Target block structure and dart target structure

By designing the tapered holes in the target block structure and combining them with the side locking blocks and frame, the problem of darts not being able to be inserted into the target hole was solved, improving the hit rate and ensuring that broken darts are easy to remove, thus improving the darts game experience.

CN223636731UActive Publication Date: 2025-12-05DONG GUAN DA YIN SU JIAO ZHI PIN YOU XIAN GONG SI
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Patent Information

Application Number
CN202422931478.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-12-05
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

In existing dart games, the fixed target design prevents darts from being inserted into the target hole, affecting the hit rate and reducing the user's gaming experience.

Method used

The target block structure features a guide section and an insertion section with a gradually narrowing aperture. Combined with the side locking blocks and frame support strips of the target block, this ensures that the dart can be smoothly inserted and fixed onto the target block.

Benefits of technology

It improves the hit rate of darts, avoids the problem of broken dart needles getting stuck in the holes and cannot be removed, and maintains the overall hit rate.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a target block structure and a dart target structure, the target block structure comprises: a body having a plurality of holes, each hole having a guide section and an insertion section, the hole diameter of the guide section being larger than the hole diameter of the insertion section, the guide section having a first end and a second end opposite to each other, the second end being joined to the insertion section, the hole diameter of the first end being larger than the hole diameter of the second end, the aperture of the guide section is gradually reduced from the first end to the second end. According to the utility model, the target loading rate can be improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a dart entertainment and sports appliance technical field, in particular to a target block structure and dart target structure. BACKGROUND

[0002] Dart movement is not only an entertainment way, but also has become a modern sports competition, in order to adapt to the entertainment activities of various personnel, with the change of market demand, dart target equipment technology is continuously improved.

[0003] However, in general dart game, the target needs to be fixed on the frame of dart machine, in order to realize this, the prior art is fixed through the column behind the target plate, however, such design may cause the target hole at the position of the column to be unable to insert the dart, thereby affecting the overall target rate, which will directly affect the game experience of the user. UTILITY MODEL CONTENTS

[0004] The utility model provides a target block structure, which mainly aims at providing a target block structure capable of improving the target rate.

[0005] The utility model further provides a dart target structure, which mainly aims at providing a dart target structure capable of improving the target rate.

[0006] To achieve the foregoing purpose, the target block structure of the utility model comprises:

[0007] A body has a plurality of holes, the plurality of holes have a guide section and an insertion section, the hole diameter of the guide section is larger than the hole diameter of the insertion section, the guide section has opposite first and second ends, the second end is connected to the insertion section, the hole diameter of the first end is larger than the hole diameter of the second end, and the hole diameter of the guide section tapers from the first end to the second end.

[0008] The utility model further provides a dart target structure, which mainly aims at providing a dart target structure capable of improving the target rate.

[0009] A frame has a grid structure, the grid structure divides a plurality of accommodation spaces, and the grid structure has a plurality of support bars interlaced with each other; and

[0010] A plurality of target blocks are arranged in the plurality of accommodation spaces of the frame, the plurality of target blocks respectively have the body and the side clamping block, the plurality of bodies have an outer peripheral surface, the plurality of side clamping blocks protrude from the outer peripheral surface, and the plurality of side clamping blocks abut against the support bars.

[0011] As known from the foregoing, the target block structure of the utility model mainly has the guide section and the insertion section connected to the hole, and the hole diameter of the guide section tapers from the first end to the second end, thereby guiding the dart to smoothly insert into the hole, and achieving the purpose of improving the target rate.

[0012] Further, the dart target structure of the present application is that the side clamping blocks of the plurality of target blocks abut against the inner side of the support bar, so as to effectively avoid the plurality of target blocks from being separated from the outer side of the frame, so that the rear of the plurality of holes does not have any supporting structure, thereby avoiding the problem that the target hole cannot be inserted by the dart, so as to improve the target rate.

[0013] In addition, since the rear of the plurality of holes does not have any supporting structure, if there is a broken dart needle in the hole, it can be taken out in a penetrating manner, and there is no problem that the broken dart needle is stuck in the hole and cannot be taken out, so as to maintain the overall target rate. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a schematic view of the target block structure and the dart target structure of the present application applied to a machine table.

[0015] Figure 2 It is a front view of the target block structure and the dart target structure of the present application.

[0016] Figure 3A It is a partial enlarged view of Figure 2 .

[0017] Figure 3B It is a perspective view of the target block structure.

[0018] Figure 4A It is an exploded view of the target block structure and the dart target structure of the present application.

[0019] Figure 4B It is a partial exploded view of the target block structure and the dart target structure of the present application.

[0020] Figure 5 It is a combination schematic view of the target block structure and the dart target structure of the present application.

[0021] Figure 6 It is a sectional view of the target block structure and the dart target structure of the present application.

[0022] Figure 7 It is a partial enlarged view of Figure 6 .

[0023] 10, target block; 11, body; 11A, first region; 11B, second region; 111, hole; 112, guide section; 112A, first end; 112B, second end; 113, insertion end; 115, outer peripheral surface; 116, outer target surface; 117, inner end surface; 12, side clamping block; 13, barrier wall; 20, back plate; 21, first coupling portion; 30, frame; 31, lattice structure; 311, support bar; 311A, inner side; 311B, outer side; 311C, inclined surface; 312, second coupling portion; 32, accommodation space; X, axial direction. DETAILED DESCRIPTION

[0024] The utility model provides a target block structure, please refer to Figures 1-7 Shown, it includes:

[0025] A body 11 has a plurality of holes 111, the plurality of holes 111 extends along an axial direction X, the plurality of holes 111 has a guide section 112 and an insertion section 113 along the axial direction X, the hole diameter of the guide section 112 is greater than the hole diameter of the insertion section 113, the guide section 112 has a first end 112A and a second end 112B opposite, the second end 112B is connected to the insertion section 113, the hole diameter of the first end 112A is greater than the hole diameter of the second end 112B, the hole diameter of the guide section 112 is tapered from the first end 112A to the second end 112B, in the embodiment, the guide section 112 is generally a quadrangular frustum-shaped hole.

[0026] In the preferred embodiment, please refer to Figure 4B The plurality of bodies 11 has an outer target surface 116 and an inner end surface 117 opposite along the axial direction X, the inner end surface 117 is annular, and the plurality of side clamping blocks 12 extends outward from the inner end surface 117.

[0027] Please refer to Figure 3A , 7 The body 11 can be further divided into a first region 11A and a second region 11B, the second region 11B is located in the outer periphery of the first region 11A, and a barrier wall 13 is arranged between the first region 11A and the second region 11B, the barrier wall 13 is used to limit the flight path of the dart, so that the dart is more easily entered into the hole 111 of the second region 11B, in the embodiment, the outer target surface 116 of the first region 11A is more protruding than the outer target surface 116 of the second region 11B, in the embodiment, the barrier wall 13 is annular.

[0028] The utility model provides a dart target structure, please refer to Figures 1-7 Shown, it includes:

[0029] a back plate 20 having a plurality of first coupling portions 21, in this embodiment, the plurality of first coupling portions 21 are perforations;

[0030] a frame 30 for being secured to the back plate 20, the frame 30 has a grid structure 31, the grid structure 31 divides a plurality of receiving spaces 32, some of the receiving spaces 32 have the same shape, some of the receiving spaces 32 have different shapes, the grid structure 31 has a plurality of support bars 311 which are interlaced with each other, the plurality of support bars 311 have opposite inner sides 311A and outer sides 311B, the inner sides 311A face the back plate 20, the outer sides 311B face away from the back plate 20;

[0031] a plurality of target blocks 10 arranged in the plurality of receiving spaces 32 of the frame 30, the plurality of target blocks 10 have the same shape as the plurality of receiving spaces 32, the plurality of target blocks 10 each have a body 11 and a plurality of side clamping blocks 12, the plurality of bodies 11 have a hollow structure, the plurality of bodies 11 have opposite inner peripheral surfaces 114 and outer peripheral surfaces 115, the plurality of side clamping blocks 12 extend outwardly from the outer peripheral surfaces 115, the plurality of side clamping blocks 12 abut against the inner sides 311A of the support bars 311, so as to effectively prevent the plurality of target blocks 10 from being separated from the outer sides 311B of the frame 30;

[0032] In a preferred embodiment, please refer to Figure 4B the plurality of bodies 11 have opposite outer target surfaces 116 and inner end surfaces 117 along the axial direction X, the inner end surfaces 117 are annular, and the plurality of side clamping blocks 12 extend outwardly from the inner end surfaces 117.

[0033] Please refer to Figure 3A , 7 the body 11 can be further divided into a first region 11A and a second region 11B, the second region 11B is located outside the first region 11A, the first region 11A and the second region 11B have a barrier wall 13 therebetween, the support bars 311 have at least one inclined surface 311C on the outer side 311B, the holes 111 of the second region 11B are located between the barrier wall 13 and the inclined surface 311C, the barrier wall 13 and the inclined surface 311C of the support bars 311 are used to limit the flight path of the darts, so that the darts are more easily enter the holes 111 of the second region 11B, in this embodiment, the outer target surface 116 of the first region 11A is more protruding than the outer target surface 116 of the second region 11B, in this embodiment, the barrier wall 13 is annular.

[0034] Preferably, the number of the inclined surfaces 311C of the support bars 311 on the outer side 311B is two, so that the support bars 311 on the outer side 311B are in the shape of a sharp angle.

[0035] In this embodiment, please refer toFigure 3A 、 7 The body 11 has a plurality of holes 111 extending along the axial direction X, the holes 111 have the guide section 112 and the insertion section 113 connected along the axial direction X, the hole diameter of the guide section 112 is larger than that of the insertion section 113, the guide section 112 has the first end 112A and the second end 112B opposite to each other, the second end 112B is connected to the insertion section 113, the hole diameter of the first end 112A is larger than that of the second end 112B, the hole diameter of the guide section 112 is tapered from the first end 112A to the second end 112B, and in the embodiment, the guide section 112 is generally a quadrangular frustum-shaped hole.

[0036] Preferably, referring to Figure 4B The inner side 311A of the grid structure 31 has a second connecting part 312 for connecting with the first connecting part 21 of the back plate 20, so that the frame 30 is connected to the back plate 20, thereby effectively preventing the plurality of target blocks 10 from being separated from the inner side 311A of the frame 30, and in the embodiment, the second connecting part 312 is a lock hole, and the first connecting part 21 and the second connecting part 312 can be connected by a bolt.

[0037] As known from the foregoing, the target block structure of the present application mainly has the holes 111 with the guide section 112 and the insertion section 113 connected, and the hole diameter of the guide section 112 is tapered from the first end 112A to the second end 112B, thereby guiding the dart to be smoothly inserted into the hole 111, so as to improve the target rate.

[0038] Further, referring to Figure 5 The dart target structure of the present application is that the side clamping blocks 12 of the plurality of target blocks 10 abut against the inner side 311A of the support bar 311, thereby effectively preventing the plurality of target blocks 10 from being separated from the outer side 311B of the frame 30, so that the rear of the plurality of holes 111 does not have any supporting structure, thereby avoiding the problem that the target hole cannot be inserted into the dart, so as to improve the target rate.

Claims

1. A target structure, comprising: a body having a plurality of holes, the plurality of holes having a leading section and an insertion section, the leading section having a larger diameter than the insertion section, the leading section having opposite first and second ends, the second end being connected to the insertion section, the first end having a larger diameter than the second end, the diameter of the leading section tapering from the first end to the second end; characterized in that it further comprises: the body being divided into a first region and a second region, the second region being located at the outer periphery of the first region, the first region and the second region having a barrier wall therebetween.

2. A dart target structure, comprising: a body having a plurality of holes, the plurality of holes having a leading section and an insertion section, the leading section having a larger diameter than the insertion section, the leading section having opposite first and second ends, the second end being connected to the insertion section, the first end having a larger diameter than the second end, the diameter of the leading section tapering from the first end to the second end; characterized in that it further comprises: a frame having a grid structure, the grid structure dividing a plurality of receiving spaces, the grid structure having a plurality of support bars interlaced with each other; and the body being disposed in the receiving spaces of the frame, the body having an outer peripheral surface, and further having a side clamping block extending outwardly from the outer peripheral surface, the side clamping block abutting against the support bars.

3. The dart target structure of claim 2, wherein further comprising a back plate having a plurality of first coupling portions, the frame being locked to the back plate, the support bars having opposite inner sides and outer sides, the inner sides being the sides facing the back plate, the outer sides being the sides facing away from the back plate, the side clamping blocks abutting against the inner sides of the support bars, the inner sides of the grid structure having second coupling portions, the second coupling portions being coupled to the first coupling portions of the back plate.

4. The dart target structure of claim 2, wherein the body having opposite outer target surfaces and inner end surfaces, the side clamping blocks extending outwardly from the inner end surfaces.

5. The dart target structure of claim 2, wherein the body being divided into a first region and a second region, the second region being located at the outer periphery of the first region, the first region and the second region having a barrier wall therebetween, the plurality of support bars having at least one inclined surface, the holes of the second region being located between the barrier wall and the inclined surface.

6. A dartboard structure, characterised in that comprising: a frame having a grid structure, the grid structure dividing a plurality of receiving spaces, the grid structure having a plurality of support bars interlaced with each other; and a plurality of target blocks being disposed in the plurality of receiving spaces of the frame, the plurality of target blocks respectively having a body and a side clamping block, the body having an outer peripheral surface, the side clamping block extending outwardly from the outer peripheral surface, the plurality of side clamping blocks abutting against the support bars.

7. The dart target structure of claim 6, wherein further comprising a back plate having a plurality of first coupling portions, the frame being locked to the back plate, the support bars having opposite inner sides and outer sides, the inner sides being the sides facing the back plate, the outer sides being the sides facing away from the back plate, the side clamping blocks abutting against the inner sides of the support bars, the inner sides of the grid structure having second coupling portions, the second coupling portions being coupled to the first coupling portions of the back plate.

8. The dartboard structure of claim 6, wherein, the body having opposite outer target surfaces and inner end surfaces, the side clamping blocks extending outwardly from the inner end surfaces.

9. The dart target structure of claim 6, wherein The body is divided into a first region and a second region, the second region is located at the outer periphery of the first region, the first region and the second region have a blocking wall therebetween, the support strip has at least one inclined surface, and the hole of the second region is located between the blocking wall and the inclined surface.