The present disclosure relates to the technical field of gun sights, in particular to an adjustment mechanism and a red dot sight thereof.
In order to improve shooting accuracy and adapt to different shooting occasions or targets, it is necessary to adjust the emission angle of the LED light source of the inner red dot sight. Generally, a method of cooperating an adjustment screw with a reset spring is employed to implement the adjustment of the pitch angle or the left-and-right angle of the emission angle of the LED light source, especially the independent operation of the upper-and-lower adjustment mechanism. Inevitably, there is mutual influence, to affect the adjustment of the pitch angle when adjusting left and right angles, thereby leading to the low precision and instability and reducing the good user experience. For example, Patent No. 2016209805049, titled “LIGHT SOURCE ADJUSTING MECHANISM FOR INNER-RED-DOT AIMING DEVICE”, discloses each of the adjustment of the pitch angle and the adjustment of the left-and-right angle depends on an independently operating mechanism, specifically through a vertical adjustment assembly and a horizontal adjustment assembly, each of which includes an adjustment screw (for example, a vertical adjustment screw and a horizontal adjustment screw) for realizing position adjustment, an adjustment reset spiral spring.
An object of the present disclosure is to reduce the number of adjustment mechanisms while ensuring the adjustments stability of the LED light source, thereby simplifying the product design structure and reducing the cost, and also facilitating to use.
In order to achieve the above object, the present disclosure provides an adjustment mechanism includes a left adjustment screw, a stop block threadedly connected with the left adjustment screw, and a right adjustment screw. The adjustment mechanism further includes a sliding block provided with a transverse sliding groove at a side surface of a front end of the sliding block, a transverse mounting block having an LED chip module mounting seat mounted at a top portion of a rear end of the mounting sliding block, and a wedge-shaped block. A right end portion of the transverse mounting block is provided with a limiting pin and a spiral reset spring sleeved on the limiting pin.
The transverse mounting block is assembled in the transverse sliding groove, and the spiral reset spring is placed between the limiting pin and a right stopping plate of the transverse sliding groove.
A left end of the transverse mounting block extends out of the transverse sliding groove and abuts against the stop block. A bottom surface of the sliding block is provided with an inclined surface portion sliding relatively parallel to an inclined surface of the wedge-shaped block. The right adjustment screw is threadedly connected with a vertical side surface of the wedge-shaped block to push and pull the wedge-shaped block. Atop portion of the sliding block is provided with a mounting groove for mounting the LED chip module mounting seat, and two spring mounting holes, which are uniformly arranged, are provided on a top surface of the sliding block on either side of the mounting groove, and each of the two mounting holes is configured to assemble a vertical spiral spring resetting upward and downward. An extending surface of the mounting groove at a front end thereof is communicated with the transverse sliding groove.
A first spring ejector pin placed below the LED chip module mounting seat is arranged between a rear side surface of the transverse mounting block and a side wall of the transverse sliding groove, and a first steel ball of the first spring ejector pin abuts against the rear side surface of the transverse mounting block.
Two second spring ejector pins evenly distributed transversely are provided between a bottom surface of the transverse mounting block and a bottom surface of the transverse sliding groove, and a second steel ball of the second spring ejector pin abuts against the bottom surface of the transverse sliding groove.
Also, the present disclosure provides an inner red dot sight with the adjustment mechanism, including a base. A rear end of the base is provided with a mounting cavity of the adjustment mechanism. A rear end of the mounting cavity is provided with an L-shaped fixing seat, and a front end portion of the seat portion of the L-shaped fixing seat is provided with a connecting lug to be threadedly connected with a bottom surface of the base through a screw. The adjustment mechanism is placed on the seat portion.
At least four third spring ejector pins uniformly arranged are provided between a front side surface of a vertical stopping plate portion of the L-shaped fixing seat and a rear side surface of the sliding block, and a third steel ball of the third spring ejector pin abuts against the rear side of the sliding block.
The third spring ejector pin consists of a tubular stopping cap, a steel ball having an outer diameter larger than an inner diameter of a port at one end of the tubular stopping cap and placed inside the port, and a spiral spring having one end abutting against the steel ball and the other end extending out of the other end of the tubular stopping cap. A part of the steel ball extends beyond the tubular stopping cap.
Each of an eyepiece and an objective lens of the inner red dot sight is provided with a protective cover assembly including a window frame element with a protective glass, one end of the window frame element is provided with two connecting hole elements opposite to each other, the vertical portion of a T-shaped connector is placed between the two connecting hole elements, a perforation in the vertical portion and a perforation in the connecting hole element are coaxial with each other and have the same pore diameter, and a connecting rotating shaft penetrates into the perforations on the connecting hole element and the vertical portion. A torsion spring is provided at either end of the connecting rotating shaft, so that the window frame element rotates to a direction away from the eyepiece or the objective lens relative to the vertical portion.
The straight portion of the T-shaped connector is provided with a screw hole at a position placed below the connecting hole element.
The present disclosure has the advantages as follows: the adjustment mechanisms for the pitch angle and the left-and-right position are assembled with each other, and a fine adjustment of the pitch angle and the left-and-right angle of the light emission angle of the LED chip can be realized simultaneously only through the reserved horizontal adjustment mechanism by means of the translation of the wedge-shaped block and simultaneously moving upward or downward, the adjustment mechanism of the product can be simplified, the production cost can be reduced, and it is convenient to use.
The present disclosure will be described in detail with the accompanying drawings and embodiments.
In order to ensure adjustment stability of a LED light source, reduce the number of adjustment mechanisms, simplify the product design structure, reduce the cost, and facilitate for users to use, this embodiment provides an adjustment mechanism as shown in
The right adjustment screw 3 is threadedly connected with a vertical side surface of the wedge-shaped block 8 to push and pull the wedge-shaped block 8. That is, the right adjustment screw 3 is generally fixedly mounted on a housing of the inner red dot sight, and when the right adjustment screw 3 rotates clockwise and counterclockwise, the wedge-shaped block 8 may be pushed or pulled leftward or rightward. This is a basic principle of turbo-worm.
In order to realize the fine synchronous adjustment of the pitch angle and the left-and-right angle of the emission light of the LED chip (LED lamp), in this embodiment, a mounting groove 17 for mounting the LED chip module mounting seat 6 as shown in
In order to eliminate an adjustment gap and ensure stability of the adjustment process, in this embodiment, a first spring ejector pin 14 placed below the LED chip module mounting seat 6 is arranged between a rear side surface of the transverse mounting block 7 and a side wall of the transverse sliding groove 4, and a first steel ball of the first spring ejector pin 14 abuts against the rear side surface of the transverse mounting block 7. At the same time, two second spring ejector pins 15, which are uniformly distributed transversely, are provided between a bottom surface of the transverse mounting block 7 and a bottom surface of the transverse sliding groove 4, and a second steel ball of the second spring ejector pin 15 abuts against the bottom surface of the transverse sliding groove 4.
As above described, in this present disclosure, the transverse mounting block 7 provided with a LED lamp is assembled in the sliding block 5, and the LED chip module mounting seat 6 integrally connected with the top portion of the rear end of the transverse mounting block 7 is assembled in the mounting groove 17 at the top portion of the sliding block 5, so that the synchronous fine adjustment of the up-and-down position and the left-and-right position of the LED lamp can be realized under the cooperation of the left adjustment screw 1, the stop block 2, the spiral reset spring 10, the right adjustment screw 3, the wedge-shaped block 8 and the vertical spiral spring 13, and the first spring ejector pin 14, the second spring ejector pin 15 and the third spring ejector pin 24 are provided to minimize or even eliminate the adjustment gap, ensure the stability of adjustment, and the structure becomes compact to reduce a volume of the inner red dot sight.
In order to opening the protective cover for protecting an eyepiece or an objective lens quickly, each of the eyepiece and the objective lens of the inner red dot sight provided by this embodiment is provided with a protective cover assembly as shown in
Number | Date | Country | Kind |
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202011064636.4 | Sep 2020 | CN | national |
The present application is a national phase application under 35 U.S.C. 371 of International Application No. PCT/CN2021/109585 filed on Jul. 30, 2021, the entire contents of which are incorporated herein by reference.
Filing Document | Filing Date | Country | Kind |
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PCT/CN2021/109585 | 7/30/2021 | WO |