CN207228925U - A kind of hollow glass and the cold storage plant with the hollow glass - Google Patents
A kind of hollow glass and the cold storage plant with the hollow glass Download PDFInfo
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- CN207228925U CN207228925U CN201721184405.0U CN201721184405U CN207228925U CN 207228925 U CN207228925 U CN 207228925U CN 201721184405 U CN201721184405 U CN 201721184405U CN 207228925 U CN207228925 U CN 207228925U
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- glass
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- thermal insulation
- insulation areas
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Abstract
The utility model proposes a kind of hollow glass and with the hollow glass cold storage plant, the hollow glass includes the double layer hollow thermal insulation areas being made of double glazing set gradually from top to bottom and the multilayer hollow thermal insulation areas being made of at least triplex glass, and the double layer hollow thermal insulation areas and multilayer hollow thermal insulation areas are tightly connected.Anti-condensation effect is poor caused by solving the problems, such as heat-insulated difference existing for hollow glass of the prior art by the utility model.
Description
Technical field
It the utility model is related to a kind of improvement of hollow glass structure.
Background technology
The products such as refrigerator of the prior art, wine cabinet living room cabinet are the aesthetics demand for realizing preferable translucency, greatly
The door body of the products such as refrigerator, wine cabinet and living room cabinet is all used into hollow glass door body, but due to refrigerator, wine cabinet and living room cabinet
Deng product in use, when the evaporator positioned at refrigeration compartment back is in running order, cold air weight is big, easily goes out
The phenomenon that existing cold air sinks, therefore it is correspondingly formed low-temperature space in the cool room lower part subregion of product.Refrigerator, the wine of the prior art
Hollow glass used in the product such as cabinet and living room cabinet is mostly double-decker, two sheet glass of the double-decker hollow glass,
Using fluid sealants, glass and seal tape are bonded and formed, heat insulation is good, but double layer glass due to thickness of glass and
Hollow gap is limited, causes heat insulation and preservation effect limited, and in use, lower portion is in long-term low for the door body of hollow glass
Temperature state, when in use, then can be because producing condensation, it is impossible to meet that user uses need under the influence of thermal insulation the difference indoors outer temperature difference
Ask.
Utility model content
The utility model provides a kind of hollow glass, solves heat-insulated difference existing for hollow glass of the prior art and causes
Anti-condensation effect it is poor the problem of.
To achieve the purpose that to solve above-mentioned technical problem, the utility model uses following skill using proposed hollow glass
Art scheme is achieved:
A kind of hollow glass, including the double layer hollow thermal insulation areas being made of double glazing set gradually from top to bottom and
The multilayer hollow thermal insulation areas being made of at least triplex glass, double layer hollow thermal insulation areas and multilayer hollow the thermal insulation areas sealing connect
Connect.
A kind of cold storage plant, including cool room, cool room door body and the evaporator for being arranged on the cool room back side, the refrigeration
Room door body is oppositely arranged with the evaporator, and the lower part of the cool room further includes above-mentioned hollow glass formed with low-temperature space,
The hollow glass is arranged in the cool room door body, multilayer hollow thermal insulation areas and the low-temperature space of the hollow glass
Position correspondence is set.
Further, the multilayer hollow thermal insulation areas includes at least triplex glass, and the triplex glass is tightly connected successively.
Further, include the first glass-base, the second glass-base and be arranged on first glass-base and
3rd glass-base of downside between two glass-bases, the bottom surface of the 3rd glass-base and first glass-base, the
Two glass-base bottom surfaces are concordant, and the height of the top surface of the 3rd glass-base is less than first glass-base, the second glass
The height of substrate top surface, is not provided with the portion of the 3rd glass-base between first glass-base and the second glass-base
Divide and form the double layer hollow thermal insulation areas, the shape between first glass-base, the second glass-base and the 3rd glass-base
Into three floor hollow heat insulation areas.
Further, one end of first glass-base and the second glass-base is tightly connected, the 3rd glass base
Layer be arranged on first glass-base and the second glass-base the other end and respectively with the first glass-base, the second glass base
It is tightly connected between layer.
Further, it is provided with the first seal tape between first glass-base and the second glass-base, described
It is adhesively fixed between one glass-base, the second glass-base and the first seal tape by fluid sealant, first glass-base,
The second seal tape, the 3rd seal tape, first glass are respectively arranged between two glass-bases and the 3rd glass-base
Basic unit, between the 3rd glass-base and the second seal tape, second glass-base, the 3rd glass-base and the 3rd sealing frame
It is adhesively fixed between bar by fluid sealant.
Further, first seal tape and the second seal tape, the 3rd seal tape include support moulding, divide
Son sieve and butyl rubber.
Further, first glass-base, the second glass-base and the 3rd glass-base are LOW-E glass.
Further, first glass-base, the second glass-base are equipped with thermal reflecting coating, at least on medial surface
Both sides are both provided with thermal reflecting coating on three glass-bases.
There are advantages below and good effect for the utility model:
The utility model proposes a kind of hollow glass, including the double layer hollow thermal insulation areas set gradually from top to bottom and more
Floor hollow heat insulation area, the double layer hollow thermal insulation areas and multilayer hollow thermal insulation areas are tightly connected.Since hollow glass is being assemblied in
In use, mainly can be poor due to hollow glass heat insulating effect due to the temperature difference in the low-temperature space of cool room lower part in cool room door body
And it is bigger with the exterior temperature difference and condensation is produced in hollow glass door body, the lower part of hollow glass is arranged to by the utility model
Multilayer hollow thermal insulation areas, is used for realization good heat insulation by the superposition of multilayer hollow thermal insulation areas, effectively avoids freezing
The problem of room is because of internal-external temperature difference influence generation condensation.
Brief description of the drawings
Fig. 1 is the structure diagram of the utility model hollow glass;
Fig. 2 is partial enlarged view at the A of Fig. 1;
Fig. 3 is the structure diagram of the utility model cold storage plant.
Embodiment
The technical solution of the utility model is described in further detail with reference to the accompanying drawings and detailed description, this
Utility model proposes a kind of embodiment of hollow glass, with reference to shown in Fig. 1-Fig. 3, including set gradually from top to bottom by double
The double layer hollow thermal insulation areas 1 that layer glass is formed and the multilayer hollow thermal insulation areas 2 that at least triplex glass is formed, the double layer hollow
Thermal insulation areas 1 and multilayer hollow thermal insulation areas 2 are tightly connected.Pass through two layers specifically, the double layer hollow thermal insulation areas 1 in the present embodiment refers to
Glass capsulation links together, the hollow thermal insulation areas formed between layer glass, is an area of insulation;Multilayer hollow every
Hot-zone 2 refers to be in turn connected to form by least triplex glass, is sealed connected together to be formed in one between every adjacent layer glass
Empty thermal insulation areas, is correspondingly formed multiple hollow thermal insulation areas between compound glass, and multiple thermal insulation areas are arranged parallel to each other settings, logical
Cross multiple thermal insulation areas and be overlapped mutually the set-up mode of arrangement, it can be achieved that isolating to the multilayer of heat, be effectively reduced internal heat
The loss of amount, adds the heat insulation of hollow glass, and good heat-insulation effect can then reduce the temperature difference inside and outside cool room, and then
Anti-condensation effect.
Further, the multilayer hollow thermal insulation areas 2 in the present embodiment includes at least triplex glass and triplex glass is close successively
Envelope connection, seals between every adjacent layer glass and is correspondingly formed a double layer hollow thermal insulation areas 1, then multilayer hollow thermal insulation areas
2 can be tightly connected the double layer hollow thermal insulation areas 1 formed successively by triplex glass including at least 2, it is of course also possible to which correspondence includes
3 or 4 double layer hollow thermal insulation areas 1, realize more preferable heat insulation, are not particularly limited herein.
Further, the multilayer hollow thermal insulation areas 2 in the present embodiment it is specific set and implementation with three layers it is hollow every
Illustrated exemplified by hot-zone:Specifically, three floor hollow heat insulation areas include the first glass-base 3, the second glass-base 4 and set
The 3rd glass-base 5 of downside, the 3rd glass-base 5 are inserted between 3 and second glass-base 4 of the first glass-base
One end of the first glass-base 3 and the second glass-base 4 is inserted between first glass-base 3 and the second glass-base 4 and only,
The bottom surface of 3rd glass-base 5 is concordant with the first glass-base 3,4 bottom surface of the second glass-base, the top surface of the 3rd glass-base 5
Height less than first glass-base 3, the height of 4 top surface of the second glass-base.That is, 5 height of the 3rd glass-base is less than
First glass-base 3 and the height of the second glass-base 4.
In connection, one end of the first glass-base 3 and the second glass-base 4 is tightly connected, the 3rd glass-base
53 be arranged on the other end of 3 and second glass-base 4 of the first glass-base and respectively with the first glass-base 3, the second glass
It is tightly connected between glass basic unit 4.Specifically, the 3rd glass-base 5 wherein one end respectively with the first glass-base 3, the second glass
The connection of basic unit 4 other end end part seal, remaining end are then close between the inner wall of corresponding and the first glass-base 3, the second glass-base 4
Envelope connection, is not provided with the part shape of the 3rd glass-base 5 between 3 and second glass-base 4 of the first glass-base
Into the double layer hollow thermal insulation areas 1, the shape between first glass-base 3, the second glass-base 4 and the 3rd glass-base 5
Into three floor hollow heat insulation areas.
During specific connection, the first sealing is provided between further first glass-base, 3 and second glass-base 4
Moulding 6, is adhesively fixed, institute between first glass-base 3, the second glass-base 4 and the first seal tape 6 by fluid sealant 7
State and be respectively arranged with the second seal tape the 8, the 3rd between the first glass-base 3, the second glass-base 4 and the 3rd glass-base 5
Seal tape 9, first glass-base 3, between the 3rd glass-base 5 and the second seal tape 8, second glass-base
4, it is adhesively fixed between the 3rd glass-base 5 and the 3rd seal tape 9 by fluid sealant 7.
If the multilayer hollow thermal insulation areas in the present embodiment is four floor hollow heat insulation areas, the 4th glass of corresponding increase is needed
Basic unit, it can be identical with 5 structure of the 3rd glass-base when setting, and can be disposed at the first glass-base 3 and the 3rd glass
Between 5 or second glass-base 4 of glass basic unit and the 3rd glass-base 5, when being adhesively fixed, the two of setting corresponding and adjacent thereto
Sealing is carried out by seal tape and fluid sealant to fix, do not do repeat one by one herein between a glass-base both ends.
Preferably, 6 and second seal tape 8 of the first seal tape, the 3rd seal tape 9 include support moulding,
Molecular sieve, molecular sieve are used for drying, and butyl rubber.Transferred heat to outside by glass and seal tape to reduce refrigeration compartment
Boundary, support moulding need to use the low material of thermal conductivity factor, and preferable support frame bar material is PVC.
For the heat-proof quality of further lifting hollow glass, first glass-base 3, the second glass in the present embodiment
4 and the 3rd glass-base 5 of basic unit is LOW-E glass.In the first glass-base 3, the second glass-base 4 at least in its medial surface
Thermal reflecting coating is both provided with equipped with both sides on thermal reflecting coating, the 3rd glass-base 5.
Also propose a kind of cold storage plant in the present embodiment, including cool room 10, cool room door body 11 and be arranged on cool room
The evaporator 12 at the back side, cool room door body 11 are oppositely arranged with evaporator 12, during work, are made by the work of evaporator 12
Cold, since weight is larger, cold air sinks for the cold air of generation, in the corresponding lower part in cool room 10 formed with low-temperature space 13, by
In the cold air in product cool room 10 sinks, indoor temperature is uneven caused by the circulating cold air inequality in cool room 10, product
An indoor and outdoor internal-external temperature difference, can cause the big portion on the hollow glass of cool room door body 11 or regional area to occur
Condensation problem, it is since cold air is from the blowout of 12 side of evaporator, then most of to blow to the cool room door body being oppositely arranged with evaporator 12
At 11 positions, condensation is primarily generated on 13 corresponding hollow glass of low-temperature space, to solve condensation problem, will be set in the present embodiment
The hollow glass structure put in cool room door body 11 is improved, its structure be arranged to from top to bottom double layer hollow thermal insulation areas 1,
Multilayer hollow thermal insulation areas 2, makes multilayer hollow thermal insulation areas 2 and the low-temperature space 13 of hollow glass when being assemblied in cool room door body 11
Position correspondence is set.It is multilayer hollow thermal insulation areas 2 that the low-temperature space 13 that temperature is low in product cool room 10, which corresponds to hollow glass, is led to
The superposition set-up mode in multilayer hollow heat insulation area 2 is crossed, good heat insulation can be played, is effectively avoided because in cool room 10
Condensation problem caused by the outer temperature difference is big, while be on the top double layer hollow thermal insulation areas 1, it can integrally reduce the weight of hollow glass
Amount, ensures while heat insulation and saves cost.
Above example is only illustrating the technical solution of the utility model, rather than is limited;Although with reference to before
Embodiment is stated the utility model is described in detail, for those of ordinary skill in the art, still can be right
Technical solution described in previous embodiment is modified, or carries out equivalent substitution to which part technical characteristic;And these
Modifications or substitutions, do not make appropriate technical solution essence depart from the utility model technical solution claimed spirit and
Scope.
Claims (9)
1. a kind of hollow glass, including the double layer hollow thermal insulation areas being made of double glazing that sets gradually from top to bottom and by extremely
The multilayer hollow thermal insulation areas that few triplex glass is formed, the double layer hollow thermal insulation areas and multilayer hollow thermal insulation areas are tightly connected.
2. hollow glass according to claim 1, it is characterised in that the multilayer hollow thermal insulation areas includes at least three layers of glass
Glass, the triplex glass are tightly connected successively.
3. hollow glass according to claim 1, it is characterised in that include the first glass-base, the second glass-base
And it is arranged on the 3rd glass-base of downside between first glass-base and the second glass-base, the 3rd glass-base
Bottom surface it is concordant with first glass-base, the second glass-base bottom surface, the height of the top surface of the 3rd glass-base is low
In the height of first glass-base, the second glass-base top surface, first glass-base and the second glass-base it
Between be not provided with the part of the 3rd glass-base and form the double layer hollow thermal insulation areas, in first glass-base, second
Three floor hollow heat insulation areas are formed between glass-base and the 3rd glass-base.
4. hollow glass according to claim 3, it is characterised in that first glass-base and the second glass-base
One end is tightly connected, and the 3rd glass-base is arranged on the other end of first glass-base and the second glass-base and divides
Not be tightly connected between the first glass-base, the second glass-base.
5. hollow glass according to claim 4, it is characterised in that first glass-base and the second glass-base it
Between be provided with the first seal tape, pass through fluid sealant between first glass-base, the second glass-base and the first seal tape
It is adhesively fixed, the second sealing frame is respectively arranged between first glass-base, the second glass-base and the 3rd glass-base
Article, the 3rd seal tape, first glass-base, between the 3rd glass-base and the second seal tape, second glass
Basic unit, is adhesively fixed between the 3rd glass-base and the 3rd seal tape by fluid sealant.
6. hollow glass according to claim 5, it is characterised in that first seal tape and the second seal tape,
3rd seal tape includes support moulding, molecular sieve and butyl rubber.
7. hollow glass according to claim 3, it is characterised in that first glass-base, the second glass-base and
3rd glass-base is LOW-E glass.
8. hollow glass according to claim 7, it is characterised in that first glass-base, the second glass-base
At least on medial surface thermal reflecting coating is both provided with equipped with both sides on thermal reflecting coating, the 3rd glass-base.
9. a kind of cold storage plant, including cool room, cool room door body and the evaporator for being arranged on the cool room back side, the cool room
Door body is oppositely arranged with the evaporator, and the lower part of the cool room is formed with low-temperature space, it is characterised in that is further included above-mentioned
Hollow glass described in claim any one of 1-8, the hollow glass is arranged in the cool room door body, described hollow
The multilayer hollow thermal insulation areas of glass and the position correspondence of the low-temperature space.
Priority Applications (1)
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CN201721184405.0U CN207228925U (en) | 2017-09-15 | 2017-09-15 | A kind of hollow glass and the cold storage plant with the hollow glass |
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CN201721184405.0U CN207228925U (en) | 2017-09-15 | 2017-09-15 | A kind of hollow glass and the cold storage plant with the hollow glass |
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CN207228925U true CN207228925U (en) | 2018-04-13 |
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CN201721184405.0U Active CN207228925U (en) | 2017-09-15 | 2017-09-15 | A kind of hollow glass and the cold storage plant with the hollow glass |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109028735A (en) * | 2018-06-29 | 2018-12-18 | 海信容声(广东)冰箱有限公司 | Refrigeration equipment and control method |
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2017
- 2017-09-15 CN CN201721184405.0U patent/CN207228925U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109028735A (en) * | 2018-06-29 | 2018-12-18 | 海信容声(广东)冰箱有限公司 | Refrigeration equipment and control method |
CN109028735B (en) * | 2018-06-29 | 2021-06-29 | 海信容声(广东)冰箱有限公司 | Refrigeration equipment and control method |
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