Bow handle capable of quickly adjusting mass gravity center
By designing removable adjustment components, including a bracket with mounting positions and counterweight units, the mass center of gravity of the bow handle can be quickly adjusted, solving the problem of the existing bow handle's center of gravity and improving the accuracy and stability of archery.
Patent Information
- Application Number
- CN202422159933.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-09-04
AI Technical Summary
The existing bow handle design is fixed in the center of gravity, and cannot be quickly adjusted according to different archery needs or the personal preferences of the archer, resulting in the impact of the accuracy and stability of the archery.
A bow handle consisting of a bow handle body and a removable adjustment assembly is designed, which consists of a bracket with a mounting position and a removable counterweight unit to adjust the mass center of gravity of the bow handle by adjusting the number and position of the counterweight units.
The accuracy and flexibility of the center of gravity of the bow handle are realized, adapting to different archery needs, improving the accuracy and stability of archery, and reducing the physical energy consumption of the archer.
Smart Images

Figure CN222964511U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of archery equipment, and in particular to a bow handle that can quickly adjust the mass center of gravity. Background Art
[0002] The design of bow handles in the prior art is usually based on a fixed mass center of gravity. Although this design can provide a certain degree of stability and handling feel, its limitations also become apparent. Once the mass center of gravity of a traditional bow handle is determined, the archer can only adapt to this fixed center of gravity position during actual use, and cannot flexibly adjust it according to specific archery requirements or the archer's personal preferences. For experienced archers, this fixed design may require more training time to adapt to the weight distribution of the bow handle, while for beginners or archers who are used to different center of gravity positions, it may affect the accuracy and stability of archery.
[0003] In the prior art, the mass center of gravity of a bow handle is often determined by the material distribution of the bow handle and the fixed position of weight accessories. Although this structural design is simple, it also brings many problems. First of all, since the body types, strengths, and usage habits of each archer are different, a single mass center of gravity design is difficult to meet the needs of everyone. Secondly, during the archery process, the archer may encounter different scenarios and challenges, such as different wind speeds, different range requirements, etc. These all require the bow handle to be able to flexibly adjust the mass center of gravity according to the actual situation to maintain the best archery state. However, due to the fixed mass center of gravity of traditional bow handles, they cannot be adjusted within a short time, resulting in the archer lacking flexibility when dealing with changes and affecting the accuracy and stability of archery.
[0004] The root cause of this deficiency lies in the limitations of the existing bow handle design concept, which fails to fully consider the diverse needs of archers during actual use and also fails to provide a solution that can quickly and conveniently adjust the center of gravity. Existing technologies attempt to adjust the weight distribution of the bow handle by adding or reducing counterweights, but these methods usually require a long preparation time and are difficult to adjust in real time during actual archery, thus unable to meet the needs of archers in fast-response scenarios such as competitions or hunting.
[0005] In view of this, it is of great significance to develop a bow handle that can quickly adjust the mass center of gravity. Summary of the Utility Model
[0006] The purpose of this application is to at least overcome one deficiency existing in the prior art, and provide a bow handle that can quickly adjust the mass center of gravity. This bow handle can flexibly adjust the center of gravity position of the bow handle according to the actual situation or personal preference, so as to maintain the best operating state in various complex archery environments, not only improving the accuracy and stability of archery, but also reducing the physical consumption of the archer, enabling the archer to still maintain a good competitive state during long-term archery activities.
[0007] To achieve the above object, the present application discloses a bow handle capable of quickly adjusting the mass center of gravity. The bow handle includes a bow handle body and an adjustment component detachably mounted on the body. The adjustment component includes a bracket with a plurality of mounting positions and a counterweight unit detachably inserted into the mounting holes. By adjusting the number and position of the counterweight units, the mass center of gravity of the bow handle can be adjusted.
[0008] In some embodiments, the bracket is successively an extension section, a front bridge bracket section, and a counterweight section from top to bottom. Among them, holes and grooves serving as mounting positions are provided on both sides of the counterweight section; connection holes are provided on the extension section and the mating section, and the connection holes are detachably locked to the bow handle body by bolts.
[0009] Further, the extension section has a threaded hole for mounting an arrow side pad.
[0010] In some embodiments, the mounting position is a threaded groove, and the counterweight unit has a counterweight portion and a stud provided on the counterweight portion. The bolt is suitable for the threaded groove, so that the mating unit is detachably mounted on the bracket by threaded engagement.
[0011] In some embodiments, three mounting positions are respectively provided on both sides of the bracket.
[0012] In some embodiments, the bow handle body is provided with a hollowed-out position for weight reduction.
[0013] In some embodiments, the bracket is a ferromagnetic bracket. In contrast, the mating unit has a counterweight portion and a magnetic column provided on the counterweight portion. The magnetic column is inserted into the mounting position and is fixed to the bracket by magnetic force.
[0014] Compared with the prior art, the present application has at least the following beneficial effects:
[0015] 1. Precise and flexible adjustment of the mass center of gravity: By adjusting the number and position of the counterweight units, users can achieve a wider range and more flexible adjustment of the mass center of gravity to meet different archery needs.
[0016] 2. Convenient disassembly and assembly and stability: The counterweight unit is detachably mounted on the bracket by threaded or magnetic means, which is not only convenient for users to quickly disassemble and assemble, but also ensures the stability of the counterweight unit, improving the stability during archery.
[0017] 3. Modular structure increases adaptability: The bracket is designed as a modular structure, including an extension section, a front bridge bracket section, and a counterweight section, and is provided with a plurality of mounting positions. Users can adjust the positions and mounting methods of each section according to needs, thereby further improving the adaptability and adjustment accuracy of the bow handle.
[0018] The beneficial effects listed above do not exhaust all advantages. Other potential beneficial effects and detailed technical implementation manners will be further disclosed in the embodiments or other description parts of this application. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] After reading the following specific implementation manners in conjunction with the accompanying drawings, various aspects of the present disclosure will be better understood. Sometimes, the positions, sizes, ranges, etc. of the structures shown in the drawings and the like do not represent the actual positions, sizes, ranges, etc. In the drawings:
[0020] Figure 1 is a schematic diagram of the overall structure of an embodiment disclosed in this application.
[0021] Figure 2 is an exploded view of the structure of an embodiment disclosed in this application. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] The present disclosure will be described below with reference to the accompanying drawings, in which several embodiments of the present disclosure are shown. However, it should be understood that the present disclosure can be presented in many different ways and is not limited to the embodiments described below; in fact, the embodiments described below are intended to make the disclosure of the present disclosure more complete and fully explain the protection scope of the present disclosure to those skilled in the art. It should also be understood that the embodiments disclosed herein can be combined in various ways to provide more additional embodiments.
[0023] It should be understood that in all the drawings, the same reference numerals represent the same elements. In the drawings, for clarity, the dimensions of some features may be deformed.
[0024] It should be understood that the terms used in the specification are only for describing specific embodiments and are not intended to limit the present disclosure. All terms used in the specification (including technical terms and scientific terms) have the meanings commonly understood by those skilled in the art unless otherwise defined. For the sake of simplicity and / or clarity, technologies, methods, and devices known to those of ordinary skill in the relevant fields may not be discussed in detail, but where appropriate, the said technologies, methods, and devices should be regarded as part of the authorized specification.
[0025] The singular forms "a", "the", and "said" used in the specification include the plural forms unless clearly specified. The terms "comprising", "including", and "containing" used in the specification indicate the presence of the claimed features, but do not exclude the presence of one or more other features. The phrase "and / or" used in the specification includes any and all combinations of one or more of the related listed items. EMBODIMENTS
[0026] Such as Figure 1 and 2As shown, this embodiment details a bow handle that can quickly adjust the mass center of gravity, and its design purpose is to improve the accuracy and stability of archery by flexibly adjusting the center of gravity position.
[0027] In terms of the specific structure, the bow handle includes a bow handle body 1 and an adjustment component 2 detachably installed on the bow handle body 1. The design of the adjustment component 2 allows the archer to quickly adjust the mass center of gravity of the bow handle according to different archery scenarios and personal preferences, including the adjustment of the center of gravity in the front-back and left-right directions.
[0028] Specifically, the bow handle body 1 is made of a lightweight and high-strength material, such as aluminum alloy or carbon fiber composite material, which combines lightweight and structural strength. In the design, multiple weight-reducing hollow positions are provided in the middle of the bow handle body 1. These hollow positions are precisely optimized to ensure that the strength and rigidity of the bow handle are not affected while reducing the weight. The edges of the hollow positions are finely processed to avoid accidental scratches when the archer operates.
[0029] The adjustment component 2 includes a bracket with several mounting positions and at least one detachable counterweight unit 3. The bracket is made of a high-strength ferromagnetic material to ensure sufficient rigidity and stability when carrying the counterweight unit.
[0030] More specifically, the structure of the bracket consists of an extension section 201, a front bridge bracket section 202, and a counterweight section 203 from top to bottom. In the above structure, the design of the extension section 201 and the counterweight section 203 allows the bracket to be fixed on the bow handle body 1 through high bolts, thus achieving a wide range of center of gravity adjustment.
[0031] Specifically, at least one connection hole is provided on the extension section 201. This connection hole can be aligned with the preset hole position on the bow handle body 1, and the upper end of the bracket is firmly fixed on the bow handle body 1 through bolts. Similarly, the counterweight section 203 is also fixed on the bow handle body 1 through bolts to firmly fix the lower end of the bracket on the bow handle body 1, completing the overall fixation of the bracket.
[0032] In addition, a threaded hole is specially designed on the extension section 201 of the bow handle body 1, and the main function of this threaded hole is to install an arrow rest.
[0033] It should be understood that the arrow rest is a key accessory on the bow handle body 1, usually located on the side of the bow handle body 1, used to support the arrow and ensure that the arrow maintains the correct angle and position during the launch process. Through this threaded hole, the archer can flexibly install or replace the arrow rest according to personal shooting habits and different archery scenarios. For example, when a higher arrow support position or different materials of arrow rests are needed, the archer can easily fix it on the threaded hole. The standard design of the threaded hole makes it compatible with most types of arrow rests on the market, providing great versatility and convenience.
[0034] After installing the arrow side cushion, the archer can better control the initial flight angle of the arrow, reduce the sway of the arrow during launch, and thus improve the accuracy of archery. In addition, the arrow side cushion can also play a certain protective role, preventing wear caused by direct contact between the arrow and the bow handle, and extending the service life of the bow handle and the arrow.
[0035] In the specific structure of the bracket, there are three hole slots 204 respectively on both sides of the counterweight section 203. These hole slots 204 serve as installation positions for fixing the counterweight unit 3.
[0036] The counterweight unit 3 is made of high-density materials such as iron, stainless steel, brass, aluminum alloy or tungsten alloy. Its structure includes a counterweight part 301 and a stud 302. The stud 302 is adapted to the thread of the hole slot 204. By rotating the stud 302, the counterweight unit 3 can be firmly installed on the bracket. This design enables the archer to easily adjust the quantity and position of the counterweight unit 3, thereby quickly changing the mass center of the bow handle and achieving precise balance adjustment.
[0037] In actual use, adjusting the center of gravity can not only change the up-and-down balance of the bow handle, but also support the balance adjustment in the left-right direction. For example, in some archery scenarios, such as in an environment with uneven wind speed, or when there are large differences in the individual habits of archers, the left-right balance of the center of gravity is particularly important. By installing the counterweight unit 3 on both sides of the bracket respectively, the archer can achieve the left-right center of gravity adjustment of the bow handle to ensure the overall balance of the bow handle. For example, the archer can install more counterweight units on one side of the bracket to offset the possible torque when the hand is biased to one side, thereby maintaining the stability of the bow handle.
[0038] In addition, as another possible technical solution: the bracket can also be made of ferromagnetic material, and the counterweight unit 3 adopts a magnetic column structure. When the magnetic column is inserted into the installation position of the bracket, the magnetic adsorption firmly fixes the counterweight unit on the bracket. This design not only maintains the stability of the counterweight unit, but also enables the archer to quickly adjust the center of gravity position without using tools, which is particularly suitable for archery scenarios that require frequent adjustment. The magnetic force of the magnetic column is precisely designed to ensure that the magnetic force can stably adsorb the counterweight unit in various situations. Even during high-intensity archery or strenuous exercise, the counterweight unit will not fall off due to vibration or external force, thus ensuring the safety and stability of the archery process.
[0039] During the implementation of this embodiment, by reasonably adjusting the positions of the bracket and the counterweight unit, the archer can maintain a high level of shooting performance in a complex outdoor environment, such as moving the center of gravity forward in strong wind conditions to improve stability, or adjusting the center of gravity during hunting to reduce the burden on the arm and improve aiming accuracy.
[0040] In summary, through comprehensive considerations in structural design, material selection, and function optimization, this embodiment has achieved a bow handle that can quickly adjust the mass center of gravity and is applicable to various complex archery scenarios. Its unique design not only improves the accuracy and stability of archery but also provides shooters with a more comfortable and flexible operation experience, enabling them to maintain the best shooting state in various challenges.
[0041] Although the exemplary embodiments of the present disclosure have been described, those skilled in the art should understand that various changes and modifications can be made to the exemplary embodiments of the present disclosure without departing from the spirit and scope of the present disclosure in essence. Therefore, all changes and modifications are included within the protection scope of the present disclosure defined by the claims. The present disclosure is defined by the appended claims, and equivalents of these claims are also included.
Claims
1. A bow handle capable of quickly adjusting the center of mass, characterized in that: The bow handle comprises: a bow handle body, and an adjustment component detachably mounted on the body. The adjustment component comprises a bracket with a plurality of mounting positions, and a counterweight unit detachably inserted into the mounting hole. The mass center of gravity of the bow handle is adjusted by adjusting the number and position of the counterweight unit.
2. A bow handle capable of quickly adjusting the center of mass as claimed in claim 1, characterized in that: The bracket is composed of an extension section, a front axle bracket section, and a counterweight section from top to bottom, wherein hole grooves serving as mounting positions are provided on both sides of the counterweight section; connecting holes are provided on the extension section and the matching section, and the connecting holes are detachably locked to the bow handle body by bolts.
3. A bow handle capable of rapidly adjusting the center of mass as claimed in claim 2, characterized in that: The extension has a threaded hole for mounting the arrow head pad.
4. A bow handle capable of rapidly adjusting the center of mass as claimed in claim 1, characterized in that: The mounting position is a threaded groove, the counterweight unit comprises a counterweight portion and a stud arranged on the counterweight portion, the bolt is fitted with the threaded groove, and the matching unit is detachably mounted on the bracket through threaded matching.
5. A bow handle capable of quickly adjusting the center of mass as claimed in claim 1, characterized in that: There are three mounting positions on both sides of the bracket.
6. A bow handle capable of rapidly adjusting the center of mass as claimed in claim 1, characterized in that: The bow handle is equipped with a hollow area to reduce weight.
7. A bow handle capable of rapidly adjusting the center of mass as claimed in claim 1, characterized in that: The bracket is a ferromagnetic bracket. Correspondingly, the matching unit has a counterweight portion and a magnetic column arranged on the counterweight portion. The magnetic column is inserted into the installation position and fixed to the bracket through magnetic force.