CN211876188U - Air conditioner outer unit with movable adjusting condenser and air conditioner - Google Patents
Air conditioner outer unit with movable adjusting condenser and air conditioner Download PDFInfo
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- CN211876188U CN211876188U CN201921658709.5U CN201921658709U CN211876188U CN 211876188 U CN211876188 U CN 211876188U CN 201921658709 U CN201921658709 U CN 201921658709U CN 211876188 U CN211876188 U CN 211876188U
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- condenser
- chassis
- air conditioner
- rotation driving
- driving device
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Abstract
The utility model discloses an outer machine of air conditioner with condenser is adjusted to movable, including chassis, condenser and rotation drive arrangement. Wherein the condenser is positioned on the chassis; the rotation driving device is arranged on the chassis and connected with the condenser, and drives the condenser to rotate up and down and left and right relative to the chassis for adjustment. The utility model provides an air conditioner outer unit with movable regulation condenser can adjust the condenser relative to the chassis rotation from top to bottom, from side to side, help reducing the fluid noise that the internal refrigerant of air conditioning system flows and leads to, improve the homogeneity of air conditioner refrigerant gas-liquid mixture, the homogeneity and the stability of distribution, improve condenser efficiency, reduce the air conditioner performance fluctuation; an air conditioner with the air conditioner outdoor unit with the movable adjusting condenser is also provided.
Description
Technical Field
The utility model relates to an outer machine of air conditioner especially relates to an outer machine of air conditioner with condenser is adjusted to the movable, still relates to an air conditioner with this outer machine of air conditioner with condenser is adjusted to the movable.
Background
In the air conditioning system commonly used today, the outdoor condenser is fixed and immovable in position within the air conditioning system. When the air field of the outdoor unit is severe or the outdoor unit is special, the position of the condenser cannot be adjusted, so that the heat exchange area of the condenser and the refrigerant perfusion quantity are wasted, and the heat exchange effect of the air conditioning system is reduced; in addition, in the condenser structure with fixed position, the flow of the refrigerant is stable, the gas and the liquid are easily separated under the influence of gravity, and the condition of uneven liquid separation is easily caused, so that the air conditioner outdoor unit cannot play the refrigeration or heating effect which can be achieved by optimal configuration.
SUMMERY OF THE UTILITY MODEL
The utility model aims at overcoming the problems of the prior art and providing an air conditioner external unit with a movable adjusting condenser, which can reduce the fluid noise caused by the flowing of the refrigerant in the air conditioning system, improve the mixing uniformity, distribution uniformity and stability of the air-conditioning refrigerant gas-liquid mixture, improve the efficiency of the condenser and reduce the fluctuation of the air conditioning performance; an air conditioner with the air conditioner outdoor unit with the movable adjusting condenser is also provided.
In order to achieve the above purpose, the utility model adopts the following scheme:
an air conditioner outdoor unit with a movably adjustable condenser, comprising a chassis, and further comprising:
a condenser located on the base pan;
and the rotation driving device is arranged on the chassis, is connected with the condenser and drives the condenser to rotate up and down and left and right relative to the chassis for adjustment.
Further, the rotation driving device includes:
the left-right rotation driving device is arranged on the chassis;
the up-and-down rotation driving device is arranged on the left-and-right rotation driving device, is connected with the condenser and drives the condenser to rotate up and down relative to the chassis for adjustment; the left-right rotation driving device drives the left-right rotation driving device and the condenser to synchronously rotate left and right relative to the chassis for adjustment.
Further, the up-down rotation driving device includes:
the first motor and the second motor are respectively arranged on the left-right rotation driving device;
the first rotating support rod penetrates through two ends of an output shaft of the condenser, and one end of the first rotating support rod is connected with the output shaft of the first motor; the other end of the second motor is connected with an output shaft of the second motor; the condenser is driven to rotate up and down relative to the chassis through the synchronous rotation of the first motor and the second motor.
Further, the left-right rotation driving device includes:
the two guide slide rails are arranged on the chassis;
the two supporting seats are respectively connected to the guide slide rails in a sliding manner, can slide along the guide slide rails and are connected with the up-and-down rotation driving device;
the second rotating support rod is connected with the support seat;
and the third motor is arranged on the chassis and is connected with the second rotary supporting rod, and the supporting seat is driven to rotate along the guide sliding rail so as to drive the left-right rotation driving device and the condenser to synchronously correspond to the chassis for left-right rotation adjustment.
Furthermore, the up-and-down rotation driving device drives the condenser to rotate up and down in a reciprocating manner relative to the chassis by an adjustable angle of 5-10 degrees.
Furthermore, the left-right rotation driving device drives the condenser to rotate left and right in a reciprocating manner relative to the chassis by an adjustable angle of 5-10 degrees.
Further, the third motor is positioned at the central position of the chassis; the two guide slide rails are symmetrical relative to the third motor.
Further, the second rotating support rod is an elastic soft rod.
Further, the guide slide rail is an arc guide slide rail.
The application also discloses an air conditioner, including the aforesaid have the outer machine of air conditioner of movable regulation condenser.
Compared with the prior art, the utility model has the advantages of as follows:
the utility model discloses an outer machine of air conditioner with movable condenser of adjusting is connected with the condenser through setting up rotation drive arrangement, utilize rotation drive arrangement drive condenser relative chassis from top to bottom, left and right sides rotation is adjusted, adjust the assigned position with the condenser rotation, under the comparatively abominable condition in wind field, make refrigerant interference turn to the great position of the amount of wind along separate routes easily, turn to the less position of the amount of wind along separate routes of the less refrigerant, effectively avoid heat transfer area or refrigerant volume to waste, realize the distribution condition of make the most use of wind field and refrigerant under the current configuration, make the condenser exert the biggest heat transfer effect, make the refrigeration or the ability of heating of air conditioner reach the optimum, help reducing the fluid noise that the inside refrigerant of air conditioning system flows and leads to, improve the homogeneity of air conditioner refrigerant gas-liquid mixture, the homogeneity and the stability of distribution, improve condenser, Reducing air conditioning performance fluctuations.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Fig. 1 is a schematic top view of an outdoor unit of an air conditioner having a movable condenser according to the present invention.
Fig. 2 is a schematic structural view of an external unit of an air conditioner having a movable condenser according to the present invention.
Fig. 3 is a schematic diagram showing the simulation of the performance of the condenser of the outdoor unit of the air conditioner with the movably adjustable condenser according to the present invention.
The figure includes:
the condenser comprises a chassis 1, a condenser 2, a rotation driving device 3, a left-right rotation driving device 31, a guide sliding rail 311, a supporting seat 312, a second rotating support rod 313, a third motor 314, an up-down rotation driving device 32, a first motor 321, a second motor 322 and a first rotating support rod 323.
Detailed Description
The invention will be further described with reference to the following examples.
Referring to fig. 1 to 3, an outdoor unit for an air conditioner having a movably adjustable condenser 2 includes a base plate 1, a condenser 2, and a rotation driving device 3. Wherein, the condenser 2 is positioned on the chassis 1; the rotation driving device 3 is arranged on the chassis 1 and connected with the condenser 2, and drives the condenser 2 to rotate up and down and left and right relative to the chassis 1 for adjustment. The air conditioner outdoor unit with the movable adjusting condenser 2 is connected with the condenser 2 through the rotation driving device 3, the rotation driving device 3 is used for driving the condenser 2 to rotate up and down and left and right relative to the base plate 1 for adjustment, the condenser 2 is adjusted to a designated position in a rotating mode, under the condition that a wind field is severe, a refrigerant interference shunt is easily rotated to a position with large air volume, a shunt with few refrigerants is easily rotated to a position with small air volume, waste of heat exchange area or refrigerant volume is effectively avoided, the distribution condition of the wind field and the refrigerants under the existing configuration is maximally utilized, the condenser 2 is enabled to exert the maximum heat exchange effect, the refrigerating or heating capacity of the air conditioner is enabled to be optimal, fluid noise caused by flowing of refrigerants in the air conditioning system is reduced, the uniformity, the distribution uniformity and the stability of air-liquid mixture of the air-conditioning refrigerants are improved, and the efficiency, Reducing air conditioning performance fluctuations.
Specifically, the rotation driving device 3 includes a left-right rotation driving device 31 and an up-down rotation driving device 32. Wherein, the left-right rotation driving device 31 is arranged on the chassis 1; the up-down rotation driving device 32 is arranged on the left-right rotation driving device 31, is connected with the condenser 2, and drives the condenser 2 to rotate up and down relative to the chassis 1 for adjustment; the left-right rotation driving device 31 drives the left-right rotation driving device 31 and the condenser 2 to synchronously rotate and adjust left and right relative to the chassis 1. The up-and-down rotation adjustment of the condenser 2 relative to the chassis 1 is realized by the up-and-down rotation driving device 32; the left-right rotation adjustment of the condenser 2 relative to the chassis 1 is realized by utilizing the left-right rotation driving device 31, the up-down rotation driving device 32 is combined with the left-right rotation driving device 31, the rotation adjustment of the condenser 2 to a designated position is convenient, under the severe condition of a wind field, such as the severe environment of overheating and the like, the refrigerant interference shunt is easily rotated to a position with large air volume, the shunt with less refrigerant is rotated to a position with small air volume, the waste of heat exchange area or refrigerant volume is effectively avoided, the distribution condition of the wind field and the refrigerant is maximally utilized under the existing configuration, the condenser 2 exerts the maximum heat exchange effect, the refrigeration or heating capacity of the air conditioner is optimized, the fluid noise caused by the flowing of the refrigerant in the air conditioning system is favorably reduced, the uniformity, the distribution uniformity and the stability of the gas-liquid mixture of the refrigerant of the air conditioner are improved, reducing air conditioning performance fluctuations.
In the present embodiment, the up-down rotation driving device 32 includes a first motor 321, a second motor 322, and a first rotating rod 323. Wherein, the first motor 321 and the second motor 322 are respectively arranged on the left-right rotation driving device 31; the first rotating support bar 323 passes through two ends of the output shaft of the condenser 2, and one end of the first rotating support bar is connected with the output shaft of the first motor 321; the other end is connected with an output shaft of the second motor 322; the condenser 2 is driven by the first motor 321 and the second motor 322 to rotate synchronously to rotate up and down relative to the chassis 1. The first motor 321 and the second motor 322 are connected with the condenser 2 through the first rotating support rod 323, so that the center of the condenser 2 is taken as the center, the situation that the motor is located at the center when the single motor is driven is avoided, the stability of the condenser 2 is improved, and the condenser 2 can work stably. The first rotating support rod 323 and the condenser 2 are driven to rotate up and down in a reciprocating mode relative to the base plate 1 through synchronous rotation of the first motor 321 and the second motor 322, up-and-down rotation adjustment of the condenser 2 relative to the base plate 1 is achieved, mixing uniformity, distribution uniformity and stability of high-altitude mixed refrigerant gas-liquid mixtures are facilitated, efficiency of the condenser 2 is improved, and air conditioning performance fluctuation is reduced.
The first rotating support rod 323 is preferably an elastic soft rod, so that the first rotating support rod 323 has a good elastic effect, and can freely stretch slightly when the up-and-down rotation driving device 32 drives the condenser 2 to rotate and adjust up and down relative to the chassis 1, thereby facilitating the up-and-down rotation adjustment of the condenser 2 relative to the chassis 1, and being convenient and practical.
Preferably, the up-down rotation driving device 32 drives the condenser 2 to rotate up and down in a reciprocating manner relative to the chassis 1 by an adjustable angle of 5 to 10 degrees. The up-and-down rotation adjustment of the condenser 2 relative to the chassis 1 is convenient to realize by limiting the up-and-down rotation adjustment angle of the condenser 2 within the angle adjustment range, the up-and-down rotation adjustment of the condenser 2 to a specified position is convenient to realize, under the severe condition of a wind field, the refrigerant interference shunt is easily rotated to the position with larger air volume, the shunt with less refrigerant is rotated to the position with smaller air volume, the waste of heat exchange area or refrigerant volume is effectively avoided, the distribution condition of the wind field and the refrigerant under the existing configuration is maximally utilized, the condenser 2 is enabled to exert the maximum heat exchange effect, and the refrigeration or heating capacity of the air conditioner is enabled to be optimal. And be higher than or be less than this angle control scope, make condenser 2 heat transfer effect good inadequately, reduce air conditioner refrigerating system's heat transfer effect easily, lead to the waste.
The left-right rotation driving device 31 includes a guide rail 311, a support seat 312, a second rotation support rod 313 and a third motor 314. Wherein, two guide slide rails 311 are arranged on the chassis 1; the two supporting seats 312 are respectively connected to the guide slide rails 311 in a sliding manner, can slide along the guide slide rails 311, and are connected to the up-and-down rotation driving device 32; specifically, the first motor 321 and the second motor 322 are respectively disposed on the two support bases 312; more specifically, the support seat 312 includes a support rod and a support portion, the lower end of the support rod is slidably connected to the guide rail 311, the upper end of the support rod is connected to the support portion, and the first motor 321 and the second motor 322 are respectively disposed on the support portions of the two support seats 312; the second rotating support rod 313 is connected with the support seat 312; the third motor 314 is disposed on the chassis 1 and connected to the second rotating rod 313, and drives the supporting seat 312 to rotate along the guiding slide rail 311 to drive the left-right rotation driving device 31 and the condenser 2 to synchronously rotate left and right relative to the chassis 1. The third motor 314 is connected with the second rotating support rod 313 through conventional transmission connecting pieces, and when the condenser works, the third motor 314 drives the second rotating support rod 313 to rotate to drive the supporting seat 312 to slide along the guide sliding rail 311, so that the left-right rotation adjustment of the condenser 2 relative to the chassis 1 is realized, the uniformity, the distribution uniformity and the stability of high-altitude mixed refrigerant gas-liquid mixture are facilitated, the efficiency of the condenser 2 is improved, and the fluctuation of air-conditioning performance is reduced.
The left-right rotation driving device 31 drives the condenser 2 to rotate left and right in a reciprocating mode relative to the base plate 1, and the angle of the adjustment is 50-100 degrees. The condenser 2 is limited to rotate leftwards and rightwards within the angle adjusting range, leftward and rightwards rotation adjustment of the condenser 2 relative to the chassis 1 is facilitated, the condenser 2 is facilitated to rotate leftwards and rightwards to an appointed position, under the condition that a wind field is severe, a refrigerant interference shunt is easily turned to a position with large air volume, a shunt with few refrigerants is turned to a position with small air volume, waste of heat exchange area or refrigerant volume is effectively avoided, the distribution condition of the wind field and the refrigerants is utilized maximally under the existing configuration, the condenser 2 is enabled to exert the maximum heat exchange effect, and the refrigerating or heating capacity of the air conditioner is enabled to be optimal. And be higher than or be less than this angle control scope, make condenser 2 heat transfer effect good inadequately, reduce air conditioner refrigerating system's heat transfer effect easily, lead to the waste.
In the present embodiment, the third motor 314 is located at the center of the chassis 1; the two guide rails 311 are symmetrical with respect to the third motor 314. Through setting up third motor 314 and being located the central point of chassis 1 and putting, the focus of condenser 2 of being convenient for is concentrated in the center on chassis 1, is convenient for improve the stability of condenser 2, and two direction slide rails 311 are symmetrical relative to third motor 314, when being convenient for rotate at third motor 314 rotation regulation second rotation branch 313, strengthen two supporting seats 312 along the gliding stability of direction slide rail 311, and then improve this the whole outer quick-witted stability of air conditioner that has movable regulation condenser 2. The guide rail 311 is an arc guide rail. When the third motor 314 rotates to adjust the rotation of the second rotating support rod 313, the arc guide slide rail is arranged, so that the adjustment support seat 312 can slide along the guide slide rail 311.
The second rotating support rod 313 is a flexible rod, which is helpful for the first rotating support rod 323 to have good elastic function, and when the left-right rotation driving device 31 drives the condenser 2 to rotate and adjust left and right relative to the chassis 1, the first rotating support rod can freely and slightly stretch, so that the left-right rotation adjustment of the condenser 2 relative to the chassis 1 is realized, and the operation is convenient and practical.
As shown in fig. 3, in the simulation diagram of the condenser 2, it can be seen that the thicker line indicates that the higher the temperature of the refrigerant is, the air volume distribution of the condenser 2 can be adjusted to be less by rotating the condenser at a place with serious overheating, and the air volume is increased at a place with bad heat exchange, so as to achieve the optimal heat exchange.
The application also discloses an air conditioner, including the above-mentioned outer machine of air conditioner with movable regulation condenser 2. The air conditioner also comprises an air conditioner internal unit, and the combination of the air conditioner internal unit and the air conditioner external unit with the movable adjusting condenser 2 is beneficial to reducing fluid noise caused by the flowing of the refrigerant in the air conditioning system, improving the mixing uniformity, distribution uniformity and stability of the air-conditioning refrigerant gas-liquid mixture, improving the efficiency of the condenser 2 and reducing the fluctuation of the air conditioning performance.
Finally, it should be noted that the above embodiments are only used for illustrating the technical solutions of the present application, and not for limiting the protection scope of the present application, and although the present application is described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions can be made on the technical solutions of the present application without departing from the spirit and scope of the technical solutions of the present application.
Claims (10)
1. An outer machine of air conditioner with movable regulation condenser, includes the chassis, its characterized in that still includes:
a condenser located on the base pan;
and the rotation driving device is arranged on the chassis, is connected with the condenser and drives the condenser to rotate up and down and left and right relative to the chassis for adjustment.
2. An outdoor unit for an air conditioner having a movably adjustable condenser as set forth in claim 1, wherein said rotary driving means comprises:
the left-right rotation driving device is arranged on the chassis;
the up-and-down rotation driving device is arranged on the left-and-right rotation driving device, is connected with the condenser and drives the condenser to rotate up and down relative to the chassis for adjustment; the left-right rotation driving device drives the left-right rotation driving device and the condenser to synchronously rotate left and right relative to the chassis for adjustment.
3. An outdoor unit for an air conditioner having a movably adjustable condenser as set forth in claim 2, wherein said up-down rotation driving means comprises:
the first motor and the second motor are respectively arranged on the left-right rotation driving device;
the first rotating support rod penetrates through two ends of an output shaft of the condenser, and one end of the first rotating support rod is connected with the output shaft of the first motor; the other end of the second motor is connected with an output shaft of the second motor; the condenser is driven to rotate up and down relative to the chassis through the synchronous rotation of the first motor and the second motor.
4. An outdoor unit for an air conditioner having a movably adjustable condenser as set forth in claim 2, wherein said left and right rotary driving means comprises:
the two guide slide rails are arranged on the chassis;
the two supporting seats are respectively connected to the guide slide rails in a sliding manner, can slide along the guide slide rails and are connected with the up-and-down rotation driving device;
the second rotating support rod is connected with the support seat;
and the third motor is arranged on the chassis and is connected with the second rotary supporting rod, and the supporting seat is driven to rotate along the guide sliding rail so as to drive the left-right rotation driving device and the condenser to synchronously correspond to the chassis for left-right rotation adjustment.
5. The outdoor unit for an air conditioner with a movably adjustable condenser as claimed in claim 2, wherein the up-down rotation driving means drives the condenser to be reciprocally rotated up and down with respect to the base pan by an angle of 5 degrees0~100。
6. The outdoor unit of claim 2, wherein the condenser is driven by the left-right rotation driving device to reciprocate relatively to the chassis by an angle of 5 degrees0~100。
7. An outdoor unit with a movably adjustable condenser as claimed in claim 4, wherein the third motor is located at a central position of the base pan; the two guide slide rails are symmetrical relative to the third motor.
8. The outdoor unit with a movable condenser as claimed in claim 4, wherein the second rotary rod is a flexible rod.
9. The outdoor unit with a movably adjustable condenser of claim 4, wherein the guide rail is a circular arc guide rail.
10. An air conditioner characterized by comprising the outdoor unit of an air conditioner having a movably adjustable condenser according to any one of claims 1 to 9.
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CN201921658709.5U CN211876188U (en) | 2019-09-30 | 2019-09-30 | Air conditioner outer unit with movable adjusting condenser and air conditioner |
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CN201921658709.5U CN211876188U (en) | 2019-09-30 | 2019-09-30 | Air conditioner outer unit with movable adjusting condenser and air conditioner |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
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CN114216258A (en) * | 2021-12-02 | 2022-03-22 | 青岛海尔空调器有限总公司 | Method and device for self-cleaning of air conditioner and air conditioner |
CN114234284A (en) * | 2021-11-24 | 2022-03-25 | 青岛海尔空调器有限总公司 | Air conditioner |
CN114322085A (en) * | 2021-12-20 | 2022-04-12 | 青岛海尔空调器有限总公司 | Air conditioner |
CN114383298A (en) * | 2021-12-20 | 2022-04-22 | 青岛海尔空调器有限总公司 | Air conditioner control method and device, electronic equipment and air conditioner |
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2019
- 2019-09-30 CN CN201921658709.5U patent/CN211876188U/en active Active
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
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CN114234284A (en) * | 2021-11-24 | 2022-03-25 | 青岛海尔空调器有限总公司 | Air conditioner |
CN114234284B (en) * | 2021-11-24 | 2024-04-26 | 青岛海尔空调器有限总公司 | Air conditioner |
CN114216258A (en) * | 2021-12-02 | 2022-03-22 | 青岛海尔空调器有限总公司 | Method and device for self-cleaning of air conditioner and air conditioner |
CN114322085A (en) * | 2021-12-20 | 2022-04-12 | 青岛海尔空调器有限总公司 | Air conditioner |
CN114383298A (en) * | 2021-12-20 | 2022-04-22 | 青岛海尔空调器有限总公司 | Air conditioner control method and device, electronic equipment and air conditioner |
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