Modularized support for rifle sighting telescope
The modular bracket, designed with multi-directional three-dimensional expansion interfaces and 7075 aerospace aluminum, solves the problems of modular expansion, impact resistance, stability, and lightweighting of existing rifle scope brackets, enabling stable installation of various tactical accessories and improving user comfort.
Patent Information
- Application Number
- CN202520578810.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-03-28
AI Technical Summary
Existing rifle scope mounts are inadequate in terms of modular expansion capabilities, shock resistance and stability, lightweight design and ergonomics. They are also difficult to be compatible with various tactical accessories and are prone to loosening, which affects shooting accuracy and user comfort.
A modular bracket with multi-directional three-dimensional expansion interface is designed. It is made of 7075 aerospace aluminum and uses guide grooves and guide rails to slide together. Multi-directional installation is achieved by using multi-dimensional assembly surfaces and clamping holes. Combined with ring groove friction damping and oblique design, stability and lightweight are enhanced.
It achieves three-dimensional integration of various tactical accessories, improves shooting accuracy and user comfort, reduces weight and risk of loosening, and optimizes space utilization and shock resistance.
Smart Images

Figure CN223826897U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of firearm accessories technology, specifically to a modular bracket for a rifle scope. Background Technology
[0002] The rifle scope mount is a core component connecting the weapon rail and the optical sight. Its core function is to securely clamp the scope to maintain a zero position even under firing vibrations, thereby improving shooting accuracy. With the diversification of tactical accessories, modern users demand greater modularity and expandability from the mount, requiring compatibility with quick installation of auxiliary devices such as bubble sights and red dot sights. However, current commercially available products have significant shortcomings in structural design and performance optimization:
[0003] Traditional sights typically use a single horizontal mounting surface, lacking effective interfaces on the vertical side. This makes it difficult to integrate accessories such as laser pointers and miniature cameras, resulting in low space utilization. Although some improved sights achieve modularity by adding mounting holes, the redundant structure increases weight, contradicting users' demands for lightweight design. Regarding anti-deviation performance, mainstream products use 6061 aluminum alloy, which has low yield strength and is prone to reduced clamping force due to stress deformation after prolonged use. Furthermore, the exposed screw locking structure is prone to loosening under continuous firing vibrations and lacks cushioning design, increasing the risk of scope deviation and severely impacting reliability in high-precision shooting scenarios.
[0004] In addition, existing products have obvious shortcomings in ergonomic design: in pursuit of structural strength, most brackets adopt an all-metal enclosed design with no chamfering on the edges, which can easily scratch users during installation and debugging; commercially available modular brackets are generally designed to be thick and heavy to meet functional requirements, which can easily cause fatigue when holding and operating them for a long time.
[0005] In summary, existing scope mounts have technical bottlenecks in terms of expansion flexibility, impact resistance and stability, lightweight design and ergonomics, and an innovative design is urgently needed to systematically solve these problems. Utility Model Content
[0006] In view of this, this utility model proposes a modular support for rifle scopes, which can form a multi-directional three-dimensional expansion interface and support the free installation of accessories such as bubble sights and red dot sights in vertical, horizontal and tilt directions, so as to solve the problems of low utilization of the vertical surface and simple accessory layout of traditional supports.
[0007] To achieve the above objectives, the present invention adopts the following technical solution:
[0008] A modular support for a rifle scope includes: a lower frame, the lower part of which has a guide groove for sliding and locking with a pre-set guide rail of the rifle; the upper part of which is a lower semi-enclosing scope ring, which has a first vertical mounting surface; and an upper frame, the upper frame being an upper semi-enclosing scope ring, which has an upper horizontal mounting surface, a middle inclined mounting surface, and a second vertical mounting surface arranged sequentially from top to bottom; the two ends of the upper semi-enclosing scope ring are detachably connected to the two ends of the lower semi-enclosing scope ring, and the inner side of the upper semi-enclosing scope ring and the inner side of the lower semi-enclosing scope ring together form a clamping hole for fastening with the scope.
[0009] To better achieve the above technical solution, the upper horizontal assembly surface, the middle inclined assembly surface, the second vertical assembly surface, and the first vertical assembly surface each have two assembly screw holes and a straight groove.
[0010] Furthermore, the inner wall of the clamping hole is provided with multiple annular grooves spaced axially upwards.
[0011] Furthermore, the mating surfaces of the lower half of the surrounding mirror ring and the upper half of the surrounding mirror ring are obliquely intersecting the horizontal plane.
[0012] Furthermore, the angle between the mating surfaces of the lower and upper semi-enclosing mirror rings and the horizontal plane is 45°.
[0013] Furthermore, the two ends of the lower half of the surrounding mirror ring are respectively provided with screw holes, and the upper horizontal mounting surface and the second vertical mounting surface are respectively provided with countersunk holes coaxial with the corresponding screw holes. The upper half of the surrounding mirror ring is fixed to the lower half of the surrounding mirror ring by fastening screws that pass through the countersunk holes and are screwed into the screw holes.
[0014] Furthermore, the upper horizontal assembly surface and the second vertical assembly surface are each provided with three countersunk holes in parallel, and the screw holes are provided in a one-to-one correspondence with the countersunk holes.
[0015] Furthermore, a weight-reducing hole and / or a weight-reducing groove are provided in the middle of the lower frame.
[0016] Furthermore, a first guide bar is fixedly provided on one side of the guide groove, and a fixing block is detachably provided through the other side of the guide groove. The fixing block has a second guide bar on one side of the guide groove that is directly opposite the first guide bar.
[0017] Furthermore, the guide rail is a Picatinny guide rail, and the guide groove, the first guide bar, the fixing block, and the second guide bar together form a Picatinny guide groove that cooperates with the Picatinny guide rail.
[0018] The beneficial effects of this utility model are:
[0019] This utility model discloses a modular support for a rifle scope. The modular support is fixed to the guide rail by cooperating with the guide groove and the rifle scope body by cooperating with the clamping hole. By setting an upper horizontal mounting surface, a middle inclined mounting surface, a second vertical mounting surface in the upper half of the scope ring, and a first vertical mounting surface in the lower half of the scope ring, a multi-dimensional three-dimensional mounting surface is formed, realizing a multi-directional standardized expansion interface and solving the problem that accessories cannot be installed on the vertical surface of traditional supports. Attached Figure Description
[0020] Figure 1 This is a three-dimensional schematic diagram of a modular support for a rifle scope at one angle according to an embodiment of this utility model;
[0021] Figure 2 This is a three-dimensional schematic diagram of a modular support for a rifle scope from another angle, according to an embodiment of this utility model.
[0022] Figure 3 yes Figure 2 Exploded view;
[0023] Figure 4 yes Figure 2 A three-dimensional schematic diagram of the upper and middle frame 20;
[0024] Figure Labels
[0025] The components include: lower frame 10, guide groove 11, first guide bar 111, anti-reverse pin 112, lower half-enclosing mirror ring 12, first vertical mounting surface 121, mounting screw hole 122, straight groove 123, weight reduction hole 13, weight reduction groove 14, ring groove 15, upper half-enclosing mirror ring 20, upper horizontal mounting surface 201, middle inclined mounting surface 202, second vertical mounting surface 203, countersunk hole 204, fixing clamp 30, and second guide bar 301. Detailed Implementation
[0026] The technical solution of this utility model will be described in detail below with reference to the accompanying drawings and specific embodiments. Identical components are indicated by the same reference numerals.
[0027] Please see Figures 1 to 4 This utility model discloses a modular support for a rifle scope, including an upper frame and a lower frame 10.
[0028] like Figure 1As shown, the lower part of the lower frame 10 is provided with a guide groove 11, which is used to cooperate with the rifle's preset guide rail in a sliding and locking manner. The upper part of the lower frame 10 is a lower semi-enclosed scope ring 12, which has a first vertical mounting surface 121. The upper frame as a whole is an upper semi-enclosed scope ring 20, which has an upper horizontal mounting surface 201, a middle inclined mounting surface 202, and a second vertical mounting surface 203 arranged sequentially from top to bottom. The two ends of the upper semi-enclosed scope ring 20 are detachably connected to the two ends of the lower semi-enclosed scope ring 12, and the inner side of the upper semi-enclosed scope ring 20 and the inner side of the lower semi-enclosed scope ring 12 together form a clamping hole for fastening with the scope.
[0029] In this embodiment of the utility model, a modular support for a rifle scope is used. The modular support is fixed to the guide rail by the guide groove 11 engaging with the rifle's pre-set guide rail. The rifle scope is clamped onto the modular support by the clamping hole engaging with the scope body. A multi-dimensional, three-dimensional mounting surface is formed by the upper half of the scope ring 20 (horizontal mounting surface 201, middle inclined mounting surface 202, second vertical mounting surface 203) and the lower half of the scope ring 12 (first vertical mounting surface 121). This achieves a multi-directional standardized expansion interface, solving the problem of traditional supports being unable to install accessories on their vertical surfaces. For example, the upper horizontal mounting surface 201 can be used to mount a leveling device, the middle inclined mounting surface 202 is adapted to red dot sights at specific angles, and the second vertical mounting surface 203 and the first vertical mounting surface 121 support laser designators and other devices, achieving three-dimensional integration of tactical accessories and avoiding structural redundancy caused by adding auxiliary supports.
[0030] In the embodiments of this utility model, the upper horizontal mounting surface 201, the middle inclined mounting surface 202, the second vertical mounting surface 203, and the first vertical mounting surface 121 each have two mounting screw holes 122 and a straight groove 123. The mounting screw holes 122 and the straight groove 123 are standardized limiting mounting holes. Only accessories with corresponding features can be fitted and installed on the bracket. The standardized interface adopts a fault-proof design, and the straight groove structure can limit the rotational displacement of the accessories. With the double screw hole fixing, the stability of the peripheral installation is ensured.
[0031] In an embodiment of this utility model, a plurality of annular grooves 15 are provided axially at intervals on the inner wall of the clamping hole. A coil is installed in the annular groove 15. The annular groove 15 can increase the contact area and form a mechanical engagement. With the help of the coil, the anti-vibration performance is improved through the dual effects of friction damping and deformation buffering, thereby achieving resistance to the huge impact force generated during shooting.
[0032] In an embodiment of this utility model, the two ends of the lower half-enclosing mirror ring 12 are respectively provided with screw holes (not shown in the figure), and the upper horizontal mounting surface 201 and the second vertical mounting surface 203 are respectively provided with countersunk holes 204 coaxial with the corresponding screw holes. The upper half-enclosing mirror ring 20 is installed on the lower half-enclosing mirror ring 12 by fastening screws that pass through the countersunk holes 204 and are screwed into the screw holes.
[0033] Specifically, the upper horizontal mounting surface 201 and the second vertical mounting surface 203 are each provided with three countersunk holes 204 in parallel. The screw holes are provided one-to-one with the countersunk holes 204, and each countersunk hole 204 corresponds to a fastening screw. Therefore, the upper half of the mirror ring 20 and the lower half of the mirror ring 12 are connected by six fastening screws. The six screws form a symmetrical clamping force. The countersunk hole design avoids the screw heads from protruding and eliminates the risk of scratching.
[0034] In this embodiment of the invention, the mating surfaces of the lower half-enclosing lens ring 12 and the upper half-enclosing lens ring 20 are obliquely intersecting the horizontal plane. Specifically, the angle formed by the mating surfaces of the lower half-enclosing lens ring 12 and the upper half-enclosing lens ring 20 and the horizontal plane is 45°. Choosing a 45° oblique surface to split the components at a 45° angle balances the space utilization in both horizontal and vertical directions, maximizing the effective installation area of the two main mounting surfaces (horizontal and vertical). Simultaneously, the oblique surface, combined with the countersunk screw structure, reduces the overall thickness, lowers the bracket height, and optimizes the distribution of the firearm's center of gravity, thereby making it easier to utilize the upper horizontal mounting surface 201, the middle oblique mounting surface 202, and the second vertical mounting surface 203 to meet various user expansion and installation needs.
[0035] In other alternative embodiments, the angle formed between the mating surfaces of the lower half-enclosing mirror ring portion 12 and the upper half-enclosing mirror ring portion 20 and the horizontal plane can also be 30°, 60°, etc.
[0036] In the embodiments of this utility model, a weight-reducing hole 13 and a weight-reducing groove 14 are provided in the middle of the lower frame 10. Specifically, a weight-reducing hole 13 with a triangular cross section and strip-shaped weight-reducing grooves 14 located on both sides of the weight-reducing hole 13 are provided in the middle of the lower frame 10. Under the premise of ensuring structural strength, weight reduction is achieved through the weight-reducing hole and the weight-reducing groove.
[0037] In an embodiment of this utility model, a first guide bar 111 is fixedly provided on one side of the guide groove 11, and a fixing block 30 is detachably provided through the other side of the guide groove 11. The fixing block 30 has a second guide bar 301 on one side of the guide groove 11 that is directly opposite to the first guide bar 111.
[0038] Specifically, the lower part of the lower frame 10 needs to be equipped with a mounting hole on one side of the fixing clamp 30. The fixing clamp 30 passes through the mounting hole and is fixed to the lower part of the lower frame 10 by two fastening screws. The fixing clamp 30 adopts a through-type installation method, which can improve the installation accuracy of the bracket and the guide rail, while enhancing the clamping stability and effectively preventing loosening. The guide rail is a Picatinny guide rail. The guide groove 11, the first guide bar 111, the fixing clamp 30, and the second guide bar 301 together form a Picatinny guide groove that cooperates with the Picatinny guide rail. Two anti-recoil pins 112 are integrally provided at intervals along the length of the top surface of the guide groove 11. The double guide bar and the double anti-recoil pins 112 form a four-point contact with the Picatinny guide groove, which can effectively prevent the bracket from sliding longitudinally along the guide rail, thereby increasing the stability of the connection between the guide rail and the guide groove 11 and making it more resistant to recoil.
[0039] In the embodiments of this utility model, the upper frame and the lower frame 10 are processed using 7075 aviation aluminum material to improve precision and durability.
[0040] The technical solution of this utility model has been described in detail above with reference to specific embodiments. The specific embodiments described are used to help understand the concept of this utility model. Derivations and modifications made by those skilled in the art based on the specific embodiments of this utility model also fall within the protection scope of this utility model.
Claims
1. A modular bracket for a rifle scope, characterized in that, include: The lower frame (10) has a guide groove (11) at its lower part. The guide groove (11) is used to cooperate with the guide rail of the rifle in a sliding and locking manner. The upper part of the lower frame (10) is a lower semi-enclosed scope ring (12). The lower semi-enclosed scope ring (12) has a first vertical mounting surface (121). The upper frame is an upper half-enclosing scope ring (20). The upper half-enclosing scope ring (20) has an upper horizontal mounting surface (201), a middle inclined mounting surface (202) and a second vertical mounting surface (203) arranged sequentially from top to bottom. The two ends of the upper half-enclosing scope ring (20) are detachably connected to the two ends of the lower half-enclosing scope ring (12). The inner side of the upper half-enclosing scope ring (20) and the inner side of the lower half-enclosing scope ring (12) together form a clamping hole for fastening with the scope.
2. The modular bracket for a rifle scope according to claim 1, characterized in that, The upper horizontal assembly surface (201), the middle inclined assembly surface (202), the second vertical assembly surface (203), and the first vertical assembly surface (121) each have two assembly screw holes (122) and a straight groove (123).
3. A modular mount for a rifle scope according to claim 1, characterized in that, The inner wall of the clamping hole is provided with multiple annular grooves (15) spaced upwards along the axis.
4. A modular mount for a rifle scope according to claim 1, characterized in that, The mating surfaces of the lower half-enclosing mirror ring (12) and the upper half-enclosing mirror ring (20) are obliquely intersecting the horizontal plane.
5. A modular mount for a rifle scope according to claim 4, characterized in that, The angle between the mating surfaces of the lower half-enclosing mirror ring (12) and the upper half-enclosing mirror ring (20) and the horizontal plane is 45°.
6. A modular mount for a rifle scope according to claim 1, characterized in that, The lower half of the mirror ring (12) has screw holes vertically provided on both ends. The upper horizontal mounting surface (201) and the second vertical mounting surface (203) are respectively provided with countersunk holes (204) coaxial with the corresponding screw holes. The upper half of the mirror ring (20) is fixed to the lower half of the mirror ring (12) by fastening screws that pass through the countersunk holes (204) and are screwed into the screw holes.
7. A modular mount for a rifle scope according to claim 6, characterized in that, The upper horizontal assembly surface (201) and the second vertical assembly surface (203) are each provided with three countersunk holes (204) in parallel, and the screw holes are provided in a one-to-one correspondence with the countersunk holes (204).
8. A modular support for a rifle scope according to claim 1, characterized in that, The lower frame (10) has a weight-reducing hole (13) and / or a weight-reducing groove (14) in the middle.
9. A modular mount for a rifle scope according to claim 1, characterized in that, A first guide bar (111) is fixedly provided on one side of the guide groove (11), and a fixing block (30) is detachably provided through the other side of the guide groove (11). The fixing block (30) has a second guide bar (301) on one side of the guide groove (11) that is directly opposite to the first guide bar (111).
10. A modular mount for a rifle scope according to claim 9, characterized in that, The guide rail is a Picatinny guide rail, and the guide groove (11), the first guide bar (111), the fixing block (30) and the second guide bar (301) together form a Picatinny guide groove that cooperates with the Picatinny guide rail.