second connecting hole, the mechanical mating part being connected to the mechanical connecting part.
[0027] In one embodiment, a blocking plate is provided on the side of the first connector near the reference surface, and when the ball head is installed on the flocking frame, the blocking plate and the ball head together form a blockage of the first connecting hole.
[0028] In one embodiment, the first connecting hole has an opening on the side near the reference surface, the opening communicating with the first connecting hole, a light-emitting component is disposed in the first connecting hole, the light-emitting component is connected to the first connector and / or the ball head, and the ball head and the first connector are formed of a light-transmitting material.
[0029] Compared to existing technologies, the feather blades in this application are provided with airflow guide holes. When hitting the shuttlecock, the airflow passes through the airflow guide holes on the feather blades and forms a stable disturbance on the shuttlecock, thereby driving the shuttlecock to rotate, so as to avoid the shuttlecock falling to the ground quickly and to form a stable flight of the shuttlecock in the air.
[0030] Therefore, this application has the characteristics of reasonable structure and convenient use. Attached Figure Description
[0031] Appendix Figure 1 This is a schematic diagram of one type of flocking frame used in this application;
[0032] Appendix Figure 2 This is another structural schematic diagram of the flocking frame in this application;
[0033] Appendix Figure 3 This is a schematic diagram of the structure of a feather piece in this application;
[0034] Appendix Figure 4 This is a schematic diagram of the structure of a badminton shuttlecock according to this application;
[0035] Appendix Figure 5 This is a schematic diagram of one possible structure of the ball head in this application;
[0036] Appendix Figure 6 This is a cross-sectional view of a badminton shuttlecock according to this application;
[0037] Appendix Figure 7 This is another cross-sectional view of the badminton shuttlecock in this application.
[0038] Explanation of the labels in the diagram:
[0039] X, first direction; Y, second direction;
[0040] 10, hair frame;
[0041] 100, first connecting piece; 110, center line; 120, reference surface; 130, first connecting hole; 140, first limiting piece; 150, blocking plate; a, first included angle;
[0042] 200, hair rod; 210, hair hole; 220, opening; 221, first opening; 222, second opening; 230, first connecting ring; 240, second connecting ring;
[0043] 300, second connecting piece;
[0044] 400, mechanical connection part;
[0045] 20, feather piece;
[0046] 500, feather piece; 510, left feather piece; 520, right feather piece;
[0047] 600, feather rod; 610, first end; 620, second end; 630, first connecting section; 640, second connecting section; 650, assembly section; 651, second limiting piece;
[0048] 700, flow guide hole;
[0049] 30, shuttlecock;
[0050] 800, ball head; 810, connecting surface; 820, second connecting hole; 830, mechanical cooperation part; 900, light emitting assembly. DETAILED DESCRIPTION
[0051] In order to make the purpose, features and advantages of the present application more obvious and easy to understand, the technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0052] The prior art has the technical problem that the existing artificial feather piece is not firm when being bonded on the hair frame by glue, and the glue increases the weight of the shuttlecock.
[0053] Therefore, the present application provides a hair frame for inserting a feather piece, wherein the hair frame comprises
[0054] The first connecting piece is arranged along the first direction, and a center line is arranged in the first connecting piece along the first direction.
[0055] The bristle rods are arranged circumferentially along the center line, and the bristle rods are connected to the first connecting member by the second connecting member; wherein the bristle rods are provided with bristle holes, and the bristle rods are provided with openings, the openings are communicated with the bristle holes, and the bristle rods are connected to the feather pieces by the bristle holes in a manner of mutual melting.
[0056] Another aspect of the present application provides a feather piece, wherein the feather piece is applied to the bristle holder described in Embodiment 1, the feather piece is inserted into the bristle holder, and the feather piece comprises,
[0057] The feather piece;
[0058] The feather rod, the feather piece is arranged at the first end of the feather rod, the feather piece is connected to the feather rod, and the second end of the feather rod is provided with a fitting section matched with the bristle hole in the bristle holder.
[0059] Another aspect of the present application provides a shuttlecock, wherein the shuttlecock comprises,
[0060] The bristle holder described in Embodiment 1;
[0061] The feather piece described in Embodiment 2;
[0062] The ball head, the bristle holder is connected to the ball head along the first direction and away from the side of the feather piece; wherein the ball head is provided with the connecting surface on one side along the first direction, the ball head is formed with a second connecting hole, the second connecting hole is formed by extending downward from the connecting surface to the inside of the ball head, the second connecting hole is formed with a mechanical cooperation part, and the mechanical cooperation part is connected to the mechanical connecting part
[0063] Embodiment 1:
[0064] Please refer to the attached Figure 1 and the attached Figure 2 , a specific embodiment of the bristle holder 10 of the present application is shown. The bristle holder 10 of the present application is specifically used on a shuttlecock 30, and in specific use, the feather piece 20 is inserted into the bristle holder 10, and the ball head 800 is fixed at the bottom of the bristle holder 10 for use. Further, the feather piece 20 is connected to the bristle holder 10 in a melting manner, the melting manner refers to melting the connecting parts of the feather piece 20 and the bristle holder 10 and then adhering them together to form a connection, and this kind of connection does not use glue, which reduces the weight of the shuttlecock 30 and makes the connection between the feather piece 20 and the bristle holder 10 more compact.
[0065] Please refer to the attached Figure 1 and the attached Figure 2As shown in FIG. 1 and FIG. 2, the first direction X of the present application refers to the height direction of the feathering frame 10, i.e. the direction from top to bottom of the feathering frame 10 or the direction from bottom to top of the feathering frame 10. In the present application, the feathering rod 200 is arranged on the upper side relative to the first connecting member 100, and the first connecting member 100 is arranged on the lower side relative to the feathering rod 200. The first direction X of the present application refers to the width direction of the feathering frame 10, i.e. the direction from left to right of the feathering frame 10 or the direction from right to left of the feathering frame 10. In the present application, the feathering rod 200 is arranged on both the left side and the right side of the feathering frame 10.
[0066] FIG. 1 is a structural schematic diagram of the feathering frame 10 of the present application. Figure 1 FIG. 2 is another structural schematic diagram of the feathering frame 10 of the present application. Figure 2 FIG. 3 is a structural schematic diagram of the feathering frame 10 of the present application. Figure 1 FIG. 4 is a structural schematic diagram of the feathering frame 10 of the present application. Figure 2 As shown in FIG. 3 and FIG. 4, the feathering frame 10 of the present application comprises a first connecting member 100 arranged on one side of the feathering frame 10 along the first direction X, and the feathering frame 10 of the present application is connected with the ball head 800 through the first connecting member 100. The first connecting member 100 of the present application is arranged with a reference surface 120 on the side close to the feather piece 20, and the feathering frame 10 of the present application is arranged with a center line 110. The reference surface 120 and the center line 110 are introduced to further describe other components.
[0067] In an embodiment, the reference surface 120 is a plane, and the center line 110 of the feathering frame 10 is located at the middle position of the feathering frame 10. The feathering frame 10 is a symmetric figure along the center line 110.
[0068] Further, the first connecting member 100 is arranged with a first connecting hole 130 along the first direction X, and the first connecting hole 130 penetrates through the first connecting member 100.
[0069] FIG. 3 is a structural schematic diagram of the feathering frame 10 of the present application. Figure 1 FIG. 4 is a structural schematic diagram of the feathering frame 10 of the present application. Figure 2 As shown in FIG. 3 and FIG. 4, the feathering frame 10 of the present application comprises a mechanical connecting part 400 arranged on the first connecting member 100. Further, the first connecting member 100 is arranged with the reference surface 120 and the mechanical connecting part 400 on the two ends along the first direction X. The first connecting member 100 of the present application is used for supporting the mechanical connecting part 400 while being used for connecting with the ball head 800.
[0070] In an embodiment, the cross section of the first connecting hole 130 along the second direction Y is a circular structure.
[0071] In an embodiment, the mechanical connection portion 400 is a clamping protrusion, and the mechanical connection portion 400 is arranged on the outer surface of the first connecting piece 100 in the second direction Y. Further, the mechanical connection portion 400 is in a ring structure. Further, the mechanical connection portion 400 is arranged with a chamfer on the side away from the reference surface 120.
[0072] Please refer to the accompanying drawings Figure 1 and the accompanying drawings Figure 2 As shown in the accompanying drawings, the feathering frame 10 of the present application comprises a feathering rod 200 and a second connecting piece, and the feathering rod 200 of the present application is connected to the first connecting piece 100 through the second connecting piece 300. The feathering rod 200 is arranged circumferentially at intervals around the center line 110, and a first included angle a is formed between the feathering rod 200 and the reference surface 120 to form a scattering shape of the feathering rod 200, which means that the feathering rod 200 is arranged obliquely from inside to outside. Further, the connecting point of the second connecting piece 300 and the first connecting piece 100 is located on the reference surface 120. The plurality of feathering rods 200 and the first connecting piece 100 form a cavity inside, and the cross-sectional area of the cavity in the second direction Y is arranged gradually smaller from top to bottom, and the smaller the cross-sectional area is, the closer the cavity is to the first connecting piece 100.
[0073] In an embodiment, the second connecting piece 300 comprises a connecting portion and a reinforcing rib, and the reinforcing rib extends inward to increase the contact area between the second connecting piece 300 and the reference surface 120 and to increase the connection strength of the feathering rod 200.
[0074] In an embodiment, the first included angle a is in the range of 100° to 120°.
[0075] Please refer to the accompanying drawings Figure 1 and the accompanying drawings Figure 2 As shown in the accompanying drawings, the feathering frame 10 of the present application further comprises a feathering hole 210, which is arranged in the feathering rod 200 and formed by extending downward from the surface of the feathering rod 200 away from the first connecting piece 100 to the inside of the feathering rod 200. The feathering rod 200 is provided with an opening 220, which is arranged to facilitate the entry and exit of the feather piece 20 and to expose the contact surface between the feather piece 20 and the feathering rod 200, thereby facilitating the fusion connection. In the prior art, the feathering hole 210 is only provided with an opening 220 at the top of the feathering rod 200, and when the connection part of the feather piece 20 and the feathering rod 200 is completely in the feathering hole 210, the opening 220 is only for the convenience of the feather piece 20 to enter, but the opening 220 is too small, and if the fusion connection of the feather piece 20 and the feathering rod 200 is only realized through the opening 220, the connection strength is too low.
[0076] Furthermore, to increase the fusion bonding strength between the feathering rod 200 and the feather piece 20, the opening 220 is configured as a first opening 221 and a second opening 222. The first opening 221 is located on the upper surface of the feathering rod 200 along the first direction X, and the first opening 221 allows the feather piece 20 to extend from the feathering hole 210, thereby forming a radiating shape of the feather piece 20. The second opening 222 is located on the side of the feathering rod 200 along the second direction Y, and the second opening 222 is to expose the part where the feather piece 20 is connected to the feathering rod 200, so as to facilitate subsequent fusion bonding.
[0077] In one embodiment, the cross-section of the hair-planting hole 210 in the first direction X is a triangular structure, and the cross-section of the hair-planting hole 210 in the second direction Y gradually decreases from top to bottom. The triangular structure of the hair-planting hole 210 is designed to further increase the contact area with the feather piece 20, and the depth of the feather piece 20 within the hair-planting rod 200 is not too deep, so that the feather piece 20 and the hair-planting rod 200 can be fully bonded during melting.
[0078] In one embodiment, the feather rod 200 and the feather piece 20 are fused together using an ultrasonic device.
[0079] Please refer to the attached document. Figure 1 and appendix Figure 2 As shown, the feather implantation frame 10 of this application also includes a first limiting member 140. The first limiting member 140 is disposed inside the feather implantation hole 210 along the first direction X, and the first limiting member 140 is completely located inside the feather implantation hole 210. Furthermore, the first limiting member 140 is flush with the first opening 221 and has a gap with the second opening 222. When the feather 20 enters the feather implantation hole 210, it will abut against the first limiting member 140 to limit the feather 20 in the first direction X.
[0080] In one embodiment, the first limiting member 140 is either a limiting protrusion or a limiting groove. Further, the first limiting member 140 is a limiting protrusion.
[0081] Example 2
[0082] Please refer to the attached document. Figure 3 The diagram illustrates a specific embodiment of the feather piece 20 of this application. The feather piece 20 is specifically used on the feather-planting frame 10. In practical use, the feather piece 20 is inserted into the feather-planting frame 10, and the shuttlecock head 800 is fixed to the bottom of the feather-planting frame 10. Furthermore, the feather piece 20 is connected to the feather-planting frame 10 by melting. Melting refers to melting the connecting parts of the feather piece 20 and the feather-planting frame 10 and then bonding them together to form a connection. This connection method does not use glue, reducing the weight of the shuttlecock 30 while making the connection between the feather piece 20 and the feather-planting frame 10 more secure.
[0083] Please refer to the attached drawings Figure 3 As shown in the drawings, the first direction X of the present application refers to the height direction of the feather piece 20, i.e. the direction from top to bottom of the feather piece 20 or the direction from bottom to top of the feather piece 20, in the present application, the first connecting section 630 is arranged upper relative to the second connecting section 640, and the second connecting section 640 is arranged lower relative to the first connecting section 630. The second direction Y of the present application refers to the width direction of the feather piece 20, i.e. the direction from left to right of the feather piece 20 or the direction from right to left of the feather piece 20, in the present application, the left feather piece 510 is arranged left relative to the right feather piece 520, and the right feather piece 520 is arranged right relative to the left feather piece 510.
[0084] The drawings Figure 3 is a structural schematic view of the feather piece 20 of the present application. Please refer to the drawings Figure 3 As shown in the drawings, the feather piece 20 of the present application comprises a feather rod 600, the feather rod 600 is arranged along the first direction X, and the feather rod 600 has a strip-shaped structure. In the present application, the two ends of the feather rod 600 along the first direction X are respectively a first end 610 and a second end 620, in the present application, the first direction X is from the first end 610 to the second end 620 of the feather rod 600 or from the second end 620 to the first end 610 of the feather rod 600. In the present application, the feather rod 600 comprises a first connecting section 630 and a second connecting section 640, and the first connecting section 630 is fixedly connected with the second connecting section 640. In the present application, the first connecting section 630 refers to the part of the feather rod 600 connected with the feather piece 500, and the second connecting section 640 refers to the part of the feather rod 600 protruding out of the feather piece 500 after being connected with the feather piece 500.
[0085] In an embodiment, the length of the first connecting section 630 along the first direction X is longer than the length of the second connecting section 640 along the first direction X, so as to ensure that the feather piece 20 is arranged close to the feather mounting frame 10 after being inserted into the feather mounting frame 10.
[0086] In an embodiment, the first connecting section 630 and the second connecting section 640 are integrally arranged.
[0087] In an embodiment, the cross section of the feather rod 600 is circular or polygonal.
[0088] In an embodiment, the feather rod 600 is made of plastic material. Further, the feather rod 600 is made of plastic.
[0089] Please refer to the drawings Figure 3 As shown in the drawings, the feather rod 600 of the present application further comprises an assembling section 650, the assembling section 650 is arranged on the second connecting section 640, and further the assembling section 650 is arranged at the second end 620 of the second connecting section 640 close to the feather rod 600. During installation of the feather piece 20, the assembling section 650 is arranged in the feather mounting hole 210, and the shape of the assembling section 650 is adapted to the feather mounting hole 210.
[0090] In an embodiment, the assembly section 650 has a triangular cross-section in the first direction X, and the inclined surface of the assembly section 650 is located in the feather hole 210 during installation. The triangular cross-section of the assembly section 650 is to further increase the contact area with the feather hole 210, and the depth of the assembly section 650 in the feather rod 200 is not too deep, so that the feather piece 20 can be fully combined with the feather rod 200 during melting.
[0091] Please refer to the accompanying drawings Figure 3 The feather rod of the present application further comprises a second limiting member 651, and the assembly section 650 is provided with a third limiting member along the second direction Y. The second limiting member 651 and the first limiting member 140 in the feather rod 200 form a limit in the first direction X after acting.
[0092] In an embodiment, the third limiting member is the other of the limiting protrusion or the limiting groove. Further, the third limiting member is the limiting groove.
[0093] Please refer to the accompanying drawings Figure 3 The feather piece 20 of the present application comprises a feather piece 500, which is provided along the first direction XX. The length of the feather piece 500 in the first direction X is greater than the length of the feather piece 500 in the second direction Y. The length of the feather piece 500 in the second direction Y is gradually changed to form a feather-like shape of the feather piece 500. The feather piece 500 is provided at the first end 610 of the first connecting rod, and the feather piece 500 is connected to the feather rod 600.
[0094] In an embodiment, the first end 610 of the feather rod 600 is flush with one end of the feather piece 500 in the first direction X, and the second end 620 of the feather rod 600 extends along the first direction X and passes through the feather piece 500 to form a second connecting section 640.
[0095] In an embodiment, the feather piece 500 comprises an upper feather piece 500 and a lower feather piece 500 arranged in an up-down manner. The first connecting section 630 is located between the upper feather piece 500 and the lower feather piece 500. The upper feather piece 500 and the lower feather piece 500 are connected by adhesion or fusion, and the first connecting section 630 is clamped inside.
[0096] In an embodiment, the feather piece 500 comprises a left feather piece 510 and a right feather piece 520 arranged along the second direction Y. The left feather piece 510 is arranged on the left side of the feather rod 600, and the right feather piece 520 is arranged on the right side of the feather rod 600.
[0097] In an embodiment, the feather piece 500 is made of pearl wool or non-woven fabric.
[0098] Please refer to the accompanying drawings Figure 3As shown, the feather piece 20 of the present application also comprises a flow guide hole 700, the flow guide hole 700 is arranged on at least one side of the feather piece 500 along the first direction X, and the flow guide hole 700 penetrates the feather piece 500. When the shuttlecock 30 is hit, the airflow passes through the flow guide hole 700 on the feather piece 500 and forms a stable disturbance to the shuttlecock 30, thereby further driving the shuttlecock 30 to rotate, so as to avoid the rapid landing of the shuttlecock 30, and form the stable flight of the shuttlecock 30 in the air. Further, the sports personnel can more accurately control the landing of the shuttlecock 30, so as to minimize the influence of the flowing wind on the flight of the shuttlecock 30.
[0099] In an embodiment, the flow guide hole 700 of the present application is arranged on the left feather piece 510 and the right feather piece 520, and the flow guide hole 700 of the present application is a long strip structure. Further, the flow guide hole 700 of the present application is vertically arranged along the first direction X, and the length of the flow guide hole 700 along the first direction X accounts for 20% to 40% of the length of the feather piece 500 along the first direction X, so as to realize the flow guide while avoiding the phenomenon that the feather piece 500 is separated along the flow guide hole 700 during the hitting process of the shuttlecock 30.
[0100] In an embodiment, the flow guide hole 700 of the present application is arranged on the left feather piece 510 or the right feather piece 520, and the flow guide hole 700 of the present application is a long strip structure. Further, the flow guide hole 700 of the present application is vertically arranged along the first direction X, and the length of the flow guide hole 700 along the first direction X accounts for 20% to 40% of the length of the feather piece 500 along the first direction X, so as to realize the flow guide while avoiding the phenomenon that the feather piece 500 is separated along the flow guide hole 700 during the hitting process of the shuttlecock 30.
[0101] In an embodiment, the flow guide hole 700 of the present application is arranged on the left feather piece 510 and the right feather piece 520, and the flow guide hole 700 of the present application is a point structure, and the flow guide hole 700 is densely arranged on the feather piece 500. Further, the diameter of the flow guide hole 700 is 1.5mm to 3mm, and the edge of the feather piece 500 is not arranged with the flow guide hole 700, so as to realize the flow guide while avoiding the phenomenon that the feather piece 500 is separated along the flow guide hole 700 during the hitting process of the shuttlecock 30.
[0102] In an embodiment, the flow guide hole 700 of the present application is arranged on the left feather piece 510 and the right feather piece 520, and the flow guide hole 700 of the present application is a long strip structure. Further, the flow guide hole 700 of the present application is arranged obliquely relative to the feather shaft 600, and the length of the flow guide hole 700 along the two directions accounts for 60% to 80% of the length of the feather piece 500 along the second direction Y, so as to realize the flow guide while avoiding the phenomenon that the feather piece 500 is separated along the flow guide hole 700 during the hitting process of the shuttlecock 30.
[0103] In an embodiment, the included angle between the flow guide hole 700 and the feather shaft 600 is 30° to 60°.
[0104] Embodiment 3:
[0105] Please refer to the attached Figure 4 to the attached Figure 7 The embodiment of the present application is shown in the attached The feather frame 10 in embodiment 1 and the feather sheet 20 in embodiment 2 are used in the shuttlecock 30. When used, the feather sheet 20 is inserted into the feather frame 10, and the head 800 is fixed at the bottom of the feather frame 10 for use. Further, the feather sheet 20 is connected to the feather frame 10 by melting, which means that the connecting part of the feather sheet 20 and the feather frame 10 is melted and then adhered together to form a connection. This connection does not use glue, which reduces the weight of the shuttlecock 30 and makes the connection between the feather sheet 20 and the feather frame 10 more secure.
[0106] Please refer to the attached Figure 4 and the attached Figure 7 The first direction X of the present application refers to the height direction of the feather frame 10 or the head 800, that is, the direction from top to bottom of the feather frame 10 and the head 800 or the direction from bottom to top of the feather frame 10 or the head 800. The second direction Y of the present application refers to the width direction of the feather frame 10 or the head 800, that is, the direction from left to right of the feather frame 10 and the head 800 or the direction from right to left of the feather frame 10 or the head 800.
[0107] The attached Figure 4 is a structural schematic diagram of the shuttlecock 30 of the present application. As shown in the attached Figure 4 The shuttlecock 30 of the present application includes the feather frame 10, the feather sheet 20, and the head 800. The feather sheet 20 is inserted circumferentially into one side of the feather frame 10, and the head 800 is installed on the other side of the feather frame 10.
[0108] In an embodiment, the feather sheet 20 is connected to the feather frame 10 by melting. Further, the feather sheet 20 is connected to the feather frame 10 by melting through a super wave device.
[0109] In an embodiment, the head 800 is detachably connected to the feather frame 10.
[0110] The attached Figure 5 is a structural schematic diagram of the head 800 of the present application. Please refer to the attached Figure 5As shown, the ball head 800 of the present application is provided with a connecting surface 810 on one side along the first direction X, the connecting surface 810 is a plane, and the other side of the ball head 800 along the first direction X is an arc-shaped spherical surface. A second connecting hole 820 is formed in the ball head 800. The second connecting hole 820 extends downward from the connecting surface 810 of the ball head 800 to form the ball head 800, and a mechanical cooperation part 830 is formed on the side of the second connecting hole 820 away from the connecting surface 810, the mechanical cooperation part 830 communicates with the second connecting hole 820, and the mechanical cooperation part 830 is a clamping groove. The length of the mechanical cooperation part 830 in the second direction Y is longer than the length of the second connecting hole 820 in the second direction Y. In the present application, when the ball head 800 is installed on the hair mounting frame 10, the first connecting piece 100 is located in the second connecting hole 820, and the mechanical cooperation part 830 and the mechanical connecting part 400 are clamped with each other. The mechanical connecting part 400 and the mechanical cooperation part 830 are clamped with each other, which means that the mechanical connecting part 400 is formed in the mechanical cooperation part 830, and the mechanical connecting part 400 and the mechanical cooperation part 830 are in interference fit. Further, the size of the mechanical connecting part 400 is larger than the size of the first connecting hole 130, so that the ball head 800 and the hair mounting frame 10 can be separated only under the action of a strong external force, otherwise the ball head 800 is not easy to separate from the hair mounting frame 10 under the connection of the mechanical cooperation part 830 and the mechanical connecting part 400.
[0111] attached Figure 6 is a sectional view of the shuttlecock 30 of the present application. Please refer to the attached Figure 6 As shown, a specific embodiment of the shuttlecock 30 of the present application is shown, in the present application, the feather piece 20 is inserted into the hair mounting rod 200, and the ball head 800 is installed on the hair mounting frame 10 through the mutual connection of the mechanical connecting part 400 and the mechanical cooperation part 830. The first connecting piece 100 is provided with a blocking plate 150 on the side close to the reference surface 120, and when the ball head 800 is installed on the hair mounting frame 10, the blocking plate 150 and the ball head 800 jointly form a blockage to the first connecting hole 130. Thus, foreign matter is prevented from entering the first connecting hole 130.
[0112] attached Figure 7 is another sectional view of the shuttlecock 30 of the present application. Please refer to the attached Figure 7As shown, the application shows a specific embodiment of the badminton 30, in the application, the feather piece 20 is inserted into the feathered rod 200, and the head 800 is installed on the feathered frame 10 through the mechanical connection part 400 and the mechanical cooperation part 830. Further, the first connecting hole 130 is provided with an opening 220 on the side close to the reference surface 120, and the light-emitting assembly 900 is arranged in the first connecting hole 130, and the light-emitting assembly 900 is connected with the first connecting part 100 and / or the head 800, so as to maintain the stability of the light-emitting assembly 900, and the head 800 and the first connecting part 100 are both made of light-transmitting material. The light-emitting assembly 900 comprises a light-emitting surface and a control button, and the control button is used to control whether the light-emitting assembly 900 emits light. The light-emitting surface of the light-emitting assembly 900 is arranged towards the head 800, and the control button is arranged towards the cavity in the feathered frame 10, so as to facilitate the user to control whether the light-emitting assembly 900 emits light through the opening 220 of the first connecting hole 130. Thus, it is convenient to observe the specific position of the badminton 30 when playing badminton 30 at night.
[0113] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, different embodiments or examples described in the present specification and the features of different embodiments or examples can be combined and combined by those skilled in the art without contradiction.
[0114] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one feature. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.
[0115] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed in the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A hackle frame for inserting a feather blade, characterized in that, The bristle mounting frame comprises a first connecting member arranged along a first direction, a center line being arranged along the first direction in the first connecting member; a bristle rod and a second connecting member, the bristle rod being circumferentially spaced apart around the center line, the bristle rod being connected to the first connecting member through the second connecting member; wherein a bristle hole is arranged in the bristle rod, an opening is arranged on the bristle rod, the opening is in communication with the bristle hole, and the bristle rod is connected to the feather piece in a mutually fused manner through the bristle hole.
2. The bristle holder according to claim 1, wherein The opening comprises a first opening located on the upper surface of the bristle rod along the first direction; a second opening located on the side surface of the bristle rod along a second direction, the first opening intersecting the second opening.
3. The bristle holder of claim 1 wherein, The bristle mounting frame further comprises a mechanical connecting portion arranged on the first connecting member; a reference surface is arranged on the side of the first connecting member close to the bristle rod, a first included angle being formed between the bristle rod and the reference surface; wherein a first connecting hole is arranged along the first direction through the first connecting member, and the mechanical connecting portion and the reference surface are arranged on the two ends of the first connecting member along the first direction.
4. The bristle holder of claim 1 wherein, The bristle mounting frame comprises a first limiting member arranged in the first direction in the bristle hole, and the first limiting member is connected to the bristle rod.
5. A vane characterized in that, The feather piece is inserted into the bristle mounting frame, and the feather piece comprises a feather piece; a feather rod, the feather piece being arranged on the first end of the feather rod, the feather piece being connected to the feather rod, and a fitting section being arranged on the second end of the feather rod and being adapted to the bristle hole in the bristle mounting frame.
6. The vane of claim 5, wherein The feather piece further comprises a second limiting member arranged on the fitting section along a second direction, the second limiting member being in action with the first limiting member in the bristle rod to form a limit along the first direction.
7. The vane of claim 5, wherein The feather piece further comprises a flow guide hole arranged on the feather piece on at least one side of the feather rod along the first direction; wherein the flow guide hole is a dot structure or a long strip structure arranged on the feather piece.
8. A shuttlecock characterised in that The shuttlecock comprises the bristle mounting frame according to any one of claims 1 to 4; the feather piece according to any one of claims 5 to 7; a ball head, the bristle mounting frame being connected to the ball head on the side away from the feather piece along the first direction; wherein a connecting surface is arranged on one side of the ball head along the first direction, a second connecting hole is formed in the ball head, the second connecting hole being formed by extending downward from the connecting surface to the inside of the ball head, a mechanical cooperation portion is formed in the second connecting hole, and the mechanical cooperation portion is connected to the mechanical connecting portion.
9. The shuttlecock according to claim 8, characterised in that A blocking plate is arranged on the side of the first connecting member close to the reference surface, and when the ball head is mounted on the bristle mounting frame, the blocking plate and the ball head jointly form a blockage to the first connecting hole.
10. The shuttlecock according to claim 8, wherein The first connecting hole is provided with an opening near the side of the reference surface, the opening is communicated with the first connecting hole, the first connecting hole is provided with a light emitting assembly, the light emitting assembly is connected with the first connecting member and / or the ball head, and the ball head and the first connecting member are formed of light-transmitting material.