Lift buffering structure
11603826 ยท 2023-03-14
Assignee
Inventors
Cpc classification
F16B7/1463
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B7/1409
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03G1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16M13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B7/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A lift buffering structure includes a hollow column-shaped housing, a holding seat fixedly connected to an inner wall surface of the hollow column-shaped housing, an inner stem disposed in the hollow column-shaped housing and slidably extended through the holding seat, an elastic element having an end connected to the inner stem and another end to the holding seat to limit a travel stroke of the inner stem, an abutting unit disposed at one side of the holding seat opposite to the elastic element and having a width downward reduced gradually along a height direction of the hollow column-shaped housing, and an anti-slip unit connected to a lower end of the inner stem and located between the abutting unit and the inner wall surface of the hollow column-shaped housing. The lift buffering structure having the above structure can overcome a lot of problems in the conventional gas and oil struts.
Claims
1. A lift buffering structure, comprising: a hollow column-shaped housing; a holding seat being immovably connected to an inner wall surface of the hollow column-shaped housing; an inner stem being disposed in the hollow column-shaped housing and slidably extended through the holding seat; an elastic element having an end connected to the inner stem and another end connected to the holding seat to limit a travel stroke of the inner stem; an abutting unit being disposed at one side of the holding seat opposite to the elastic element and having a width downward reduced gradually along a height direction of the hollow column-shaped housing; and an anti-slip unit, wherein the anti-slip unit includes a roller holder and two rollers, the roller holder fixedly connected to a lower end of the inner stem, the two rollers have a rotational shaft rotatably connected to the roller holder respectively, and the two rollers are respectively slidably along the axial direction of the inner stem and located between the abutting unit and the inner wall surface of the hollow column-shaped housing, and one lateral side of each rollers keeps contacting with the inner wall surface, and other lateral side of each rollers is gradually separated from the abutting unit or gradually brought to contact with the abutting unit.
2. The lift buffering structure according to claim 1, wherein surfaces of the abutting unit defining the gradually reduced width of the abutting unit are slant flat surfaces.
3. The lift buffering structure according to claim 1, wherein the rotational surface of the roller has a knurled pattern formed thereon.
4. The lift buffering structure according to claim 1, further comprising another abutting unit, and the two rollers are formed on each of two end portions with a rotational surface; and the two rotational surfaces on the roller being located corresponding to the two abutting units.
5. The lift buffering structure according to claim 1, wherein surfaces of the abutting unit defining the gradually reduced width of the abutting unit are curved surfaces.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(8) To facilitate understanding of the objects, characteristics and effects of this present disclosure, embodiments together with the attached drawings for the detailed description of the present disclosure are provided. It is noted the present disclosure can be implemented or applied in other embodiments, and many changes and modifications in the described embodiments can be carried out without departing from the spirit of the disclosure, and it is also understood that the preferred embodiments are only illustrative and not intended to limit the present disclosure in any way.
(9) As shown in
(10) The hollow column-shaped housing 1 looks like a column and defines a height direction L. In the first embodiment, the hollow column-shaped housing 1 is square in cross section. However, it is noted the present disclosure is not particularly limited thereto. In other operable embodiments, the hollow column-shaped housing 1 can be a hollow column with round or any other polygonal cross section, or can even be a conical column or a pyramid column having a size-variable cross-sectional area.
(11) The holding seat 2 is immovably connected to an inner wall surface 11 of the hollow column-shaped housing 1. More specifically, the holding seat 2 can be integrally formed with the hollow column-shaped housing 1 or be fixedly screwed to the inner wall surface 11 or in other possible means without being limited to any particular manner.
(12) The inner stem 3 is disposed in the hollow column-shaped housing 1 and is slidably extended through the holding seat 2. The inner stem 3 can be round, oblong or other polygonal in cross section without being particularly limited.
(13) The elastic element 4 has an end connected to the inner stem 3 and another end connected to the holding seat 2, so as to limit a travel stroke of the inner stem 3. In other words, when the inner stem 3 moves downward in the hollow column-shaped housing 1 along the height direction L, the elastic element 4 is compressed. Please refer to
(14) The abutting unit 5 is located at one side of the holding seat 2 opposite to the elastic element 4, and has a width that is downward reduced gradually along the height direction L of the hollow column-shaped housing 1. In other words, a distance between the abutting unit 5 and the inner wall surface 11 of the hollow column-shaped housing 1 is variable to gradually reduce toward the holding seat 2.
(15) The anti-slip unit 6 is connected to the inner stem 3 and is located between the abutting unit 5 and the inner wall surface 11 of the hollow column-shaped housing 1.
(16) When the elastic element 4 is in a non-compressed state, the anti-slip unit 6 is pressed at two lateral sides against the inner wall surface 11 and the abutting unit 5. When the inner stem 3 is moved downward along the height direction L of the hollow column-shaped housing 1, the anti-slip unit 6 has one lateral side keeping contact with the inner wall surface 11, and a frictional force between the anti-slip unit 6 and the inner wall surface 11 enables the inner stem 3 to lower stably. Meanwhile, the other lateral side of the anti-slip unit 6 is separated from the abutting unit 5 without contacting with the latter.
(17) As shown in
(18) In summary, the lift buffering structure 100 according to the present disclosure can be used to replace the conventional gas strut and oil strut. The elastic force of the elastic element 4 and the frictional force between the anti-slip unit 6 and the inner wall surface 11 and the abutting unit 5 to together achieve buffering and damping effects. The lift buffering structure 100 of the present disclosure has the advantages of durable for use, free of the problem of air leakage or oil leakage, even better operating feel, and reduced manufacturing cost.
(19) Further, as shown in
(20) Further, as shown in
(21) As shown in
(22) As shown in
(23) Please refer to
(24) Please refer to
(25) Please refer to
(26) While the present disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the present disclosure set forth in the claims.