CN214116989U - Steel structure support frame with shock-absorbing function - Google Patents
Steel structure support frame with shock-absorbing function Download PDFInfo
- Publication number
- CN214116989U CN214116989U CN202022342735.6U CN202022342735U CN214116989U CN 214116989 U CN214116989 U CN 214116989U CN 202022342735 U CN202022342735 U CN 202022342735U CN 214116989 U CN214116989 U CN 214116989U
- Authority
- CN
- China
- Prior art keywords
- shock
- steel
- support column
- column
- support frame
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Images
Landscapes
- Buildings Adapted To Withstand Abnormal External Influences (AREA)
Abstract
The utility model discloses a steel structure support frame with shock-absorbing function, including the bottom plate, the top surface middle part of bottom plate is equipped with the support column, is equipped with the reinforcement subassembly in the support column, and the top of support column is equipped with the support diaphragm, and the well upper portion cover of support column is equipped with the adjustable ring, is located the adjustable ring top and overlaps at the well upper portion of support column and is equipped with solid fixed ring, and the bottom surface both sides of supporting the diaphragm are equipped with a pair of rectangle case, and every rectangle case all is connected with solid fixed ring through hinge assembly. The utility model discloses a cooperation of each subassembly is used, has solved the support column and has supported the lower problem that does not possess the shock attenuation effect of dynamics, and simple structure installation of being convenient for, has satisfied the requirement that the roof of the large tracts of land of high strength supported, has improved the shock attenuation effect that the steel construction supported, has reduced the potential safety hazard of steel construction building.
Description
Technical Field
The utility model relates to a building steel structure technical field especially relates to a steel structure support frame with shock-absorbing function.
Background
The light steel structure house has the advantages of thin wall, light weight, high installation speed, good earthquake resistance, convenient pipeline arrangement and the like, and is widely applied to foreign low-rise and multi-story houses. The frame structures of conventional steel structure buildings are connected by welding at the construction site, wherein the supporting frame is the foundation of the whole building.
However, the existing house supporting frame has the following disadvantages: 1. the traditional steel structure roof supporting frame is supported by adopting a single supporting column, and the supporting mode cannot meet the requirement of high-strength large-area roof support; 2. the steel structure connection mode is assembled by adopting a fixed and integrated welding mode, the damping effect is not achieved, and due to the particularity of the roof structure, if slight collision occurs, the potential safety hazard of the steel structure building can be caused; therefore, how to solve this problem is a problem to be solved by engineers skilled in the art.
SUMMERY OF THE UTILITY MODEL
The utility model aims at solving the defects existing in the prior art and providing a steel structure support frame with a shock absorption function.
In order to solve the problem that the support column support dynamics that prior art exists is lower and do not possess the shock attenuation effect, the utility model discloses a following technical scheme:
the utility model provides a steel structure support frame with shock-absorbing function, includes the bottom plate, the top surface middle part of bottom plate is equipped with the support column, be equipped with the reinforcement subassembly in the support column, the top of support column is equipped with the support diaphragm, the well upper portion cover of support column is equipped with the adjustable ring, is located the adjustable ring top and overlaps at the well upper portion of support column and is equipped with solid fixed ring, the bottom surface both sides of supporting the diaphragm are equipped with a pair of rectangle case, and every the rectangle case all is connected with solid fixed ring through articulated subassembly.
Preferably, the reinforcing component comprises a rectangular channel steel, a steel column and a supporting leg, the rectangular channel steel is arranged in the supporting column, and four corners of the rectangular channel steel are fixedly connected with the inner side wall of the supporting column respectively; the steel column is arranged in the middle of the rectangular channel steel, a plurality of supporting legs are evenly arranged on four inner side walls of the rectangular channel steel in a staggered mode, and the outer ends of the supporting legs are fixedly connected with the steel column.
Preferably, the gap between the inner side wall of the support column and the outer side surface of the rectangular channel steel is filled with cement.
Preferably, four corners of the top surface of bottom plate all are equipped with the reinforcing bar through-hole, every all insert in the reinforcing bar through-hole and be equipped with T shape reinforcing bar, every the bottom of T shape reinforcing bar all gos deep into to the bottom of the earth's ground depths, and every evenly be equipped with a plurality of barbs on the T shape reinforcing bar.
Preferably, the bottom of the supporting column is sleeved with a conical ring seat, and the conical ring seat is welded and fixed with the top surface of the bottom plate.
Preferably, the sunken circular shock attenuation groove that has in bottom surface middle part of supporting the diaphragm, be equipped with circular baffle in the circular groove, evenly be equipped with a plurality of damping spring on circular baffle's the top surface, and every damping spring's top all with the top lateral wall rigid coupling of shock attenuation groove, the top of support column stretch into to the shock attenuation inslot and with circular baffle's bottom surface rigid coupling.
Preferably, the hinge assembly comprises a slide rod, a slide cylinder, a rectangular slide block and a hinge rod, the slide rod is arranged in the rectangular box, two ends of the slide rod are fixedly connected with two side walls of the rectangular box respectively, the slide cylinder is sleeved in the middle of the slide rod, and a slide spring is sleeved on the outer section of the slide rod; the bottom surface of the rectangular box is transversely sunken to form a rectangular sliding hole, a rectangular sliding block is arranged in the rectangular sliding hole, the top end of the rectangular sliding block is fixedly connected with the sliding barrel, a first hinged seat is arranged at the bottom end of the rectangular sliding block, and the first hinged seat is hinged to the top end of the hinged rod.
Preferably, the position that is located the articulated rod slant and corresponds is equipped with the articulated seat of second on solid fixed ring's lateral surface, the articulated seat of second is articulated with the bottom of articulated rod.
Preferably, a plurality of bolt holes are uniformly formed in the outer side surface of the adjusting ring in a recessed mode, bolts are inserted into the bolt holes, and the inner ends of the bolts penetrate through the corresponding bolt holes and are in screw locking with the supporting columns respectively.
Compared with the prior art, the beneficial effects of the utility model are that:
1. by matching the reinforcing assembly, cement is filled in a gap between the inner side wall of the supporting column and the outer side surface of the rectangular channel steel, the supporting legs are welded on the four inner side walls of the rectangular channel steel in a uniformly staggered mode, and the outer ends of the supporting legs are welded and fixed with the steel column, so that the weight of the supporting column is reduced, the supporting strength of the supporting column is increased, and the requirement of large-area roof supporting strength is met;
2. the hinge assembly is matched with the hinge assembly, pressure applied to the supporting transverse plate by a supporting object is received, the tension of the damping spring plays a role in supporting damping and buffering, the top end of the hinge rod drives the sliding cylinder to slide along the sliding rod, the tension of the sliding spring further increases the stability supported by the hinge rod, the damping effect supported by a steel structure is improved, and the potential safety hazard of a steel structure building is reduced.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this application, illustrate embodiment(s) of the invention and together with the description serve to explain the invention without undue limitation to the invention. In the drawings:
FIG. 1 is a front sectional view of the present invention;
FIG. 2 is a front view of the present invention;
fig. 3 is an enlarged view of a point a in fig. 1 according to the present invention;
FIG. 4 is a schematic cross-sectional view of a support post according to the present invention;
number in the figure: the support column comprises a support column 1, rectangular channel steel 11, cement 12, a steel column 13, a support leg 14, a bottom plate 2, a conical ring seat 21, a T-shaped steel bar 22, a barb 23, a fixing ring 24, an adjusting ring 25, a hinge rod 26, a support transverse plate 3, a circular baffle 31, a damping spring 32, a rectangular box 33, a sliding rod 34, a sliding barrel 35, a sliding spring 36 and a rectangular sliding block 37.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Example 1: in order to solve the problem that the support column support dynamics is lower and do not have the shock attenuation effect, provided a steel structure support frame with shock-absorbing function in this embodiment, see fig. 1-4, including bottom plate 2, bottom plate 2 transversely places subaerial for the level, the top surface middle part of bottom plate 2 is equipped with support column 1 of vertical rigid coupling, support column 1 is hollow column shape, be equipped with the reinforcement subassembly in the support column 1, the top of support column 1 is equipped with the support diaphragm 3 of transversely placing, the well upper portion cover of support column 1 is equipped with adjustable ring 25, is located the middle upper portion cover of adjustable ring 25 top at support column 1 and is equipped with solid fixed ring 24, the bottom surface both sides of supporting diaphragm 3 are equipped with a pair of fixed welded rectangle case 33, and every rectangle case 33 all is connected with solid fixed ring 24 through articulated subassembly.
In the utility model, a circular damping groove is recessed in the middle of the bottom surface of the supporting transverse plate 3, a circular baffle plate 31 is arranged in the circular groove, a plurality of damping springs 32 are uniformly arranged on the top surface of the circular baffle plate 31, the top end of each damping spring 32 is fixedly connected with the top side wall of the damping groove, and the top end of the supporting column 1 extends into the damping groove and is fixedly connected with the bottom surface of the circular baffle plate 31; a plurality of bolt holes are uniformly recessed in the outer side surface of the adjusting ring 25, a bolt is inserted into each bolt hole, and the inner end of each bolt penetrates through the corresponding bolt hole and is screwed and locked with the support column 1; the height of the adjusting ring 25 is adjusted through the bolts, and the lifting height of the fixing ring 24 is convenient to control.
In the utility model, the hinge assembly comprises a slide bar 34, a slide cylinder 35, a rectangular slider 37 and a hinge rod 26, the slide bar 34 is transversely arranged in the rectangular box 33, two ends of the slide bar 34 are respectively fixedly connected with two side walls of the rectangular box 33, the slide cylinder 35 in sliding connection is sleeved in the middle of the slide bar 34, and a slide spring 36 is sleeved on the outer section of the slide bar 34 on one side of the slide cylinder 35; a rectangular sliding hole is transversely formed in the bottom surface of the rectangular box 33 in a recessed mode, a rectangular sliding block 37 in sliding connection is arranged in the rectangular sliding hole, the top end of the rectangular sliding block 37 is fixedly connected with the sliding cylinder 35, a first hinge base with a downward opening is arranged at the bottom end of the rectangular sliding block 37, and the opening of the first hinge base is movably hinged to the top end of the hinge rod 26 through a pin shaft; a second hinge seat with an outward opening is arranged on the outer side surface of the fixing ring 24 at a position corresponding to the hinge rod 26 in an inclined manner, and the opening of the second hinge seat is movably hinged with the bottom end of the hinge rod 26 through a pin shaft; through the cooperation of the hinge assembly, under the pressure applied to the supporting transverse plate 3 by the supporting object, the tension of the damping spring 32 plays a role of supporting and damping, the top end of the hinge rod 26 drives the sliding cylinder 35 to slide along the sliding rod 34, and the tension of the sliding spring 36 further increases the supporting stability of the hinge rod 26.
Example 2: in embodiment 1, there is also a problem that the support strength of the support column 1 is insufficient, and therefore, this embodiment further includes, on the basis of embodiment 1:
the reinforcing component comprises rectangular channel steel 11, a steel column 13 and supporting legs 14, wherein the rectangular channel steel 11 which is fixedly connected vertically is arranged in the supporting column 1, four corners of the rectangular channel steel 11 are fixedly connected with the inner side wall of the supporting column 1 respectively, and cement 12 is filled in a gap between the inner side wall of the supporting column 1 and the outer side surface of the rectangular channel steel 11; a vertically placed steel column 13 is arranged in the middle of the rectangular channel steel 11, a plurality of L-shaped supporting legs 14 are uniformly arranged on four inner side walls of the rectangular channel steel 11 in a staggered mode, and the outer end of each supporting leg 14 is fixedly connected with the steel column 13; reinforcing steel bar through holes are formed in four corners of the top surface of the bottom plate 2, T-shaped reinforcing steel bars 22 are inserted into each reinforcing steel bar through hole, the bottom end of each T-shaped reinforcing steel bar 22 extends deep into the ground bottom, and a plurality of barbs 23 are uniformly arranged on each T-shaped reinforcing steel bar 22; the bottom of the supporting column 1 is sleeved with a conical ring seat 21, and the conical ring seat 21 is welded and fixed with the top surface of the bottom plate 2; use through the cooperation of reinforcing the subassembly, the gap intussuseption between the inside wall of support column 1 and the lateral surface of rectangular channel steel 11 is filled with cement 12, evenly crisscross welding supporting leg 14 on four inside walls of rectangular channel steel 11, and supporting leg 14's outer end all with steel column 13 welded fastening, both alleviateed support column 1's weight, increased support column 1's support intensity again.
Example 3: the utility model discloses when specifically using, its operating procedure is as follows:
firstly, a bottom plate 2 is arranged on the ground, a T-shaped steel bar 22 penetrates through a steel bar through hole to penetrate deep into the ground bottom, the bottom of a support column 1 is fixed in the middle of the top surface of the bottom plate 2 in a welding mode, a conical ring seat 21 is sleeved at the bottom of the support column 1, and the conical ring seat 21 and the bottom plate 2 are fixed in a welding mode;
step two, filling cement 12 into gaps between the inner side walls of the support columns 1 and the outer side faces of the rectangular channel steel 11, uniformly welding support legs 14 on the four inner side walls of the rectangular channel steel 11 in a staggered mode, and welding the outer ends of the support legs 14 and the steel columns 13 fixedly, so that the weight of the support columns 1 is reduced, and the support strength of the support columns 1 is increased;
step three, the top surface of the supporting transverse plate 3 is contacted with an object to be supported, the top end of the supporting column 1 extends into the damping groove and is fixedly connected with the bottom surface of the circular baffle plate 31, the supporting transverse plate 3 is pressed by the object to drive the damping spring 32 to be compressed and deformed, and the tension of the damping spring 32 plays a role in supporting and damping;
and step four, simultaneously driving the rectangular box 33 to slightly descend, and under the cooperation of the hinging action, the top end of the hinging rod 26 drives the sliding barrel 35 to slide along the sliding rod 34, so that the sliding spring 36 is compressed and deformed, and the tension action of the sliding spring 36 further increases the support stability of the hinging rod 26.
The utility model discloses a cooperation of each subassembly is used, has solved the support column and has supported the lower problem that does not possess the shock attenuation effect of dynamics, and simple structure installation of being convenient for, has satisfied the requirement that the roof of the large tracts of land of high strength supported, has improved the shock attenuation effect that the steel construction supported, has reduced the potential safety hazard of steel construction building.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.
Claims (9)
1. The utility model provides a steel construction support frame with shock-absorbing function, includes bottom plate (2), its characterized in that: the top surface middle part of bottom plate (2) is equipped with support column (1), be equipped with the reinforcement subassembly in support column (1), the top of support column (1) is equipped with supports diaphragm (3), the well upper portion cover of support column (1) is equipped with adjustable ring (25), is located the well upper portion cover of adjustable ring (25) top at support column (1) and is equipped with solid fixed ring (24), the bottom surface both sides that support diaphragm (3) are equipped with a pair of rectangle case (33), and every rectangle case (33) all are connected with solid fixed ring (24) through articulated subassembly.
2. The steel structure support frame with the shock-absorbing function of claim 1, wherein: the reinforcing component comprises rectangular channel steel (11), a steel column (13) and supporting legs (14), the rectangular channel steel (11) is arranged in the supporting column (1), and four corners of the rectangular channel steel (11) are fixedly connected with the inner side wall of the supporting column (1) respectively; the steel column (13) is arranged in the middle of the rectangular channel steel (11), a plurality of supporting legs (14) are uniformly arranged on four inner side walls of the rectangular channel steel (11) in a staggered mode, and the outer ends of the supporting legs (14) are fixedly connected with the steel column (13).
3. The steel structure support frame with the shock-absorbing function of claim 2, wherein: and cement (12) is filled in a gap between the inner side wall of the support column (1) and the outer side surface of the rectangular channel steel (11).
4. The steel structure support frame with the shock-absorbing function of claim 1, wherein: four corners of the top surface of bottom plate (2) all are equipped with the reinforcing bar through-hole, every all insert in the reinforcing bar through-hole and be equipped with T shape reinforcing bar (22), every the bottom of T shape reinforcing bar (22) all deepens to the bottom of the earth depths, and every evenly be equipped with a plurality of barbs (23) on T shape reinforcing bar (22).
5. The steel structure support frame with shock-absorbing function of claim 4, characterized in that: the bottom cover of support column (1) is equipped with toper ring seat (21), just toper ring seat (21) is fixed with the top surface welded of bottom plate (2).
6. The steel structure support frame with the shock-absorbing function of claim 1, wherein: support the sunken shock attenuation groove that has circular form in bottom surface middle part of diaphragm (3), be equipped with circular baffle (31) in the shock attenuation groove, evenly be equipped with a plurality of damping spring (32) on the top surface of circular baffle (31), and every the top of damping spring (32) all with the top lateral wall rigid coupling in shock attenuation groove, the top of support column (1) stretch into to the shock attenuation inslot and with the bottom surface rigid coupling of circular baffle (31).
7. The steel structure support frame with the shock-absorbing function of claim 1, wherein: the hinge assembly comprises a sliding rod (34), a sliding cylinder (35), a rectangular sliding block (37) and a hinge rod (26), the sliding rod (34) is arranged in the rectangular box (33), two ends of the sliding rod (34) are fixedly connected with two side walls of the rectangular box (33) respectively, the sliding cylinder (35) is sleeved in the middle of the sliding rod (34), and a sliding spring (36) is sleeved on the outer section of the sliding rod (34); the bottom surface of rectangle case (33) transversely caves in has the rectangle slide opening, be equipped with rectangle slider (37) in the rectangle slide opening, the top and the smooth section of thick bamboo (35) rigid coupling of rectangle slider (37), the bottom of rectangle slider (37) is equipped with first articulated seat, first articulated seat is articulated with the top of articulated mast (26).
8. The steel structural support frame with the shock absorption function as set forth in claim 7, wherein: the position that is located articulated rod (26) slant and corresponds is equipped with the articulated seat of second on the lateral surface of solid fixed ring (24), the articulated seat of second is articulated with the bottom of articulated rod (26).
9. The steel structure support frame with the shock-absorbing function of claim 1, wherein: a plurality of bolt holes are uniformly formed in the outer side surface of the adjusting ring (25) in a concave mode, bolts are inserted into the bolt holes, and the inner ends of the bolts penetrate through the corresponding bolt holes to be in screw locking with the supporting columns (1).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022342735.6U CN214116989U (en) | 2020-10-20 | 2020-10-20 | Steel structure support frame with shock-absorbing function |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022342735.6U CN214116989U (en) | 2020-10-20 | 2020-10-20 | Steel structure support frame with shock-absorbing function |
Publications (1)
Publication Number | Publication Date |
---|---|
CN214116989U true CN214116989U (en) | 2021-09-03 |
Family
ID=77500969
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202022342735.6U Active CN214116989U (en) | 2020-10-20 | 2020-10-20 | Steel structure support frame with shock-absorbing function |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN214116989U (en) |
-
2020
- 2020-10-20 CN CN202022342735.6U patent/CN214116989U/en active Active
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN214784796U (en) | Anti-seismic profile steel structure fabricated building | |
CN203402792U (en) | Pre-assembled elevator with improved connection strength | |
CN217079108U (en) | Vertical adjustable shock attenuation steel construction | |
CN109844235B (en) | Anti-seismic structure and anti-seismic method for house | |
CN214116989U (en) | Steel structure support frame with shock-absorbing function | |
CN106368309A (en) | Fabricated wing-room | |
KR101011162B1 (en) | The structure aseismic reinforcement structure and the method of construction for which aseismic reinforcement equipment and this were used | |
CN213175020U (en) | Structure is built to antidetonation room | |
CN205476760U (en) | Shock attenuation formula building house | |
CN211666324U (en) | Basement antidetonation reinforcing building structure | |
KR102181416B1 (en) | method of constructing earthquake-proof ALC house | |
CN211007132U (en) | Architectural design earthquake-resistant structure | |
CN210562642U (en) | Stereo storage type box-type house | |
CN113152534A (en) | Anti-seismic device and method for soft soil foundation | |
JP5946165B2 (en) | Seismic reinforcement structure | |
CN219586930U (en) | Socket-and-spigot assembled concrete column connection structure with shock-absorbing function | |
CN218715464U (en) | Prefabricated house unit of assembled composite building with terrace | |
CN217300059U (en) | Assembled steel structure for high seismic region | |
CN216041709U (en) | Connecting joint mechanism for steel column base and foundation | |
CN211421413U (en) | Fixing base of steel structure stand column | |
KR20200045780A (en) | Shere reinforced wall system for seismic reinforcement of wooden house | |
CN214402751U (en) | Cast-in-place node formwork structure of prefabricated wallboard of assembly type structure | |
JP7183491B1 (en) | Seismic isolation structure to prevent house collapse | |
CN109138181B (en) | Prefabricated beam column building steel structure with anti-seismic function and construction method thereof | |
CN218375615U (en) | Assembled steel construction factory building with antidetonation effect |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant |