Universal supporting mechanism
11874080 ยท 2024-01-16
Inventors
Cpc classification
Y10T403/32631
GENERAL 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
Y10T403/32311
GENERAL 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
F41A23/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/106
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16M11/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C11/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A universal supporting mechanism includes a universal connecting component, a connecting base, and a bottom base. The universal connecting component includes a rotating portion and a connecting portion, the rotating portion is connected with the connecting portion. A cavity is defined in the connecting base, the rotating portion is located in the cavity, an opening is defined on a top of the connecting base, the opening is communicated with the cavity, the connecting portion extends outwards from the opening, the bottom base is connected with the connecting base, a reset component is disposed between the bottom base and the connecting portion. The rotating portion of the universal connecting component is disposed in the connecting base, and a reset mechanism is provided, so that the universal connecting component always has a trend of moving towards the opening.
Claims
1. A universal supporting mechanism, comprising: a universal connecting component; a connecting base; and a bottom base; wherein the universal connecting component comprises a rotating portion and a connecting portion, the rotating portion is connected with the connecting portion; a cavity is defined in the connecting base, the rotating portion is located in the cavity, an opening is defined on a top of the connecting base, the opening is communicated with the cavity, the connecting portion extends outwards from the opening, the bottom base is connected with the connecting base, a reset component is disposed between the bottom base and the connecting portion, and the reset component enables the rotating portion to always have a trend of moving towards the opening; wherein a tray is disposed between the rotating portion and the reset component, the tray comprises a lifting portion and a supporting portion, the lifting portion is connected with the supporting portion, the lifting portion lifts the rotating portion, a concave surface is defined on the lifting portion for matching with a spherical surface of the rotating portion, and the supporting portion is slidably connected with the bottom base along an axial direction of the cavity; Wherein supporting blocks are formed on an outer surface of the supporting portion, the supporting blocks are integrally formed with the supporting portion, a guiding groove is defined on the supporting portion, a guiding block is disposed on the bottom base and the guiding block slides in the guiding groove along the axial direction of the cavity to change a distance between the bottom base and the tray; wherein the universal supporting mechanism further comprises an adjustment mechanism, the adjustment mechanism is threadedly connected to the bottom base, wherein the adjustment mechanism comprises a supporting end, and a bottom surface of the supporting portion is connected to the supporting end.
2. The universal supporting mechanism according to claim 1, wherein the bottom base is fixedly connected to the connecting base.
3. The universal supporting mechanism according to claim 1, wherein the bottom base is detachably connected to the connecting base.
4. The universal supporting mechanism according to claim 3, wherein the bottom base is threadedly connected to the connecting base in a first thread direction.
5. The universal supporting mechanism according to claim 1, wherein the adjustment mechanism is threadedly connected to the bottom base in a second thread direction.
6. The universal supporting mechanism according to claim 5, wherein the first thread direction is opposite to the second thread direction.
7. The universal supporting mechanism according to claim 1, wherein the bottom base comprises an abutting surface, a first end of the reset component abuts against the abutting surface, and a second end of the reset component abuts against a bottom surface of the lifting portion.
8. The universal supporting mechanism according to claim 1, wherein the connecting base comprises a connecting position for connecting a supporting rod.
9. The universal supporting mechanism according to claim 1, wherein the connecting portion is connected to a lifting platform.
10. The universal supporting mechanism according to claim 1, wherein a maximum width of the opening is equal to or slight greater than a maximum diameter of the connecting portion.
11. A gunstock, comprising: the universal supporting mechanism according to claim 1.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
(12) The present disclosure is described in further detail below with reference to the accompanying drawings.
(13) As shown in
(14) In one embodiment, the top of the connecting base 100 is a hemispherical or partial spherical surface, the opening 101 is an arc-shaped opening circumferentially defined on the spherical surface, an arc length of the arc-shaped opening determines a size of the opening 101 and a rotation angle of the universal connecting component 200 at the opening 101. For example, when a sphere center of the rotating portion 210 coincides with a sphere center of the hemispherical surface and the arc length of the opening 101 is one third of a circumference, a maximum rotation angle of the universal connecting component 200 at the opening 101 is 120 degrees. In other embodiments, the top of the connecting base 100 may be in other shapes, such as a plane. The opening 101 may be an elongated hole on the plane, such as a rectangular hole or a long circular hole, accordingly, a contact area between the universal connecting component 200 and an inner wall of the top of the connecting base 100 becomes smaller. In one embodiment, a maximum width of the opening 101 is equal to or slightly greater than a maximum diameter of the connecting portion 220, which ensures that the connecting portion 220 may only swing back and forth in the opening in a vertical plane where the opening 101 is located and may not move away from the vertical plane.
(15) In one embodiment, the bottom base 500 is threadedly connected with the connecting base 100. As shown in
(16) In one embodiment, the bottom base 500 is fixedly connected with the connecting base 100 through a connection method, such as interference fit or other methods which connects the bottom base 500 and the connecting base 100 in a undetachable way unless detaching by violence. In one embodiment, the bottom base 500 and the connecting base are integrally formed.
(17) In one embodiment, a tray 300 is disposed in the connecting base 100. The tray includes a lifting portion 310 and a supporting portion 320. In one embodiment, a concave surface 301 is defined on the lifting portion 310 for matching with a spherical surface of the rotating portion 210. In some embodiments, as shown in
(18) In some embodiments, as shown in
(19) The supporting portion 320 is matched and connected with the bottom base 500. In one embodiment, a guiding block 501 is disposed on the bottom base 500, a guiding groove 321 is defined on the supporting part 320, the guiding groove 321 cooperates with the guiding block 501, the guiding block 501 slides back and forth in the guiding groove 321 along the axial direction of the cavity 102 to change a distance between the bottom base 500 and the tray 300. In another embodiment, a position of the guiding block 501 is interchanged with a position of the guiding groove 321. In one embodiment, a first end of the reset component 400 is sleeved on the guiding block 501 and abuts against an abutting surface 504 of the bottom base 500, a second end of the reset component 400 is sleeved on the guiding groove 321 and abuts against a bottom surface of lifting portion 310. When the reset component 400 is a compression spring, a maximum distance between a lowest point of the bottom surface of the lifting portion 310 and the abutting surface 504 of the bottom base 500 is less than a natural length of the compression spring, so that the compression spring is ensured to be in a compressed state at any position. supporting blocks 323 are formed on an outer surface of the supporting portion 320, and the supporting blocks 323 are integrally formed with the supporting portion 320.
(20) During assembly, the universal connecting component 200 is inserted into the cavity 102 through the bottom of the connecting base 100 until the connecting portion 220 of the universal connecting component extends out of the opening 101, an upper portion of the rotating portion 210 (or the first rotating surface 211) abuts against the inner wall of the top of the connecting base 100, a lower portion of the rotating portion 210 (or the second rotating surface 212) abuts against the lifting portion 310 of the tray 300. The first end of the reset component 400 and the second end of the reset component 400 respectively abut against a bottom surface of the abutting surface 504 and a bottom surface of the lifting portion 310, the bottom base 500 is fixedly connected or detachably connected to the bottom of the connecting base 100. When the bottom base 500 and the bottom of the connecting base 100 are integrally formed, other openings (not shown in the drawings) are defined on the cavity 102, the universal connecting component 200, the tray 300, and the reset component 400 may enter the cavity 102 through the other openings.
(21) In some embodiments, the bottom base 500 is connected with an adjustment mechanism 600 for adjusting a distance between the tray 300 and the bottom base 500. As shown in
(22) In some embodiment, the universal mechanism does not include an additional adjustment mechanism, as shown in
(23) In one embodiment, the second outer thread 602 is located on an outer portion of the adjustment mechanism 600, a first end, inserting into the cavity 102, of the adjustment mechanism 600 is the supporting end, and a second end of the adjustment mechanism 600 is a controlling end 603. The supporting end 601 moves towards the opening 101 or away from the opening 101. When the reset component 400 is insufficient to maintain the trend of moving of the tray 300 due to a long-term use or breakdown, the adjustment mechanism 600 may also be screwed into the cavity 102 for a longer distance to provide compensation.
(24) In one embodiment, a gunstock 1 is provided with the universal supporting mechanism of the present disclosure, when the gunstock is in a condition of rest, under action of the reset component 400, the upper portion of the rotating portion 210 (or the first rotating surface 211) of the universal supporting component 200 abuts against the inner wall of the top of the connecting base 100, the lower portion of the rotating portion 210 (or the second rotating surface 212) contacts the lifting portion 310 of the tray 300, the reset component 400 is in the compressed state, and the supporting end 601 of the adjustment mechanism 600 is located in the blind hole 322 at the bottom of the supporting portion 320. When the gunstock is in use, the gun barrel is placed on the lifting platform 800, a certain downward pressure is applied to the universal connecting component 200, the upper portion of the rotating portion 210 (or the first rotating surface 211) may keep contacting the inner wall of the top of the connecting base 100, or may be separated with the inner wall of the top of the connecting base 100 due to too large pressure applied by the gun barrel, at this time, the adjustment mechanism 600 needs to be screwed inward a certain distance for counteracting the pressure applied by the gun barrel, so that the rotating portion 210 of the universal connecting component 200 is ensured to keep in a state equivalent to that in a condition of rest, so as to ensure stability in a use process.
(25) When a position angle of the gun barrel needs to be adjusted, the connecting portion 220 swings in the opening 101 to adjust a vertical position angle of the gun barrel, the rotating portion 210 rotates in the cavity 102 to adjust a horizontal position angle of the gun barrel, the connecting portion 220 cooperates with the rotating portion 210 to adjust a three-dimensional position angle of the gun barrel.