JP2007212060A - Heat pump water heater and vacuum heat insulating material - Google Patents

Heat pump water heater and vacuum heat insulating material Download PDF

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JP2007212060A
JP2007212060A JP2006033379A JP2006033379A JP2007212060A JP 2007212060 A JP2007212060 A JP 2007212060A JP 2006033379 A JP2006033379 A JP 2006033379A JP 2006033379 A JP2006033379 A JP 2006033379A JP 2007212060 A JP2007212060 A JP 2007212060A
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heat insulating
hot water
storage tank
vacuum heat
water storage
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Masahiro Takiguchi
昌宏 滝口
Shigeru Murakami
村上  茂
Takehiko Shigeoka
武彦 重岡
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Panasonic Holdings Corp
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Matsushita Electric Industrial Co Ltd
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<P>PROBLEM TO BE SOLVED: To reduce influence in fracture of a vacuum heat insulating material by disposing a plurality of vacuum heat insulating materials independently sealed around a hot water storage tank, and to easily dispose the vacuum heat insulating materials on the hot water storage tank while keeping heat insulating performance. <P>SOLUTION: The plurality of divided vacuum heat insulating materials 31a, 31b, 31c are arranged in the longitudinal direction of the hot water storage tank, for example, in a state of being constituted by covering a core material part 31a with a laminate film 31a1 to seal it in vacuum, and forming a projecting portion, and the core material portion has a gradient so that its upper portion is thickened and its lower portion is thinned to improve heat insulating heat retaining performance of the upper portion of the hot water storage tank 30. As the vacuum heat insulating materials are disposed to cover the circumference of the hot water storage tank 30 approximately in the cylindrical shape, the workability in covering the circumference of the hot water storage tank 30 by the vacuum heat insulating materials 31a, 31b, 31c can be improved, and a degree of influence in fracture of the vacuum heat insulating materials 31a, 31b, 31c can be reduced. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、圧縮機、水冷媒熱交換器、空気冷媒熱交換器、減圧手段を順次接続した閉回路で冷媒を循環させる冷媒循環回路と、この水冷媒熱交換器で加熱された温水を貯蔵する円筒状の貯湯タンクとを一つの筐体内に収納するヒートポンプ給湯機に関する。   The present invention stores a refrigerant circulation circuit that circulates refrigerant in a closed circuit in which a compressor, a water refrigerant heat exchanger, an air refrigerant heat exchanger, and a decompression means are sequentially connected, and hot water heated by the water refrigerant heat exchanger. The present invention relates to a heat pump water heater that houses a cylindrical hot water storage tank in a single housing.

従来のヒートポンプ式給湯機は、圧縮機、水冷媒熱交換器、空気冷媒熱交換器、減圧手段を順次接続した閉回路で冷媒を循環させる冷媒循環回路と、この水冷媒熱交換器で加熱された温水を貯蔵する貯湯タンクからなる。   A conventional heat pump type hot water heater is heated by a refrigerant circulation circuit that circulates refrigerant in a closed circuit in which a compressor, a water refrigerant heat exchanger, an air refrigerant heat exchanger, and a decompression means are sequentially connected, and the water refrigerant heat exchanger. It consists of a hot water storage tank that stores hot water.

このようなヒートポンプ式給湯機は、大きな貯湯タンクを有し、昼間使用する必要分全量を夜間に沸かし高温貯蔵しておくため、貯湯タンクからの放熱損失が大きく、給湯機の大型化に伴う設置等にも多くの課題があった。   Such a heat pump type hot water heater has a large hot water storage tank, and since all the necessary amount for use during the day is boiled at night and stored at high temperature, the heat dissipation loss from the hot water storage tank is large, and it is installed with an increase in the size of the hot water heater Etc. also had many problems.

そこで、ヒートポンプ回路と、冷媒対水熱交換器と、貯湯タンクと、直接給湯回路と、給湯制御部と、ヒートポンプ制御部を備えたヒートポンプ式給湯機において、前記貯湯タンクの周囲に真空断熱材を設置することにより、コンパクト化及び高断熱性を達成するものが考えられた(特許文献1、特許文献2)。   Therefore, in a heat pump water heater having a heat pump circuit, a refrigerant-to-water heat exchanger, a hot water storage tank, a direct hot water supply circuit, a hot water supply control unit, and a heat pump control unit, a vacuum heat insulating material is provided around the hot water storage tank. The thing which achieves compactness and high heat insulation by installing was considered (patent document 1, patent document 2).

図7は従来のヒートポンプ式給湯機の貯湯タンクの概略図である。図7において、湯温が下がるのを少しでも低減させることが出来るように、貯湯タンク51の周りに断熱性能が良い真空断熱材52を密着させるように設置し、真空断熱材52の周りに冷媒対水熱交換器53を設置することにより、貯湯タンク51部容積さらには給湯機自体もコンパクトに出来るようになる。
特開2005−315480号公報 特開2002−277055号公報
FIG. 7 is a schematic view of a hot water storage tank of a conventional heat pump type hot water heater. In FIG. 7, a vacuum heat insulating material 52 having good heat insulating performance is installed in close contact with the hot water storage tank 51 so that the temperature drop can be reduced as much as possible, and a refrigerant is provided around the vacuum heat insulating material 52. By installing the anti-water heat exchanger 53, the capacity of the hot water storage tank 51 and the water heater itself can be made compact.
JP 2005-315480 A JP 2002-277055 A

しかしながら、貯湯タンク51の周りに断熱性能が良い真空断熱材52を密着させるように設置したときに、作業ミスなど何らかの理由で真空断熱材52に1箇所でも穴が開くと、真空断熱材52の著しく断熱保温効果が無くなり、貯湯タンク51からの放熱損失が大きくなり、ヒートポンプ式給湯機の能力低下につながるという問題がある。特に貯湯タンク51やその周囲には金属製や樹脂製の部品等があり、また配管等の接続も必要なことから、貯湯タンク51に一つの真空断熱材52で周囲を覆うようにすると作業性が悪くなるとともに、破損の心配が十分に考えられた。   However, when the vacuum heat insulating material 52 having good heat insulating performance is placed in close contact with the hot water storage tank 51, if any one hole is opened in the vacuum heat insulating material 52 for some reason such as an operation error, the vacuum heat insulating material 52 There is a problem that the heat insulation and heat retention effect is remarkably lost, the heat dissipation loss from the hot water storage tank 51 is increased, and the capacity of the heat pump type hot water heater is reduced. In particular, there are metal or resin parts around the hot water storage tank 51 and its surroundings, and it is also necessary to connect pipes or the like. Therefore, if the hot water storage tank 51 is covered with one vacuum heat insulating material 52, the workability is improved. As the problem worsened, the possibility of damage was fully considered.

そこで本発明は、独立して密封された真空断熱材を貯湯タンクの周囲に複数に分割して配設することで真空断熱材の破損時の影響を少なくさせると共に断熱性能を保持したまま真空断熱材の貯湯タンクへの配設をやりやすくすることを目的とする。   In view of this, the present invention reduces the influence when the vacuum heat insulating material is broken by disposing a plurality of independently sealed vacuum heat insulating materials around the hot water storage tank, and maintains the heat insulating performance while maintaining the heat insulating performance. It aims at making arrangement | positioning to the hot water storage tank of a material easy.

前記従来の課題を解決するために、本発明のヒートポンプ給湯機は、圧縮機、水冷媒熱交換器、空気冷媒熱交換器、減圧手段を順次接続した閉回路で冷媒を循環させる冷媒循環回路と、前記水冷媒熱交換器で加熱された温水を貯蔵する円筒状の貯湯タンクと、前記貯湯タンクに水を供給する給水管を接続する接続弁と、前記冷媒循環回路と前記貯湯タンクとを一体に収納する筺体とを備え、前記貯湯タンクの周囲に断熱保温するように芯材部を
ラミネートフィルムで覆い真空密封して凸部を形成する真空断熱材を配設するとともに、前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設した構成としてある。
In order to solve the conventional problems, a heat pump water heater of the present invention includes a refrigerant circulation circuit that circulates a refrigerant in a closed circuit in which a compressor, a water refrigerant heat exchanger, an air refrigerant heat exchanger, and a decompression unit are sequentially connected. A cylindrical hot water storage tank that stores hot water heated by the water refrigerant heat exchanger, a connection valve that connects a water supply pipe that supplies water to the hot water storage tank, the refrigerant circulation circuit, and the hot water storage tank are integrated. And a vacuum heat insulating material that forms a convex portion by covering the core material portion with a laminate film and vacuum-sealing so as to insulate and retain heat around the hot water storage tank, and the vacuum heat insulating material is The hot water storage tank is divided into a plurality of parts in the longitudinal direction and is arranged so as to cover the periphery of the hot water storage tank so as to be substantially cylindrical.

上記した構成において、前記貯湯タンクの周囲に断熱保温するように芯材部をラミネートフィルムで覆い真空密封して凸部を形成する真空断熱材を配設するとともに、前記真空断熱材は複数に分割して設けてあるので、何らかの原因で真空断熱材に穴等が明き破損してもその部分のみの真空断熱材の断熱性能が下がるのみで、他の部分の断熱性能は下がらないので、その影響度は少なくなる。また、真空断熱材を複数に分割して配設することができるので、貯湯タンクに真空断熱材で周囲を覆うようにするときの作業性が向上し、真空断熱材の破損の危険性も減少させることができる。   In the above-described configuration, the core material portion is covered with a laminate film so as to insulate and retain heat around the hot water storage tank, and a vacuum heat insulating material that forms a convex portion by vacuum-sealing is disposed, and the vacuum heat insulating material is divided into a plurality of parts. Therefore, even if a hole or the like is broken in the vacuum insulation material for some reason, the insulation performance of the vacuum insulation material only in that part will decrease, and the insulation performance of other parts will not decline, so that The degree of influence is reduced. In addition, since the vacuum insulation material can be divided into multiple parts, the workability when the hot water storage tank is covered with the vacuum insulation material is improved, and the risk of damage to the vacuum insulation material is also reduced. Can be made.

また、前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設してあるので、真空断熱材と円筒状の貯湯タンクの曲率が多少ずれていても、真空断熱材を円筒状の貯湯タンクに沿わせて配設し易く、作業性が向上する。   Further, the vacuum heat insulating material is divided into a plurality in the longitudinal direction of the hot water storage tank, and is disposed so as to cover the periphery of the hot water storage tank so as to be substantially cylindrical. Even if the curvature of the hot water storage tank is slightly deviated, it is easy to arrange the vacuum heat insulating material along the cylindrical hot water storage tank and workability is improved.

本発明の真空断熱材構成は、前記貯湯タンクの周囲に断熱保温するように芯材部をラミネートフィルムで覆い真空密封して凸部を形成する真空断熱材を配設するとともに、前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設してあるので、真空断熱材を円筒状の貯湯タンクに沿わせて配設し易く、貯湯タンクの周囲を真空断熱材で覆う時の作業性が向上するとともに、真空断熱材の破損時の影響度は少なくすることができる。   The vacuum heat insulating material configuration of the present invention is provided with a vacuum heat insulating material that forms a convex portion by covering a core material portion with a laminate film so as to insulate and retain heat around the hot water storage tank, and forming a convex portion. Is divided into a plurality of parts in the longitudinal direction of the hot water storage tank, and is arranged so as to cover the periphery of the hot water storage tank so as to be substantially cylindrical, so that the vacuum heat insulating material is placed along the cylindrical hot water storage tank. It is easy to arrange, and the workability when the periphery of the hot water storage tank is covered with the vacuum heat insulating material is improved, and the degree of influence when the vacuum heat insulating material is broken can be reduced.

第1の発明は、圧縮機、水冷媒熱交換器、空気冷媒熱交換器、減圧手段を順次接続した閉回路で冷媒を循環させる冷媒循環回路と、前記水冷媒熱交換器で加熱された温水を貯蔵する円筒状の貯湯タンクと、前記貯湯タンクに水を供給する給水管を接続する接続弁と、前記冷媒循環回路と前記貯湯タンクとを一体に収納する筺体とを備え、前記貯湯タンクの周囲に断熱保温するように芯材部をラミネートフィルムで覆い真空密封して凸部を形成する真空断熱材を配設するとともに、前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設した構成としてある。   The first invention includes a compressor, a water refrigerant heat exchanger, an air refrigerant heat exchanger, a refrigerant circulation circuit that circulates refrigerant in a closed circuit in which decompression means are sequentially connected, and hot water heated by the water refrigerant heat exchanger. A cylindrical hot water storage tank for storing water, a connection valve for connecting a water supply pipe for supplying water to the hot water storage tank, and a housing for integrally storing the refrigerant circulation circuit and the hot water storage tank, Covering the core material part with a laminate film so as to insulate and heat the surroundings, and arrange a vacuum heat insulating material to form a convex part by vacuum sealing, and the vacuum heat insulating material is divided into a plurality in the longitudinal direction of the hot water storage tank, And it is set as the structure arrange | positioned so that it might cover the circumference | surroundings of the said hot water storage tank so that it might become a substantially cylindrical shape.

そして、前記貯湯タンクの周囲に断熱保温するように芯材部をラミネートフィルムで覆い真空密封して凸部を形成する真空断熱材を配設するとともに、前記真空断熱材は複数に分割して設けてあるので、何らかの原因で真空断熱材に穴等が明き破損してもその部分のみの真空断熱材の断熱性能が下がるのみで、他の部分の断熱性能は下がらないので、その影響度は少なくなる。また、真空断熱材を複数に分割して配設することができるので、貯湯タンクに真空断熱材で周囲を覆うようにするときの作業性が向上し、真空断熱材の破損の危険性も減少させることができる。   Then, a vacuum heat insulating material that covers the core portion with a laminate film and vacuum seals to form a convex portion is provided so as to insulate and retain heat around the hot water storage tank, and the vacuum heat insulating material is divided into a plurality of parts. Therefore, even if a hole or the like is broken in the vacuum insulation material for any reason, the insulation performance of the vacuum insulation material only in that part will be lowered, and the insulation performance of other parts will not be lowered, so the degree of influence is Less. In addition, since the vacuum insulation material can be divided into multiple parts, the workability when the hot water storage tank is covered with the vacuum insulation material is improved, and the risk of damage to the vacuum insulation material is also reduced. Can be made.

また、前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設してあるので、真空断熱材と円筒状の貯湯タンクの曲率が多少ずれていても、真空断熱材を円筒状の貯湯タンクに沿わせて配設し易く、作業性が向上する。   Further, the vacuum heat insulating material is divided into a plurality in the longitudinal direction of the hot water storage tank, and is disposed so as to cover the periphery of the hot water storage tank so as to be substantially cylindrical. Even if the curvature of the hot water storage tank is slightly deviated, it is easy to arrange the vacuum heat insulating material along the cylindrical hot water storage tank and workability is improved.

第2の発明は、特に、第1の発明の真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設するとともに、
隣り合う前記真空断熱材を表裏交互になるように配設し、少なくとも一部分を前記真空断熱材の真空密封代部分が隣り合う前記真空断熱材の芯材部上に重なり合うように配設した構成としてある。
In the second invention, in particular, the vacuum heat insulating material of the first invention is divided into a plurality of parts in the longitudinal direction of the hot water storage tank, and is disposed so as to cover the periphery of the hot water storage tank so as to be substantially cylindrical. ,
The adjacent vacuum heat insulating materials are arranged so as to alternate between the front and back, and at least a part of the vacuum heat insulating material of the vacuum heat insulating material is arranged so as to overlap the adjacent core material portion of the vacuum heat insulating material. is there.

そして、前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設するとともに、隣り合う前記真空断熱材を表裏交互になるように配設してあるので、前記真空断熱材の真空密封代部分が隣り合う前記真空断熱材の芯材部上に重なり合うように配設させることができ、簡単な構成で、隣り合う前記真空断熱材のラミネートフィルムで覆った芯材部で形成される凸部の側面を密着させることが容易であり、真空断熱材の芯材部の被覆率を高くして、断熱効果が高い真空断熱材が得られるようになる。   The vacuum heat insulating material is divided into a plurality of portions in the longitudinal direction of the hot water storage tank, and is disposed so as to cover the periphery of the hot water storage tank so as to be substantially cylindrical, and the adjacent vacuum heat insulating materials are alternately turned over. Since the vacuum sealing allowance portion of the vacuum heat insulating material can be disposed so as to overlap on the adjacent core material portion of the vacuum heat insulating material, it is adjacent with a simple configuration. It is easy to make the side surface of the convex part formed by the core part covered with the laminate film of the vacuum heat insulating material adhere closely, and the vacuum with high heat insulating effect by increasing the coverage of the core part of the vacuum heat insulating material Insulation can be obtained.

第3の発明は、特に、第1〜第2のいずれか1つの発明の真空断熱材の芯材部側面を傾斜させ隣り合う前記真空断熱材の側壁が密着しやすいようにように形成した構成としてある。   In particular, the third invention is configured such that the side wall of the vacuum heat insulating material of the vacuum heat insulating material according to any one of the first to second inventions is inclined so that the side walls of the adjacent vacuum heat insulating materials are in close contact with each other. It is as.

そして、前記真空断熱材の芯材部側面を傾斜させ隣り合う真空断熱材の側壁が密着しやすいようにように形成してあるので、隣り合う真空断熱材の芯材部の凸部を形成する側壁の傾斜面をガイド面として、押しつけることで傾斜面全体を密着することができようになり、密着面が拡げることができるので、向かい合う真空断熱材の空隙が少なくすることができ、より断熱効果を高くすることができるようになる。また、多少隙間を生じたとしても、向かい合う傾斜面は、重なり合う部分があるため、補完でき、より断熱効果を維持することができるようになる。   And since it forms so that the side wall of an adjacent vacuum heat insulating material may incline easily by inclining the core material side surface of the said vacuum heat insulating material, the convex part of the core material part of an adjacent vacuum heat insulating material is formed. By using the inclined surface of the side wall as a guide surface and pressing it, the entire inclined surface can be brought into close contact, and the contact surface can be expanded, so that the space between the vacuum heat insulating materials facing each other can be reduced and the heat insulating effect can be further increased. Can be raised. In addition, even if some gaps are generated, the inclined surfaces facing each other can be complemented because there are overlapping portions, and the heat insulation effect can be maintained more.

第4の発明は、特に、第1〜第3のいずれか1つの発明の真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設するとともに、複数に分割した前記真空断熱材を接合して一体形成する接合手段を設けた構成としてある。   In the fourth invention, in particular, the vacuum heat insulating material according to any one of the first to third inventions is divided into a plurality of parts in the longitudinal direction of the hot water storage tank, and around the hot water storage tank so as to be substantially cylindrical. In addition to being arranged so as to cover, a joining means for joining and integrally forming the vacuum heat insulating material divided into a plurality of parts is provided.

そして、前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設するとともに、複数に分割した前記真空断熱材を接合して一体形成する接合手段を設けた構成としてあるので、接合手段で複数に分割した前記真空断熱材を一体とすることができ、隣り合う真空断熱材の側壁が確実に密着させられるとともに、損傷を受けやすい真空断熱材の接合部を接合手段で保護することができ、より、貯湯タンクに真空断熱材で周囲を覆うようにするときの作業性が向上し、真空断熱材の破損の危険性も減少させることができる。   The vacuum heat insulating material is divided into a plurality in the longitudinal direction of the hot water storage tank, and is arranged so as to cover the periphery of the hot water storage tank so as to be substantially cylindrical, and the vacuum heat insulating material divided into a plurality of parts is provided. Since there is a structure provided with a joining means that is integrally formed by joining, the vacuum heat insulating material divided into a plurality by the joining means can be integrated, and the side walls of the adjacent vacuum heat insulating materials are securely adhered, It is possible to protect the joints of the vacuum insulation material that is easily damaged by the joining means, and the workability when the surroundings are covered with the vacuum insulation material in the hot water storage tank is improved, and the risk of damage to the vacuum insulation material is improved. Sex can also be reduced.

第5の発明は、特に、第2〜第3のいずれか1つの発明の貯湯タンクの周囲に前記真空断熱材は前記貯湯タンクの長手方向で略円筒状になるように複数に分割して設けるとともに、隣り合う前記真空断熱材を表裏交互になるように配設し、少なくとも一部分を前記真空断熱材の真空密封代部分が隣り合う前記真空断熱材の芯材部上に重なり合うように配設し、かつ、前記真空断熱材の重なり合う真空密封代部分と芯材部を少なくとも一部分を接着して一体形成する接着手段を設けた構成としてある。   In the fifth invention, in particular, the vacuum heat insulating material is divided into a plurality of parts around the hot water storage tank of any one of the second to third inventions so as to be substantially cylindrical in the longitudinal direction of the hot water storage tank. In addition, the adjacent vacuum heat insulating materials are alternately arranged on the front and back sides, and at least a part of the vacuum heat insulating material is disposed so that the vacuum sealing margin portion of the vacuum heat insulating material overlaps the adjacent core material portion of the vacuum heat insulating material. In addition, there is provided an adhesive means for integrally forming the vacuum sealing margin part and the core part overlapping the vacuum heat insulating material by adhering at least a part thereof.

そして、接着手段で、空断熱材の重なり合う真空密封代部分と芯材部を少なくとも一部分を接着してあるので、接着手段で複数に分割した前記真空断熱材を一体とすることができ、隣り合う真空断熱材の側壁が確実に密着させられるとともに、複数に分割した真空断熱材を一体形成するための接合部材等が不要となり、簡単な構成とすることができ、安価に構成することができる。   And, since at least a part of the vacuum sealing allowance portion and the core material portion of the air insulating material overlapping with each other are bonded by the bonding means, the vacuum heat insulating material divided into a plurality by the bonding means can be integrated and adjacent to each other. While the side wall of the vacuum heat insulating material is securely brought into close contact with each other, a joining member or the like for integrally forming the vacuum heat insulating material divided into a plurality of parts is not required, and a simple configuration can be achieved and the configuration can be made at low cost.

第6の発明は、特に、第1〜第5のいずれか1つの発明の真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設するとともに、上部の芯材部を厚くし下部が薄くなるように勾配をもたせ、前記貯湯タンクの上部の断熱保温性能を向上させた構成としてある。   In the sixth invention, in particular, the vacuum heat insulating material of any one of the first to fifth inventions is divided into a plurality of parts in the longitudinal direction of the hot water storage tank, and around the hot water storage tank so as to be substantially cylindrical. In addition to being disposed so as to cover, the upper core material portion is thickened and a gradient is provided so that the lower portion is thinned, thereby improving the heat insulation and heat retaining performance of the upper portion of the hot water storage tank.

そして、前記貯湯タンクの温度は上部が高く下部が低くなっていて、前記真空断熱材は上部の芯材部を厚くし下部が薄くなるように勾配をもたせてあるので、前記貯湯タンクの上部の断熱保温性能を向上させることができ、より効果的に断熱保温することができるようになる。   The temperature of the hot water storage tank is higher at the upper part and lower at the lower part, and the vacuum heat insulating material has a gradient so that the upper core member is thicker and the lower part is thinner. The heat insulation and heat retention performance can be improved, and the heat insulation and heat insulation can be more effectively performed.

請求項7記載の本発明は、真空断熱材は一方の端部の芯材部を厚くし他方の端部が薄くなるように勾配をもたせたヒートポンプ給湯機等に用いる構成としてある。   The present invention according to claim 7 is configured such that the vacuum heat insulating material is used for a heat pump water heater or the like in which a core material portion at one end portion is thickened and a gradient is provided so that the other end portion is thinned.

そして、真空断熱材は一方の端部の芯材部を厚くし他方の端部が薄くなるように勾配をもたせた構成としてあるので、ヒートポンプ給湯機等の温度勾配のある部分に用いることで、より効果的に断熱保温することができる真空断熱材を提供できるようになる。   And, since the vacuum heat insulating material is configured to have a gradient so that the core part of one end is thick and the other end is thin, by using it in a part with a temperature gradient such as a heat pump water heater, A vacuum heat insulating material that can more effectively insulate and retain heat can be provided.

以下、本発明の実施の形態について、図面を参照しながら説明する。なお、この実施の形態によって本発明が限定されるものではない。   Hereinafter, embodiments of the present invention will be described with reference to the drawings. Note that the present invention is not limited to the embodiments.

(実施の形態1)
以下本発明の一実施例によるヒートポンプ給湯機について説明する。
(Embodiment 1)
Hereinafter, a heat pump water heater according to an embodiment of the present invention will be described.

図1は、本実施例によるヒートポンプ給湯機の概略構成を示す斜視図、図2は同ヒートポンプ給湯機の内部配置を示す構成図、図3は同ヒートポンプ給湯機の貯湯タンクの周囲へ真空断熱材を配設した状態を示す貯湯タンクの外観図、図4は同真空断熱材を配設した要部縦断面図、図5は同真空断熱材を配設した要部横断面図である。   FIG. 1 is a perspective view showing a schematic configuration of a heat pump water heater according to the present embodiment, FIG. 2 is a block diagram showing an internal arrangement of the heat pump water heater, and FIG. 3 is a vacuum heat insulating material around a hot water storage tank of the heat pump water heater. 4 is an external view of a hot water storage tank showing a state in which the vacuum heat insulating material is disposed, FIG. 4 is a vertical cross-sectional view of a main part in which the vacuum heat insulating material is disposed, and FIG.

まず、特に図1及び図2を用いて全体構成について説明する。   First, the overall configuration will be described with reference to FIGS.

図1は、本実施例によるヒートポンプ給湯機の概略構成を示す斜視図、図2は同ヒートポンプ給湯機の内部配置を示す正面図、図3は同ヒートポンプ給湯機の貯湯タンクの周囲へ真空断熱材を配設した状態を示す要部断面図である。   1 is a perspective view showing a schematic configuration of a heat pump water heater according to the present embodiment, FIG. 2 is a front view showing an internal arrangement of the heat pump water heater, and FIG. 3 is a vacuum heat insulating material around a hot water storage tank of the heat pump water heater. It is principal part sectional drawing which shows the state which has arrange | positioned.

まず、特に図1及び図2を用いて全体構成について説明する。   First, the overall configuration will be described with reference to FIGS.

本実施例によるヒートポンプ給湯機は、立方形状からなる筐体10内部に、冷媒循環回路20と貯湯タンク30とを有している。   The heat pump water heater according to this embodiment includes a refrigerant circulation circuit 20 and a hot water storage tank 30 inside a cubic housing 10.

筐体10内部は、仕切り板11によって左右方向に2つの空間が形成され、一方の空間に冷媒循環回路20が配置され、他方の空間に貯湯タンク30が配置されていて、この貯湯タンク30の周囲には、断熱保温して湯温が下がるのを少しでも低減させることが出来るように、貯湯タンク30の長手方向で複数に分割した真空断熱材31a、31b、31cを配設してあり、これは例えば図4に示すような芯材部31a2をラミネートフィルム31a1で覆い真空密封して凸部を形成するように構成してあるとともに、上部の芯材部31a2を厚くし下部が薄くなるように勾配をもたせ、貯湯タンク30の上部の断熱保温性能を向上させてある。   Inside the housing 10, two spaces are formed in the left-right direction by the partition plate 11, the refrigerant circulation circuit 20 is disposed in one space, and the hot water storage tank 30 is disposed in the other space. In the surroundings, vacuum heat insulating materials 31a, 31b, 31c divided into a plurality of portions in the longitudinal direction of the hot water storage tank 30 are arranged so that the temperature of the hot water storage tank 30 can be reduced even a little by heat insulation. For example, a core part 31a2 as shown in FIG. 4 is covered with a laminate film 31a1 and vacuum-sealed to form a convex part, and the upper core part 31a2 is thickened and the lower part is thinned. In order to improve the heat insulation performance of the upper part of the hot water storage tank 30, a gradient is provided.

そして、特に図3および図5に示すように、貯湯タンク30の周囲に複数に分割して配設した真空断熱材31は、隣り合う真空断熱材31a、31b、31cを表裏交互になる
ように配設し、真空断熱材31bの真空密封代部分のラミネートフィルム31b1が隣り合う真空断熱材31aの芯材部31a2上に重なり合うように配設し、かつ、真空断熱材31a、31bの重なり合う真空密封代部分のラミネートフィルム31b1と芯材部31a2を両面テープ製の接着手段37で接着して一体形成してある。
As shown in FIGS. 3 and 5 in particular, the vacuum heat insulating material 31 divided into a plurality around the hot water storage tank 30 is arranged so that the adjacent vacuum heat insulating materials 31a, 31b, and 31c are alternated. The laminated film 31b1 of the vacuum sealing allowance portion of the vacuum heat insulating material 31b is disposed so as to overlap the adjacent core material portion 31a2 of the vacuum heat insulating material 31a, and the vacuum heat insulating materials 31a and 31b are overlapped and vacuum sealed. The laminated film 31b1 and the core part 31a2 of the substitute part are integrally formed by bonding with an adhesive means 37 made of double-sided tape.

冷媒循環回路20は、圧縮機21、水冷媒熱交換器22、空気冷媒熱交換器23、減圧手段(図示せず)を順次接続し、冷媒を循環させる閉回路で構成されている。なお、この冷媒としては二酸化炭素冷媒を用いるものが好ましい。   The refrigerant circulation circuit 20 is configured by a closed circuit in which a compressor 21, a water refrigerant heat exchanger 22, an air refrigerant heat exchanger 23, and a decompression means (not shown) are sequentially connected to circulate the refrigerant. In addition, what uses a carbon dioxide refrigerant as this refrigerant | coolant is preferable.

ここで圧縮機21及び水冷媒熱交換器22は、支持板12上に設置されている。空気冷媒熱交換器23は、筐体10の一方の空間の後方面及び側面を覆うように平面視で略L字状に配置されている。また、筐体10の一方の空間には、複数のファン24、25が配置されている。これらのファン24、25によって、空気冷媒熱交換器23での熱交換を行う。   Here, the compressor 21 and the water-refrigerant heat exchanger 22 are installed on the support plate 12. The air refrigerant heat exchanger 23 is arranged in a substantially L shape in plan view so as to cover the rear surface and side surface of one space of the housing 10. A plurality of fans 24 and 25 are arranged in one space of the housing 10. These fans 24 and 25 perform heat exchange in the air refrigerant heat exchanger 23.

また、貯湯タンク30の前方下部分に、貯湯タンク30に水を供給する給水管32、貯湯タンク30のお湯を外部に導出する給湯管33、風呂追い炊き用給湯管34、及び風呂追い炊き用給水管35をそれぞれ接続する接続弁32A、33A、34A、35Aを配置している。貯湯タンク30の前方下部分に位置する支持板12は、他の面よりも高い位置に設けることで、貯湯タンク30の前方下部分には、接続弁32A、33A、34A、35Aが配置される空間を形成している。なお、図1においては、これらの接続弁32A、33A、34A、35Aを省略している。   In addition, a water supply pipe 32 for supplying water to the hot water storage tank 30, a hot water supply pipe 33 for deriving the hot water of the hot water storage tank 30 to the outside, a hot water supply pipe 34 for bath reheating, and a bath reheating service Connection valves 32A, 33A, 34A and 35A for connecting the water supply pipes 35 are arranged. The support plate 12 located in the lower front part of the hot water storage tank 30 is provided at a position higher than the other surfaces, and the connection valves 32A, 33A, 34A, 35A are arranged in the lower front part of the hot water storage tank 30. A space is formed. In FIG. 1, these connection valves 32A, 33A, 34A, and 35A are omitted.

以上のように本実施例によれば、例えば図4に示すように貯湯タンク30の周囲に断熱保温するように芯材部31a2をラミネートフィルム31a1で覆い真空密封して凸部を形成する真空断熱材31aを配設するとともに、真空断熱材31は複数に真空断熱材31a、31b、31cと分割して設けてあるので、何らかの原因で真空断熱材31a、31b、31cのいずれかに穴等が明き破損してもその部分のみの真空断熱材31a、31b、31cの断熱性能が下がるのみで、他の部分の断熱性能は下がらないので、その影響度は少なくなる。また、真空断熱材31a、31b、31cを複数に分割して配設することができるので、貯湯タンク30に真空断熱材31a、31b、31cで周囲を覆うようにするときの作業性が向上し、真空断熱材31a、31b、31cの破損の危険性も減少させることができる。   As described above, according to the present embodiment, for example, as shown in FIG. 4, the heat insulating tank 30 is covered with the laminated film 31a1 so that the core material portion 31a2 is insulated and heat-insulated to form a convex portion. Since the material 31a is provided and the vacuum heat insulating material 31 is divided into a plurality of vacuum heat insulating materials 31a, 31b and 31c, a hole or the like is formed in any one of the vacuum heat insulating materials 31a, 31b and 31c for some reason. Even if it breaks brightly, only the heat insulation performance of the vacuum heat insulating materials 31a, 31b, 31c only in those portions is lowered, and the heat insulation performance in other portions is not lowered, so the influence degree is reduced. Moreover, since the vacuum heat insulating materials 31a, 31b and 31c can be divided into a plurality of parts, the workability when the hot water storage tank 30 is covered with the vacuum heat insulating materials 31a, 31b and 31c is improved. The risk of breakage of the vacuum heat insulating materials 31a, 31b, 31c can also be reduced.

また、真空断熱材31は貯湯タンク30の長手方向で複数に分割し、かつ略円筒状になるように貯湯タンク30の周囲に覆うように配設してあるので、真空断熱材31a、31b、31cと円筒状の貯湯タンク30の曲率が多少ずれていても、真空断熱材31a、31b、31cを円筒状の貯湯タンク30に沿わせて配設し易く、作業性が大幅に向上する。   Moreover, since the vacuum heat insulating material 31 is divided into a plurality of parts in the longitudinal direction of the hot water storage tank 30 and is disposed so as to cover the periphery of the hot water storage tank 30 so as to be substantially cylindrical, the vacuum heat insulating materials 31a, 31b, Even if the curvatures of 31c and the cylindrical hot water storage tank 30 are slightly deviated from each other, the vacuum heat insulating materials 31a, 31b, 31c can be easily disposed along the cylindrical hot water storage tank 30, and the workability is greatly improved.

そしてまた、隣り合う真空断熱材31a、31b、31cを表裏交互になるように配設してあるので、図5に示すように、例えば真空断熱材31bの真空密封代部分のラミネートフィルム31b1が隣り合う真空断熱材31aの芯材部31a2上に重なり合うように配設させることができ、簡単な構成で、隣り合う真空断熱材31a、31bのラミネートフィルム31a1、31b1で覆った芯材部31a2、31b2で形成される凸部の側面を密着させることが容易であり、真空断熱材31a、31b、31cの芯材部31a2、31b2、31c2の被覆率を高くして、断熱効果が高い真空断熱材31a、31b、31cが得られるようになる。   Further, since the adjacent vacuum heat insulating materials 31a, 31b, and 31c are alternately arranged, the laminate film 31b1 of the vacuum sealing allowance portion of the vacuum heat insulating material 31b is adjacent, for example, as shown in FIG. The core material portions 31a2 and 31b2 covered with the laminated films 31a1 and 31b1 of the adjacent vacuum heat insulating materials 31a and 31b can be arranged so as to overlap the core material portion 31a2 of the matching vacuum heat insulating material 31a. It is easy to closely contact the side surfaces of the convex portions formed by the vacuum heat insulating material 31a having a high heat insulating effect by increasing the coverage of the core material portions 31a2, 31b2, 31c2 of the vacuum heat insulating materials 31a, 31b, 31c. , 31b, 31c are obtained.

さらに、真空断熱材31a、31b、31cの芯材部31a2、31b2、31c2側
面を傾斜させ隣り合う真空断熱材31a、31b、31cの側壁が密着しやすいようにように形成してあるので、隣り合う真空断熱材31a、31b、31cの芯材部31a2、31b2、31c2の凸部を形成する側壁の傾斜面をガイド面として、押しつけることで傾斜面全体を密着させることができので、密着面が拡げることができるようになり、向かい合う真空断熱材31a、31b、31cの空隙が少なくすることができ、より断熱効果を高くすることができるようになる。また、多少隙間を生じたとしても、向かい合う傾斜面は、重なり合う部分があるため、補完でき、より断熱効果を維持することができるようになる。
Further, the side surfaces of the core portions 31a2, 31b2, and 31c2 of the vacuum heat insulating materials 31a, 31b, and 31c are inclined so that the side walls of the adjacent vacuum heat insulating materials 31a, 31b, and 31c are easily adhered to each other. Since the inclined surfaces of the side walls forming the convex portions of the core portions 31a2, 31b2, and 31c2 of the matching vacuum heat insulating materials 31a, 31b, and 31c are used as guide surfaces, the entire inclined surfaces can be brought into close contact with each other. It becomes possible to expand, the gaps between the vacuum heat insulating materials 31a, 31b, 31c facing each other can be reduced, and the heat insulating effect can be further enhanced. In addition, even if some gaps are generated, the inclined surfaces facing each other can be complemented because there are overlapping portions, and the heat insulation effect can be maintained more.

そして、両面テープの接着手段37で、真空断熱材31a、31bの重なり合う真空密封代部分のラミネートフィルム31b1と芯材部31a2上を接着してあるので、接着手段37で複数に分割した真空断熱材31a、31bを一体とし、同様に31cも一体とすることができ、隣り合う真空断熱材31a、31b、31cの芯材部31a2、31b2側壁が確実に密着させられるとともに、複数に分割した真空断熱材31a、31b、31cを一体形成するための接合部材等が不要となり、簡単な構成とすることができ、安価に構成することができる。   And since the laminate film 31b1 and the core material portion 31a2 of the vacuum sealing allowance portion where the vacuum heat insulating materials 31a and 31b overlap are bonded by the double-sided tape bonding means 37, the vacuum heat insulating material divided into a plurality by the bonding means 37 31a and 31b can be integrated, and similarly 31c can be integrated, and the side walls 31a2 and 31b2 of the adjacent vacuum heat insulating materials 31a, 31b and 31c can be securely brought into close contact with each other and divided into a plurality of vacuum heat insulating materials. A joining member or the like for integrally forming the materials 31a, 31b, and 31c is not required, and a simple configuration can be achieved, and the configuration can be reduced.

また、貯湯タンク30の温度は上部が高く下部が低くなっていて、真空断熱材31a、31b、31cは上部の芯材部31a2、31b2、31c2を厚くし下部が薄くなるように勾配をもたせてあるので、貯湯タンク30の上部の断熱保温性能を向上させることができ、より効果的に断熱保温することができるようになる。   Also, the temperature of the hot water storage tank 30 is high at the top and low at the bottom, and the vacuum heat insulating materials 31a, 31b, 31c are provided with a gradient so that the upper core portions 31a2, 31b2, 31c2 are thickened and the lower portions are thinned. Therefore, it is possible to improve the heat insulation and heat retention performance of the upper part of the hot water storage tank 30 and to more effectively heat and heat insulation.

なお、本実施の形態では、接着手段37を両面テープとしたが、これは、瞬間接着剤やホットメルト等の接着剤でも良く、その他各部の構成も本発明の目的を達成する範囲であれば、その構成はどのようなものであってよい。   In the present embodiment, the adhesive means 37 is a double-sided tape. However, this may be an adhesive such as an instantaneous adhesive or hot melt, and the configuration of each other part is within a range that achieves the object of the present invention. The configuration may be anything.

(実施の形態2)
図4は、本発明の実施の形態2におけるヒートポンプ給湯機の貯湯タンク30の周囲へ真空断熱材31a、31b、31cを接合して一体形成した状態を示す要部断面図である。なお、本実施の形態は、貯湯タンク30の周囲に配設する真空断熱材31a、31b、31cの構成が実施の形態1の発明と異なるだけで、図1・図2と同様の構成については図1・図2と同様の番号を付与し、図1・図2と異なる構成についてのみ説明を行う。
(Embodiment 2)
FIG. 4 is a cross-sectional view of a main part showing a state in which the vacuum heat insulating materials 31a, 31b, and 31c are joined and integrally formed around the hot water storage tank 30 of the heat pump water heater in Embodiment 2 of the present invention. In the present embodiment, the configurations of the vacuum heat insulating materials 31a, 31b, 31c disposed around the hot water storage tank 30 are different from those of the first embodiment, and the configurations similar to those in FIGS. The same reference numerals as those in FIGS. 1 and 2 are assigned, and only configurations different from those in FIGS. 1 and 2 will be described.

図4において、貯湯タンク30の周囲に真空断熱材31を貯湯タンク30の長手方向で複数に真空断熱材31a、31b、31cに分割して設けるとともに、真空断熱材31a、31b、31cの接合部分に、その断面がH型の接合手段38を設け、H型の接合手段の溝部分に真空断熱材31a、31b、31cの真空密封代部分を折り返して挿入し、複数の真空断熱材31a、31b、31cを接合して一体形成するようにして略円筒状になるように貯湯タンク30の周囲に覆うように配設してある。     In FIG. 4, the vacuum heat insulating material 31 is divided into a plurality of vacuum heat insulating materials 31 a, 31 b, 31 c in the longitudinal direction of the hot water storage tank 30 around the hot water storage tank 30, and joined portions of the vacuum heat insulating materials 31 a, 31 b, 31 c In addition, an H-shaped joining means 38 is provided, and the vacuum sealing portions of the vacuum heat insulating materials 31a, 31b, 31c are folded back and inserted into the groove portions of the H-type joining means, and a plurality of vacuum heat insulating materials 31a, 31b are inserted. , 31c are joined and integrally formed so as to cover the periphery of the hot water storage tank 30 so as to be substantially cylindrical.

そして、真空断熱材31a、31b、31cの接合部分に、その断面がH型の接合手段を設け、H型の接合手段38の溝部分に真空断熱材31a、31b、31cの真空密封代部分のラミネートフィルム31a1、31b1、31c1を折り返して挿入し、複数の真空断熱材31a、31b、31cを接合して一体形成するようにしてあるので、接合手段で複数に分割した真空断熱材31a、31b、31cを一体とすることができ、隣り合う真空断熱材31a、31b、31cの側壁が確実に密着させられるとともに、損傷を受けやすい真空断熱材31a、31b、31cの接合部を接合手段37で保護することができ、より、貯湯タンク30に真空断熱材31a、31b、31cで周囲を覆うようにするときの作業性が向上し、真空断熱材31a、31b、31cの破損の危険性も減少させることができる。   And, the joint portion of the vacuum heat insulating materials 31a, 31b, 31c is provided with a joining means having an H-shaped cross section, and the vacuum sealing portion of the vacuum heat insulating materials 31a, 31b, 31c is provided in the groove portion of the H-shaped joining means 38. Since the laminate films 31a1, 31b1, 31c1 are folded and inserted, and the plurality of vacuum heat insulating materials 31a, 31b, 31c are joined and integrally formed, the vacuum heat insulating materials 31a, 31b divided into a plurality by the joining means, 31c can be integrated, and the side walls of the adjacent vacuum heat insulating materials 31a, 31b, 31c are securely adhered to each other, and the joint portions of the vacuum heat insulating materials 31a, 31b, 31c that are easily damaged are protected by the bonding means 37. The workability when the hot water storage tank 30 is covered with the vacuum heat insulating materials 31a, 31b, 31c is improved, and the vacuum heat insulation is achieved. 31a, 31b, the risk of 31c damage can be reduced.

なお、本実施の形態では、H型の接合手段を樹脂製の成型品であれば、H型の接合手段3の溝部分に真空断熱材31a、31b、31cの真空密封代部分のラミネートフィルム31a1、31b1、31c1を折り返して挿入する時に、真空断熱材31a、31b、31cを損傷しにくくなると共に、このH型の接合手段に貯湯タンク30への固定手段を設けると、より貯湯タンク30に真空断熱材31a、31b、31cで周囲を覆い固定するときの作業性が向上し、真空断熱材31a、31b、31cの破損の危険性も減少させることができる。   In the present embodiment, if the H-type joining means is a resin molded product, the laminated film 31a1 of the vacuum sealing portion of the vacuum heat insulating materials 31a, 31b, 31c is formed in the groove portion of the H-type joining means 3. , 31b1 and 31c1 when folded and inserted, the vacuum heat insulating materials 31a, 31b and 31c are less likely to be damaged, and if a fixing means for the hot water storage tank 30 is provided in the H-shaped joining means, the hot water storage tank 30 is further evacuated. The workability when covering and fixing the periphery with the heat insulating materials 31a, 31b, 31c is improved, and the risk of breakage of the vacuum heat insulating materials 31a, 31b, 31c can also be reduced.

また、円筒状の貯湯タンク30は設置面積の関係から高さ方向に縦長であり、貯湯タンク30の水冷媒熱交換器との接続部等の作業をする部分つまり真空断熱材31a、31b、31cを配設しにくいあるいは損傷しやすい部分を貯湯タンク30の長手方向に揃えて配設することで、作業性を向上させることができるようになる。   Moreover, the cylindrical hot water storage tank 30 is vertically long in the height direction because of the installation area, and a portion for working such as a connection portion of the hot water storage tank 30 with the water-refrigerant heat exchanger, that is, the vacuum heat insulating materials 31a, 31b, 31c. It is possible to improve workability by arranging the portions that are difficult to be disposed or easily damaged in the longitudinal direction of the hot water storage tank 30.

本発明は、風呂への給湯、沸き上げ機能を備えたヒートポンプ給湯機の他、暖房、乾燥機能を備えたヒートポンプ給湯機として利用することができる。   INDUSTRIAL APPLICABILITY The present invention can be used as a heat pump water heater having heating and drying functions in addition to a hot water heater and a heat pump water heater having a boiling function.

実施の形態1におけるヒートポンプ給湯機の斜視図The perspective view of the heat pump water heater in Embodiment 1. 同ヒートポンプ給湯機の構成図Configuration diagram of the heat pump water heater 同ヒートポンプ給湯機の貯湯タンクの外観図External view of the hot water storage tank of the heat pump water heater 同ヒートポンプ給湯機の貯湯タンクへ真空断熱材を配設した要部縦断面図Longitudinal cross-sectional view of the main part of the heat pump water heater with vacuum insulation material installed in the hot water storage tank 同ヒートポンプ給湯機の貯湯タンクへ真空断熱材を配設した要部横断面図Cross-sectional view of the main part of the heat pump water heater with the vacuum insulation material installed in the hot water storage tank 本発明の実施の形態2におけるヒートポンプ給湯機の要部横断面図The principal part cross-sectional view of the heat pump water heater in Embodiment 2 of this invention 従来のヒートポンプ給湯機の概略図Schematic diagram of a conventional heat pump water heater

符号の説明Explanation of symbols

20 冷媒循環回路
21 圧縮機
22 水冷媒熱交換器
23 空気冷媒熱交換器
30 貯湯タンク30
31 真空断熱材
31a、31b、31c 真空断熱材
32 給水管
32A、33A、34A、35A 接続弁
37 接着手段
38 接合手段
20 Refrigerant Circulation Circuit 21 Compressor 22 Water Refrigerant Heat Exchanger 23 Air Refrigerant Heat Exchanger 30 Hot Water Storage Tank 30
31 Vacuum heat insulating material 31a, 31b, 31c Vacuum heat insulating material 32 Water supply pipe 32A, 33A, 34A, 35A Connection valve 37 Bonding means 38 Bonding means

Claims (7)

圧縮機、水冷媒熱交換器、空気冷媒熱交換器、減圧手段を順次接続した閉回路で冷媒を循環させる冷媒循環回路と、前記水冷媒熱交換器で加熱された温水を貯蔵する円筒状の貯湯タンクと、前記貯湯タンクに水を供給する給水管を接続する接続弁と、前記冷媒循環回路と前記貯湯タンクとを一体に収納する筺体とを備え、前記貯湯タンクの周囲に断熱保温するように芯材部をラミネートフィルムで覆い真空密封して凸部を形成する真空断熱材を配設するとともに、前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設したヒートポンプ給湯機。 A compressor, a water refrigerant heat exchanger, an air refrigerant heat exchanger, a refrigerant circulation circuit that circulates the refrigerant in a closed circuit sequentially connected to the decompression means, and a cylindrical shape that stores hot water heated by the water refrigerant heat exchanger A hot water storage tank, a connection valve for connecting a water supply pipe for supplying water to the hot water storage tank, and a housing that integrally stores the refrigerant circulation circuit and the hot water storage tank so as to insulate and keep warm around the hot water storage tank. A vacuum heat insulating material that covers the core portion with a laminate film and is vacuum-sealed to form a convex portion is disposed, and the vacuum heat insulating material is divided into a plurality of portions in the longitudinal direction of the hot water storage tank and becomes substantially cylindrical. A heat pump water heater disposed so as to cover the periphery of the hot water storage tank. 前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設するとともに、隣り合う前記真空断熱材を表裏交互になるように配設し、少なくとも一部分を前記真空断熱材の真空密封代部分が隣り合う前記真空断熱材の芯材部上に重なり合うように配設した請求項1に記載のヒートポンプ給湯機。 The vacuum heat insulating material is divided into a plurality of parts in the longitudinal direction of the hot water storage tank, and is arranged so as to cover the periphery of the hot water storage tank so as to be substantially cylindrical, and the adjacent vacuum heat insulating materials are alternately turned upside down. The heat pump water heater of Claim 1 arrange | positioned so that the vacuum sealing allowance part of the said vacuum heat insulating material may overlap with the core material part of the said vacuum heat insulating material which adjoins at least one part. 前記真空断熱材の芯材部側面を傾斜させ隣り合う前記真空断熱材の側壁が密着しやすいようにように形成した請求項1から請求項2のいずれか1項に記載のヒートポンプ給湯機。 The heat pump water heater according to any one of claims 1 to 2, wherein a side surface of the vacuum heat insulating material is inclined so that the side walls of the vacuum heat insulating materials adjacent to each other are inclined to be in close contact with each other. 前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設するとともに、複数に分割した前記真空断熱材を接合して一体形成する接合手段を設けた請求項1から請求項3のいずれか1項に記載のヒートポンプ給湯機。 The vacuum heat insulating material is divided into a plurality of parts in the longitudinal direction of the hot water storage tank, and is disposed so as to cover the periphery of the hot water storage tank so as to be substantially cylindrical, and the vacuum heat insulating material divided into a plurality of parts is joined. The heat pump water heater according to any one of claims 1 to 3, further comprising a joining means that is integrally formed. 前記貯湯タンクの周囲に前記真空断熱材は前記貯湯タンクの長手方向で略円筒状になるように複数に分割して設けるとともに、隣り合う前記真空断熱材を表裏交互になるように配設し、少なくとも一部分を前記真空断熱材の真空密封代部分が隣り合う前記真空断熱材の芯材部上に重なり合うように配設し、かつ、前記真空断熱材の重なり合う真空密封代部分と芯材部を少なくとも一部分を接着して一体形成する接着手段を設けた請求項2に記載のヒートポンプ給湯機。 Around the hot water storage tank, the vacuum heat insulating material is divided into a plurality so as to be substantially cylindrical in the longitudinal direction of the hot water storage tank, and the adjacent vacuum heat insulating materials are alternately arranged on the front and back sides, At least a portion is disposed so that a vacuum sealing allowance portion of the vacuum heat insulating material overlaps with an adjacent core material portion of the vacuum heat insulating material, and at least a vacuum sealing allowance portion and a core material portion of the vacuum heat insulating material overlap each other The heat pump water heater according to claim 2, further comprising an adhesion unit that integrally forms a part of the heat pump. 前記真空断熱材は前記貯湯タンクの長手方向で複数に分割し、かつ略円筒状になるように前記貯湯タンクの周囲に覆うように配設するとともに、上部の芯材部を厚くし下部が薄くなるように勾配をもたせ、前記貯湯タンクの上部の断熱保温性能を向上させた請求項1から請求項5のいずれか1項に記載のヒートポンプ給湯機。 The vacuum heat insulating material is divided into a plurality of portions in the longitudinal direction of the hot water storage tank, and is disposed so as to cover the periphery of the hot water storage tank so as to be substantially cylindrical, and the upper core material portion is thickened and the lower portion is thinned. The heat pump water heater according to any one of claims 1 to 5, wherein the heat pump water heater according to any one of claims 1 to 5 is provided with a gradient so as to improve heat insulation and heat insulation performance at an upper portion of the hot water storage tank. 前記真空断熱材は一方の端部の芯材部を厚くし他方の端部が薄くなるように勾配をもたせたヒートポンプ給湯機等に用いる真空断熱材。 The said vacuum heat insulating material is a vacuum heat insulating material used for the heat pump water heater etc. which gave the gradient so that the core material part of one edge part may be thickened and the other edge part may become thin.
JP2006033379A 2006-02-10 2006-02-10 Heat pump water heater and vacuum heat insulating material Pending JP2007212060A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011012953A (en) * 2010-08-24 2011-01-20 Imae Kogyo Kk Heat insulation apparatus for hot water storage tank for heat pump water heater
JP2012112607A (en) * 2010-11-26 2012-06-14 Rinnai Corp Insulation hot water storage device
JP2016217563A (en) * 2015-05-15 2016-12-22 株式会社コロナ Hot water storage type water heater
WO2022173105A1 (en) * 2021-02-09 2022-08-18 엘지전자 주식회사 Thermal bonding film, method for producing same, and water tank adhesion structure using same for air-to-water source heat pump

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JPS4620450Y1 (en) * 1969-03-10 1971-07-15
JPS61114253U (en) * 1984-12-25 1986-07-19
JPH09286089A (en) * 1996-04-23 1997-11-04 Mitsubishi Electric Corp Resin sheet, vacuum heat insulating panel and production thereof
JP2005061465A (en) * 2003-08-08 2005-03-10 Akoo Kiko:Kk Vacuum heat insulating material
JP2005315480A (en) * 2004-04-28 2005-11-10 Hitachi Home & Life Solutions Inc Heat pump type water heater

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JPS4620450Y1 (en) * 1969-03-10 1971-07-15
JPS61114253U (en) * 1984-12-25 1986-07-19
JPH09286089A (en) * 1996-04-23 1997-11-04 Mitsubishi Electric Corp Resin sheet, vacuum heat insulating panel and production thereof
JP2005061465A (en) * 2003-08-08 2005-03-10 Akoo Kiko:Kk Vacuum heat insulating material
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2011012953A (en) * 2010-08-24 2011-01-20 Imae Kogyo Kk Heat insulation apparatus for hot water storage tank for heat pump water heater
JP2012112607A (en) * 2010-11-26 2012-06-14 Rinnai Corp Insulation hot water storage device
JP2016217563A (en) * 2015-05-15 2016-12-22 株式会社コロナ Hot water storage type water heater
WO2022173105A1 (en) * 2021-02-09 2022-08-18 엘지전자 주식회사 Thermal bonding film, method for producing same, and water tank adhesion structure using same for air-to-water source heat pump

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