A bow handle and sighting device for a bow and arrow

CN224815505UActive Publication Date: 2026-09-29SHANDONG MOYUAN SPORTS GOODS CO LTD
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Patent Information

Application Number
CN202620130994.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2026-01-29
Publication Date
2026-09-29
Estimated Expiration
2036-01-29

AI Technical Summary

Technical Problem

其中,金属材质弓把虽能保证结构强度,但自身重量较大,长期使用易导致使用者手臂疲劳,影响射击连续性和精度;实木材质弓把虽重量较轻、握持手感较好,但存在强度不足、易受环境湿度温度影响发生变形开裂的问题,且加工成本较高

Benefits of technology

1、通过由弓把本体、握把、碳纤维减震件和弓片安装座构成的弓把,而平行设置的偶数个碳纤维减震件两端分别与握把和弓片安装座固定,同时握把位于弓把本体的中间部,同时碳纤维减震件还具有轻量化和高强度的特性,便于弓把通过偶数个碳纤维减震件起到减震的目的。

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Abstract

The utility model belongs to the field of sports equipment technology, especially a bow handle and sighting device of bow and arrow, including bow handle body, handle, carbon fiber damping part, bow piece mounting seat and sighting device body, the bow handle that constitutes by bow handle body, handle, carbon fiber damping part and bow piece mounting seat, and parallelly arranged even number carbon fiber damping part both ends are fixed with handle and bow piece mounting seat respectively, while handle is located in the middle part of bow handle body, while carbon fiber damping part still has the characteristics of light weight and high strength, and the purpose of damping is realized through even number carbon fiber damping part for bow handle, the sighting device body is installed on the center line of bow handle, the problem that the traditional sighting device body adopts side mounting to make the center of gravity of bow and arrow deviate is solved, and the sighting area of bow and arrow is located in the gap of even number carbon fiber damping part and extends forward, and the sighting area of bow and arrow is used to aim again through the sighting device body.
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Description

Technical Field

[0001] This utility model belongs to the field of sports equipment technology, specifically relating to a bow handle and aiming device for an arrow. Background Technology

[0002] As a traditional sporting instrument and a modern outdoor recreational and competitive product, the structural rationality of the bow and arrow directly affects the user's feel, shooting accuracy, and service life. The bow handle, as the core load-bearing component, not only needs to provide a stable mounting base for the bow limbs but also needs to offer a comfortable grip for the user, while possessing sufficient structural strength to withstand the tension generated by the deformation of the bow limbs.

[0003] In the current technology, bow handles are mostly made of one-piece metal casting or solid wood processing. While metal bow handles can ensure structural strength, they are also heavy, which can easily lead to arm fatigue for users after long-term use, affecting shooting continuity and accuracy. Solid wood bow handles are lighter and have a better grip, but they are not strong enough and are susceptible to deformation and cracking due to environmental humidity and temperature, and their processing cost is also high.

[0004] Furthermore, existing bow handles have significant shortcomings in shock absorption. When an arrow is fired, the rapid rebound of the bow limbs generates considerable vibration, which is transmitted through the bow handle to the user's hand. This not only reduces grip comfort but may also affect shooting stability. Some existing technologies attempt to add additional shock-absorbing components to the bow handle; however, such designs not only increase the overall structural complexity and assembly cost of the bow handle but may also affect the stability of the fit between the bow handle and the bow limbs due to installation accuracy issues with the shock-absorbing components, thereby reducing the overall reliability of the bow.

[0005] Meanwhile, existing bow handles mostly feature separately assembled arrow shaft support structures, which suffer from low assembly precision and poor stability in connection with the main body of the bow handle. During shooting, unstable arrow shaft support can easily cause the arrow shaft to shift, affecting shooting accuracy. Therefore, developing a bow handle that is lightweight, high-strength, has good shock absorption performance, and is simple in structure and easy to assemble has become an urgent technical problem to be solved in the field of archery. Utility Model Content

[0006] This utility model addresses the shortcomings of existing technologies by providing a bow handle and aiming device for an arrow, the specific technical solution of which is as follows: A bow handle, including the handle body, and also including: The handle is located in the middle of the bow handle body, and the upper and / or lower end faces of the handle are provided with reserved holes. Carbon fiber shock absorbers, wherein an even number of carbon fiber shock absorbers are arranged in parallel, and one end of each carbon fiber shock absorber is fixed in a reserved hole opened on the end face of the handle. The bow plate mounting base has a reserved hole on its lower end face that corresponds to the carbon fiber shock absorber, and the other end of the carbon fiber shock absorber is fixed in the reserved hole on the end face of the bow plate mounting base.

[0007] Preferably, the even number of carbon fiber shock absorbers are symmetrically arranged along the centerline of the bow and arrow, and the aiming area of ​​the bow and arrow extends forward through the gaps between the even number of carbon fiber shock absorbers.

[0008] Preferably, the number of carbon fiber shock absorbers is 2, 4, or 6.

[0009] Preferably, the carbon fiber shock absorber is parallel to or inclined to the bow handle body.

[0010] Preferably, the carbon fiber damping component is a solid carbon fiber rod or a hollow carbon fiber tube.

[0011] An aiming device includes an aiming device body mounted on the centerline of the bow handle.

[0012] Preferably, the aiming device body includes an aiming fixing seat fixed to the front surface of the bow plate mounting seat. A front-to-back adjusting square rod is movably installed in a hole at the lower part of the aiming fixing seat. A locking hand screw is screwed into a screw hole at the upper end of the aiming fixing seat, and the lower end of the locking hand screw is used to lock the front-to-back adjusting square rod movably installed in the aiming fixing seat. A slide is integrally formed at the end of the front-to-back adjusting square rod. A slider is provided on the front surface of the slide. A left-to-right adjusting screw is screwed into a screw hole at the end of the slider near the slide. Both ends of the left-to-right adjusting screw are rotatably connected to the slide. A first hand screw head is welded to both ends of the left-to-right adjusting screw. An up-and-down adjusting screw is screwed into a screw hole at the end of the slider away from the slide. A second hand screw head is integrally formed at the upper end of the up-and-down adjusting screw. An aiming cone is integrally formed at the lower end of the up-and-down adjusting screw. An aiming frame is welded to the lower part of the aiming cone. An aiming ball is welded to the lower end of the aiming cone, and the aiming ball is located at the center of the aiming frame.

[0013] Preferably, the axes of the front-to-back adjusting rod, the left-to-right adjusting screw, and the up-to-down adjusting screw are perpendicular to each other.

[0014] Compared with the prior art, the beneficial effects of this utility model are: 1. The bow handle is composed of a bow handle body, a grip, carbon fiber shock absorbers, and a bow plate mounting base. An even number of parallel carbon fiber shock absorbers are fixed at both ends to the grip and the bow plate mounting base, respectively. The grip is located in the middle of the bow handle body. The carbon fiber shock absorbers are lightweight and high-strength, which makes it easy for the bow handle to achieve the purpose of shock absorption through an even number of carbon fiber shock absorbers.

[0015] 2. By extending the aiming area of ​​the bow and arrow forward through the gaps between an even number of carbon fiber shock absorbers, it is easier to aim when shooting arrows. At the same time, it solves the problem of the center of gravity shifting due to the curved design of the bow handle when aiming in traditional arrow shooting. This increases the balance of the bow and arrow, reduces the shaking of the arrow when shooting, and improves aiming accuracy.

[0016] 3. By mounting the aiming device body on the center line of the bow handle, the problem of the bow's center of gravity shifting due to the side mounting of traditional aiming devices is solved. At the same time, the aiming area of ​​the bow is located in the gaps of an even number of carbon fiber shock absorbers and extends forward, making it easier to aim through the aiming area of ​​the bow and then through the aiming device body, thus improving the accuracy of shooting after aiming through the aiming device body when shooting.

[0017] 4. The aiming device consists of a fixed aiming base, a front-to-back adjusting square rod, a locking hand-tightening screw, a slide, a slider, a left-to-right adjusting screw, a first hand-tightening screw head, a vertical adjusting screw, a second hand-tightening screw head, an aiming cone, an aiming frame, and an aiming ball. The fixed aiming base is used to fix the aiming device to the bow limb mounting seat. The aiming frame, which allows the aiming device to hang down, is located at the gap between an even number of carbon fiber shock absorbers for aiming. The front-to-back adjusting square rod, which is fixed inside the fixed aiming base by the locking hand-tightening screw, is used to connect the slide. The slider on the front surface of the slide is adjusted to the left and right position by the left-to-right adjusting screw. The vertical adjusting screw, which is screwed into the screw hole of the slider, adjusts the height of the aiming cone through the aiming cone, so that the aiming ball welded to the lower end of the aiming cone is located in the center of the aiming frame for aiming. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the bow handle structure of this utility model applied to a recurve bow; Figure 2 This is a schematic diagram of the bow handle structure of this utility model applied to a composite bow; Figure 3 This is a schematic diagram of the carbon fiber shock absorber structure in this utility model. Figure 1 ; Figure 4 This is a schematic diagram of the carbon fiber shock absorber structure in this utility model. Figure 2 ; Figure 5 The structural diagram of the carbon fiber shock absorber in this utility model is shown below. Figure 3 ; Figure 6 This is a schematic diagram of the aiming device structure in this utility model; Figure 7 This is a schematic diagram of the aiming cone, aiming frame, and aiming ball structure in this utility model.

[0019] Reference numerals: 1. Bow handle body; 2. Grip; 3. Carbon fiber shock absorber; 4. Bow limb mounting base; 5. Aiming device body; 51. Aiming mounting base; 52. Front and rear adjustment square rod; 53. Locking hand-tightening screw; 54. Slide; 55. Slider; 56. Left and right adjustment screw; 57. First hand-tightening screw head; 58. Up and down adjustment screw; 59. Second hand-tightening screw head; 510. Aiming cone rod; 511. Aiming frame; 512. Aiming ball. Detailed Implementation

[0020] The technical solution of this utility model will now be described with reference to the accompanying drawings and embodiments. Example

[0021] Please see Figure 1-7 This embodiment provides the following technical solution: a bow handle, including a bow handle body 1, and further comprising: The handle 2 is located in the middle of the bow handle body 1, and the upper and / or lower end surfaces of the handle 2 are provided with reserved holes. Carbon fiber shock absorber 3, an even number of carbon fiber shock absorbers 3 are arranged in parallel, and one end of the carbon fiber shock absorber 3 is fixed in the reserved hole opened on the end face of the handle 2. Bow plate mounting base 4, the lower end face of the bow plate mounting base 4 is provided with a reserved hole corresponding to the carbon fiber shock absorber 3, and the other end of the carbon fiber shock absorber 3 is fixed in the reserved hole opened on the end face of the bow plate mounting base 4.

[0022] In this embodiment, the bow handle is composed of a bow handle body 1, a grip 2, carbon fiber shock absorbers 3, and a bow plate mounting base 4. An even number of parallel carbon fiber shock absorbers 3 are fixed at both ends to the grip 2 and the bow plate mounting base 4, respectively. The grip 2 is located in the middle of the bow handle body 1. The carbon fiber shock absorbers 3 also have the characteristics of being lightweight and high-strength, which makes it easy for the bow handle to achieve the purpose of shock absorption through an even number of carbon fiber shock absorbers 3.

[0023] Specifically, an even number of carbon fiber shock absorbers 3 are symmetrically arranged along the centerline of the bow and arrow, and the aiming area of ​​the bow and arrow extends forward through the gaps between the even number of carbon fiber shock absorbers 3.

[0024] In this embodiment, the aiming area of ​​the bow and arrow is located at the gap between an even number of carbon fiber shock absorbers 3, which extends forward, making it easier to aim when shooting the bow and arrow. At the same time, it solves the problem of the center of gravity shifting due to the curved design of the bow handle when aiming in traditional bow and arrow shooting, increases the balance of the bow and arrow, reduces the shaking of the bow and arrow shooting, and improves the aiming accuracy.

[0025] Specifically, the number of carbon fiber damping components 3 is 2, 4, or 6.

[0026] In this embodiment, it is convenient to select different numbers of carbon fiber damping components 3 according to the damping requirements.

[0027] Specifically, the carbon fiber shock absorber 3 is parallel or inclined to the bow handle body 1, and the carbon fiber shock absorber 3 is a solid carbon fiber rod or a hollow carbon fiber tube.

[0028] In this embodiment, the carbon fiber shock absorber 3 is easily tilted and adapted to the bow handle body 1. Figure 1 The recurve bow shown is designed to allow the carbon fiber shock absorber 3 to be parallel to the bow handle body 1, as shown. Figure 2 The compound bow shown. Example

[0029] The technical features that distinguish this embodiment from Embodiment 1 are: An aiming device includes an aiming device body 5, which is mounted on the center line of the bow handle.

[0030] In this embodiment, the aiming device body 5 installed on the center line of the bow handle solves the problem of the bow and arrow's center of gravity shifting due to the side mounting of the traditional aiming device body 5. At the same time, the aiming area of ​​the bow and arrow is located in the gap between an even number of carbon fiber shock absorbers 3 and extends forward, making it convenient to aim through the aiming area of ​​the bow and arrow and then through the aiming device body 5, thus improving the accuracy of shooting after aiming through the aiming device body 5 when shooting the bow and arrow.

[0031] Specifically, the aiming device body 5 includes an aiming mounting base 51 fixed to the front surface of the bow plate mounting base 4. A front-to-back adjusting square rod 52 is movably installed in a hole at the lower part of the aiming mounting base 51. A locking hand screw 53 is screwed into a screw hole at the upper end of the aiming mounting base 51, and the lower end of the locking hand screw 53 is used to lock the front-to-back adjusting square rod 52 movably installed in the aiming mounting base 51. A slide 54 is integrally formed at the end of the front-to-back adjusting square rod 52. A slider 55 is provided on the front surface of the slide 54. A left-to-right adjusting screw 56 is screwed into a screw hole at the end of the slider 55 near the slide 54. The two ends of the left-to-right adjusting screw 56 are connected to... The slide 54 is rotatably connected. Both ends of the left-right adjusting screw 56 are welded with first-hand screw heads 57. An up-down adjusting screw 58 is screwed into a screw hole at the end of the slider 55 furthest from the slide 54. A second-hand screw head 59 is integrally formed at the upper end of the up-down adjusting screw 58. An aiming cone 510 is integrally formed at the lower end of the up-down adjusting screw 58. An aiming frame 511 is welded to the lower part of the aiming cone 510. An aiming ball 512 is welded to the lower end of the aiming cone 510, and the aiming ball 512 is located at the center of the aiming frame 511. The axes of the front-rear adjusting square rod 52, the left-right adjusting screw 56, and the up-down adjusting screw 58 are perpendicular to each other. In this embodiment, the aiming device consists of an aiming mounting base 51, a front-to-back adjusting square rod 52, a locking hand-tightening screw 53, a slide 54, a slider 55, a left-to-right adjusting screw 56, a first hand-tightening screw head 57, a vertical adjusting screw 58, a second hand-tightening screw head 59, an aiming cone rod 510, an aiming frame 511, and an aiming ball 512. The aiming mounting base 51 is fixed to the bow limb mounting base 4 of the bow handle. The aiming frame 511, which allows the aiming device body 5 to hang down, is located at the gap between an even number of carbon fiber shock absorbers 3 for aiming. The front-to-back adjusting square rod 52, which is fixed inside the aiming mounting base 51 by the locking hand-tightening screw 53, is used to connect the slide 54. The slider 55, which is provided on the front surface of the slide 54, is adjusted to the left and right position by the left-to-right adjusting screw 56. The vertical adjusting screw 58, which is screwed into the screw hole of the slider 55, adjusts the height of the aiming cone rod 510 through the aiming cone rod 510, so that the aiming ball 512 welded to the lower end of the aiming cone rod 510 is located at the center of the aiming frame 511 for aiming.

[0032] How to use: I. Preliminary Preparations and Structure Confirmation 1. Handling inspection: Hold the bow handle body 1 with both hands and confirm that the bow handle body 1 is firmly connected to the handle 2 integrally formed on its upper part without any looseness; at the same time, observe whether an even number of carbon fiber shock absorbers 3 are firmly fixed in the hole on the end face of the handle 2, and whether one end of the even number of carbon fiber shock absorbers 3 is reliably fixed to the hole on the end face of the bow plate mounting seat 4.

[0033] 2. Symmetry and aiming area confirmation: Confirm that the even number of carbon fiber shock absorbers 3 are symmetrically set along the center line of the bow and arrow, and clarify that the aiming area of ​​the bow and arrow is the area extending forward from the gap of the even number of carbon fiber shock absorbers 3. Ensure that this area is unobstructed and has a clear field of vision to avoid affecting subsequent aiming.

[0034] 3. Installation confirmation of aiming device: Check whether the aiming device body 5 is accurately installed on the center line of the bow handle, confirm that the aiming mounting base 51 is firmly fixed to the front surface of the bow plate mounting base 4, and that the aiming frame 511 and aiming ball 512 are in the gap area of ​​an even number of carbon fiber shock absorbers 3, so as to ensure that the aiming device coincides with the center line of the bow handle and avoid the center of gravity shift.

[0035] II. Adjustment of the aiming device (a) Adjustment of front and rear position 1. Unlocking and Adjustment: Rotate the locking screw 53 at the upper end of the aiming mounting base 51 to pull it upwards and release the locking of the front and rear adjustment rod 52; at this time, the front and rear adjustment rod 52 can move freely back and forth in the hole at the lower part of the aiming mounting base 51.

[0036] 2. Positioning: Push the front and rear adjustment lever 52 to move the slide 54, which is integrally formed at its end, back and forth. Adjust the front and rear positions of the slide 54 and subsequent auxiliary aiming structures according to your own shooting habits and aiming field of view requirements to ensure a clear field of view in the aiming area.

[0037] 3. Locking and fixing: After adjustment, rotate the locking hand screw 53 in the opposite direction to press its lower end against the front and rear adjustment rod 52, and lock the front and rear adjustment rod 52 and the aiming fixing seat 51 to prevent position displacement during firing.

[0038] (ii) Left and right position adjustment 1. Adjustment operation: Hold the first hand-tightening screw head 57 welded to both ends of the left and right adjustment screw 56 and rotate it clockwise or counterclockwise; since the left and right adjustment screw 56 is rotatably connected to the slide 54 and engages with the screw hole of the slider 55 near the end of the slide 54, the slider 55 will slide left and right along the front surface of the slide 54 during the rotation.

[0039] 2. Align with the center line: Combine the aiming area formed symmetrically by an even number of carbon fiber shock absorbers 3, adjust the left and right positions of slider 55 to ensure that the subsequent aiming structure (aiming frame 511, aiming ball 512) is consistent with the center line of the bow and arrow, and avoid left and right deviations that affect aiming accuracy.

[0040] (iii) Adjustment of vertical position 1. Adjustment operation: Hold the second hand-tightening screw head 59 at the upper end of the up-down adjusting screw 58 and rotate it clockwise or counterclockwise; since the up-down adjusting screw 58 is engaged with the screw hole at the end of the slider 55 away from the slide 54, the rotation will drive the integrated aiming cone rod 510 at its lower end to move up and down.

[0041] 2. Aiming reference calibration: Observe the aiming frame 511 welded to the lower part of the aiming cone rod 510 and the aiming ball 512 welded to the lower end. Adjust the aiming ball 512 to be accurately located at the center of the aiming frame 511. At the same time, ensure that the aiming frame 511 and the aiming ball 512 are within the aiming area of ​​an even number of carbon fiber damping parts 3 gaps to form a stable aiming reference.

[0042] III. Shooting, Aiming, and Firing 1. Grip and stance: Hold the bow handle body 1 stably with one hand, keep the body in a stable stance, and use the balance of the bow handle structure consisting of the bow handle body 1, grip 2, carbon fiber shock absorber 3 and bow plate mounting base 4 to reduce the impact of body shaking on shooting.

[0043] 2. Aiming operation: Initial aiming is performed through the aiming area that extends forward through the gaps of an even number of carbon fiber shock absorbers 3, and then precise aiming is performed through the aiming frame 511 of the aiming device body 5 and the aiming ball 512 at the center. The aiming ball 512 is aligned with the target center to ensure that the aiming line coincides with the target.

[0044] 3. Firing and follow-up: After confirming accurate aiming, release the bowstring smoothly to complete the firing. During firing, the lightweight and high-strength characteristics of the even number of carbon fiber shock absorbers 3 can play a shock-absorbing role, reduce shooting shake, and further ensure shooting accuracy.

[0045] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A bow handle for an arrow, comprising a handle body (1), characterized in that, Also includes: The handle (2) is located in the middle part of the bow handle body (1), and the upper end face and / or lower end face of the handle (2) are provided with reserved holes; Carbon fiber shock absorber (3), wherein an even number of carbon fiber shock absorbers (3) are arranged in parallel, and one end of the carbon fiber shock absorber (3) is fixed in a reserved hole opened on the end face of the handle (2); Bow plate mounting base (4), the lower end face of the bow plate mounting base (4) is provided with a reserved hole corresponding to the carbon fiber shock absorber (3), and the other end of the carbon fiber shock absorber (3) is fixed in the reserved hole opened on the end face of the bow plate mounting base (4).

2. The bow handle of an arrow according to claim 1, characterized in that: An even number of carbon fiber damping elements (3) are symmetrically arranged along the centerline of the bow and arrow, and the aiming area of ​​the bow and arrow extends forward through the gap between the even number of carbon fiber damping elements (3).

3. The bow handle of an arrow according to claim 2, characterized in that: The number of carbon fiber damping components (3) is 2, 4 or 6.

4. The bow handle of an arrow according to claim 2, characterized in that: The carbon fiber shock absorber (3) is parallel or inclined to the bow handle body (1).

5. The bow handle of an arrow according to claim 2, characterized in that: The carbon fiber damping component (3) is a solid carbon fiber rod or a hollow carbon fiber tube.

6. An aiming device, comprising an aiming device body (5), characterized in that: The aiming device body (5) is mounted on the centerline of the bow handle according to any one of claims 1-5.

7. The aiming device according to claim 6, characterized in that: The aiming device body (5) includes an aiming mounting base (51) fixed to the front surface of the bow plate mounting base (4). A front-to-back adjusting square rod (52) is movably installed in a hole at the lower part of the aiming mounting base (51). A locking hand screw (53) is screwed into a screw hole at the upper end of the aiming mounting base (51), and the lower end of the locking hand screw (53) is used to lock the front-to-back adjusting square rod (52) movably installed in the aiming mounting base (51). A slide (54) is integrally formed at the end of the front-to-back adjusting square rod (52). A slider (55) is provided on the front surface of the slide (54). A left-to-right adjusting screw (56) is screwed into a screw hole at the end of the slider (55) near the slide (54). The two ends of the left and right adjusting screw (56) are rotatably connected to the slide (54). The two ends of the left and right adjusting screw (56) are welded with a first hand-tightening screw head (57). The upper and lower adjusting screw (58) is screwed into the screw hole at the end of the slider (55) away from the slide (54). The upper end of the upper and lower adjusting screw (58) is integrally formed with a second hand-tightening screw head (59). The lower end of the upper and lower adjusting screw (58) is integrally formed with an aiming cone rod (510). The lower part of the aiming cone rod (510) is welded with an aiming frame (511). The lower end of the aiming cone rod (510) is welded with an aiming ball (512), and the aiming ball (512) is located at the center of the aiming frame (511).

8. The aiming device according to claim 7, characterized in that: The axes of the front and rear adjusting rod (52), the left and right adjusting screw (56), and the up and down adjusting screw (58) are perpendicular to each other.