CN218094629U - A antidetonation gallows for steel construction - Google Patents
A antidetonation gallows for steel construction Download PDFInfo
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- CN218094629U CN218094629U CN202222012364.4U CN202222012364U CN218094629U CN 218094629 U CN218094629 U CN 218094629U CN 202222012364 U CN202222012364 U CN 202222012364U CN 218094629 U CN218094629 U CN 218094629U
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Abstract
The utility model discloses a antidetonation gallows for steel construction belongs to a gallows technical field. The utility model discloses an install steel on the girder steel for two sets of symmetries, it all connects and is equipped with the up-fixing plate to go up installation steel top, it is equipped with U type roof beam clamp to connect on the up-fixing plate, it all connects and is equipped with the connecting plate to go up installation steel below, and a set of connecting plate below is connected and is equipped with damping device one, damping device connects and is equipped with adjusting screw one, adjusting screw connects on one and is equipped with adjusting plate one, adjusting plate below is connected and is equipped with the gallows, the gallows below is equipped with screw hole one, a screw hole female connection is equipped with connecting screw one, connecting screw connects at one end and is equipped with mount pad one, mount pad one is installed on electromechanical mounting bracket. Compared with the prior art, the utility model the advantage lies in: simple structure, reasonable in design, simple to operate, shock attenuation are effectual.
Description
Technical Field
The utility model relates to a gallows technical field specifically indicates a antidetonation gallows for steel construction.
Background
The earthquake-proof design is required in the building electromechanical engineering in the area with the specified earthquake-proof fortification intensity of 6 degrees and above 6 degrees in the building electromechanical engineering earthquake design specification, the earthquake-proof supporting and hanging frames are increasingly used, the earthquake-proof supporting and hanging frames are part of the supporting and hanging frames, the supporting and hanging frames play a role in bearing the weight of various accessories and media thereof, restraining and limiting the unreasonable displacement of building parts, controlling the vibration of parts and the like in the construction link, and have an extremely important role in the safe operation of the building facilities, and the supporting and hanging frames are mainly used for the electromechanical engineering facilities of water supply and drainage, fire protection, heating, ventilation, air conditioning, gas, heating power, electric power, communication and the like of the building, and generate heat displacement and equipment thereof in the operation.
The current antidetonation gallows generally uses on the concrete wall, and does not have regulatory function when the installation, and the general structure of a antidetonation gallows is complicated, and the installation is loaded down with trivial details, and anti-seismic performance is not good, and antidetonation factor of safety is low, can not effectual protection electromechanical device, consequently, needs a antidetonation gallows for the steel construction to solve above problem urgently.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome above technical problem, provide a simple structure, reasonable in design, simple to operate, shock attenuation are effectual an antidetonation gallows for steel construction.
In order to solve the technical problem, the utility model provides a technical scheme does: an anti-seismic support and hanger for a steel structure comprises two groups of symmetrically-installed steel materials on a steel beam, an upper fixing plate is connected above the upper installation steel materials, a U-shaped beam clamp is connected on the upper fixing plate, connecting plates are connected below the upper installation steel materials, a first damping device is connected below one group of connecting plates, a first adjusting screw is connected below the first damping device, a first adjusting plate is connected on the first adjusting screw, a hanger is connected below the adjusting plate, the hanger is connected with the first adjusting plate through a plurality of first adjusting bolts and a first locking nut, a first damping spring is sleeved on the first adjusting bolt and is positioned between the first adjusting plate and the hanger, a first threaded hole is arranged below the hanger, a first connecting screw is connected in the first threaded hole in a connecting mode, a first mounting seat is connected at the lower end of the connecting screw, the mounting seat I is mounted on an electromechanical mounting frame, a damping device II is connected below a group of connecting plates, an anti-seismic connecting seat I is arranged below the damping device II in a refining mode, a connecting seat I is hinged below the anti-seismic connecting seat I, an adjusting screw rod II is connected to the connecting seat I, an adjusting plate II is connected to the adjusting screw rod II, an inclined strut is connected to the adjusting plate II through a plurality of adjusting bolts II and locking nuts II, a damping spring II is sleeved on the adjusting bolt II, the damping spring II is located between the adjusting plate II and the inclined strut, a threaded hole II is arranged below the inclined strut, a connecting screw rod II is arranged in the threaded hole II in a connecting mode, a connecting seat II is connected to the connecting screw rod II, and an anti-seismic connecting seat II is hinged to the connecting seat II, and the second anti-seismic connecting seat is arranged on the electromechanical mounting frame.
As an improvement, the first damping device and the second damping device are identical in structure, the first damping device comprises a fixing plate, a damping plate is connected and arranged below the fixing plate through a damping bolt and a fastening nut, a damping spring is sleeved on the damping bolt, and the damping spring is located between the fixing plate and the damping plate.
As an improvement, be equipped with screw hole three on the regulating plate one, screw hole three uses with adjusting screw one cooperation, be equipped with screw hole four on the regulating plate two, screw hole four uses with adjusting screw two cooperation.
As an improvement, the section of the hanging bracket is U-shaped, and the section of the inclined strut is U-shaped.
As an improvement, the installation vertical angle of the inclined strut is 30-50 degrees.
As an improvement, the electromechanical installation frame is provided with electromechanical equipment, and the two sides of the electromechanical equipment are connected with limit fastening plates.
As the improvement, electromechanical mounting bracket below symmetric connection is equipped with the supporting screw, the last connection of supporting screw is equipped with the mounting bracket, it is equipped with U type briquetting to lie in the cover below the mounting bracket on the supporting screw, the installation is equipped with electromechanical device on the mounting bracket, electromechanical device both sides are all connected and are equipped with spacing mounting plate.
After the structure more than adopting, the utility model has the advantages of it is following:
1. the utility model has simple structure, reasonable design, less material consumption and low manufacturing cost, reduces the investment of large-scale mechanical equipment, saves the mechanical cost and reduces the construction cost;
2. the utility model adopts threaded connection, is convenient and rapid to disassemble and assemble, is simple and convenient to operate, is convenient to install the anti-seismic support in a large-span steel structure, and has wide application range and high frequency;
3. the damping device I, the damping device II, the damping spring I and the damping spring II are arranged, so that the damping treatment can be carried out on the electromechanical equipment for many times, and the damping effect is good;
4. the utility model discloses well regulating plate one, regulating plate two, adjusting screw one, adjusting screw two, connecting screw one and connecting screw two's setting can adjust the mounting height of a gallows of combatting earthquake to the application range who uses in a gallows of combatting earthquake of steel construction is wider, can be used for multiple job site, and the practicality is better.
Drawings
Fig. 1 is the utility model discloses a structural schematic of a antidetonation gallows for steel construction.
Fig. 2 is an enlarged schematic view of a portion a in fig. 1.
Fig. 3 is an enlarged schematic view of part B of fig. 1.
Fig. 4 is an enlarged schematic view of part C of fig. 1.
Fig. 5 is an enlarged schematic view of a portion D in fig. 1.
Fig. 6 is an enlarged schematic view of part E of fig. 1.
Fig. 7 is a schematic structural view of the utility model in a state of use of an earthquake-resistant support hanger for a steel structure.
As shown in the figure: 1. installing steel; 2. an upper fixing plate; 3. a U-shaped beam clamp; 4. a connecting plate; 5. a first damping device; 6. Adjusting a first screw rod; 7. a first adjusting plate; 8. a hanger; 9. adjusting a first bolt; 10. locking the first nut; 11. a first damping spring; 12. a first threaded hole; 13. connecting a first screw rod; 14. a first mounting seat; 15. an electromechanical mounting frame; 16. a second damping device; 17. A first anti-seismic connecting seat; 18. a first connecting seat; 19. adjusting a screw rod II; 20. a second adjusting plate; 21. bracing; 22. adjusting a second bolt; 23. a second locking nut; 24. a second damping spring; 25. a second threaded hole; 26. connecting a second screw rod; 27. a second connecting seat; 28. a second anti-seismic connecting seat; 29. a fixing plate; 30. a shock-absorbing bolt; 31. fastening a nut; 32. a damper plate; 33. a damping spring; 34. a third threaded hole; 35. a fourth threaded hole; 36. an electromechanical device; 37. a limiting and fastening plate; 38. a support screw; 39. A mounting frame; 40. and a U-shaped pressing block.
Detailed Description
In the description of the present invention, it is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "inner", "outer", "center", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element referred to must have a specific orientation configuration and operation, and therefore, should not be construed as limiting the present invention.
In the description of the present invention, it should be further noted that, unless otherwise explicitly stated or limited, the terms "provided", "mounted", "connected", and the like are to be understood in a broad sense, and for example, they may be fixedly connected, detachably connected, or integrally connected, mechanically connected, electrically connected, directly connected, indirectly connected through an intermediate medium, or connected to the inside of two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
The present invention will be described in further detail with reference to the accompanying drawings.
Example one
As shown in fig. 1-6, an anti-seismic support and hanger for steel structure comprises two sets of upper mounting steel materials 1 symmetrically mounted on a steel beam, an upper fixing plate 2 is connected above the upper mounting steel materials 1, a U-shaped beam clamp 3 is connected on the upper fixing plate 2, connecting plates 4 are connected below the upper mounting steel materials 1, a first damping device 5 is connected below one set of connecting plates 4, a first adjusting screw 6 is connected below the first damping device 5, a first adjusting plate 7 is connected on the first adjusting screw 6, a third threaded hole 34 is formed in the first adjusting plate 7, the third threaded hole 34 is used in cooperation with the first adjusting screw 6, a hanger 8 is connected below the first adjusting plate 7, the cross section of the hanger 8 is in a U-shaped shape, the hanger 8 is connected with the first adjusting plate 7 through a plurality of first adjusting bolts 9 and a first locking nut 10, a first damping spring 11 is sleeved on the first adjusting bolt 9, the first damping spring 11 is located between the first adjusting plate 7 and the hanger 8, a first threaded hole 12 is connected with a first inner threaded connecting screw 13, a first damping spring seat 16 is arranged below a second damping spring seat 16, a second damping seat 16 is arranged below the first damping device 16 and a second damping seat 16, and a second damping seat 16 are arranged below the second damping device 16, the utility model provides a shock-proof connection seat, including shock-proof connection seat I17, connecting seat I18, connecting on connection seat I18 and being equipped with adjusting screw two 19, adjusting screw two 19 is gone up to connect and is equipped with adjusting plate two 20, be equipped with screw hole four 35 on adjusting plate two 20, screw hole four 35 uses with adjusting screw two 19 cooperation, it is equipped with bracing 21 to connect on adjusting plate two 20, the cross-section of bracing 21 is "U type", the installation vertical angle of bracing 21 is 45, bracing 21 is connected through a plurality of adjusting bolt two 22 and lock nut two 23 with adjusting plate two 20, cup joint on adjusting bolt two 22 and be equipped with damping spring two 24, damping spring two 24 is located between adjusting plate two 20 and the bracing 21, bracing 21 below is equipped with screw hole two 25, screw hole two 25 female connection is equipped with connecting screw two 26, it is equipped with two 27 to connect on the connecting screw two 26, it is equipped with two mounting brackets to hinge on connection seat two 27, connecting seat two 28 hinges on shock-proof connection seat II 28 installs on electromechanical device 15, install electromechanical device 36 on electromechanical equipment 36, electromechanical device 36 both sides are equipped with spacing board 37.
Example two
As shown in fig. 7, an anti-seismic support hanger for a steel structure comprises two groups of upper mounting steel materials 1 symmetrically mounted on a steel beam, an upper fixing plate 2 is connected above each upper mounting steel material 1, a U-shaped beam clamp 3 is connected on each upper fixing plate 2, connecting plates 4 are connected below each upper mounting steel material 1, a first damping device 5 is connected below each group of connecting plates 4, a first adjusting screw 6 is connected below each first damping device 5, a first adjusting plate 7 is connected on each first adjusting screw 6, a third threaded hole 34 is formed in each first adjusting plate 7, the third threaded hole 34 is used in cooperation with the first adjusting screw 6, a hanger 8 is connected below each first adjusting plate 7, the cross section of the hanger 8 is in a U-shape, the hanger 8 and the first adjusting screw 9 are connected with the first adjusting screw 10 through a plurality of first adjusting bolts 9, a first damping spring 11 is sleeved on each first adjusting bolt 9, the first damping spring 11 is located between the first adjusting plate 7 and the hanger 8, a threaded hole 12 is connected with a first connecting screw 13, a lower end of the first damping spring connecting plate 13 is connected with a second damping spring mounting seat 16, a second damping device 16 is arranged below the second damping plate 16, and a second damping device 16 are connected with a second damping device 16, the articulated connecting seat 18 that is equipped with in a 17 below of antidetonation connecting seat, connect on connecting seat 18 and be equipped with two 19 adjusting screw, the connection is equipped with two 20 adjusting plates on two 19 adjusting screw, be equipped with four 35 threaded holes on two 20 adjusting plates, four 35 threaded holes use with two 19 cooperation of adjusting screw, it is equipped with bracing 21 to connect on two 20 adjusting plates, the cross-section of bracing 21 is "U type", the installation vertical angle of bracing 21 is 45, bracing 21 is connected through two 22 and lock nut two 23 of a plurality of adjusting bolt with two 20 adjusting plate, cup joint on two 22 adjusting bolt and be equipped with two 24 damping spring, two 24 damping spring are located between two 20 adjusting plate and the bracing 21, bracing 21 below is equipped with two 25 threaded holes, two 25 threaded holes female connection are equipped with two 26 connecting screw, connect on two 26 connecting screw and be equipped with two 27 connecting seat, the articulated connecting seat two 28 that is equipped with on two 27 connecting seat, two 28 connecting seat install on electromechanical mounting bracket 15, electromechanical connection is equipped with support screw 38 below symmetrical connection, support screw 38 is equipped with on 38, connect on two 36 electromechanical connection of connecting seat 36, it is equipped with electromechanical connection equipment mounting bracket 39 all be equipped with electromechanical connection briquetting 39 on electromechanical mounting bracket 36 both sides.
The utility model discloses when concrete implementation, can not pull on electromechanical mounting bracket 15 during electromechanical device 36 installation, will gently take and put, prevent to destroy a antidetonation gallows, the perpendicular angle of installation of bracing 21 should be 45, and must not be less than 30, the distance of bracing 21 and gallows 8 must not be greater than 0.1m, should be 5cm, bracing 21 can adjust from top to bottom temporarily when hoist electromechanical mounting bracket 15 with gallows 8, electromechanical device 36 is taken one's place and fastens again, its construction steps is:
s1: measuring
Mainly measure the height of the pipeline to be installed from the floor and the concrete construction position of installing the steel 1 on the irregular shape, determine the length of the adjusting screw rod I6, the adjusting screw rod II 19, the connecting screw rod I13 and the connecting screw rod II 26, the length of the hanger bracket 8 and the length of the inclined strut 21, and determine the position of the electromechanical mounting rack 15;
s2: cutting material
Cutting and blanking materials according to the measured related data, and spraying a metal zinc spraying agent at the notch to avoid corrosion;
s3: mounting of hangers
Drilling according to the position of the hanger 8, and further installing a mounting steel material 1, a connecting plate 4, a damping device I5, an adjusting screw rod I6, a connecting screw rod I13 and a mounting seat I14;
s4: mounting of diagonal braces
Drilling according to the position of the inclined strut 21, and further installing an installation steel material 1, a connecting plate 4, a damping device II 16, a first anti-seismic connecting seat 17, a first connecting seat 18, an adjusting screw II 19, a connecting screw II 26, a second connecting seat 27, a second anti-seismic connecting seat 28 and a second anti-seismic connecting seat 28;
s5: height adjustment for electromechanical mounts
The heights of the hanger 8 and the inclined strut 21 are adjusted by screwing the adjusting screw rod I6, the adjusting screw rod II 19, the connecting screw rod I13 and the connecting screw rod II 26, so that the height of the electromechanical mounting frame 15 is adjusted.
The present invention and the embodiments thereof have been described above, but the description is not limited thereto, and the embodiment shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should understand that they should not be limited to the embodiments described above, and that they can design the similar structure and embodiments without departing from the spirit of the invention.
Claims (7)
1. The utility model provides an antidetonation gallows for steel construction, includes that two sets of symmetries install steel (1), its characterized in that on the girder steel: an upper fixing plate (2) is connected and arranged above the upper mounting steel (1), a U-shaped beam clamp (3) is connected and arranged on the upper fixing plate (2), a connecting plate (4) is connected and arranged below the upper mounting steel (1), a first damping device (5) is connected and arranged below a group of connecting plates (4), a first adjusting screw (6) is connected and arranged below the first damping device (5), a first adjusting plate (7) is connected and arranged on the first adjusting screw (6), a hanging bracket (8) is connected and arranged below the first adjusting plate (7), the hanging bracket (8) is connected with the first adjusting plate (7) through a plurality of first adjusting bolts (9) and a first locking nut (10), a first damping spring (11) is sleeved on the first adjusting bolt (9), the first damping spring (11) is positioned between the first adjusting plate (7) and the hanging bracket (8), a first threaded hole (12) is arranged below the hanging bracket (8), a first threaded hole (12) is internally threaded and is connected with a first connecting screw (13), a first mounting seat (14) is connected and a second damping seat (14) is arranged below the first damping connecting plate (16), the utility model discloses a shock-proof connection seat, including shock-proof connection seat I (17), adjusting screw two (19) are connected to be equipped with in connecting seat I (18), adjusting screw two (19) are gone up to connect and are equipped with adjusting plate two (20), adjusting plate two (20) are gone up to connect and are equipped with bracing (21), bracing (21) are connected through a plurality of adjusting bolt two (22) and lock nut two (23) with adjusting plate two (20), cup joint on adjusting bolt two (22) and are equipped with damping spring two (24), damping spring two (24) are located between adjusting plate two (20) and bracing (21), bracing (21) below is equipped with screw hole two (25), screw hole two (25) female connection is equipped with connecting screw two (26), the connection is equipped with connecting seat two (27) on connecting screw two (26), the articulated connecting seat two (28) that are equipped with on connecting seat two (27), shock-proof connection seat two (28) are installed on electromechanical mounting bracket (15).
2. An anti-seismic support and hanger for steel structures according to claim 1, wherein: the damping device I (5) and the damping device II (16) are identical in structure, the damping device I (5) comprises a fixing plate (29), a damping plate (32) is connected and arranged below the fixing plate (29) through a damping bolt (30) and a fastening nut (31), a damping spring (33) is sleeved and arranged on the damping bolt (30), and the damping spring (33) is located between the fixing plate (29) and the damping plate (32).
3. An anti-seismic support and hanger for steel structures according to claim 1, wherein: be equipped with screw hole three (34) on regulating plate one (7), screw hole three (34) and adjusting screw cooperate and use, be equipped with screw hole four (35) on regulating plate two (20), screw hole four (35) and adjusting screw two (19) cooperation are used.
4. An anti-seismic support and hanger for steel structures according to claim 1, wherein: the section of the hanger (8) is U-shaped, and the section of the inclined strut (21) is U-shaped.
5. An anti-seismic support and hanger for steel structures according to claim 1, wherein: the vertical installation angle of the inclined strut (21) is 30-50 degrees.
6. An anti-seismic support and hanger for steel structures according to claim 1, wherein: install electromechanical device (36) on electromechanical mounting bracket (15), electromechanical device (36) both sides are all connected and are equipped with spacing mounting plate (37).
7. An anti-seismic support and hanger for steel structures according to claim 1, wherein: electromechanical mounting bracket (15) below symmetric connection is equipped with supporting screw (38), it is equipped with mounting bracket (39) to connect on supporting screw (38), it is equipped with U type briquetting (40) to lie in mounting bracket (39) below cover joint on supporting screw (38), the installation is equipped with electromechanical device (36) on mounting bracket (39), electromechanical device (36) both sides are all connected and are equipped with spacing mounting plate (37).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222012364.4U CN218094629U (en) | 2022-08-02 | 2022-08-02 | A antidetonation gallows for steel construction |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222012364.4U CN218094629U (en) | 2022-08-02 | 2022-08-02 | A antidetonation gallows for steel construction |
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CN218094629U true CN218094629U (en) | 2022-12-20 |
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CN202222012364.4U Active CN218094629U (en) | 2022-08-02 | 2022-08-02 | A antidetonation gallows for steel construction |
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2022
- 2022-08-02 CN CN202222012364.4U patent/CN218094629U/en active Active
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