CN214065130U - Combined air conditioning unit - Google Patents
Combined air conditioning unit Download PDFInfo
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- CN214065130U CN214065130U CN202023199314.9U CN202023199314U CN214065130U CN 214065130 U CN214065130 U CN 214065130U CN 202023199314 U CN202023199314 U CN 202023199314U CN 214065130 U CN214065130 U CN 214065130U
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- conditioning unit
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Abstract
The utility model relates to a modular air conditioning unit, it includes the air conditioning unit body, air conditioning unit body below is provided with vibration damping mount, vibration damping mount is including setting up the board of accepting in air conditioning unit body below, and the one side of accepting the board and deviating from the air conditioning unit body is provided with the bottom plate, accepts and is provided with a plurality of damper units between board and the bottom plate, and damper units includes damping spring, and damping spring's one end rigid coupling is on accepting the board, and the other end rigid coupling is on the bottom plate. This application has the effect of absorbing air conditioning unit and producing vibrations at the during operation.
Description
Technical Field
The application relates to the field of air conditioning unit sets, in particular to a combined air conditioning unit set.
Background
The combined air conditioner unit is one kind of air treating apparatus comprising various air treating functional sections. The air treatment functional section comprises structural units such as air mixing, flow equalization, filtration, cooling, primary and secondary heating, dehumidification, humidification, an air feeder, an air return fan, water spraying, noise elimination, heat recovery and the like.
The structural unit bodies can be divided into horizontal type, vertical type and ceiling type according to the structural types; the horizontal air conditioning unit is formed by placing and linking a plurality of groups of structural unit bodies side by side, so that air in a workshop, an office building, a hospital and other comprehensive places is treated.
However, the inventor of the present application finds that several structural unit bodies may generate vibration during operation, and the vibration affects the stability of the structural unit bodies during placement on the one hand, and on the other hand, the structural unit bodies are rigidly collided with the ground due to long-time vibration, which easily affects the service life of precision parts in the structural unit bodies.
SUMMERY OF THE UTILITY MODEL
In order to absorb the vibrations that the air conditioning unit produced at the during operation, this application provides a modular air conditioning unit.
The application provides a modular air conditioning unit adopts following technical scheme:
the utility model provides a modular air conditioning unit, includes the air conditioning unit body, air conditioning unit body below is provided with vibration damping mount, vibration damping mount is including setting up the board of accepting in the air conditioning unit body below, and the one side of accepting the board and deviating from the air conditioning unit body is provided with the bottom plate, accepts and is provided with a plurality of damper units between board and the bottom plate, and damper units includes damping spring, and damping spring's one end rigid coupling is on accepting the board, and the other end rigid coupling is on the bottom plate.
Through adopting above-mentioned technical scheme, when the air conditioning unit body takes place vibrations, the air conditioning unit body will shake and transmit bottom plate department to elastic deformation through compression spring will shake the absorption, thereby improved the stability that air conditioning unit placed.
Optionally, the damping assembly further comprises a sliding rod fixedly connected to one side of the bearing plate facing the bottom plate, the sliding rod is arranged on the bottom plate in a penetrating mode and connected with the bottom plate in a sliding mode, and the damping spring is sleeved on the sliding rod.
Through adopting above-mentioned technical scheme, the setting of pole that slides for the bottom plate with accept and can slide along the length direction of the pole that slides between the board, thereby improved the bottom plate and accepted the stability of being connected between the board. The arrangement of the sliding rod also enables the compression spring to be compressed along the axis, so that the compression spring is protected, and the durability of the compression spring is improved.
Optionally, the sliding rod is far away from the one end of accepting the board and has been seted up the external screw thread, and the screw-thread fit has an adjusting nut on the sliding rod, and the adjusting nut is provided with a blotter towards the one side of bottom plate.
Through adopting above-mentioned technical scheme, thereby the staff can adjust the distance of accepting between board and the bottom plate through revolving to twist adjusting nut, and then changes damping spring by compression degree, adjusts the shock-absorbing capacity of vibration damping mount to the air conditioning unit body. The contact between adjusting nut and the bottom plate is cushioned by the arrangement of the cushion pad. Therefore, the situation that the position of the adjusting nut on the sliding rod is changed due to the vibration of the adjusting nut and the bottom plate is reduced, the adjusting capacity is influenced, and the working stability of the adjusting nut is improved.
Optionally, a damping pad made of rubber is further arranged between the bearing plate and the air conditioning unit body.
Through adopting above-mentioned technical scheme, the setting of shock pad has carried out the buffering to air conditioning unit body with accepting the board, when absorbing the vibrations that some air conditioning unit bodies sent, has reduced air conditioning unit body and accepted the rigid collision between the board to protect the air conditioning unit body, reduced because the rigid collision influences the condition of the inside life of air conditioning unit body.
Optionally, one side of the bottom plate, which is away from the bearing plate, is provided with a plurality of support legs, each support leg comprises a sleeve fixedly connected to the bottom plate, an inserted rod is inserted into each sleeve, the outer peripheral surface of each inserted rod is provided with an external thread, and the inner peripheral surface of each sleeve is provided with an internal thread mutually matched with the outer peripheral surface of each inserted rod.
Through adopting above-mentioned technical scheme, when installation ground is not level, the staff can revolve wrong inserted bar, through the screw-thread fit between inserted bar and the sleeve pipe to adjust the overall length between inserted bar and the sleeve pipe, and then adjust the bottom plate and be in the horizontality, improved the stability that air conditioning unit body placed.
Optionally, one end ball of the inserted bar far away from the bottom plate is hinged with a base plate, and the base plate is placed on the ground.
Through adopting above-mentioned technical scheme, the backing plate is articulated with the ball of inserted bar, makes things convenient for the inserted bar pivoted while, can also adapt to the ground of unevenness to vibration damping mount has been improved and has been placed the stability on ground.
Optionally, a plurality of damping bases are arranged and connected in sequence, and a connecting assembly is arranged between two adjacent damping bases;
the connecting assembly comprises mounting pieces fixedly connected to the side walls of the bottom plates, connecting pieces arranged on the mounting pieces of the two adjacent bottom plates are inserted at the same time, and each connecting piece comprises a connecting plate and inserting plates vertically and fixedly connected to the two ends of the connecting plate and used for being inserted into the mounting pieces.
Through adopting above-mentioned technical scheme, when the staff uses coupling assembling to splice a plurality of vibration damping mount, the staff can insert two picture pegs on the connecting piece in two vibration damping mount's the installed part respectively to through the mutual screens of picture peg and installed part, with two vibration damping mount interconnect. The setting of a plurality of vibration damping mount has made things convenient for the staff to make up the air conditioning unit body according to actual demand to improved the convenience of air conditioning unit body installation, a plurality of vibration damping mount's setting has reduced every vibration damping mount's volume simultaneously, has made things convenient for the staff to store and transport vibration damping mount.
Optionally, a fixing piece used for clamping the mounting piece is further arranged on the connecting piece, a jack for allowing the inserting plate to penetrate is formed in the fixing piece, a fixing screw rod is fixedly connected to one face, facing the connecting plate, of the fixing piece, the fixing screw rod penetrates through the connecting plate and is in threaded fit with a fixing nut, and the fixing nut is located on one side, facing away from the fixing piece, of the connecting plate.
Through adopting above-mentioned technical scheme, the staff has installed the connecting piece after, can place the mounting in the one side that the installed part deviates from the mounting, passes the connecting piece with clamping screw, through the screw-thread fit between clamping screw and fixation nut to fixed mounting and connecting piece, the further improvement of setting up of mounting has been connected the stability that coupling assembling is connected two vibration damping mount.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the vibration generated by the air conditioning unit body is absorbed, so that the air conditioning unit body is protected, and the long-time working stability of the air conditioning unit body is improved;
2. damping base's setting has still improved the convenience of air conditioning unit body to the installation of multiple topography, thereby the staff can be through the length of adjusting the landing leg more convenient with the steady placing of air conditioning unit at damping base upper surface.
Drawings
Fig. 1 is a schematic view of the overall structure of a combined air conditioning unit according to an embodiment of the present application;
FIG. 2 is an enlarged view of detail A of FIG. 1;
fig. 3 is an exploded view of a connector assembly.
Description of reference numerals: 1. an air conditioning unit body; 2. a damping mount; 21. a bearing plate; 22. a base plate; 23. a shock pad; 3. a shock absorbing assembly; 31. a slide bar; 32. adjusting the nut; 33. a damping spring; 34. a cushion pad; 4. a support leg; 41. a sleeve; 42. inserting a rod; 43. a base plate; 44. positioning a nut; 5. a connecting assembly; 51. a mounting member; 52. a connecting member; 53. a connecting plate; 54. inserting plates; 55. a fixing member; 56. a jack; 57. fixing the screw rod; 58. and (5) fixing the nut.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses a combined type air conditioning unit. Referring to fig. 1, the combined air conditioning unit includes an air conditioning unit body 1, and a damping base 2 is disposed below the air conditioning unit body 1.
As shown in fig. 1 and 2, the damper base 2 includes a receiving plate 21 disposed below the air conditioning unit body 1, and a bottom plate 22 is disposed on a side of the receiving plate 21 away from the air conditioning unit body 1. The bottom plate 22 is provided with the landing leg 4 on the side away from the bearing plate 21, and the shock absorption assembly 3 is arranged between the bearing plate 21 and the bottom plate 22. Air conditioning unit body 1 is provided with a plurality ofly according to the demand of the function of difference, arranges along length direction in proper order between a plurality of air conditioning unit bodies 1, and the vibration damping mount 2 that corresponds is provided with a plurality ofly, is provided with coupling assembling 5 between two adjacent vibration damping mount 2.
As shown in fig. 1 and 2, the shock-absorbing assembly 3 includes a sliding rod 31 fixed on the side of the bearing plate 21 facing the bottom plate 22, and the axis of the sliding rod 31 is perpendicular to the plane of the bearing plate 21; the circumferential surface of the sliding rod 31 far away from one end of the bearing plate 21 is provided with external threads. A through hole is arranged on the corresponding bottom plate 22, the sliding rod 31 passes through the through hole and is in threaded fit with an adjusting nut 32 on one surface of the bottom plate 22 departing from the bearing plate 21. The sliding rod 31 is further sleeved with a damping spring 33, the damping spring 33 is located between the bearing plate 21 and the bottom plate 22, and one end of the damping spring 33 is fixed on the bearing plate 21 and the other end is fixed on the bottom plate 22. The damper assembly 3 is provided in plural, and the plural damper assemblies 3 are evenly distributed on the receiving plate 21.
When the air conditioning unit body 1 vibrates, the bearing plate 21 and the bottom plate 22 slide along the length direction of the sliding rod 31, so that the vibration generated by the air conditioning unit body 1 is absorbed through the elastic deformation of the damping spring 33, and the placing stability of the air conditioning unit is improved.
As shown in fig. 1 and 2, a rubber shock pad 23 is further fixed to a surface of the receiving plate 21 facing the air conditioning unit body 1, and the air conditioning unit body 1 is placed on the shock pad 23. The shock pad 23 is arranged to buffer the air conditioning unit body 1 and the bearing plate 21, and when part of vibration sent by the air conditioning unit body 1 is absorbed, the rigid collision between the air conditioning unit body 1 and the bearing plate 21 is reduced, so that the air conditioning unit body 1 is protected, and the condition that the service life of internal parts of the air conditioning unit body 1 is influenced due to the rigid collision between the air conditioning unit body 1 and the bearing plate 21 is reduced.
As shown in fig. 1 and 2, the sliding rod 31 penetrates the bottom plate 22 and is connected with the bottom plate 22 in a sliding manner, so that the stability of the connection between the bottom plate 22 and the bearing plate 21 is improved. The adjusting nut 32 is matched with the sliding rod 31 through threads, so that a worker can adjust the distance between the bearing plate 21 and the bottom plate 22 by screwing the adjusting nut 32, the compression degree of the damping spring 33 is changed, and the damping capacity of the damping base 2 to the air conditioning unit body 1 is adjusted. The damping performance of the damping component 3 can be adjusted conveniently by workers according to actual installation conditions, so that the convenience of the damping base 2 is improved. The two adjusting nuts 32 are provided, and the two adjusting nuts 32 are tightly abutted against each other, so that the stability of the adjusting nuts 32 on the sliding rod 31 is improved. A buffer pad 34 is further sleeved on the sliding rod 31, and the buffer pad 34 is located between the adjusting nut 32 and the bottom plate 22. The provision of the cushion pad 34 cushions contact between the adjustment nut 32 and the base plate 22. Therefore, the situation that the position of the adjusting nut 32 on the sliding rod 31 is changed due to the vibration of the adjusting nut 32 and the bottom plate 22, the adjusting capacity is influenced is reduced, and the working stability of the adjusting nut 32 is improved.
As shown in fig. 1 and 2, the leg 4 comprises a sleeve 41 fixed to the bottom plate 22 on the side facing away from the bearing plate 21, the axis of the sleeve 41 being perpendicular to the plane of the bottom plate 22. An insert rod 42 is inserted into the sleeve 41, an external thread is provided on the outer circumferential surface of the insert rod 42, and an internal thread matched with the external thread of the insert rod 42 is provided on the inner circumferential surface of the sleeve 41. The end of the leg 4 remote from the sleeve 41 is ball-hinged with a backing plate 43. The number of the support legs 4 is at least three, and in the embodiment, the number of the support legs 4 is four and the four support legs are respectively distributed at four corners of the bottom plate 22. When the installation ground is not horizontal, a worker can screw the insertion rod 42, and the whole length between the insertion rod 42 and the sleeve 41 is adjusted through the threaded fit between the insertion rod 42 and the sleeve 41, so that the bottom plate 22 is adjusted to be in a horizontal state. The backing plate 43 is hinged with the inserted rod 42, so that the inserted rod 42 can rotate conveniently, and meanwhile, the backing plate can adapt to uneven ground, and the stability of the damping base 2 placed on the ground is improved. A positioning nut 44 is further in threaded fit with the threaded section of the insert rod 42, the positioning nut 44 abuts against the end of the sleeve 41, and the positioning nut 44 and the sleeve 41 are tightly abutted against each other, so that the positions of the insert rod 42 and the sleeve 41 are further positioned, and the stability of the support leg 4 on the bottom plate 22 is improved.
As shown in fig. 3, the connecting assembly 5 includes mounting members 51 disposed on the side walls of both ends in the length direction of the bottom plate 22, the mounting members 51 are integrally U-shaped plates that are opened toward the bottom plate 22, the mounting members 51 are fastened on the side walls of the bottom plate 22, and the mounting members 51 are fixed to the side walls of the bottom plate 22 by bolts. When a plurality of shock absorbing bases 2 are arranged along the length direction of the bottom plates 22, a connecting piece 52 is arranged between two adjacent bottom plates 22, the connecting piece 52 comprises a connecting plate 53, and two inserting plates 54 are vertically and fixedly connected to two ends of the connecting plate 53. The two insert plates 54 are inserted into the two mounting members 51 facing each other in the two damper bases 2, respectively. So that the connecting member 52 fixes the two base plates 22 to each other. Due to the arrangement of the connecting piece 52, on one hand, a plurality of groups of damping bases 2 can be selected for splicing by workers according to actual needs, so that the size required by the damping bases 2 is reduced, and the convenience in transportation and installation of the damping bases 2 is improved; on the other hand coupling assembling 5 fixes a plurality of vibration damping mount 2, improves the holistic stability of a plurality of vibration damping mount 3.
As shown in fig. 3, the connecting assembly 5 further includes a fixing member 55 disposed on a side of the mounting member 51 away from the connecting plate 53, two sides of the fixing member 55 are respectively provided with insertion holes 56 for accommodating insertion of the insertion plates 54, the fixing member 55 is fixedly connected to a side of the connecting plate 53, the fixing member 55 faces the connecting plate 53, the fixing screw 57 penetrates through the connecting plate 53 and is in threaded fit with a fixing nut 58 on a side of the connecting plate 53 away from the fixing member 55, and the fixing nut 58 abuts against a surface of the connecting plate 53, so that the fixing member 55 and the connecting member 52 clamp and fix the mounting member 51, and the stability of the connecting assembly 5 for fixing the two damping bases 2 is further improved. Connecting assembly 5 is provided with two along the width direction of bottom plate 22 to make connecting assembly 5 to the more even distribution of bottom plate 22's stationary force on bottom plate 22, improved the stability that two adjacent vibration damping mount 2 are connected.
The installation principle of the combined air conditioning unit in the embodiment of the application is as follows: when the worker installs the air conditioning unit body 1, the worker firstly places the vibration damping mount 2 on the ground and screws the insertion rod 42 and the sleeve 41 to adjust the length of the support leg 4, and then adjusts the vibration damping mount 2 to be in a horizontal state. The operator then screws the set nut 44 so that the set nut 44 abuts the end of the sleeve 41, thereby fixing the length of the leg 4. After leveling the plurality of vibration damping bases 2 in sequence, the worker inserts the connecting member 52 between two adjacent vibration damping bases 2, and fixes the connecting member 52 to two installation members 51 at the same time using the fixing member 55. Finally, the air conditioning unit body 1 can be installed above the damping base 2 by workers. The vibration of the air conditioning unit body 1 during operation can be absorbed by the damping base 2, so that the stability of the operation of the air conditioning unit body 1 is improved.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. A combined air conditioning unit is characterized in that: including air conditioning unit body (1), air conditioning unit body (1) below is provided with vibration damping mount (2), vibration damping mount (2) are including setting up accepting board (21) in air conditioning unit body (1) below, and one side that accepts board (21) and deviate from air conditioning unit body (1) is provided with bottom plate (22), accepts and is provided with a plurality of damper assembly (3) between board (21) and bottom plate (22), and damper assembly (3) include damping spring (33), and the one end rigid coupling of damping spring (33) is on accepting board (21), and the other end rigid coupling is on bottom plate (22).
2. The modular air conditioning unit of claim 1, wherein: damping component (3) still include rigid coupling and accept board (21) towards bottom plate (22) one side slide pole (31), slide pole (31) wear to establish on bottom plate (22) and slide with bottom plate (22) and be connected, damping spring (33) cover is established on slide pole (31).
3. A modular air conditioning unit according to claim 2, characterised in that: the sliding rod (31) is far away from one end of the bearing plate (21) and is provided with an external thread, the sliding rod (31) is provided with an adjusting nut (32) in threaded fit, and a buffer pad (34) is arranged on one surface, facing the bottom plate (22), of the adjusting nut (32).
4. The modular air conditioning unit of claim 1, wherein: a damping pad (23) made of rubber is arranged between the bearing plate (21) and the air conditioning unit body (1).
5. The modular air conditioning unit of claim 1, wherein: the supporting leg structure is characterized in that a plurality of supporting legs (4) are arranged on one surface, deviating from the bearing plate (21), of the bottom plate (22), each supporting leg (4) comprises a sleeve (41) fixedly connected onto the bottom plate (22), an inserted rod (42) is inserted into each sleeve (41), external threads are formed in the outer peripheral surface of each inserted rod (42), and internal threads matched with the outer peripheral surface of each inserted rod (42) are formed in the inner peripheral surface of each sleeve (41).
6. The modular air conditioning unit of claim 5, wherein: one end of the inserted bar (42) far away from the bottom plate (22) is hinged with a backing plate (43) in a ball joint mode, and the backing plate (43) is placed on the ground.
7. The modular air conditioning unit of claim 1, wherein: the damping bases (2) are arranged in a plurality, the damping bases (2) are sequentially connected, and a connecting assembly (5) is arranged between every two adjacent damping bases (2);
the connecting assembly (5) comprises mounting pieces (51) fixedly connected to the side walls of the bottom plates (22) and connecting pieces (52) inserted into the mounting pieces (51) of the two adjacent bottom plates (22), and each connecting piece (52) comprises a connecting plate (53) and inserting plates (54) vertically and fixedly connected to the two ends of the connecting plate (53) and used for being inserted into the mounting pieces (51).
8. The modular air conditioning unit of claim 7, wherein: still be provided with a mounting (55) that is used for centre gripping installed part (51) on connecting piece (52), set up on mounting (55) and hold jack (56) that picture peg (54) passed, mounting (55) are towards the one side rigid coupling of connecting plate (53) has a set screw (57), and set screw (57) pass connecting plate (53) and screw-thread fit has a fixation nut (58), and fixation nut (58) are located one side that connecting plate (53) deviate from mounting (55).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202023199314.9U CN214065130U (en) | 2020-12-25 | 2020-12-25 | Combined air conditioning unit |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202023199314.9U CN214065130U (en) | 2020-12-25 | 2020-12-25 | Combined air conditioning unit |
Publications (1)
Publication Number | Publication Date |
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CN214065130U true CN214065130U (en) | 2021-08-27 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202023199314.9U Active CN214065130U (en) | 2020-12-25 | 2020-12-25 | Combined air conditioning unit |
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CN (1) | CN214065130U (en) |
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2020
- 2020-12-25 CN CN202023199314.9U patent/CN214065130U/en active Active
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