CN212566022U - Cooling and warming belt and ceiling heat exchange plate - Google Patents

Cooling and warming belt and ceiling heat exchange plate Download PDF

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Publication number
CN212566022U
CN212566022U CN202020715057.0U CN202020715057U CN212566022U CN 212566022 U CN212566022 U CN 212566022U CN 202020715057 U CN202020715057 U CN 202020715057U CN 212566022 U CN212566022 U CN 212566022U
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working medium
heat exchange
medium pipeline
cooling
ceiling
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CN202020715057.0U
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刘含春
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  • Devices For Blowing Cold Air, Devices For Blowing Warm Air, And Means For Preventing Water Condensation In Air Conditioning Units (AREA)

Abstract

The utility model belongs to the technical field of the indoor end heat transfer device of air conditioner, concretely relates to changes in temperature area smallpox heat transfer board and smallpox cold and warm area. The technical scheme is as follows: a cooling and heating heat exchange plate with a ceiling comprises a plurality of working medium pipelines, wherein a connecting panel is connected between the working medium pipelines, and an epitaxial panel is connected on the working medium pipeline on the outer side; and a heat exchange fin is arranged on one side of the working medium pipeline. The utility model provides a cold and warm area smallpox heat transfer board and smallpox cold and warm area that heat exchange efficiency is high.

Description

Cooling and warming belt and ceiling heat exchange plate
Technical Field
The utility model belongs to the technical field of the indoor end heat transfer device of air conditioner, concretely relates to changes in temperature area smallpox heat transfer board and smallpox cold and warm area.
Background
At present, the heat exchange device at the tail end of the air conditioner, which takes water as a cold and heat source carrier, comprises an air duct machine, a wall-mounted heating bag, a capillary tube screen plate, a buried pipe and a kicking heater which appears in recent years. The air duct machine realizes large-flow air forced heat exchange on a small-volume heat exchanger through high-speed air flow; the heater bag, the capillary tube net plate, the buried pipe and the skirting heater realize the regulation of the indoor air temperature through natural heat exchange with air.
Cold and hot air is blown out in the forced heat exchange process, noise is generated at the same time, discomfort feeling is generated for a human body, heating is not uniform, and the cold and hot air occupies the space of a wall surface or the indoor space is pressed down by a suspended ceiling; the buried pipe not only occupies high indoor layer, is difficult to maintain and has large thermal inertia, but also can only produce heat; the heating bag occupies a large space, the heating distribution is uneven, and refrigeration cannot be carried out. The newly developed skirting warmer overcomes the partial defects of the heat exchange tail end, but has the defects of monotonous surface form, low heat exchange efficiency and incapability of refrigerating. The capillary net plate is a limit structure of the buried pipe, is light and thin and is easy to construct. However, it is also very difficult to achieve in-situ cooling.
The cold and warm belt appeared in 2019 is a novel terminal heat exchange device-a cold and warm belt of an air conditioning system for in-situ heat supply and refrigeration, which is developed on the basis of foot kicking heating. The heat exchange device is arranged at any structural position of an indoor wall foot, a waist line, a hanging line, a hidden corner line and a ceiling trap, the adjustment of the heat exchange area is easy to realize, the heat exchange device is integrated into indoor decoration, and new design elements are added for decoration. The cold and warm belt arranged at the position of the internal corner line and the edge structure of the ceiling trap is called a ceiling cold and warm belt.
But the heat exchange efficiency of the existing ceiling cold and warm belt is lower and the using effect is poor.
SUMMERY OF THE UTILITY MODEL
In order to solve the problems existing in the prior art, the utility model aims to provide a cold and warm area smallpox heat transfer board and smallpox cold and warm area that heat exchange efficiency is high.
The utility model discloses the technical scheme who adopts does:
a cooling and heating ceiling heat exchange plate is formed by an aluminum alloy continuous extrusion process, the surface of the cooling and heating ceiling heat exchange plate is processed into various colors and patterns, the cooling and heating ceiling heat exchange plate comprises a plurality of working medium pipelines, a connecting panel is connected among the working medium pipelines, and an epitaxial panel is connected on the working medium pipeline on the outer side; and a heat exchange fin is arranged on one side of the working medium pipeline.
Preferably, the heat exchanger further comprises two hooks, the hooks are connected to the working medium pipeline or the connecting panel or the extending panel or the heat exchange fins, and the hooks on the upper portion are provided with a plurality of holes.
Preferably, a mounting component is hung between the two hooks, and the other side of the mounting component is connected to the wall.
Preferably, the installation component includes the support frame, and the upper and lower both ends of support frame all are equipped with the support hook, all set up the barb on two couples, and the barb is hung on the support hook, and the support frame is fixed in on the wall through the nail.
Preferably, the mounting assembly further comprises a latch which locks the support bracket and the hook together.
Preferably, the inner diameter of the working medium pipeline is 16mm, and the connecting part of the working medium pipeline is connected by a sealing connecting piece made of a standard corrugated pipe.
Preferably, the center distance between adjacent working medium pipelines is 40-50 mm.
A ceiling cooling and heating belt comprises a wall, wherein a mounting assembly is arranged on the wall; the heat exchange device is characterized by also comprising a plurality of working medium pipelines and two hooks, wherein a connecting panel is connected between the working medium pipelines, an epitaxial panel is connected on the working medium pipeline on the outer side, a heat exchange fin is arranged on one side of the working medium pipeline, the hooks are connected to the working medium pipelines or the connecting panel or the epitaxial panel or the heat exchange fin, the other ends of the hooks are hung on the mounting assembly, and a plurality of holes are formed in the hooks on the upper part of the hooks; the lamp strip is installed between the supporting plate and the ceiling, and the supporting plate is provided with an interconnecting pipeline.
Preferably, the mounting assembly comprises a support frame, the upper end and the lower end of the support frame are respectively provided with a support hook, the two hooks are respectively provided with a barb, the barbs are hung on the support hooks, and the support frame is fixed on the wall through nails; the mounting assembly further comprises a lock catch, and the support frame and the hook are locked together by the lock catch.
Preferably, a water tank frame is further fixed on the wall, a water tank is fixed on the water tank frame, and the water tank is located below the extension panel on the lower side.
Preferably, the inner diameter of the working medium pipeline is 16mm, and the connecting part of the working medium pipeline is connected by a sealing connecting piece made of a standard corrugated pipe.
The utility model has the advantages that:
1. the utility model discloses a connection panel not only plays the effect of decorating the configuration with the epitaxial panel, still makes the working medium pipeline can obtain effective heat transfer. The utility model discloses a be provided with the heat transfer wing on the working medium pipeline, then the heat transfer area of working medium pipeline improves, and heat exchange efficiency is corresponding to be improved. The utility model discloses a heat transfer area can improve to original 160%, makes heat exchange efficiency show the improvement, then empty terminal of withering can obtain high-efficient heat transfer.
2. The two hooks can support the whole formed by the working medium pipeline, the connecting panel and the extending panel. When being connected with the external structure, the utility model discloses a changes in temperature area smallpox heat transfer board obtains reliably installing. And, the utility model discloses a couple is connected, makes things convenient for the dismouting. The hook on the upper part is provided with a plurality of holes for facilitating the air flow to pass through.
3. The mounting component is connected to the wall, and the mounting component can be conveniently used for hooking the hook. After installation component installs in the wall, can hang two couples respectively on installation component, then the utility model discloses a quick assembly disassembly can be realized to changes in temperature area smallpox heat transfer board.
4. After installing the support frame in the wall through the nail, can hang the barb of couple on the support hook of support frame, then the utility model discloses a changes in temperature area smallpox heat transfer board obtains the installation. When using, install the support frame in advance, then the utility model discloses a warm band smallpox heat transfer board's installation is more convenient.
5. The inner diameter of the working medium pipeline is 16mm, and the connecting part of the working medium pipeline can be connected by a sealing connecting piece made of a standard corrugated pipe.
6. The center distance between adjacent working medium pipelines is 40-50 mm, and the use requirement is guaranteed.
7. For the ceiling heating and cooling belt, the mounting assembly is mounted on the wall, and the heat exchange plate of the heating belt ceiling is hung on the mounting assembly, so that the assembly and the disassembly are convenient. The connecting panel and the extension panel not only play a role in decorating the configuration, but also enable the working medium pipeline to be capable of effectively exchanging heat. The working medium pipeline is provided with the heat exchange fins, so that the heat exchange area of the working medium pipeline is increased, and the heat exchange efficiency is correspondingly increased. The utility model discloses a heat transfer area can improve to original 160%, makes heat exchange efficiency show the improvement, then empty terminal of withering can obtain high-efficient heat transfer. The two hooks can support the whole formed by the working medium pipeline, the connecting panel and the extending panel. When being connected with the external structure, the utility model discloses a changes in temperature area smallpox heat transfer board obtains reliably installing. The lamp belt is installed between the supporting plate and the ceiling, the interconnecting pipelines are installed on the supporting plate, and the cold and warm belt ceiling heat exchange plate does not occupy the space of the lamp belt and the interconnecting pipelines. The hook on the upper part is provided with a plurality of holes for facilitating the air flow to pass through.
8. To the cold and warm area of smallpox, after passing through the nail with the support frame and installing in the wall, can hang the barb of couple on the support hook of support frame, then the utility model discloses a change in temperature area smallpox heat transfer board obtains the installation. When using, install the support frame in advance, then the utility model discloses a warm band smallpox heat transfer board's installation is more convenient.
9. The basin can be used for the water receiving, avoids the water droplet to drip ground.
10. The inner diameter of the working medium pipeline is 16mm, and the connecting part of the working medium pipeline can be connected by a sealing connecting piece made of a standard corrugated pipe.
The advantages of the invention are not limited to the description, but rather are described in greater detail in the detailed description for better understanding.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention. The objectives and other advantages of the invention may be realized and attained by the structure particularly pointed out in the written description and drawings.
It will be appreciated by those skilled in the art that the objects and advantages that can be achieved with the present invention are not limited to the details set forth above, and that these and other objects that can be achieved with the present invention will be more clearly understood from the following detailed description.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
FIG. 1 is a schematic structural diagram of a cooling and heating ceiling heat exchange plate;
fig. 2 is a schematic structural view of a ceiling heating and cooling belt.
In the figure: 1-a working medium pipeline; 2-a connection panel; 3-an epitaxial panel; 4-heat exchange fins; 5-hooking; 6-mounting the assembly; 7-a wall; 8-ceiling; 9-a support plate; 51-barbs; 61-a support frame; 62-nails; 63-locking; 71-a water tank frame; 72-a water tank; 91-lamp strip; 92-interconnecting piping; 611-support hooks.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary and intended to be used for explaining the present invention, and should not be construed as limiting the present invention.
In the description of the present invention, it is to be understood that the terms "first", "second" and "first" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implying any number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of the present invention, "a plurality" means two or more unless specifically limited otherwise.
In the present invention, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
Example 1:
as shown in fig. 1, the cooling and heating ceiling heat exchange plate of the present embodiment includes a plurality of working medium pipelines 1, a connection panel 2 is connected between the working medium pipelines 1, and an extension panel 3 is connected to the outer working medium pipeline 1; and a heat exchange fin 4 is arranged on one side of the working medium pipeline 1.
The utility model discloses a connection panel 2 not only plays the effect that shelters from with epitaxial panel 3, still makes working medium pipeline 1 can obtain effective heat transfer. The utility model discloses a be provided with heat transfer wing 4 on working medium pipeline 1, then working medium pipeline 1's heat transfer area improves, and heat exchange efficiency correspondingly improves. The utility model discloses a heat transfer area can improve to original 160%, makes heat exchange efficiency show the improvement, then empty terminal of withering can obtain high-efficient heat transfer.
Furthermore, the heat exchanger further comprises two hooks 5, the hooks 5 are connected to the working medium pipeline 1 or the connecting panel 2 or the extending panel 3 or the heat exchange fins 4, and the hooks 5 on the upper portion are provided with a plurality of holes. The two hooks 5 can support the whole formed by the working medium pipeline 1, the connecting panel 2 and the extending panel 3. When the hook 5 is connected with the external structure, the utility model discloses a changes in temperature area ceiling heat transfer board obtains reliably installing. And, the utility model discloses a couple 5 is connected, makes things convenient for the dismouting. The hook 5 on the upper part is provided with a plurality of holes for facilitating the air flow.
Furthermore, a mounting component 6 is hung between the two hooks 5, and the other side of the mounting component 6 is connected to a wall 7. The mounting member 6 is attached to the wall 7, the mounting member 6 can be conveniently used for hooking the hook 5. After installation component 6 installed in wall 7, can hang two couples 5 respectively on installation component 6, then the utility model discloses a quick assembly disassembly can be realized to changes in temperature area smallpox heat transfer board.
Specifically, the mounting assembly 6 comprises a support frame 61, the upper end and the lower end of the support frame 61 are provided with support hooks 611, the two hooks 5 are provided with barbs 51, the barbs 51 are hung on the support hooks 611, and the support frame 61 is fixed on the wall 7 through nails 62. After installing support frame 61 in wall 7 through nail 62, can hang barb 51 of couple 5 on support frame 61's support hook 611, then the utility model discloses a changes in temperature area smallpox heat transfer board obtains the installation. When using, install support frame 61 in advance, then the utility model discloses a warm band smallpox heat transfer board's installation is more convenient. The mounting assembly 6 further comprises a latch 63, the latch 63 locking the support frame 61 and the hook 5 together.
Furthermore, the inner diameter of the working medium pipeline 1 is 16mm, and the connecting part of the working medium pipeline 1 is connected by a sealing connecting piece made of a standard corrugated pipe. The inner diameter of the working medium pipeline 1 is 16mm, and the connecting part of the working medium pipeline 1 can be connected by a sealing connecting piece made of a standard corrugated pipe.
Furthermore, the center distance between the adjacent working medium pipelines 1 is 40-50 mm. The center distance between the adjacent working medium pipelines 1 is 40-50 mm, and the use requirement is guaranteed.
Example 2:
as shown in fig. 2, the ceiling cooling and heating belt of the embodiment comprises a wall 7, wherein a mounting component 6 is arranged on the wall 7; the heat exchanger also comprises a plurality of working medium pipelines 1 and two hooks 5, wherein a connecting panel 2 is connected between the working medium pipelines 1, an epitaxial panel 3 is connected on the working medium pipeline 1 at the outer side, a heat exchange fin 4 is arranged at one side of the working medium pipeline 1, the hooks 5 are connected on the working medium pipelines 1 or the connecting panel 2 or the epitaxial panel 3 or the heat exchange fin 4, and the other ends of the hooks 5 are hung on the mounting component 6; the top of wall 7 is connected with ceiling 8, and the upper segment of wall 7 is fixed with backup pad 9, installs lamp area 91 between backup pad 9 and the ceiling 8, installs interconnection pipe 92 on the backup pad 9, is equipped with a plurality of trompils on the couple 5 on upper portion.
To the cold and warm area of smallpox, install installation component 6 on wall 7, warm area smallpox heat transfer board is hung on installation component 6, makes things convenient for the dismouting. The connecting panel 2 and the extension panel 3 not only play a role in shielding, but also enable the working medium pipeline 1 to achieve effective heat exchange. The working medium pipeline 1 is provided with the heat exchange fins 4, so that the heat exchange area of the working medium pipeline 1 is increased, and the heat exchange efficiency is correspondingly increased. The utility model discloses a heat transfer area can improve to original 160%, makes heat exchange efficiency show the improvement, then empty terminal of withering can obtain high-efficient heat transfer. The two hooks 5 can support the whole formed by the working medium pipeline 1, the connecting panel 2 and the extending panel 3. When the hook 5 is connected with the external structure, the utility model discloses a changes in temperature area ceiling heat transfer board obtains reliably installing. The lamp strip 91 is arranged between the supporting plate 9 and the ceiling 8, the interconnecting pipeline 92 is arranged on the supporting plate 9, and the cold-warm belt ceiling heat exchange plate does not occupy the space of the lamp strip 91 and the interconnecting pipeline 92. The hook 5 on the upper part is provided with a plurality of holes for facilitating the air flow.
Furthermore, the mounting assembly 6 includes a support frame 61, the support frame 61 is provided with support hooks 611 at both upper and lower ends thereof, barbs 51 are provided on both hooks 5, the barbs 51 are hung on the support hooks 611, and the support frame 61 is fixed on the wall 7 by nails 62. After installing support frame 61 in wall 7 through nail 62, can hang barb 51 of couple 5 on support frame 61's support hook 611, then the utility model discloses a changes in temperature area smallpox heat transfer board obtains the installation. When using, install support frame 61 in advance, then the utility model discloses a warm band smallpox heat transfer board's installation is more convenient. The mounting assembly 6 further comprises a latch 63, the latch 63 locking the support frame 61 and the hook 5 together.
Further, a water tank rack 71 is fixed to the wall 7, a water tank 72 is fixed to the water tank rack 71, and the water tank 72 is located below the lower extension panel 3. The water tank 72 can be used for receiving water, preventing water droplets from dropping to the ground.
Furthermore, the inner diameter of the working medium pipeline 1 is 16mm, and the connecting part of the working medium pipeline 1 is connected by a sealing connecting piece made of a standard corrugated pipe. The inner diameter of the working medium pipeline 1 is 16mm, and the connecting part of the working medium pipeline 1 can be connected by a sealing connecting piece made of a standard corrugated pipe. The center distance between adjacent working medium pipelines 1 is 40-50 mm. The center distance between the adjacent working medium pipelines 1 is 40-50 mm, and the use requirement is guaranteed.
The working principle is as follows:
the heat exchange fins 4 are arranged on the working medium pipeline 1, so that the heat exchange area of the working medium pipeline 1 is increased, the heat exchange efficiency is correspondingly increased, and the air-drying tail end can be efficiently exchanged heat. The two hooks 5 can support the whole formed by the working medium pipeline 1, the connecting panel 2 and the extending panel 3. When the hook 5 is connected with the external structure, the utility model discloses a changes in temperature area ceiling heat transfer board obtains reliably installing. The lamp strip 91 is arranged between the supporting plate 9 and the ceiling 8, the interconnecting pipeline 92 is arranged on the supporting plate 9, and the cold-warm belt ceiling heat exchange plate does not occupy the space of the lamp strip 91 and the interconnecting pipeline 92.
The present invention is not limited to the above-mentioned optional embodiments, and any other products in various forms can be obtained by anyone under the teaching of the present invention, and any changes in the shape or structure thereof, all the technical solutions falling within the scope of the present invention, are within the protection scope of the present invention.

Claims (10)

1. A cooling and heating heat exchange plate with a ceiling is characterized in that: the device comprises a plurality of working medium pipelines (1), connecting panels (2) are connected among the working medium pipelines (1), and an epitaxial panel (3) is connected on the working medium pipeline (1) at the outer side; and a heat exchange fin (4) is arranged on one side of the working medium pipeline (1).
2. The cooling and heating ceiling heat exchange plate as claimed in claim 1, wherein: the heat exchange device is characterized by further comprising two hooks (5), the hooks (5) are connected to the working medium pipeline (1), the connecting panel (2), the extending panel (3) or the heat exchange fins (4), and a plurality of holes are formed in the hooks (5) on the upper portion.
3. The cooling and heating ceiling heat exchange plate as claimed in claim 2, wherein: the hanging connection between two couple (5) has installation component (6), and the another side of installation component (6) is connected on wall (7).
4. A cooling and heating belt ceiling heat exchange plate according to claim 3, characterized in that: the mounting assembly (6) comprises a support frame (61), the upper end and the lower end of the support frame (61) are respectively provided with a support hook (611), the two hooks (5) are respectively provided with a barb (51), the barbs (51) are hung on the support hooks (611), and the support frame (61) is fixed on the wall (7) through nails (62).
5. The cooling and heating ceiling heat exchange plate as claimed in claim 1, wherein: the inner diameter of the working medium pipeline (1) is 16mm, and the joint of the working medium pipeline (1) is connected by a sealing connecting piece made of a corrugated pipe.
6. The cooling and heating ceiling heat exchange plate as claimed in claim 1, wherein: the center distance between adjacent working medium pipelines (1) is 40-50 mm.
7. A ceiling cooling and warming belt is characterized in that: comprises a wall (7), wherein the wall (7) is provided with a mounting component (6); still include a plurality of working medium pipeline (1) and two couples (5), be connected with connection panel (2) between a plurality of working medium pipeline (1), be connected with epitaxial panel (3) on outside working medium pipeline (1), one side of working medium pipeline (1) is provided with heat transfer wing (4), couple (5) are connected on working medium pipeline (1) or connection panel (2) or epitaxial panel (3) or heat transfer wing (4), the other end of couple (5) is hung on installation component (6), be equipped with a plurality of trompils on couple (5) on upper portion.
8. A ceiling cooling and warming belt according to claim 7, wherein: the mounting assembly (6) comprises a support frame (61), the upper end and the lower end of the support frame (61) are respectively provided with a support hook (611), the two hooks (5) are respectively provided with a barb (51), the barbs (51) are hung on the support hooks (611), and the support frame (61) is fixed on the wall (7) through nails (62).
9. A ceiling cooling and warming belt according to claim 7, wherein: a water tank frame (71) is further fixed on the wall (7), a water tank (72) is fixed on the water tank frame (71), and the water tank (72) is located below the extension panel (3) on the lower side.
10. A ceiling cooling and warming belt according to any one of claims 7 to 9, wherein: the inner diameter of the working medium pipeline (1) is 16mm, and the joint of the working medium pipeline (1) is connected by a sealing connecting piece made of a corrugated pipe.
CN202020715057.0U 2020-04-30 2020-04-30 Cooling and warming belt and ceiling heat exchange plate Active CN212566022U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020715057.0U CN212566022U (en) 2020-04-30 2020-04-30 Cooling and warming belt and ceiling heat exchange plate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020715057.0U CN212566022U (en) 2020-04-30 2020-04-30 Cooling and warming belt and ceiling heat exchange plate

Publications (1)

Publication Number Publication Date
CN212566022U true CN212566022U (en) 2021-02-19

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ID=74608205

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020715057.0U Active CN212566022U (en) 2020-04-30 2020-04-30 Cooling and warming belt and ceiling heat exchange plate

Country Status (1)

Country Link
CN (1) CN212566022U (en)

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