CN219265123U - Novel gun aiming adjuster - Google Patents

Novel gun aiming adjuster Download PDF

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Publication number
CN219265123U
CN219265123U CN202320208254.7U CN202320208254U CN219265123U CN 219265123 U CN219265123 U CN 219265123U CN 202320208254 U CN202320208254 U CN 202320208254U CN 219265123 U CN219265123 U CN 219265123U
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piece
adjusting
reset
adjusting piece
gun sight
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CN202320208254.7U
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Chinese (zh)
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陈盛
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Individual
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Individual
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
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    • Y02T10/70Energy storage systems for electromobility, e.g. batteries

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Abstract

The utility model discloses a novel gun aiming adjuster, which comprises a main body, wherein a horizontal adjusting mechanism, an adjusting piece connected with the horizontal adjusting mechanism and a connecting piece connected with the horizontal adjusting mechanism are arranged on the main body, the adjusting piece comprises 2 or more bayonets, and the connecting piece is movably connected with the adjusting piece through a reset mechanism. According to the gun aiming adjuster, the bayonet direction of the adjusting piece is not required to be disassembled or replaced in a complex disassembly mode, the adjusting piece is pulled to rotate for a certain angle and then is loosened to automatically reset, and the adjusting piece and the connecting piece form stable connection, so that time and labor are saved; the multi-bayonet adjusting piece can be suitable for sighting devices of more types.

Description

Novel gun aiming adjuster
Technical Field
The utility model relates to the field of gun auxiliary tools, in particular to an adjuster of a gun sight.
Background
A mechanical sight (typically a hole sight) on the pistol is connected to the pistol barrel by a rail. Since the mechanical sight is displaceable along the guide rail, a gun sight adjuster is required to adjust the relative position of the mechanical sight and the barrel. The gun sight regulator in the prior art is mostly fuzzy regulation, has poor precision, can be used for regulating the sighting device of the same type, and cannot be widely applied to sighting devices of different types.
The chinese patent publication No. CN214250744U discloses a gun sight adjuster, wherein the adjusting member for adjusting the sight has at least 2 bayonets, which can be adapted to different types and sizes of sights, and provides a detachable connection technical solution, such as screw connection or knob adjustment; there is still a need to remove the adjustment member from the connector and reinstall it, which is often inconvenient when it is desired to continuously adjust different sights.
Disclosure of Invention
The technical problem to be solved by the utility model is to provide the gun aiming adjuster which does not need to detach the adjusting piece from the connecting piece, and is more quickly suitable for continuous adjustment of aiming devices of different types.
The technical scheme adopted for solving the technical problems is as follows: the utility model provides a novel rifle aiming adjuster, includes the main part, be provided with in the main part level adjustment mechanism and with the regulating part that level adjustment mechanism is connected, and with the connecting piece that level adjustment mechanism is connected, the regulating part includes 2 or more bayonet sockets, the connecting piece with the regulating part passes through canceling release mechanical system swing joint.
Further, the adjusting piece is rotatably connected with the connecting piece in a vertical plane.
Further, a positioning mechanism is arranged between the adjusting piece and the connecting piece.
Further, the positioning mechanism comprises a first positioning mechanism comprising a groove and a convex part matched with the groove.
Further, the positioning mechanism comprises second positioning mechanisms, and the number of the second positioning mechanisms is larger than or equal to the number of bayonets contained in the adjusting piece.
Further, the second positioning mechanism comprises a protruding block and a positioning hole matched with the protruding block.
Further, the reset mechanism is connected with the connecting piece, and the reset mechanism is rotationally connected with the adjusting piece in a vertical plane.
Further, the reset mechanism comprises a connecting part and a reset piece, a first blocking part is arranged between the adjusting piece and the reset mechanism, the first blocking part prevents the reset piece from being separated from the adjusting piece, and the reset piece is always in a compressed state.
Further, the adjusting piece is provided with a connecting position for installing the reset mechanism, the connecting position is provided with a second blocking part, and the reset piece is positioned between the first blocking part and the second blocking part.
Further, the body is slidably coupled to the connector.
Compared with the prior art, the utility model has the advantages that the bayonet direction of the adjusting piece is not required to be disassembled or replaced in a complex disassembly mode, the adjusting piece is pulled to rotate for a certain angle and then is released to automatically reset, and stable connection is formed with the connecting piece, so that the time and the labor are saved; the multi-bayonet adjusting piece can be suitable for sighting devices of more types.
Drawings
FIG. 1 is a schematic diagram of a gun sight adjuster according to the present utility model;
FIG. 2 is a cross-sectional view taken along line A-A' of FIG. 1;
FIG. 3 is an enlarged view of a portion of FIG. 2;
FIG. 4 is a schematic view of the exploded structure of the adjusting member and the connecting member of the present utility model;
fig. 5A and 5B are schematic structural views of 2 different embodiments of the adjusting member according to the present utility model.
Reference numerals illustrate:
100-main body, 110-vertical adjusting mechanism, 101-guide rail;
200-a base, 210-a horizontal positioning mechanism and 201-a mounting position;
300-adjusting piece, 310-connecting position, 311-second blocking part, 320-positioning hole, 330-groove, 301A-first bayonet, 301B-second bayonet, 301C-third bayonet, 301D-fourth bayonet;
400-horizontal adjusting mechanism, 410-screw rod;
500-connecting pieces, 510-guide blocks, 520-connecting seats, 530-bumps, 501-internal threads, 511-gaskets;
600-reset mechanism, 610-first stop, 620-connection, 630-reset.
Description of the embodiments
The utility model is described in further detail below with reference to the embodiments of the drawings.
Referring to fig. 1-5B. The gun sight adjuster of the present utility model includes a main body 100 and a base 200 movably coupled to the main body 100, and in one embodiment, the main body 100 and the base 200 are coupled by a vertical adjustment mechanism 110, and the vertical adjustment mechanism 110 includes a first knob and a first adjustment screw coupled to the first knob. The base 200 has a mounting location 201 for the barrel and its sight, a horizontal positioning mechanism 210 is provided around the mounting location 201, the horizontal positioning mechanism 210 gripping the barrel from at least one side of the barrel or from both sides of the barrel and holding the barrel stable within the mounting location 201.
The main body 100 is provided with a horizontal adjusting mechanism 400 and an adjusting member 300 connected to the horizontal adjusting mechanism 400, the adjusting member 300 having a bayonet for catching an upper portion of the sight, the horizontal adjusting mechanism 400 for adjusting a position of the bayonet in a horizontal direction, thereby calibrating the sight. In one embodiment, the horizontal adjustment mechanism 400 includes a handle and a screw 410 coupled to the handle, the screw 410 being rotatably coupled to the main body 100, and in one embodiment, the screw 410 passes through both sidewalls of the main body 100 one after another to be rotatably coupled to the main body 100. The connector 500 has an internal thread 501 which is threadedly coupled to the screw 410. To ensure stability of the link 500 as it translates axially along the screw 410, the body 100 has a guide rail 101, and the link 500 has a guide block 510, the guide block 510 sliding back and forth along the guide rail 101 without disengaging from the guide rail 101. In another embodiment, the guide block and rail positions may be interchanged. In one embodiment, a spacer 511 having a smooth surface is provided between the guide block 510 and the guide rail 101 to reduce resistance when sliding between the guide block 510 and the guide rail 101.
The connecting piece 500 is movably connected with the adjusting piece 300 through a reset mechanism 600, wherein the adjusting piece 300 can realize at least 180-degree relative rotation relative to the connecting piece 500 in a vertical plane. In one embodiment, the adjuster 300 is free to rotate in a vertical plane relative to the connector 500. In one embodiment, the connecting member 500 has a connecting seat 520, the reset mechanism 600 has a first blocking portion 610 and a connecting portion 620 connected to each other, and a reset member 630, the first blocking portion 610 is movably connected to the adjusting member 300, and the first blocking portion 610 makes the reset mechanism 600 not separate from the adjusting member 300, so that the adjusting member 300 can freely rotate relative to the connecting seat 520 when different bayonets need to be switched. The connection 620 is detachably or fixedly connected to the connection holder 520, such as a threaded connection, a rivet connection, a weld connection, an interference fit connection, etc. The adjuster 300 has a connection location 310, the connection location 310 being used to mount the reset mechanism 600. In the embodiment shown in fig. 2 and 3, the connection portion 310 is a through hole penetrating the adjusting member 300, and the inner wall of the through hole is provided with a second blocking portion 311, and in one embodiment, the second blocking portion 311 is a bump, a flange, or any other structure capable of preventing the reset member 630 from being separated from the through hole.
In one embodiment, the reset element 630 is a reset spring, one end of which abuts against the first blocking portion 610, and the other end abuts against the second blocking portion 311 of the adjusting element 300. In one embodiment, the first blocking portion 610 is a separate blocking ring fixed at the opening of the connection site 310 by a screw, the threaded portion of which serves as the connection portion 620, for example, the bottom surface of the nut and the top surface of the connection seat 520 sandwich the blocking ring to be fixed; in another embodiment, the first stop 610 is a nut or a portion of an annular collar of a nut. In another embodiment, the first blocking portion 610 may also be a part of the adjusting member 300, so long as it can block the reset member 630 from being separated from the connecting position 310, for example, the first blocking portion 610 may be a radial protrusion that is located on a side of the connecting position 310 away from the connecting member 500 and is open, and the radial protrusion may be continuous or discontinuous, but can each block the reset member 630 from being separated from the connecting position 310. In other embodiments, the first blocking portion 610 may also be located inside the connection bit 310. For another example, in one embodiment, the connection portion 620 may be a pin, and the clip spring disposed in the annular groove at one end of the pin may serve as the first blocking portion 610; on the basis of the embodiment, an annular groove for matching and installing the snap spring can be formed on the side wall of the connecting position 310, so that the first blocking part 610 is positioned inside the connecting position 310.
In one embodiment, the return spring is always in compression. In another embodiment, the return spring is compressed only after the adjustment member 300 is pulled out of the connector 500.
In one embodiment, the adjusting member 300 has a groove 330, as shown in fig. 4, the opening width of the groove 330 is the same or substantially the same as the height of the connecting member 500 in the vertical direction, so that one side of the connecting member 500 near the adjusting member 300 can be snapped into the groove 330, or one side of the connecting member 500 near the adjusting member 300 has a protrusion that can be snapped into the groove 330, and the cooperation between the groove 330 and one side of the connecting member 500 or the protrusion on one side constitutes a first positioning mechanism, which makes the adjusting member 300 unable to rotate in the vertical plane relative to the connecting member 500. The groove 330 forms a half-wrap on one side of the connector 500, and increases the contact area between the whole of the adjusting member 300 and the connector 500, so that the cooperation between the two members is more stable. In another embodiment, the slot is located on the connector 500, and the width of the adjusting member 300 at the side near the connector 500 is equivalent to the opening width of the slot, or the adjusting member 300 has a protrusion matching with the slot at the side near the connector 500, so that the slot located on the connector 500 forms a half-wrap with the protrusion at one side or side of the adjusting member 300.
In one embodiment, the surface of the connecting member 500 adjacent to the adjusting member 300 has a protrusion 530, and the adjusting member 300 has a positioning hole 320 matching with the protrusion 530, which may be a blind hole or a through hole, and in the embodiment shown in fig. 3, the positioning hole 320 is a through hole. The bump 530 and the positioning hole 320 form a second positioning mechanism. The shape of the projection 530 is not limited to a cylinder, but may be a prism or any other shape that can be inserted into the positioning hole 320 to form a stable fit, and the prism is less prone to unnecessary rotation than a cylinder. In some embodiments, the tab and the locating hole may be interchanged, i.e., the tab is located on the adjuster 300 and the locating hole is located on the connector 500.
The adjusting member 300 has 2 or more bayonets, for example, a first bayonet 301A and a second bayonet 301B shown in fig. 4, a first bayonet 301A, a second bayonet 301B, a third bayonet 301C and a fourth bayonet 301D shown in fig. 5A, a first bayonet 301A, a second bayonet 301B and a third bayonet 301C shown in fig. 5B, and the like, and the number of bayonets of the adjusting member 300 can be determined according to actual needs. Accordingly, the number of second positioning means should be at least the same as, or greater than, the number of bayonets to ensure that each bayonet can be positioned to an opening down position for adjustment of the sight. In one embodiment, each second positioning means is shared by every 2 adjacent bayonets, or each second positioning means is located between every two adjacent bayonets. These second positioning mechanisms should be axisymmetric or centrosymmetrically distributed so that the adjusting member 300 is stably engaged with the connecting member 500.
Taking the adjusting member 300 with 2 different bayonets up and down as shown in fig. 1-4 as an example, the initial state is that the second bayonet 301B is located above the sight, when the adjusting member 300 needs to be replaced by the first bayonet 301A, the adjusting member 300 is pulled out horizontally, the resetting member 630 of the resetting mechanism 600 is compressed, the adjusting member 300 rotates 180 ° in the vertical plane relative to the combination of the connecting portion 620 and the connecting seat 520, the first bayonet 301A rotates to the required position, the adjusting member 300 is released, the resetting mechanism 600 automatically pulls back the adjusting member 300, and the first positioning mechanism and/or the second positioning mechanism enable the adjusting member 300 and the connecting member 500 to be stably connected. The gun barrel is fixed through the vertical adjusting mechanism 110 and the horizontal positioning mechanism 210, the sight is clamped into the first bayonet 301A, the handle of the horizontal adjusting mechanism 400 is rotated, the screw 410 is driven to rotate, and the connecting piece 500 moves horizontally along with the handle, so that the first bayonet 301A of the adjusting piece 300 is driven to move horizontally until the sight is calibrated.

Claims (10)

1. The utility model provides a novel rifle sighting regulator, includes the main part, be provided with in the main part level adjustment mechanism and with the regulating part that level adjustment mechanism is connected, and with the connecting piece that level adjustment mechanism is connected, its characterized in that: the adjusting piece comprises 2 or more bayonets, and the connecting piece is movably connected with the adjusting piece through a reset mechanism.
2. The novel gun sight adjuster according to claim 1, wherein: the adjusting piece is rotationally connected with the connecting piece in a vertical plane.
3. The novel gun sight adjuster according to claim 1, wherein: and a positioning mechanism is arranged between the adjusting piece and the connecting piece.
4. A novel gun sight adjuster according to claim 3, characterized in that: the positioning mechanism comprises a first positioning mechanism which comprises a groove and a convex part matched with the groove.
5. A novel gun sight adjuster according to claim 3, characterized in that: the positioning mechanism comprises second positioning mechanisms, and the number of the second positioning mechanisms is larger than or equal to the number of bayonets contained in the adjusting piece.
6. The novel gun sight adjuster according to claim 5, wherein: the second positioning mechanism comprises a protruding block and a positioning hole matched with the protruding block.
7. The novel gun sight adjuster according to any one of claims 1-6, wherein: the reset mechanism is connected with the connecting piece, and the reset mechanism is rotationally connected with the adjusting piece in a vertical plane.
8. The novel gun sight adjuster according to claim 7, wherein: the reset mechanism comprises a connecting part and a reset piece, a first blocking part is arranged between the adjusting piece and the reset mechanism, the first blocking part prevents the reset piece from being separated from the adjusting piece, and the reset piece is always in a compressed state.
9. The novel gun sight adjuster of claim 8, wherein: the adjusting piece is provided with a connecting position for installing the reset mechanism, the connecting position is provided with a second blocking part, and the reset piece is positioned between the first blocking part and the second blocking part.
10. The novel gun sight adjuster according to any one of claims 1-6, wherein: the main body is in sliding connection with the connecting piece.
CN202320208254.7U 2023-02-10 2023-02-10 Novel gun aiming adjuster Active CN219265123U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320208254.7U CN219265123U (en) 2023-02-10 2023-02-10 Novel gun aiming adjuster

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320208254.7U CN219265123U (en) 2023-02-10 2023-02-10 Novel gun aiming adjuster

Publications (1)

Publication Number Publication Date
CN219265123U true CN219265123U (en) 2023-06-27

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ID=86866865

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320208254.7U Active CN219265123U (en) 2023-02-10 2023-02-10 Novel gun aiming adjuster

Country Status (1)

Country Link
CN (1) CN219265123U (en)

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