CN209819023U - Multi-direction shock-absorbing anti-seismic supporting and hanging mechanism device - Google Patents
Multi-direction shock-absorbing anti-seismic supporting and hanging mechanism device Download PDFInfo
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- CN209819023U CN209819023U CN201920670133.8U CN201920670133U CN209819023U CN 209819023 U CN209819023 U CN 209819023U CN 201920670133 U CN201920670133 U CN 201920670133U CN 209819023 U CN209819023 U CN 209819023U
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- adjusting movable
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Abstract
The utility model discloses a multi-direction vibrations absorbing antidetonation props up and hangs mechanism device relates to antidetonation and props up the field of hanging. The utility model discloses in: a first transverse outer spring positioned on one side of the inclined side bracket connecting plate is sleeved on the transverse adjusting movable rod; a first transverse inner side spring positioned at the other side of the inclined side bracket connecting plate is sleeved on the transverse adjusting movable rod; a first longitudinal lower spring positioned on one side of the transverse adjusting movable rod is sleeved on the longitudinal adjusting movable rod; the longitudinal adjusting movable rod is sleeved with a first longitudinal upper side spring positioned on the other side of the transverse adjusting movable rod. The utility model discloses an installation cover is equipped with the horizontal adjustment movable rod of first horizontal outside spring/first horizontal inboard spring even on the board at the incline side support, sets up the cover at the distolateral side of horizontal adjustment movable rod and establishes the vertical adjustment movable rod of first vertical downside spring/first vertical upside spring of cover to carry out the effective absorption to vibrations, impact in many directions, promote the anti-seismic of a antidetonation hanging and move, the impact capacity.
Description
Technical Field
The utility model relates to a antidetonation hangs the field, especially relates to a multi-direction vibrations absorbing antidetonation hangs mechanism device.
Background
The anti-seismic support and hanger is a support and hanger product used for supporting electromechanical pipeline equipment such as water pipes, air pipes and bridges and providing anti-seismic support. In the process of anti-seismic supporting of corresponding devices and equipment, a support hanger can be subjected to vibration and impact in multiple directions such as the transverse direction or the longitudinal direction, the effect of vibration reduction and buffering cannot be efficiently realized through single reinforcement, the vibration and impact can be effectively absorbed in multiple directions, and the anti-seismic vibration and impact capacity of the anti-seismic support hanger is improved, so that the problem to be solved is solved.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a multi-direction vibrations absorbing antidetonation hangs mechanism device to effectively absorb vibrations, impact on the multi-direction, promote the antidetonation of antidetonation branch hanging and move, impact capacity.
In order to solve the technical problem, the utility model discloses a realize through following technical scheme:
the utility model provides a multi-direction shock-absorbing anti-seismic support and suspension mechanism device, which comprises a pair of inclined side support connecting plates, wherein the upper ends of the inclined side support connecting plates are fixedly connected with a first upper side fixed connecting rod; a first bottom side mounting substrate is mounted at the bottom end of the inclined side support connecting plate; a transverse adjusting movable rod is movably arranged on the inclined side bracket connecting plate; a first transverse outer spring positioned on one side of the inclined side bracket connecting plate is sleeved on the transverse adjusting movable rod; a first transverse inner side spring positioned at the other side of the inclined side bracket connecting plate is sleeved on the transverse adjusting movable rod; the inner side end of the transverse adjusting movable rod is movably provided with a longitudinal adjusting movable rod; a first longitudinal lower spring positioned on one side of the transverse adjusting movable rod is sleeved on the longitudinal adjusting movable rod; the longitudinal adjusting movable rod is sleeved with a first longitudinal upper side spring positioned on the other side of the transverse adjusting movable rod.
The device comprises a second upper side fixed mounting base plate, wherein a plurality of second fixing through holes for fixedly mounting the second upper side fixed mounting base plate are formed in the second upper side fixed mounting base plate; one side of the second upper side fixedly provided with the base plate is fixedly connected with a second fixed cylinder; two sides of the second fixed column are fixedly connected with second side fixed connecting plates; and a second transverse adjusting groove matched with the longitudinal adjusting movable rod is formed in the second side fixed connecting plate.
As a preferred technical scheme of the utility model, the bottom side of the inclined side bracket connecting plate is fixedly connected with a first mounting threaded rod; a through hole structure matched with the first mounting threaded rod is formed in the first bottom side mounting substrate; the inclined side support connecting plate is provided with a first transverse through hole matched with the transverse adjusting movable rod.
As a preferred technical scheme of the utility model, one end side of the transverse adjusting movable rod is provided with a first transverse end plate; a transverse rod thread section is arranged on the transverse adjusting movable rod; a transverse adjusting screw disc for adjusting and controlling a first transverse outer side spring/a first transverse inner side spring is arranged on the threaded section of the cross rod; a first transversely inward side column body is arranged at the other end side of the transversely adjusting movable rod; the first transverse inner side column body is provided with a longitudinal adjusting through hole matched with the longitudinal adjusting movable rod.
As a preferred technical scheme of the utility model, one end side of the longitudinal adjusting movable rod is provided with a first longitudinal end plate; the longitudinal adjusting movable rod is provided with a longitudinal rod thread section; the longitudinal rod thread section is provided with a longitudinal adjusting screw disk for adjusting and controlling the first longitudinal lower side spring/the first longitudinal upper side spring.
As an optimized technical scheme of the utility model, the opening scope of the second transverse adjustment groove on the fixed even board of second avris cooperatees with the movable adjusting range of transverse adjustment movable rod.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the utility model discloses a set up the horizontal adjustment movable rod that overlaps and is equipped with first horizontal outside spring/first horizontal inboard spring on the support link plate of incline, set up the cover and overlap and be equipped with the vertical adjustment movable rod of first vertical lower side spring/first vertical upper side spring at the distolateral side of horizontal adjustment movable rod, thus shake, impact are absorbed effectively in many directions, promote the anti-seismic of the anti-seismic support and hang, impact-proof ability;
2. the utility model adjusts the degree of tightness of the first transverse outer spring/the first transverse inner spring by arranging the transverse adjusting screw disc on the transverse adjusting movable rod; the longitudinal adjusting movable rod is provided with a longitudinal adjusting screw disc, the tightness degree of the first longitudinal lower side spring/the first longitudinal upper side spring is adjusted, and the shock absorbing/buffering requirements under different installation environments are met.
Drawings
FIG. 1 is a schematic view of the overall structure of the device of the present invention;
FIG. 2 is a schematic structural view of a middle part of the present invention;
FIG. 3 is a schematic structural view of the middle inclined side bracket connecting plate of the present invention;
FIG. 4 is a schematic structural view of the middle transverse adjusting movable rod of the present invention;
wherein: 1-an inclined side bracket connecting plate, 101-a first mounting threaded rod, 102-a first transverse through hole; 2-a first upper fixed link; 3-a first bottom side mounting substrate; 4-a lateral adjustment movable rod, 401-a first lateral end plate; 402-crossbar threaded segment; 403-a first laterally inner lateral column; 404-longitudinal adjustment through holes; 5-a first lateral outboard spring; 6-a first lateral inboard spring; 7-a longitudinal adjustment movable rod, 701-a first longitudinal end plate; 702-a longitudinal bar thread section; 8-a first longitudinal underside spring; 9-a first longitudinal upper spring; 10-fixedly mounting a base plate on the second upper side; 11-a second fixing through hole; 12-a second stationary cylinder; 13-second side fixing connecting plate; 14-a second lateral adjustment groove; 15-transverse adjusting screw disc; 16-longitudinal adjusting screw disk.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
The utility model relates to a multi-direction shock-absorbing anti-seismic support and suspension mechanism device, which comprises a pair of inclined side support connecting plates 1, wherein the upper ends of the inclined side support connecting plates 1 are fixedly connected with a first upper side fixed connecting rod 2; a first bottom side mounting substrate 3 is mounted at the bottom end of the inclined side support connecting plate 1; a transverse adjusting movable rod 4 is movably arranged on the inclined side bracket connecting plate 1; a first transverse outer spring 5 positioned at one side of the inclined side bracket connecting plate 1 is sleeved on the transverse adjusting movable rod 4; a first transverse inner side spring 6 positioned at the other side of the inclined side bracket connecting plate 1 is sleeved on the transverse adjusting movable rod 4; the inner side end of the transverse adjusting movable rod 4 is movably provided with a longitudinal adjusting movable rod 7; a first longitudinal lower spring 8 positioned at one side of the transverse adjusting movable rod 4 is sleeved on the longitudinal adjusting movable rod 7; the longitudinal adjusting movable rod 7 is sleeved with a first longitudinal upper side spring 9 positioned at the other side of the transverse adjusting movable rod 4.
The device comprises a second upper side fixed mounting base plate 10, wherein a plurality of second fixing through holes 11 for fixedly mounting the second upper side fixed mounting base plate 10 are formed in the second upper side fixed mounting base plate 10; one side of the second upper side fixed installation base plate 10 is fixedly connected with a second fixed column 12; both sides of the second fixed column 12 are fixedly connected with second side fixed connecting plates 13; and a second transverse adjusting groove 14 matched with the longitudinal adjusting movable rod 7 is formed in the second side fixed connecting plate 13.
Further, a first mounting threaded rod 101 is fixedly connected to the bottom side of the inclined side support connecting plate 1; the first bottom side mounting substrate 3 is provided with a through hole structure matched with the first mounting threaded rod 101; the inclined side bracket connecting plate 1 is provided with a first transverse through hole 102 matched with the transverse adjusting movable rod 4.
Further, a first transverse end plate 401 is arranged at one end side of the transverse adjusting movable rod 4; a transverse rod threaded section 402 is arranged on the transverse adjusting movable rod 4; a transverse adjusting screw disk 15 for adjusting and controlling the first transverse outer side spring 5/the first transverse inner side spring 6 is arranged on the transverse rod thread section 402; the other end side of the transverse adjusting movable rod 4 is provided with a first transverse inner side column 403; the first laterally inner side column 403 is provided with a longitudinal adjusting through hole 404 matching with the longitudinal adjusting movable rod 7.
Further, a first longitudinal end plate 701 is arranged at one end side of the longitudinal adjusting movable rod 7; a longitudinal rod thread section 702 is arranged on the longitudinal adjusting movable rod 7; the longitudinal rod thread section 702 is provided with a longitudinal adjusting screw disk 16 for adjusting the first longitudinal lower spring 8/the first longitudinal upper spring 9.
Further, the opening range of the second transverse adjusting groove 14 on the second side fixed connecting plate 13 is matched with the movable adjusting range of the transverse adjusting movable rod 4.
In the utility model discloses in the device:
a transverse adjusting movable rod 4 is arranged on the inclined side support connecting plate 1, and a first transverse outer side spring 5/a first transverse inner side spring 6 are sleeved on the transverse adjusting movable rod 4 to effectively absorb transverse vibration and impact during vibration/impact; the longitudinal adjusting movable rod 7 is arranged, and a first longitudinal lower side spring 8/a first longitudinal upper side spring 9 are sleeved on the longitudinal adjusting movable rod 7 to effectively absorb longitudinal vibration and impact.
The second side fixed connecting plate 13 with a second transverse adjusting groove 14 is arranged to limit and adjust the longitudinal adjusting movable rod 7 linked with the transverse adjusting movable rod 4, so that the stability of the whole mechanism is ensured.
A transverse adjusting screw disk 15 is arranged on the transverse adjusting movable rod 4 to adjust the tightness degree of the first transverse outer side spring 5/the first transverse inner side spring 6; the longitudinal adjusting movable rod 7 is provided with a longitudinal adjusting screw disc for adjusting the tightness degree of the first longitudinal lower side spring 8/the first longitudinal upper side spring 9, so that the requirements of vibration and impact absorption/buffering under different installation environments are met.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.
Claims (5)
1. A multi-direction shock-absorbing anti-seismic support and suspension mechanism device is characterized in that:
the device comprises a pair of inclined side support connecting plates (1), wherein the upper ends of the inclined side support connecting plates (1) are fixedly connected with a first upper side fixed connecting rod (2);
a first bottom side mounting substrate (3) is mounted at the bottom end of the inclined side support connecting plate (1);
a transverse adjusting movable rod (4) is movably arranged on the inclined side bracket connecting plate (1);
a first transverse outer spring (5) positioned on one side of the inclined side bracket connecting plate (1) is sleeved on the transverse adjusting movable rod (4);
a first transverse inner side spring (6) positioned at the other side of the inclined side bracket connecting plate (1) is sleeved on the transverse adjusting movable rod (4);
the inner side end of the transverse adjusting movable rod (4) is movably provided with a longitudinal adjusting movable rod (7);
a first longitudinal lower spring (8) positioned on one side of the transverse adjusting movable rod (4) is sleeved on the longitudinal adjusting movable rod (7);
a first longitudinal upper side spring (9) positioned at the other side of the transverse adjusting movable rod (4) is sleeved on the longitudinal adjusting movable rod (7);
the device comprises a second upper side fixed mounting base plate (10), wherein a plurality of second fixing through holes (11) for fixedly mounting the second upper side fixed mounting base plate (10) are formed in the second upper side fixed mounting base plate (10);
one side of the second upper side fixed installation base plate (10) is fixedly connected with a second fixed column body (12);
both sides of the second fixed column (12) are fixedly connected with second side fixed connecting plates (13);
and a second transverse adjusting groove (14) matched with the longitudinal adjusting movable rod (7) is formed in the second side fixing connecting plate (13).
2. The multi-directional shock absorbing anti-seismic support and suspension mechanism apparatus of claim 1, wherein:
the bottom side of the inclined side support connecting plate (1) is fixedly connected with a first mounting threaded rod (101);
the first bottom side mounting substrate (3) is provided with a through hole structure matched with the first mounting threaded rod (101);
and a first transverse through hole (102) matched with the transverse adjusting movable rod (4) is formed in the inclined side support connecting plate (1).
3. The multi-directional shock absorbing anti-seismic support and suspension mechanism apparatus of claim 1, wherein:
a first transverse end plate (401) is arranged at one end side of the transverse adjusting movable rod (4);
a cross rod threaded section (402) is arranged on the transverse adjusting movable rod (4);
a transverse adjusting screw disc (15) for adjusting and controlling the first transverse outer side spring (5)/the first transverse inner side spring (6) is arranged on the cross bar thread section (402);
a first transversely inner side column body (403) is arranged at the other end side of the transversely adjusting movable rod (4);
and a longitudinal adjusting through hole (404) matched with the longitudinal adjusting movable rod (7) is formed in the first transverse inner side column body (403).
4. The multi-directional shock absorbing anti-seismic support and suspension mechanism apparatus of claim 1, wherein:
a first longitudinal end plate (701) is arranged at one end side of the longitudinal adjusting movable rod (7);
a longitudinal rod thread section (702) is arranged on the longitudinal adjusting movable rod (7);
and a longitudinal adjusting screw disc (16) for adjusting and controlling the first longitudinal lower spring (8)/the first longitudinal upper spring (9) is arranged on the longitudinal rod thread section (702).
5. The multi-directional shock absorbing anti-seismic support and suspension mechanism apparatus of claim 1, wherein:
the opening range of a second transverse adjusting groove (14) on the second side fixed connecting plate (13) is matched with the movable adjusting range of the transverse adjusting movable rod (4).
Priority Applications (1)
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CN201920670133.8U CN209819023U (en) | 2019-05-12 | 2019-05-12 | Multi-direction shock-absorbing anti-seismic supporting and hanging mechanism device |
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CN201920670133.8U CN209819023U (en) | 2019-05-12 | 2019-05-12 | Multi-direction shock-absorbing anti-seismic supporting and hanging mechanism device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111998033A (en) * | 2020-08-31 | 2020-11-27 | 合肥托卡拉图科技有限公司 | Speed reduction and buffering integrated mechanism based on speed sensing and magnetic power driving and controlling |
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2019
- 2019-05-12 CN CN201920670133.8U patent/CN209819023U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111998033A (en) * | 2020-08-31 | 2020-11-27 | 合肥托卡拉图科技有限公司 | Speed reduction and buffering integrated mechanism based on speed sensing and magnetic power driving and controlling |
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