WO2024093769A1 - 一种变分划内红点与倍率镜的组合瞄准镜 - Google Patents

一种变分划内红点与倍率镜的组合瞄准镜 Download PDF

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Publication number
WO2024093769A1
WO2024093769A1 PCT/CN2023/126661 CN2023126661W WO2024093769A1 WO 2024093769 A1 WO2024093769 A1 WO 2024093769A1 CN 2023126661 W CN2023126661 W CN 2023126661W WO 2024093769 A1 WO2024093769 A1 WO 2024093769A1
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Prior art keywords
sight
red dot
bracket
magnifier
combined
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PCT/CN2023/126661
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English (en)
French (fr)
Inventor
孙文辉
卢思航
汪东
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西安华科光电有限公司
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Publication of WO2024093769A1 publication Critical patent/WO2024093769A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41GWEAPON SIGHTS; AIMING
    • F41G1/00Sighting devices
    • F41G1/06Rearsights
    • F41G1/14Rearsights with lens
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F41WEAPONS
    • F41GWEAPON SIGHTS; AIMING
    • F41G11/00Details of sighting or aiming apparatus; Accessories

Definitions

  • the utility model belongs to the technical field of variable magnification sights, and in particular relates to a combined sight with a variable scale red dot and a magnification mirror.
  • scopes are generally divided into fixed-power scopes and variable-power scopes.
  • the structure of its optical path is very simple, divided into: objective lens tube group, image transfer lens group, reticle, eyepiece tube group, these parts.
  • objective lens tube group image transfer lens group
  • reticle reticle
  • eyepiece tube group these parts.
  • ballistic adjustment mechanism and the diopter adjustment part there are no other movable mechanisms in the entire scope body. Fewer moving parts means increased component reliability.
  • Some fixed-power rifle scopes simply glue the parts that will not move permanently when leaving the factory. In this way, during shooting, no matter how much vibration it is, it is only the above-mentioned limited parts that will be affected.
  • the structure of the optical path is relatively complex, and is divided into the following parts: objective lens barrel group, image transfer lens group, zoom lens group, zoom ring, reticle, and eyepiece barrel group.
  • the zoom lens group and the zoom ring are also one of the mechanisms that are often in motion.
  • the large number of moving parts in the zoom scope means that the reliability of the parts is reduced.
  • it is generally adjusted by moving the gun, and its adjustment accuracy is poor.
  • variable magnification scopes mainly include fast-aiming scopes (such as Vortex Razor GEN2, etc.) and fast-variable magnification scopes (such as ELCAN SPECTERDR, etc.). These scopes generally change magnification through hand wheels or levers.
  • the scale In order to use the internal red dot sight, the scale can be simple and clear when used without a high-magnification scope in series, and the scale elements are detailed when used with a high-magnification scope in series.
  • the utility model discloses a combined sight with a variable scale inner red dot and a magnifying mirror, comprising a bracket, a positioning groove is arranged on the front upper part of the bracket, and the inner red dot sight is arranged in the positioning groove; a magnifying mirror flipping mechanism is arranged on the rear upper part of the bracket, and the magnifying mirror flipping mechanism is movably connected with the magnifying mirror.
  • a positioning protrusion is provided in the middle of the positioning groove, and a contact point is provided behind the positioning protrusion.
  • a magnetically controlled Hall switch is arranged above the rear of the bracket and to the right of the magnification mirror flipping mechanism; and a magnet corresponding to the magnetically controlled Hall switch is arranged below the magnification mirror.
  • the magnification mirror flip mechanism includes a connecting plate, a rotating sleeve integrally arranged with the connecting plate, and a spring sheet arranged below the connecting plate, one end of the spring sheet is fixed in the mounting groove above the bracket through a spring sheet pressure plate, and the other end of the spring sheet is a free end; the rotating sleeve is movably connected to the bracket through a rotating shaft.
  • the outer wall of the rotating sleeve is provided with a plurality of ridges and grooves along the length direction, the ridges and grooves are arranged at intervals along the circumference of the rotating sleeve, and the ridges and grooves abut against the free end of the spring sheet.
  • a cushion block is arranged above the connecting plate.
  • a locking block is provided on the right side of the bracket, and the locking block is fixed by a locking nut and a locking screw.
  • the combined sight of the variable scale red dot and the magnification mirror provided by the utility model connects the internal chip of the red dot sight with the magnetically controlled Hall switch through the contact point, and then changes the red dot sight by raising and lowering the rear magnification mirror.
  • the reticle is used to adapt to shooting needs at different distances. When the magnification mirror is flipped up, the magnet in the magnification mirror flipping mechanism does not contact the magnetic control switch.
  • the reticle pattern in the inner red dot is the dot-circle fast aiming mode; when the magnification mirror is flipped back, the magnet contacts the magnetic control switch, and the reticle pattern in the inner red dot becomes the sniper mode; this combination sight has the advantages of a reflex sight and a telescopic sight: when only the red dot sight is used, there is no exit pupil distance, small parallax, large field of view, simple and clear reticle, and quick aiming; when the combination sight is used, the reticle elements are detailed and complete, and long-range aiming is more accurate.
  • Figure 1 is a schematic diagram of the structure of a combined sight with a red dot within a variable scale and a magnification mirror.
  • Figure 2 is a schematic diagram of the aiming field of view of a non-magnification scope.
  • Figure 3 is a schematic diagram of the aiming field of view with a magnification mirror.
  • FIG. 4 is a schematic diagram of the structure of the magnification mirror flip mechanism assembly.
  • bracket 101. mounting slot; 102. rotating shaft; 103. locking block; 104. locking nut; 105. locking screw; 2. positioning slot; 3. magnification mirror flipping mechanism; 301. connecting plate; 302. spring clip pressure plate; 303. spring clip; 304. rotating sleeve; 305. ridge; 306. groove; 4. inner red dot sight; 5. magnification mirror; 6. positioning convex shoot; 7. contact; 8. magnetically controlled Hall switch; 9. magnet.
  • first and second are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as “first” and “second” may explicitly or implicitly include one or more of the features; in the description of the present utility model, unless otherwise specified, "plurality” means two or more.
  • the present embodiment provides a combination sight with a variable scale inner red dot and a magnifying mirror as shown in FIG1, comprising a bracket 1, wherein a positioning groove 2 is provided on the upper front portion of the bracket 1, and an inner red dot sight 4 is provided in the positioning groove 2, that is, a base matching the positioning groove 2 is provided below the inner red dot sight 4, and the inner red dot sight 4 is fixedly connected to the positioning groove 2; a magnifying mirror flipping mechanism 3 is provided on the upper rear portion of the bracket 1, and the setting direction of the magnifying mirror flipping mechanism 3 is the same as the setting direction of the positioning groove 2, and the magnifying mirror flipping mechanism 3 is movably connected to the magnifying mirror 5, and the magnifying mirror 5 can be flipped and adjusted along the left and right directions of the bracket 1.
  • the magnifying mirror flipping mechanism 3 can drive the magnifying mirror 5 to rotate, so that the magnifying mirror 5 is in the unused state shown in FIG1, or the magnifying mirror 5 is in the unused state shown in FIG1. It is in use with the internal red dot sight 4.
  • a positioning protrusion 6 is provided in the middle of the positioning groove 2, and a contact 7 is provided behind the positioning protrusion 6.
  • the positioning protrusion 6 limits and fixes the inner red dot sight 4.
  • the chip in the inner red dot sight 4 will be connected to the magnetically controlled Hall switch 8 through the contact 7, and the division pattern will be controlled through it.
  • a magnetically controlled Hall switch 8 is provided on the upper rear portion of the bracket 1 and to the right of the magnifying mirror flipping mechanism 3; a magnet 9 corresponding to the magnetically controlled Hall switch 8 is provided below the magnifying mirror 5.
  • the Hall switch 8 acts with the magnet 9 to detect the position state of the magnifying mirror 5 and switch the graticule pattern according to its state position.
  • the magnification mirror flip mechanism 3 includes a connecting plate 301, a rotating sleeve 304 integrally arranged with the connecting plate 301, and a spring piece 303 arranged below the connecting plate 301, one end of the spring piece 303 is fixed in the mounting groove 101 above the bracket 1 through a spring piece pressure plate 302, the spring piece pressure plate 302 is fixedly connected to the bracket 1 through a mounting screw, the spring piece pressure plate 302 is arranged above the spring piece 303 to fix the spring piece 303, the other end of the spring piece 303 is a free end, and the free end does not contact the bracket 1, the rotating sleeve 304 is movably connected to the bracket 1 through the rotating shaft 102, the rotating shaft 102 passes through the mounting hole of the bracket 1 and the rotating sleeve 304, and the rotating sleeve 304 is movably connected to the bracket 1 through the rotating shaft 102.
  • the outer wall of the rotating sleeve 304 is provided with a plurality of ridges 305 and grooves 306 along the length direction, and the ridges 305 and grooves 306 are arranged at intervals along the circumference of the rotating sleeve 304, and the ridges 305 and grooves 306 abut against the free end of the spring piece 303 to fix the rotation angle of the rotating sleeve 304, so that the rotating sleeve 304 can be in different rotation angles, that is, the magnification lens 5 is in a state of different rotation angles.
  • a pad 501 is provided above the connecting plate 301, and a mounting screw of the magnifying lens 5 The magnifying lens 5 is fixed after passing through the connecting plate 301 and the cushion block 501 from bottom to top.
  • a locking block 103 is also provided on the right side of the bracket 1, and the locking block 103 is fixed by a locking nut 104 and a locking screw 105.
  • the locking nut 104 and the locking screw 105 can be used to adjust the tightness of the bracket 1 and the locking block 103.
  • the combined sight of the variable scale red dot and the magnifying mirror changes the scale plate pattern of the red dot sight by raising and lowering the rear magnifying mirror to adapt to shooting needs at different distances.
  • the magnifying mirror is flipped open, the magnet 9 in the magnifying mirror flipping mechanism 3 does not contact the magnetic switch 8.
  • the scale pattern in the red dot is in the dot circle fast aiming mode, as shown in Figure 2; when the magnifying mirror is flipped back, the magnet 9 contacts the magnetic switch 8, and the scale pattern in the red dot becomes the sniper mode, as shown in Figure 3; the combined sight has the advantages of a reflex sight and a telescopic sight: when only the red dot sight is used, there is no exit pupil distance, small parallax, large field of view, simple and clear scale, and rapid aiming; when the combined sight is used, the elements of the scale plate are detailed and complete, and long-range aiming is more accurate.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Telescopes (AREA)

Abstract

本实用新型涉及一种变分划内红点与倍率镜的组合瞄准镜,包括支架,所述支架的前部上方设置有定位槽,所述定位槽内设置有内红点瞄准镜;所述支架的后部上方设置有倍率镜翻转机构,所述倍率镜翻转机构活动连接有倍率镜;该变分划内红点与倍率镜的组合瞄准镜,当倍率镜翻开时,倍率镜翻转机构中的磁铁不接触磁控开关,此时内红点中的分划图案为点圈速瞄模式;当倍率镜翻回时,磁铁接触磁控开关,内红点中的分划图案变成狙击模式;该组合瞄准镜具有反射式瞄准镜和望远式瞄准镜的优点:在仅使用红点瞄准镜的状态下,无出瞳距离、视差小、视野大、分划简单明了、瞄准迅速;在使用组合瞄准镜的状态下,分划板诸元齐全,远程瞄准更加精确。

Description

一种变分划内红点与倍率镜的组合瞄准镜 技术领域
本实用新型属于转变倍瞄准镜技术领域,具体涉及一种变分划内红点与倍率镜的组合瞄准镜。
背景技术
目前,瞄准镜一般分为定倍镜和变倍镜。其中,对于定倍镜,其光路的结构很简单,分为:物镜筒组,转像镜组,分划板,目镜筒组,这几个部分。整个镜体中除了弹道调节机构和屈光度调节部分外,没有其它的可以活动的机构。活动部件少,就意味着部件可靠性增加。一些定倍枪瞄在出厂时,干脆就将不会活动的地方用胶水永久性的粘死。这样在射击中,无论如何震动对其有影响的就是上述有限的几个部分。
对于变倍镜,其光路的结构较为复杂,分为:物镜筒组,转像镜组,变倍镜组,变倍环,分划板,目镜筒组,这几个部分。整个镜体中除了弹道调节机构和屈光度调节部分外,变倍镜组和变倍环也是常处于活动的机构之一。但变倍镜的活动部件多,就意味着部件可靠性的减少,同时传统在进行瞄准镜的适应风力等因素影响时一般通过枪支的移动进行调节,其调节精度较差。
现有的变倍瞄准镜主要有速瞄镜(如Vortex Razor GEN2等)、快速变倍镜(如ELCAN SPECTERDR等),这些瞄准镜一般通过手轮或拨杆进行变倍。
实用新型内容
为了使用内红点瞄准镜时能兼顾在不串联高倍率镜下使用时分划简单明了和在串联高倍率镜下使用时分划诸元详尽。
本实用新型所述的一种变分划内红点与倍率镜的组合瞄准镜,包括支架,所述支架的前部上方设置有定位槽,所述定位槽内设置有内红点瞄准镜;所述支架的后部上方设置有倍率镜翻转机构,所述倍率镜翻转机构活动连接有倍率镜。
进一步的,所述定位槽中部设置有定位凸笋,所述定位凸笋后方设置有触点。
进一步的,所述支架的后部上方、倍率镜翻转机构的右方设置有磁控霍尔开关;所述倍率镜下方设置有与磁控霍尔开关对应的磁铁。
进一步的,所述倍率镜翻转机构包括连接板,与连接板一体设置的旋转套,设置于连接板下方的弹片,所述弹片的一端通过弹片压板固定于支架上方的安装槽内,所述弹片的另一端为自由端;所述旋转套通过旋转轴与支架活动连接。
进一步的,所述旋转套的外壁沿长度方向设置有多条凸棱和凹槽,所述凸棱和凹槽沿旋转套的周向间隔设置,并且所述凸棱和凹槽与弹片的自由端抵触。
进一步的,所述连接板上方设置有垫块。
进一步的,所述支架的右侧面还设置有锁紧块,所述锁紧块通过锁紧螺母、锁紧螺杆进行固定。
本实用新型的有益效果:本实用新型提供的这种变分划内红点与倍率镜的组合瞄准镜,通过触点将内红点瞄准镜内部芯片与磁控霍尔开关相连接,进而通过升起和落下后方的倍率镜改变内红点瞄准镜的 分划板来适应不同距离下的射击需求,当倍率镜翻开时,倍率镜翻转机构中的磁铁不接触磁控开关,此时内红点中的分划图案为点圈速瞄模式;当倍率镜翻回时,磁铁接触磁控开关,内红点中的分划图案变成狙击模式;该组合瞄准镜具有反射式瞄准镜和望远式瞄准镜的优点:在仅使用红点瞄准镜的状态下,无出瞳距离、视差小、视野大、分划简单明了、瞄准迅速;在使用组合瞄准镜的状态下,分划板诸元详尽、齐全,远程瞄准更加精确。
以下将结合实施例对本实用新型做进一步详细说明。
附图说明
图1为变分划内红点与倍率镜的组合瞄准镜结构示意图。
图2为无倍率镜瞄准视野示意图。
图3为带倍率镜瞄准视野示意图。
图4为倍率镜翻转机构组件结构示意图。
图中:1、支架;101、安装槽;102、旋转轴;103、锁紧块;104、锁紧螺母;105、锁紧螺杆;2、定位槽;3、倍率镜翻转机构;301、连接板;302、弹片压板;303、弹片;304、旋转套;305、凸棱;306、凹槽;4、内红点瞄准镜;5、倍率镜;6、定位凸笋;7、触点;8、磁控霍尔开关;9、磁铁。
具体实施方式
为进一步阐述本实用新型达成预定目的所采取的技术手段及功效,以下结合附图及实施例对本实用新型的具体实施方式、结构特征及其功效,详细说明如下。
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技 术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其它实施例,都属于本实用新型保护的范围。
在本实用新型的描述中,需要理解的是,术语“中心”、“上”、“下”、“前”、“后”、“左”、“右”、“垂直”、“水平”、“对齐”、“重叠”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本实用新型和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本实用新型的限制。
术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征;在本实用新型的描述中,除非另有说明,“多个”的含义是两个或两个以上。
实施例
本实施例提供了一种如图1所示的变分划内红点与倍率镜的组合瞄准镜,包括支架1,所述支架1的前部上方设置有定位槽2,所述定位槽2内设置有内红点瞄准镜4,也就是说,内红点瞄准镜4下方设置有与定位槽2吻合的底座,内红点瞄准镜4与定位槽2固定连接;所述支架1的后部上方设置有倍率镜翻转机构3,倍率镜翻转机构3设置方向与定位槽2的设置方向相同,所述倍率镜翻转机构3活动连接有倍率镜5,倍率镜5能够沿着支架1的左右方向进行翻转调节。具体的说,倍率镜翻转机构3能够带动倍率镜5转动,使得倍率镜5处于图1所示的未使用状态,或者倍率镜5 处于与内红点瞄准镜4配合的使用状态。
进一步的,所述定位槽2中部设置有定位凸笋6,所述定位凸笋6后方设置有触点7,定位凸笋6对内红点瞄准镜4进行限位与固定的作用,内红点瞄准镜4中的芯片将通过触点7与磁控霍尔开关8相连接,并通过其控制分划图案。
进一步的,所述支架1的后部上方、倍率镜翻转机构3的右方设置有磁控霍尔开关8;所述倍率镜5下方设置有与磁控霍尔开关8对应的磁铁9。霍尔开关8与磁铁9作用,检测倍率镜5的位置状态,并根据其状态位置切换分划板图案。
进一步的,如图4所示,所述倍率镜翻转机构3包括连接板301,与连接板301一体设置的旋转套304,设置于连接板301下方的弹片303,所述弹片303的一端通过弹片压板302固定于支架1上方的安装槽101内,弹片压板302通过安装螺钉与支架1固定连接,弹片压板302设置于弹片303上方,对弹片303进行固定,所述弹片303的另一端为自由端,该自由端不与支架1接触,所述旋转套304通过旋转轴102与支架1活动连接,旋转轴102穿过支架1与旋转套304的安装孔,将旋转套304通过旋转轴102与支架1活动连接。
进一步的,所述旋转套304的外壁沿长度方向设置有多条凸棱305和凹槽306,所述凸棱305和凹槽306沿旋转套304的周向间隔设置,并且所述凸棱305和凹槽306与弹片303的自由端抵触,对旋转套304进行旋转角度的固定,使得旋转套304能够处于不同的旋转角度,也就是倍率镜5处于不同旋转角度的状态。
进一步的,所述连接板301上方设置有垫块501,倍率镜5的安装螺钉 自下往上穿过连接板301、垫块501后将倍率镜5固定。
进一步的,所述支架1的右侧面还设置有锁紧块103,所述锁紧块103通过锁紧螺母104、锁紧螺杆105进行固定,通过锁紧螺母104、锁紧螺杆105可以实现支架1与锁紧块103松紧的调节。
综上所述,该变分划内红点与倍率镜的组合瞄准镜,通过升起和落下后方的倍率镜改变内红点瞄准镜的分划板图案来适应不同距离下的射击需求,当倍率镜翻开时,倍率镜翻转机构3中的磁铁9不接触磁控开关8,此时内红点中的分划图案为点圈速瞄模式,如图2所示;当倍率镜翻回时,磁铁9接触磁控开关8,内红点中的分划图案变成狙击模式,如图3所示;该组合瞄准镜具有反射式瞄准镜和望远式瞄准镜的优点:在仅使用红点瞄准镜的状态下,无出瞳距离、视差小、视野大、分划简单明了、瞄准迅速;在使用组合瞄准镜的状态下,分划板诸元详尽、齐全,远程瞄准更加精确。
以上内容是结合具体的优选实施方式对本实用新型所作的进一步详细说明,不能认定本实用新型的具体实施只局限于这些说明。对于本实用新型所属技术领域的普通技术人员来说,在不脱离本实用新型构思的前提下,还可以做出若干简单推演或替换,都应当视为属于本实用新型的保护范围。

Claims (7)

  1. 一种变分划内红点与倍率镜的组合瞄准镜,包括支架(1),其特征在于:所述支架(1)的前部上方设置有定位槽(2),所述定位槽(2)内设置有内红点瞄准镜(4);所述支架(1)的后部上方设置有倍率镜翻转机构(3),所述倍率镜翻转机构(3)活动连接有倍率镜(5)。
  2. 如权利要求1所述的变分划内红点与倍率镜的组合瞄准镜,其特征在于:所述定位槽(2)中部设置有定位凸笋(6),所述定位凸笋(6)后方设置有触点(7)。
  3. 如权利要求1所述的变分划内红点与倍率镜的组合瞄准镜,其特征在于:所述支架(1)的后部上方、倍率镜翻转机构(3)的右方设置有磁控霍尔开关(8);所述倍率镜(5)下方设置有与磁控霍尔开关(8)对应的磁铁(9)。
  4. 如权利要求1所述的变分划内红点与倍率镜的组合瞄准镜,其特征在于:所述倍率镜翻转机构(3)包括连接板(301),与连接板(301)一体设置的旋转套(304),设置于连接板(301)下方的弹片(303),所述弹片(303)的一端通过弹片压板(302)固定于支架(1)上方的安装槽(101)内,所述弹片(303)的另一端为自由端;所述旋转套(304)通过旋转轴(102)与支架(1)活动连接。
  5. 如权利要求4所述的变分划内红点与倍率镜的组合瞄准镜,其特征在于:所述旋转套(304)的外壁沿长度方向设置有多条凸棱(305)和凹槽(306),所述凸棱(305)和凹槽(306)沿旋转套(304)的周向间隔设置,并且所述凸棱(305)和凹槽(306)与弹片(303)的自由端抵触。
  6. 如权利要求4所述的变分划内红点与倍率镜的组合瞄准镜,其特征在于:所述连接板(301)上方设置有垫块(501)。
  7. 如权利要求1所述的变分划内红点与倍率镜的组合瞄准镜,其特征在于:所述支架(1)的右侧面还设置有锁紧块(103),所述锁紧块(103)通过锁紧螺母(104)、锁紧螺杆(105)进行固定。
PCT/CN2023/126661 2022-11-05 2023-10-26 一种变分划内红点与倍率镜的组合瞄准镜 WO2024093769A1 (zh)

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