CN218761116U - Bidirectional buffering elastic support - Google Patents

Bidirectional buffering elastic support Download PDF

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Publication number
CN218761116U
CN218761116U CN202222620031.XU CN202222620031U CN218761116U CN 218761116 U CN218761116 U CN 218761116U CN 202222620031 U CN202222620031 U CN 202222620031U CN 218761116 U CN218761116 U CN 218761116U
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China
Prior art keywords
support
elastomer
directional
elastic body
locking nut
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CN202222620031.XU
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Chinese (zh)
Inventor
汪伟峰
朱卫锋
唐佳栋
庞行行
余坚聪
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Zhejiang Jinggong New Energy Equipment Co ltd
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Zhejiang Jinggong Precision Manufacturing Co ltd
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Priority to CN202222620031.XU priority Critical patent/CN218761116U/en
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Abstract

The utility model discloses a two-way buffering elastic support, including fixed overcoat, activity inner support post, adjustable landing leg, operating handle, the elastomer, lock nut, spherical hinge support, the clamp plate, the transition bottom plate, adopt two-way elastomer buffering, the manual adjustment height, universal ball pivot adaptation unbalance loading, structural design is reasonable ingenious, compact structure, high durability and convenient operation, two-way bearing capacity is strong, flexible compensation volume is big, be applicable to and need two-way bearing, the initial impact is little, the big occasion of axial compensation volume, especially, there is great drawing and pressing instantaneous load and will prevent the instantaneous high stress fracture's of junction place again, higher using value has.

Description

Bidirectional buffering elastic support
Technical Field
The utility model belongs to the technical field of equipment load structural design, specifically be an elastic support.
Background
The equipment bearing structure is used for bearing, supporting and connecting equipment, is widely applied to industrial equipment, reduces the connecting contact surface, is easy to adjust and saves materials.
Most of the existing equipment bearing structures have the problems of small bearing capacity, poor impact resistance, incapability of adapting to displacement, large volume and the like, and influence on application of the existing equipment bearing structures.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome above-mentioned not enough, provide a structural design is reasonable ingenious, compact structure, bearing capacity are big, can two-way bear, and impact resistance is good, can adapt to the two-way buffering elastic support of displacement.
The utility model provides a following technical scheme: the utility model provides a two-way buffering elastic support, includes the transition bottom plate, there is spherical hinge support through clamp plate fixed mounting on the transition bottom plate, be connected with adjustable landing leg on the spherical hinge support, adjustable landing leg is inside to be connected through screw thread and movable inner support post, the movable inner support post is equipped with fixed overcoat outward, and its upper portion is connected with the elastomer, the elastomer includes elastomer, lower elastomer, fixed overcoat internally mounted has lock nut, realizes the two-way buffering elastic support to movable inner support post through last elastomer, lower elastomer and lock nut.
In a further technical scheme, the upper elastic body and the lower elastic body are springs, disc springs or elastic rubber.
According to the technical scheme, the locking nut comprises an upper locking nut and a lower locking nut, the upper elastic body limits the position through the upper locking nut, and the lower elastic body limits the position through the lower locking nut.
According to a further technical scheme, an operating handle is installed on the outer side of the adjustable supporting leg.
In a further technical scheme, the operating handle is of a split structure.
According to the technical scheme, the spherical hinged support comprises a gland and a base, the gland is located above the base, and the base is of an inner spherical surface structure.
According to the further technical scheme, the fixing outer sleeve is of a plate and section welding reinforcing structure.
According to the further technical scheme, the adjustable supporting legs are formed by machining steel pipes, threads are turned inside the adjustable supporting legs, and the bottom ends of the adjustable supporting legs are of ball head structures.
In a further technical scheme, the transition bottom plate is of a welding structure and is connected with the spherical hinged support through a pressure plate and a screw.
In a further technical scheme, the movable inner support column is formed by processing solid bars
Compared with the prior art, the beneficial effects of the utility model are as follows: the bidirectional elastic body is adopted for buffering, the height is manually adjusted, the universal ball hinge is suitable for unbalance loading, the structural design is reasonable and ingenious, the structure is compact, the operation is convenient, the bidirectional bearing capacity is strong, the telescopic compensation amount is large, the bidirectional elastic ball hinge is suitable for occasions needing bidirectional bearing, the initial impact is small, the axial compensation amount is large, and particularly, the bidirectional elastic ball hinge has high application value in places where large tension and compression instantaneous loads need to prevent instantaneous high stress fracture of joints.
Drawings
Fig. 1 is a perspective view of the present invention;
fig. 2 is a cross-sectional view of the present invention;
in the figure: 1 is a locking nut, 2 is a fixed outer sleeve, 3 is an operating handle, 4 is an adjustable supporting leg, 5 is a spherical hinged support, 6 is a transition bottom plate, 7 is a pressure plate, 8 is an elastic body, 9 is a movable inner supporting column, 11 is an upper locking nut, 12 is a lower locking nut, 21 is a screw, 51 is a gland, 52 is a base, 71 is a screw, 81 is an upper elastic body, and 82 is a lower elastic body.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
As shown in fig. 1 to 2, the bidirectional buffering elastic support of this embodiment includes a transition bottom plate 6, there is spherical hinge support 5 through clamp plate 7 fixed mounting on the transition bottom plate 6, be connected with adjustable landing leg 4 on the spherical hinge support 5, adjustable landing leg 4 is inside to be connected with activity inner support post 9 through the screw thread, activity inner support post 9 is equipped with fixed overcoat 2 outward, and its upper portion is connected with elastomer 8, elastomer 8 includes elastomer 81, lower elastomer 82, fixed overcoat 2 internally mounted has lock nut 1, realizes the bidirectional buffering elastic support to activity inner support post 9 through last elastomer 81, lower elastomer 82 and lock nut 1. The upper elastic body 81 and the lower elastic body 82 are springs, disc springs or elastic rubber. The lock nut 1 includes an upper lock nut 11 and a lower lock nut 12, the upper elastic body 81 is defined in position by the upper lock nut 11, and the lower elastic body 82 is defined in position by the lower lock nut 12. And an operating handle 3 is arranged on the outer side of the adjustable supporting leg 4. The operating handle 3 is of a split structure. The spherical hinge support 5 comprises a gland 51 and a base 52, the gland 51 is positioned above the base 52, and the base 52 is of an inner spherical structure. The fixed outer sleeve 2 is of a plate and section welding reinforcing structure. The adjustable supporting leg 4 is formed by machining a steel pipe, threads are turned inside the adjustable supporting leg, and the bottom end of the adjustable supporting leg is of a ball head structure. The transition bottom plate 6 is of a welded structure and is connected with the spherical hinged support 5 by a pressure plate 7 and a screw 71. The movable inner support column 9 is formed by processing solid bars.
Description of the present embodiment:
the upper lock nut 11 in this embodiment is located above the inner hole of the fixed outer sleeve 2, and is screwed in, when screwed in downward, the initial bearing force can be increased by compressing the upper elastic body 81, and the lower lock nut 12 is located below the inner hole of the fixed outer sleeve 2, and is screwed in, when screwed in upward, the initial bearing force can be increased by compressing the lower elastic body 82. The fixing outer sleeve 2 is a plate and section welding reinforcing structure, can be fixed on other equipment by using screws 21, has compact structure, high strength and light weight, and is a direct force transmission piece. The operating handle 3 is of a split structure, is convenient to disassemble and assemble, and is used for manually adjusting the overall height to adapt to the distance between connected pieces. Adjustable landing leg 4 is formed by steel pipe processing, and the upper end car internal thread, the bottom is the bulb structure, can be in spherical hinged-support 5 internal rotation, and is universal to bear. The spherical hinged support 5 comprises a gland 51 and a base 52, the gland 51 is located above the base 52, the gland and the base are matched to lock the adjustable supporting leg 4, and the base 52 is of an inner spherical structure and is used for bearing the adjustable supporting leg 4 during universal rotation. The transition bottom plate 6 is of a welded structure, is connected with the spherical hinged support 5 by using a pressure plate 7 and a screw 71, allows the position of the spherical hinged support 5 to be deviated, and can be connected with other equipment at the bottom surface. The elastic body 8 comprises an upper elastic body 81 and a lower elastic body 82, the upper elastic body 81 and the lower elastic body 82 are springs, disc springs or elastic rubber, when the distance between the fixed outer sleeve 2 and the transition bottom plate 6 is increased, the movable inner supporting column 9 moves downwards relative to the fixed outer sleeve 2, the middle step drives the upper end of the lower elastic body 82 to move downwards, the lower end of the lower elastic body 82 cannot move due to the lower locking nut 12, so the lower elastic body 82 is compressed, the rebound force of the lower elastic body forms the tensile force of the movable inner supporting column 9, conversely, when the distance between the fixed outer sleeve 2 and the transition bottom plate 6 is reduced, the movable inner supporting column 9 moves upwards relative to the fixed outer sleeve 2, the middle step drives the lower end of the upper elastic body 81 to move upwards, the upper end of the upper elastic body 81 cannot move due to the upper locking nut 11, so the upper elastic body 81 is compressed, the rebound force of the upper elastic body forms the pressure of the movable inner supporting column 9, so that the bidirectional bearing function is realized, meanwhile, the displacement between the connected equipment can be compensated, and the elastic body has the buffer deformation function in the process. The movable inner support column 9 is formed by processing solid bars and used for bearing drawing force, and has strong rigidity and large bearing capacity.
The embodiment has the advantages of being of a pure mechanical structure, convenient to operate, low in failure rate, compact in structure, large in bearing capacity, capable of bearing in two directions, good in buffering performance and the like, is suitable for occasions needing two-way bearing, small in initial impact and large in axial compensation amount, and particularly suitable for places where large tension and compression instantaneous loads exist and instantaneous high stress fracture of joints needs to be prevented.
The utility model discloses do not confine to above-mentioned embodiment, any adopt with the utility model discloses similar structure and method realize the utility model discloses the embodiment of purpose all should be in the utility model discloses a protection within range.

Claims (10)

1. The utility model provides a two-way buffering elastic support which characterized in that: including transition bottom plate (6), there is spherical hinge support (5) through clamp plate (7) fixed mounting on transition bottom plate (6), be connected with adjustable landing leg (4) on spherical hinge support (5), adjustable landing leg (4) are inside to be connected with activity inner support post (9) through the screw thread, activity inner support post (9) are equipped with fixed overcoat (2) outward, and its upper portion is connected with elastomer (8), elastomer (8) include elastomer (81), lower elastomer (82), fixed overcoat (2) internally mounted has lock nut (1), realizes the two-way buffering elastic support to activity inner support post (9) through last elastomer (81), lower elastomer (82) and lock nut (1).
2. The bi-directional cushioned resilient support of claim 1, wherein: the upper elastic body (81) and the lower elastic body (82) are springs, disc springs or elastic rubber.
3. A bi-directional cushioned resilient support as set forth in claim 1 or 2, wherein: the locking nut (1) comprises an upper locking nut (11) and a lower locking nut (12), the upper elastic body (81) is limited in position through the upper locking nut (11), and the lower elastic body (82) is limited in position through the lower locking nut (12).
4. A bi-directional cushioned resilient support as set forth in claim 3, wherein: and an operating handle (3) is arranged on the outer side of the adjustable supporting leg (4).
5. The bi-directional cushioned resilient support of claim 4, wherein: the operating handle (3) is of a split structure.
6. The bi-directional cushioned resilient support of claim 5, wherein: spherical hinge support (5) are including gland (51), base (52), gland (51) are located base (52) top, base (52) are interior spherical structure.
7. The bi-directional cushioned resilient support of claim 6, wherein: the fixed outer sleeve (2) is of a plate and section welding reinforcing structure.
8. The bi-directional buffer elastic support according to claim 7, wherein: the adjustable supporting leg (4) is formed by machining a steel pipe, threads are turned inside the adjustable supporting leg, and the bottom end of the adjustable supporting leg is of a ball head structure.
9. The bi-directional buffer elastic support according to claim 8, wherein: the transition bottom plate (6) is of a welded structure and is connected with the spherical hinged support (5) by a pressure plate (7) and a screw (71).
10. A bi-directional cushioned resilient support as set forth in claim 9, wherein: the movable inner support column (9) is formed by processing solid bars.
CN202222620031.XU 2022-09-30 2022-09-30 Bidirectional buffering elastic support Active CN218761116U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222620031.XU CN218761116U (en) 2022-09-30 2022-09-30 Bidirectional buffering elastic support

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222620031.XU CN218761116U (en) 2022-09-30 2022-09-30 Bidirectional buffering elastic support

Publications (1)

Publication Number Publication Date
CN218761116U true CN218761116U (en) 2023-03-28

Family

ID=85696536

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222620031.XU Active CN218761116U (en) 2022-09-30 2022-09-30 Bidirectional buffering elastic support

Country Status (1)

Country Link
CN (1) CN218761116U (en)

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Address after: 312000 no.2106 Jianhu Road, Huashe street, Keqiao District, Shaoxing City, Zhejiang Province

Patentee after: Zhejiang Jinggong New Energy Equipment Co.,Ltd.

Address before: 312000 no.2106 Jianhu Road, Huashe street, Keqiao District, Shaoxing City, Zhejiang Province

Patentee before: ZHEJIANG JINGGONG PRECISION MANUFACTURING Co.,Ltd.