The present invention relates to an outdoor unit for an air-conditioning apparatus in which vibrations occurring in a machine chamber that houses a compressor and refrigerant-circuit components are suppressed.
In a typical outdoor unit for an air-conditioning apparatus, refrigerant compressed by a compressor provided on a bottom plate of a machine chamber circulates through the outdoor unit and undergoes heat exchange in a heat exchanger provided on a bottom plate of an air-sending-device chamber. Note that the bottom plate of the machine chamber and the bottom plate of the air-sending-device chamber are integrated with each other. Therefore, vibrations generated when the compressor is operating are transmitted to the heat exchanger via the bottom plate. As a countermeasure for preventing such vibrations, there is a known technique in which a component having a hook and a component having a hook hole are made to engage with each other, and the heat exchanger is fixed by using these components, whereby the wobbling of the heat exchanger during operation is suppressed (see Patent Literature 1, for example).
There is another known technique in which one of two heat exchangers is provided with an end plate having a tab while the other heat exchanger is provided with an end plate having an opening, and the end plates are made to engage with each other so that the two heat exchangers are fixed to each other, whereby the influence of external forces is reduced (see Patent Literature 2, for example).
[Patent Literature 1] Japanese Unexamined Utility Model Registration Application Publication No. 60-096555 (
[Patent Literature 2] Japanese Unexamined Patent Application Publication No. 2014-047995 (
Each of the above fixing mechanisms employing the hook (or the tab) and the hook hole (or the opening) only suppresses vibrations of the heat exchanger provided in the air-sending-device chamber and does not suppress vibrations occurring in the machine chamber in which the compressor as a vibration source is provided.
Increasing the size of the air-sending-device chamber increases an area of heat exchange and thus improves the performance of the outdoor unit. Hence, it is preferable that, in a limited space of the outdoor unit that is enclosed by an outer shell, the size of the machine chamber be made as small as possible so that the size of the air-sending-device chamber is increased instead. In the known art, interference among refrigerant-circuit components in the machine chamber that may be caused by vibrations of the compressor is prevented by providing some clearance between adjacent ones of the components. Such a known configuration has a problem in that it is inevitable to increase the size of the machine chamber, particularly in the width direction, so that enough clearance is provided. Consequently, it becomes difficult to provide an outdoor unit exhibiting a required level of performance.
Furthermore, a multi-type outdoor unit to which a plurality of indoor units are connectable has many ports for the connection of pipes of the outdoor unit to pipes of the indoor units. Therefore, in addition to the above problem of clearance, another problem arises in that the size of a component connecting pipes between the outdoor unit and an indoor unit having ports is large and such a component is difficult to handle in the work of assembling the outdoor unit.
The present invention is to solve at least one of the above problems and chiefly aims to suppress vibrations in a machine chamber while the size of the machine chamber is reduced.
An outdoor unit for an air-conditioning apparatus according to the present invention includes a machine chamber in which a compressor serving as a vibration source and at least two refrigerant-circuit components are provided. One of the refrigerant-circuit components is provided with an elastic tab while an other refrigerant-circuit component is provided with a catching portion that is engageable with the elastic tab. The refrigerant-circuit components are brought into close contact with each other by the elastic tab and the catching portion.
In the outdoor unit for an air-conditioning apparatus according to the present invention, the refrigerant-circuit components provided in the machine chamber are brought into close contact with each other by the elastic tab and the catching portion. Thus, vibrations of the components are suppressed. Accordingly, the clearance provided in the known art as a countermeasure for interference among components due to vibrations is not necessary. Instead of providing such clearance, the size of the machine chamber can be reduced, and the size of an air-sending-device chamber can be increased. Thus, the heat-exchangeability of the outdoor unit can be improved.
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To assemble the component connecting pipes between the outdoor unit and an indoor unit 5 and the accumulator 12 together, an elastic tab 14 provided to one of the two (in this case, the component connecting pipes between the outdoor unit and an indoor unit 5) is inserted into a catching portion 13 provided to the other (in this case, the accumulator 12). Thus, the two components are brought into close contact with each other and are temporarily fixed to each other.
More specifically, referring to
After the elastic tab 14 is thus inserted into the catching portion 13, the component connecting pipes between the outdoor unit and an indoor unit 5 is finally fastened to the bottom plate 11 with a screw 15 as illustrated in
A surface of the catching portion 13 with which the elastic tab 14 comes into contact is provided with a rubber component 16. The rubber component 16 absorbs the impact of any component that is to come into contact with the catching portion 13.
To summarize, in the outdoor unit for an air-conditioning apparatus according to Embodiment, such as the multi-type outdoor unit 1 to which a plurality of indoor units are connectable, the component connecting pipes between the outdoor unit and an indoor unit 5 and the accumulator 12 that are provided in the machine chamber 9 can be brought into close contact with each other by using the elastic tab 14 and the catching portion 13, whereby vibrations of the component connecting pipes between the outdoor unit and an indoor unit 5 and the accumulator 12 can be suppressed. Therefore, the clearance between adjacent ones of the components that is provided in the known art can be eliminated. Hence, the size of the machine chamber 9 can be reduced. Instead, the size of the air-sending-device chamber 7 can be increased. Thus, the heat-exchangeability of the outdoor unit 1 can be improved.
Furthermore, the rubber component 16 provided on the surface of the catching portion 13 with which the component connecting pipes between the outdoor unit and an indoor unit 5 comes into contact can absorb the impact of any component that is to come into contact with the catching portion 13.
Furthermore, the component connecting pipes between the outdoor unit and an indoor unit 5 and the accumulator 12 are temporarily fixed to each other by using the elastic tab 14 and the catching portion 13 and are finally fastened to the bottom plate 11 of the machine chamber 9 with the screw 15. Since the component connecting pipes between the outdoor unit and an indoor unit 5, which is intended for a multi-type outdoor unit and is of a large size, can be temporarily fixed to the accumulator 12 before being fastened to the bottom plate 11 with the screw 15, the ease of component-attaching work in the process of assembling the outdoor unit 1 is increased.
While Embodiment concerns an exemplary case where the elastic tab 14 is provided to the component connecting pipes between the outdoor unit and an indoor unit 5 and the catching portion 13 that catches the elastic tab 14 is provided to the accumulator 12, the elastic tab 14 may be provided to the accumulator 12 and the catching portion 13 may be provided to the component connecting pipes between the outdoor unit and an indoor unit 5.
Moreover, while Embodiment concerns an exemplary case where the accumulator 12 and the component connecting pipes between the outdoor unit and an indoor unit 5 are taken as refrigerant-circuit components, other exemplary refrigerant-circuit components include a four-way valve, an expansion valve, and so forth. Hence, the present invention is also applicable to the arrangement of the four-way valve and the expansion valve.
1: outdoor unit 2a, 2b, 2c, 2d: design panel 3: indoor unit 4: pipe 5: component connecting pipes between the outdoor unit and an indoor unit (refrigerant-circuit component) 5a: port 6: heat exchanger 7: air-sending-device chamber 8: compressor 9: machine chamber 10: partition 11: bottom plate 12: accumulator (refrigerant-circuit component) 13: catching portion 14: elastic tab 14a: base portion 14b: lock portion 14c: guide portion 15: screw 16: rubber component 17: fan
Number | Date | Country | Kind |
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2014-237920 | Nov 2014 | JP | national |