Indoor unit of air-conditioning apparatus
10495342 ยท 2019-12-03
Assignee
Inventors
- Akimoto Suzuki (Tokyo, JP)
- Masato Ishikawa (Tokyo, JP)
- Masahide Kinami (Tokyo, JP)
- Hisanori Ikeda (Tokyo, JP)
- Youhei Koyanagi (Tokyo, JP)
Cpc classification
F24F2221/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F1/0025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F1/0057
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F24F5/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F1/0025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Provided is an indoor unit of an air-conditioning apparatus including a rectangular front panel provided on a front surface side of an indoor unit body. The rectangular front panel is constructed such that a design panel is mounted to a front surface side of a base panel, that a flange of the design panel is received in a groove portion of the base panel, and that first fitting portions of the base panel and second fitting portions of the design panel are fitted to each other.
Claims
1. An indoor unit of an air-conditioning apparatus, comprising a front panel provided on a front surface side of an indoor unit body, the front panel including a base panel formed of an opaque member, and a design panel formed of a transparent member, and having a design layer on a back surface of the design panel, the base panel having a front surface including a first side wall portion formed at an end portion of the base panel in a vertical direction, and extending along a horizontal direction, a second side wall portion formed on a more inner side than the first side wall portion, and extending along the horizontal direction, a groove portion formed between the first side wall portion and the second side wall portion, and having a recessed shape continuous along the horizontal direction, and a plurality of first fitting portions provided at intervals on an inner surface side of the first side wall portion, and aligned along the horizontal direction, the design panel having the back surface including a flange formed on a more inner side than an end portion of the design panel in the vertical direction, and protruding along the horizontal direction, and a plurality of second fitting portions provided at intervals on an outer surface side of the flange, and aligned along the horizontal direction, each of the plurality of first fitting portions comprising a claw portion having a protruding shape, and each of the plurality of second fitting portions comprising a recess having a recessed shape, or each of the plurality of first fitting portions comprising a recess having a recessed shape, and each of the plurality of second fitting portions comprising a claw portion having a protruding shape, the front panel being formed of the design panel mounted to a front surface side of the base panel, the flange of the design panel being received in the groove portion of the base panel, the plurality of first fitting portions of the base panel and the plurality of second fitting portions of the design panel being fitted to each other.
2. The indoor unit of an air-conditioning apparatus of claim 1, wherein the second side wall portion has an outer surface side including a plurality of ribs formed at intervals, and aligned along the horizontal direction, and each having a protruding shape, and wherein the plurality of ribs are brought into contact with an inner surface side of the flange of the design panel.
3. An indoor unit of an air-conditioning apparatus, comprising a rectangular front panel provided on a front surface side of an indoor unit body, the rectangular front panel including a base panel formed of an opaque member, and a design panel formed of a transparent member, and having a design layer on a back surface of the design panel, the base panel having a front surface including a first side wall portion formed at an end portion of the base panel in a vertical direction, and extending along a horizontal direction, a second side wall portion formed on a more inner side than the first side wall portion, and extending along the horizontal direction, a groove portion formed between the first side wall portion and the second side wall portion, and having a recessed shape continuous along the horizontal direction, and a plurality of first fitting portions provided at intervals on an outer surface side of the second side wall portion, and aligned along the horizontal direction, the design panel having the back surface including a flange formed on a more inner side than an end portion of the design panel in the vertical direction, and protruding along the horizontal direction, and a plurality of second fitting portions provided at intervals on an inner surface side of the flange, and aligned along the horizontal direction, each of the plurality of first fitting portions comprising a claw portion having a protruding shape, and each of the plurality of second fitting portions comprising a recess having a recessed shape, or each of the plurality of first fitting portions comprising a recess having a recessed shape, and each of the plurality of second fitting portions comprising a claw portion having a protruding shape, the rectangular front panel being formed of the design panel mounted to a front surface side of the base panel, the flange of the design panel being received in the groove portion of the base panel, the plurality of first fitting portions of the base panel and the plurality of second fitting portions of the design panel being fitted to each other.
4. The indoor unit of an air-conditioning apparatus of claim 3, wherein the first side wall portion has an inner surface side including a plurality of ribs formed at intervals, and aligned along the horizontal direction, and each having a protruding shape, and wherein the plurality of ribs are brought into contact with an outer surface side of the flange of the design panel.
5. The indoor unit of an air-conditioning apparatus of claim 1, wherein formed positions of the plurality of first fitting portions are shifted from formed positions of the plurality of second fitting portions in the horizontal direction.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
(20) Embodiment 1 of the present invention is described below with reference to the drawings. The present invention is not limited to embodiments described below. Further, in the drawings referred to below, the size relationship between components may be different from the reality in some cases.
Embodiment 1
(21)
(22) In
(23) In the following description, for ease of understanding, directional terms (such as upper, lower, right, and left) are used as appropriate. The terms are used for the purpose of description, but do not limit the invention of the subject application. Further, in Embodiment 1, the terms upper, lower, right, and left are used under a state in which the indoor unit is seen from the front side of indoor unit unless otherwise noted.
(24) With reference to
(25) The indoor unit according to Embodiment 1 supplies conditioned air into an air-conditioned space such as an inside of a room using a refrigeration cycle configured to circulate refrigerant. In Embodiment 1, there is exemplified a case where the indoor unit is a wall-mounted type to be mounted to a wall surface of the air-conditioned space.
(26) The indoor unit body 100 includes a front panel 20a, an upper air inlet 4, and an air outlet 5. The front panel 20a includes a back case 1 arranged on a back surface side of the indoor unit body 100 and mounted to a wall surface, a base panel 2 arranged on a front surface side of the indoor unit body 100, and having a central recess 11 and a front air inlet 12 formed in the base panel 2, and design panels 3 mounted to a front surface side of the base panel 2. The upper air inlet 4 is formed in an upper portion of the indoor unit body 100, and is configured to mainly suck indoor air into the indoor unit body 100. The air outlet 5 is formed in a lower portion of the indoor unit body 100, and is configured to supply the conditioned air into the air-conditioned space.
(27) An air-sending fan 6 and a heat exchanger 7 are accommodated in the indoor unit body 100. The air-sending fan 6 sucks the indoor air through the upper air inlet 4 and the front air inlet 12, and blows out the conditioned air through the air outlet 5. The heat exchanger 7 is arranged to cover the air-sending fan 6 from above, and is configured to exchange heat between the refrigerant and the indoor air, to thereby generate the conditioned air. These components define an airflow path in the indoor unit body 100. Further, an electric component box (not shown) and a drain pan 8 are arranged in the indoor unit body 100. A circuit board and other components are accommodated in the electric component box. The drain pan 8 is arranged below a lower end portion of the heat exchanger 7, and is configured to collect water condensed on the heat exchanger 7.
(28) The air-sending fan 6 is, for example, a cross flow fan, and the heat exchanger 7 is, for example, a fin-tube-type heat exchanger. However, the air-sending fan 6 and the heat exchanger 7 are not limited to these examples.
(29) Further, a filter 9 configured to remove dust and other matters contained in the sucked indoor air is arranged between the upper air inlet 4 and the heat exchanger 7 and between the front air inlet 12 and the heat exchanger 7. In addition, an up-and-down airflow direction adjusting flap 10 configured to control a direction of a flow of blown-out air is arranged in the air outlet 5.
(30) Next, a flow of the air in the indoor unit body 100 is briefly described.
(31) First, the air-sending fan 6 causes the indoor air to flow through the upper air inlet 4 and the front air inlet 12 of the indoor unit body 100 into the indoor unit body 100. In this case, dust and other matters contained in the air are removed by the filter 9. While the indoor air is passing through the heat exchanger 7, the indoor air is heated or cooled by the refrigerant circulating in the heat exchanger 7, and is changed into the conditioned air. Then, after a direction of a flow of the conditioned air is adjusted by the up-and-down airflow direction adjusting flap 10, the conditioned air is blown out through the air outlet 5 to an outside of the indoor unit body 100, that is, to the air-conditioned space.
(32)
(33) In
(34) The base panel 2 is formed of an opaque member, for example, an opaque resin, and hence the back surface side is not seen through the front surface side. Further, as illustrated in
(35) The central recess 11 is formed at a center of the base panel 2 in the up-and-down direction in front view to extend from an inner side of a left end portion 2f1 to an inner side of a right end portion 2f2. Thus, the center of the base panel 2 in the up-and-down direction is recessed from the front surface side toward the back surface side. Further, the central recess 11 is recessed from the front surface side toward the back surface side, and the front air inlet 12 (see
(36) Further, in the base panel 2, the rectangular base panel upper portion 15 is provided above the central recess 11 in front view, and the rectangular base panel lower portion 16 is provided below the central recess 11 in front view. Further, on the back surface of the base panel 2, the plurality of connection portions 17 are provided along the longitudinal direction. The base panel upper portion 15 and the base panel lower portion 16 are connected to each other by the connection portions 17.
(37) As illustrated in
(38) Further, a groove portion 2b is formed between the first side wall portion 2c and the second side wall portion 2e to extend from the left end portion 2f1 to the right end portion 2f2 along the longitudinal direction.
(39) The groove portion 2b has a recessed shape continuous along the longitudinal direction, and the first side wall portion 2c and the second side wall portion 2e protrude from the groove portion 2b toward the front surface side.
(40) Further, as illustrated in
(41) Further, as illustrated in
(42)
(43) The design panel 3 is formed of a transparent member, for example, a transparent resin, and a design layer 3f is formed in the back surface of the design panel 3. In the design layer 3f, coloring, patterning, or painting is implemented by, for example, coating or printing. In this manner, the design layer 3f can be seen from the front surface side through the transparent resin. Further, as illustrated in
(44) Further, as illustrated in
(45)
(46) The rectangular front panel 20a, which is mounted to the front surface of the indoor unit body 100, includes the base panel 2 and the design panels 3. As illustrated in
(47) As illustrated in
(48) In this case, the claw portion 3c of the design panel 3 is fitted to the recess 2d of the base panel 2, to thereby restrict movements in a forward-backward direction and a left-right direction. Also, the first flange 3b of the design panel 3 is brought into contact with the rib 2j, to thereby restrict movement in an up-down direction and coming off of the claw portion 3c. Further, when the indoor unit of the air-conditioning apparatus is operated, the first flange 3b is brought into contact with the rib 2j in this manner, thereby being capable of reducing a contact area of the design panel 3 to the base panel 2. As a result, a contact sound generated when the indoor unit of the air-conditioning apparatus is operated can be reduced.
(49) Further, as illustrated in
(50) In Embodiment 1, the end portions 3a of the design panel 3 are positioned at the same height as those of the first side wall portions 2c of each of the base panel upper portion 15 and the base panel lower portion 16. However, their positional relationship is not limited to this configuration, and the end portion 3a of the design panel 3 only need to extend further outward than the first side wall portions 2c of each of the base panel upper portion 15 and the base panel lower portion 16. Also in this manner, in front view, the base panel upper portion 15 and the base panel lower portion 16 are hidden by the design panels 3.
(51) The mounting structure of the design panel 3 to the base panel upper portion 15 and the mounting structure of the design panel 3 to the base panel lower portion 16 are described above, and are the same as each other.
(52) As described above, in the indoor unit of the air-conditioning apparatus of Embodiment 1, in the front panel 20a, the first flanges 3b of the design panels 3 are received in the groove portions 2b of the base panel 2, and the recesses 2d of the base panel 2 and the claw portions 3c of the design panels 3 are fitted to each other. In this manner, the design panels 3 are mounted to the front surface side of the base panel 2 to cover the base panel 2. In this case, at each of the side portions of the front panel 20a in the transverse direction, the recess 2d is formed on the inner surface side of the first side wall portion 2c of the opaque base panel 2. Further, the claw portion 3c of the design panel 3 that is transparent but has the design layer 3f formed on its back surface side is positioned on the inner side of the first side wall portion 2c of the opaque base panel 2. Thus, the recess 2d of the base panel 2 and the claw portion 3c of the design panel 3 are not visually recognized from outside, and hence it is possible to improve the design property of the front panel 20a.
(53) The front panel 20a of Embodiment 1 has the structure in which the design panel 3 is mounted to each of the base panel upper portion 15 and the base panel lower portion 16, but the structure is not limited to this configuration. For example, there may be employed a structure in which one design panel is mounted to a base panel constructed by only one of the base panel upper portion 15 and the base panel lower portion 16 and having no central recess 11 to cover the entire front surface of the base panel. Further, there may be employed a structure in which three or more design panels are mounted to the base panel to cover the entire front surface of the base panel. Also in such cases, the mounting structure of the front panel is the same as the structure described above.
(54) The base panel upper portion 15 and the base panel lower portion 16 of Embodiment 1 correspond to the base panel of the present invention. The recess 2d corresponds to the first fitting portion of the present invention. The claw portion 3c corresponds to the second fitting portion of the present invention. The first flange 3b corresponds to the flange of the present invention.
Embodiment 2
(55) Embodiment 2 of the present invention is described below, but (a part of) description of the matter overlapping with Embodiment 1 is omitted, and the same or corresponding components as those of Embodiment 1 are denoted by the same reference symbols.
(56)
(57) In a front panel 20b of Embodiment 2, instead of the claw portion 3c of the design panel 3 and the recess 2d of the base panel 2 of Embodiment 1 that are illustrated in
(58) As illustrated in
(59) In this case, the claw portion 2h of the base panel 2 is fitted to the recess 3h of the design panel 3, to thereby restrict movements in the forward-backward direction and the left-right direction. Also, the first flange 3b of the design panel 3 is brought into contact with the rib 2j, to thereby restrict movement in the up-down direction and coming off of the claw portion 2h. Further, when the indoor unit of the air-conditioning apparatus is operated, the first flange 3b is brought into contact with the rib 2j in this manner, thereby being capable of reducing the contact area of the design panel 3 to the base panel 2. As a result, the contact sound generated when the indoor unit of the air-conditioning apparatus is operated can be reduced.
(60) As described above, in the indoor unit of the air-conditioning apparatus of Embodiment 2, in the front panel 20b, the first flanges 3b of the design panels 3 are received in the groove portions 2b of the base panel 2, and the claw portions 2h of the base panel 2 and the recesses 3h of the design panels 3 are fitted to each other. In this manner, the design panels 3 are mounted to the front surface side of the base panel 2 to cover the base panel 2. In this case, at each of the side portions of the front panel 20a in the transverse direction, the claw portion 2h is provided on the inner surface side of the first side wall portion 2c of the opaque base panel 2. Further, the recess 3h of the design panel 3 that is transparent but has the design layer 3f formed on its back surface side is positioned on the inner side of the first side wall portion 2c of the opaque base panel 2. Thus, the claw portion 2h of the base panel 2 and the recess 3h of the design panel 3 are not visually recognized from outside, and hence it is possible to improve the design property of the front panel 20b.
(61) The claw portion 2h of Embodiment 2 corresponds to the first fitting portion of the present invention, and the recess 3h of Embodiment 2 corresponds to the second fitting portion of the present invention.
Embodiment 3
(62) Embodiment 3 of the present invention is described below, but (a part of) description of the matter overlapping with Embodiment 1 and Embodiment 2 is omitted, and the same or corresponding components as those of Embodiment 1 and Embodiment 2 are denoted by the same reference symbols.
(63)
(64) As illustrated in
(65) As illustrated in
(66) In this case, the claw portion 3c of the design panel 3 is fitted to the recess 2d of the base panel 2, to thereby restrict movements in the forward-backward direction and the left-right direction. Also, the first flange 3b of the design panel 3 is brought into contact with the rib 2j, to thereby restrict movement in the up-down direction and coming off of the claw portion 3c. Further, when the indoor unit of the air-conditioning apparatus is operated, the first flange 3b is brought into contact with the rib 2j in this manner, thereby being capable of reducing the contact area of the design panel 3 to the base panel 2. As a result, the contact sound generated when the indoor unit of the air-conditioning apparatus is operated can be reduced.
(67) As described above, in the indoor unit of the air-conditioning apparatus of Embodiment 3, in the front panel 20c, the first flanges 3b of the design panels 3 are received in the groove portions 2b of the base panel 2, and the recesses 2d of the base panel 2 and the claw portions 3c of the design panels 3 are fitted to each other. In this manner, the design panels 3 are mounted to the front surface side of the base panel 2 to cover the base panel 2. In this case, at each of the side portions of the front panel 20c in the transverse direction, the recess 2d is formed in the second side wall portion 2e positioned on a more inner side than the first side wall portion 2c of the opaque base panel 2. Further, the claw portion 3c of the design panel 3 that is transparent but has the design layer 3f formed on its back surface side is positioned on the inner side of the first side wall portion 2c of the opaque base panel 2. Thus, the recess 2d of the base panel 2 and the claw portion 3c of the design panel 3 are not visually recognized from outside, and hence it is possible to improve the design property of the front panel 20c.
(68) The recess 2d of Embodiment 3 corresponds to the first fitting portion of the present invention, and the claw portion 3c of Embodiment 3 corresponds to the second fitting portion of the present invention.
Embodiment 4
(69) Embodiment 4 of the present invention is described below, but (a part of) description of the matter overlapping with Embodiments 1 to 3 is omitted, and the same or corresponding components as those of Embodiments 1 to 3 are denoted by the same reference symbols.
(70)
(71) As illustrated in
(72) As illustrated in
(73) In this case, the claw portion 2h of the base panel 2 is fitted to the recess 3h of the design panel 3, to thereby restrict movements in the forward-backward direction and the left-right direction. Also, the first flange 3b of the design panel 3 is brought into contact with the rib 2j, to thereby restrict movement in the up-down direction and coming off of the claw portion 2h. Further, when the indoor unit of the air-conditioning apparatus is operated, the first flange 3b is brought into contact with the rib 2j in this manner, thereby being capable of reducing the contact area of the design panel 3 to the base panel 2. As a result, the contact sound generated when the indoor unit of the air-conditioning apparatus is operated can be reduced.
(74) As described above, in the indoor unit of the air-conditioning apparatus of Embodiment 4, in the front panel 20d, the first flanges 3b of the design panels 3 are received in the groove portions 2b of the base panel 2, and the claw portions 2h of the base panel 2 and the recesses 3h of the design panels 3 are fitted to each other. In this manner, the design panels 3 are mounted to the front surface side of the base panel 2 to cover the base panel 2. In this case, at each of the side portions of the front panel 20d in the transverse direction, the claw portion 2h is provided on the second side wall portion 2e positioned on the more inner side than the first side wall portion 2c of the opaque base panel 2. Further, the recess 3h of the design panel 3 that is transparent but has the design layer 3f formed on its back surface side is positioned on the inner side of the first side wall portion 2c of the opaque base panel 2. Thus, the claw portion 2h of the base panel 2 and the recess 3h of the design panel 3 are not visually recognized from outside, and hence it is possible to improve the design property of the front panel 20d.
(75) The claw portion 2h of Embodiment 4 corresponds to the first fitting portion of the present invention, and the recess 3h of Embodiment 4 corresponds to the second fitting portion of the present invention.
REFERENCE SIGNS LIST
(76) 1 back case 2 base panel 2a end portion 2a1 upper end portion 2a2 lower end portion 2b groove portion 2c first side wall portion 2d recess 2e second side wall portion 2f end portion 2f1 left end portion 2f2 right end portion 2g flange 2h claw portion 2i hinge 2j rib 3 design panel 3a end portion 3b first flange 3c claw portion 3e second flange 3f design layer 3g end portion 3h recess 4 upper air inlet 5 air outlet 6 air-sending fan 7 heat exchanger 8 drain pan 9 filter
(77) 10 up-and-down airflow direction adjusting flap 11 central recess 12 front air inlet 15 base panel upper portion 16 base panel lower portion 17 connection portion 20a front panel 20b front panel 20c front panel 20d front panel 100 indoor unit body