CN216867411U - Vibration isolation mounting device for building electrical equipment - Google Patents

Vibration isolation mounting device for building electrical equipment Download PDF

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Publication number
CN216867411U
CN216867411U CN202220443869.3U CN202220443869U CN216867411U CN 216867411 U CN216867411 U CN 216867411U CN 202220443869 U CN202220443869 U CN 202220443869U CN 216867411 U CN216867411 U CN 216867411U
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China
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shock absorption
box
electrical equipment
guide
vibration isolation
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CN202220443869.3U
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Chinese (zh)
Inventor
王海新
张润普
张伟星
高原
张靖萌
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Individual
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Abstract

The utility model discloses a vibration isolation mounting device for building electrical equipment, which relates to the technical field of vibration isolation mounting devices and comprises a damping box, wherein two sides of the inner bottom surface of the damping box are respectively provided with a guide groove, and a first guide rod is fixedly connected between the inner side surfaces of two ends of the two guide grooves; the installation box is arranged in the shock absorption box simultaneously, a silencing effect can be brought to the normal operation of the electrical equipment, the noise influence brought by the electrical equipment is reduced, the shock absorption box can be fixed on the wall surface through the installation plate, the fixing mode is firm and simple, the operation is convenient, the shock absorption pad can reduce the damage of the shock absorption box to the wall surface, the vertical shock absorption mechanism and the horizontal shock absorption mechanism on the side surface of the installation box can bring a shock absorption effect to the electrical equipment in the installation box, the influence on the inside and the outside of the electrical equipment due to the overlarge amplitude of the electrical equipment in the operation process is prevented, the service life of the electrical equipment is prolonged, and the influence on the outside in the operation process of the electrical equipment is reduced.

Description

Vibration isolation mounting device for building electrical equipment
Technical Field
The utility model relates to the technical field of vibration isolation mounting devices, in particular to a vibration isolation mounting device for building electrical equipment.
Background
As urban land is increasingly tense, residential, office and commercial high-rise buildings have become the main development trend of urban buildings, and it is important to install vibration isolation elements between equipment and buildings to prevent the vibration generated by electrical equipment in the buildings from harming the building structure and interfering with the environment, so as to reduce the transmission of the equipment vibration;
at present, when building electrical equipment is installed, the electrical equipment is usually directly installed on a wall, and a certain vibration isolation device is not arranged, so that vibration generated during electrical work can be caused, certain influence can be caused on the wall after long-term operation, noise generated during vibration can also influence a user, meanwhile, certain influence can be caused on components in the electrical equipment due to long-term vibration, the phenomenon of loose contact of parts can easily occur, and certain influence is brought to normal use; therefore, it is necessary to design a vibration isolation mounting device for electrical equipment of a building to solve the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the defects in the prior art and provides a vibration isolation mounting device for building electrical equipment.
In order to achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides a building electrical equipment vibration isolation installation device, includes the surge tank, the guide way, two have all been seted up to the interior bottom surface both sides of surge tank equal first guide bar of fixedly connected with between the both ends medial surface of guide way, the inside of surge tank is provided with the movable frame, two all be provided with vertical damper between the bottom surface of first guide bar and movable frame, two second guide bars of fixedly connected with between the two relative medial surfaces of movable frame, two the sliding plate has been cup jointed in the joint sliding jointly on the surface of second guide bar, the install bin is installed to the top surface of sliding plate, all be provided with horizontal damper through the guide rail on two relative medial surfaces of surge tank.
Preferably, vertical damper includes four sliding blocks, four two double-phase a set of and slip cup joint on the surface at two first guide bar both ends of sliding block, four two sliding block sides that lie in on the same first guide bar in the sliding block all are equipped with supporting spring, supporting spring keeps away from the one end of sliding block and is connected with the inner face that corresponds the guide way, four the equal swing joint of two sliding block top surfaces that lie in on the same first guide bar in the sliding block has X type bracing piece, two the top surface difference swing joint of X type bracing piece is in four angle departments of bottom surface of movable frame.
Preferably, horizontal damper includes two gasbag casees, two gasbag casees are respectively through guide rail sliding connection on the relative two medial surfaces of damper, two the equal sliding connection of medial surface of gasbag case has the shock attenuation board, fixedly connected with gasbag between the medial surface of the side of shock attenuation board and gasbag case, the opposite side fixedly connected with connecting rod of shock attenuation board, the one end that the shock attenuation board was kept away from to the connecting rod runs through gasbag case and fixed connection in the side of install bin.
Preferably, the damper box is a box body structure with an opening at one side, and a box door is installed at the opening of the damper box.
Preferably, four corners of one side of the shock absorption box opposite to the opening are fixedly connected with shock absorption pads.
Preferably, equal two mounting panels of fixedly connected with on the both sides face of surge tank, four the side of mounting panel all link up and seted up threaded hole.
The utility model has the following beneficial effects:
1. the damping box, the mounting plate and the damping pad are arranged, the mounting box is arranged in the damping box at the same time, the damping box can have a silencing effect when the electrical equipment is in normal operation, the noise influence caused by the electrical equipment is reduced, the damping box can be fixed on the wall surface by the mounting plate, the fixing mode is firm and simple, the operation is convenient, and the damping pad can reduce the damage of the damping box on the wall surface;
2. through setting up vertical damper, horizontal damper, the vertical damper and the horizontal damper of install bin side can bring the shock attenuation effect for the electrical equipment of install bin inside, and the amplitude is too big when preventing the electrical equipment operation, brings the influence to the inside and the external world of electrical equipment, has increased the life of electrical equipment and has reduced the influence to the external world when the electrical equipment operation simultaneously.
Drawings
Fig. 1 is a schematic structural diagram of a main body of a vibration isolation mounting device for electrical equipment of a building, which is provided by the utility model;
fig. 2 is an enlarged schematic view of a structure at a position a of the vibration isolation mounting device for the electrical equipment of the building, provided by the utility model;
fig. 3 is a schematic structural view of a movable frame of the vibration isolation mounting device for electrical equipment of a building according to the present invention;
fig. 4 is a schematic front sectional structural view of a horizontal damping mechanism of a vibration isolation mounting device for electrical equipment in a building according to the present invention;
in the figure: 1. a damper box; 2. a guide groove; 3. a first guide bar; 4. a vertical shock absorbing mechanism; 41. a slider; 42. a support spring; 43. an X-shaped support bar; 5. a movable frame; 6. a second guide bar; 7. a sliding plate; 8. a horizontal shock absorbing mechanism; 81. an airbag case; 82. a damper plate; 83. an air bag; 84. a connecting rod; 9. installing a box; 10. a shock pad; 11. mounting a plate; 12. and (4) a box door.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments.
Referring to fig. 1-3, a building electrical equipment vibration isolation installation device, including surge tank 1, guide way 2 has all been seted up to the interior bottom surface both sides of surge tank 1, equal fixedly connected with first guide bar 3 between the both ends medial surface of two guide ways 2, surge tank 1's inside is provided with movable frame 5, all be provided with vertical damper 4 between the bottom surface of two first guide bar 3 and movable frame 5, two second guide bar 6 of fixedly connected with between the two relative medial surfaces of movable frame 5, sliding plate 7 has been cup jointed in the joint of sliding on the surface of two second guide bar 6 jointly, install mounting box 9 is installed to the top surface of sliding plate 7, the cooperation of installation box 9 and surge tank 1 is used and has been guaranteed to carry out the effect of amortization when operating electrical equipment better, all be provided with horizontal damper 8 through the guide rail on the two relative medial surfaces of surge tank 1.
Referring to fig. 1-2, the vertical damping mechanism 4 includes four sliding blocks 41, two by two sets of four sliding blocks 41 are slidably sleeved on the outer surfaces of two ends of the two first guide bars 3, the side surfaces of the four sliding blocks 41 are attached to the inner surfaces of the guide grooves 2, the side surfaces of the two sliding blocks 41 on the same first guide bar 3 in the four sliding blocks 41 are respectively provided with a supporting spring 42, one end of the supporting spring 42 away from the sliding block 41 is connected with the inner surface of the corresponding guide groove 2, the top surfaces of the two sliding blocks 41 on the same first guide bar 3 in the four sliding blocks 41 are respectively and movably connected with an X-shaped support bar 43, the two X-shaped support bars 43 are made of high-strength alloy material, and the top surfaces of the two X-shaped support bars 43 are respectively and movably connected at four corners of the bottom surface of the movable frame 5.
Referring to fig. 4, the horizontal damping mechanism 8 includes two air bag boxes 81, the two air bag boxes 81 are respectively connected to two opposite inner side surfaces of the damping box 1 through guide rails in a sliding manner, damping plates 82 are respectively connected to the inner side surfaces of the two air bag boxes 81 in a sliding manner, air bags 83 are fixedly connected between the side surfaces of the damping plates 82 and the inner side surfaces of the air bag boxes 81, connecting rods 84 are fixedly connected to the other side surfaces of the damping plates 82, and one ends, far away from the damping plates 82, of the connecting rods 84 penetrate through the air bag boxes 81 and are fixedly connected to the side surfaces of the installation box 9.
Referring to fig. 1, the damper box 1 is a box structure with an opening at one side, and a box door 12 is installed at the opening of the damper box 1, so that the electrical equipment can be conveniently maintained and disassembled.
Referring to fig. 1, the shock absorption pads 10 are fixedly connected to four corners of one side of the shock absorption box 1 opposite to the opening, and the four shock absorption pads 10 are made of rubber materials and can protect the wall surface at the joint of the shock absorption box 1.
Referring to fig. 1, two mounting panels 11 of equal fixedly connected with on the both sides face of surge tank 1, the side of four mounting panels 11 all link up the set up screw hole, and four mounting panels 11's convenient to use fix surge tank 1 on the wall.
The specific working principle of the utility model is as follows:
when the vibration isolation mounting device is used, firstly, the shock absorption box 1 is fixed on a wall surface through four mounting plates 11 on the side surface by using bolts, then, corresponding electrical equipment is mounted in the mounting box 9, and the equipment can normally operate by opening the equipment after the box door 12 is closed;
the electric equipment can generate certain vibration in the operation process and drive the installation box 9 to vibrate simultaneously, at the moment, for the vibration in the vertical direction, the installation box 9 can drive the movable frame 5 to vibrate in the vibration process, the movable frame 5 drives the sliding block 41 to horizontally move on the first guide rod 3 through the X-shaped support rod 43 when moving vertically, and the support spring 42 on the first guide rod 3 can generate a damping effect on the movement of the sliding block 41 when the sliding block 41 moves, so that the vertical vibration of the installation box 9 is indirectly slowed down;
when electrical equipment drives installation box 9 horizontal vibration, can drive installation box 9 along second guide bar 6 horizontal migration on sliding plate 7, the in-process installation box 9 of removal drives shock attenuation board 82 through connecting rod 84 and moves at gasbag case 81 as well, and gasbag 83 can bring supporting role to shock attenuation board 82 to can alleviate its horizontal migration's range, thereby can slow down the vibration of installation box 9 in the horizontal direction.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and equivalent alternatives or modifications according to the technical solution of the present invention and the inventive concept thereof should be covered by the scope of the present invention.

Claims (6)

1. A vibration isolation mounting device for building electrical equipment comprises a shock absorption box (1) and is characterized in that, two sides of the inner bottom surface of the shock absorption box (1) are respectively provided with a guide groove (2), a first guide rod (3) is fixedly connected between the inner side surfaces of two ends of the two guide grooves (2), a movable frame (5) is arranged in the shock absorption box (1), a vertical shock absorption mechanism (4) is arranged between the two first guide rods (3) and the bottom surface of the movable frame (5), two second guide rods (6) are fixedly connected between two opposite inner side surfaces of the movable frame (5), the outer surfaces of the two second guide rods (6) are sleeved with a sliding plate (7) in a sliding manner, the top surface of the sliding plate (7) is provided with a mounting box (9), and two opposite inner side surfaces of the shock absorption box (1) are provided with horizontal shock absorption mechanisms (8) through guide rails.
2. The vibration isolation mounting device for construction electrical equipment according to claim 1, the vertical damping mechanism (4) comprises four sliding blocks (41), the four sliding blocks (41) are in a group two by two and are sleeved on the outer surfaces of the two ends of the two first guide rods (3) in a sliding manner, supporting springs (42) are respectively assembled on the side surfaces of the two sliding blocks (41) on the same first guide rod (3) in the four sliding blocks (41), one end that sliding block (41) were kept away from in supporting spring (42) is connected with the inner face that corresponds guide way (2), four two sliding block (41) top surface equal swing joint that lie in on same first guide bar (3) in sliding block (41) has X type bracing piece (43), two the top surface difference swing joint of X type bracing piece (43) is in four angle departments of bottom surface of adjustable frame (5).
3. The vibration isolation mounting device for the building electrical equipment is characterized in that the horizontal shock absorption mechanism (8) comprises two air bag boxes (81), the two air bag boxes (81) are respectively connected to two opposite inner side surfaces of the shock absorption box (1) in a sliding mode through guide rails, a shock absorption plate (82) is connected to each inner side surface of the two air bag boxes (81) in a sliding mode, an air bag (83) is fixedly connected between the side surface of the shock absorption plate (82) and the inner side surface of the air bag box (81), a connecting rod (84) is fixedly connected to the other side surface of the shock absorption plate (82), and one end, far away from the shock absorption plate (82), of the connecting rod (84) penetrates through the air bag boxes (81) and is fixedly connected to the side surface of the mounting box (9).
4. The vibration isolation mounting device for the building electrical equipment is characterized in that the shock absorption box (1) is a box body structure with an opening at one side, and a box door (12) is mounted at the opening of the shock absorption box (1).
5. The vibration isolation mounting device for the building electrical equipment as claimed in claim 1, wherein a vibration absorbing pad (10) is fixedly connected to each of four corners of one side of the vibration absorbing box (1) opposite to the opening.
6. The vibration isolation mounting device for the building electrical equipment as claimed in claim 1, wherein two mounting plates (11) are fixedly connected to both side surfaces of the damper box (1), and threaded holes are formed through all the side surfaces of the four mounting plates (11).
CN202220443869.3U 2022-03-02 2022-03-02 Vibration isolation mounting device for building electrical equipment Active CN216867411U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220443869.3U CN216867411U (en) 2022-03-02 2022-03-02 Vibration isolation mounting device for building electrical equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220443869.3U CN216867411U (en) 2022-03-02 2022-03-02 Vibration isolation mounting device for building electrical equipment

Publications (1)

Publication Number Publication Date
CN216867411U true CN216867411U (en) 2022-07-01

Family

ID=82160382

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220443869.3U Active CN216867411U (en) 2022-03-02 2022-03-02 Vibration isolation mounting device for building electrical equipment

Country Status (1)

Country Link
CN (1) CN216867411U (en)

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