CN104528176A - Spliced heat-insulating pad - Google Patents

Spliced heat-insulating pad Download PDF

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Publication number
CN104528176A
CN104528176A CN201410823415.9A CN201410823415A CN104528176A CN 104528176 A CN104528176 A CN 104528176A CN 201410823415 A CN201410823415 A CN 201410823415A CN 104528176 A CN104528176 A CN 104528176A
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China
Prior art keywords
connection block
connection
fixedly connected
heat
energy
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Granted
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CN201410823415.9A
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Chinese (zh)
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CN104528176B (en
Inventor
金克勤
支晓华
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Hangzhou Ruhr New Material Technology Co ltd
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Zhejiang Dian Chuan Industrial Design Co Ltd
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Publication of CN104528176B publication Critical patent/CN104528176B/en
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Abstract

The invention discloses a spliced heat-insulating pad. The spliced heat-insulating pad comprises a plurality of energy storage units (3) and connecting plates (1). The four sides of each connecting plate (1) are correspondingly provided with a first connecting base (4), a second connecting base (5), a third connecting base (9) and a fourth connecting base (7). The first connecting base (4) of each connecting plate (1) and the third connecting base (9) of the adjacent connecting plate (1) are matched in an insertion mode and fixed through a transverse connecting fixing piece (6), the second connecting base (5) of each connecting plate (1) and the fourth connecting base (7) of the adjacent connecting plate (1) are matched in an insertion mode and fixed through a longitudinal connecting fixing piece (8), and the first connecting bases (4) and the third connecting bases (9) are staggered from the second connecting bases (5) and the fourth connecting bases (7) in the vertical direction so that the transverse connecting fixing pieces (6) can be crossed with the longitudinal connecting fixing pieces (8). By the adoption of the structure, the spliced heat-insulating pad has the advantages of being simple and reasonable in structure, convenient to produce and assemble, high in mechanical strength, firm and reliable in connection, good in heat storage and heat insulation effect, and particularly capable of meeting different market requirements because the size of the heat-insulating pad can be flexibly changed.

Description

Unit-built type thermal insulation pad
Technical field
The invention relates to a kind of heat keeper, particularly a kind of multiple energy-storage units assembled and by energy-storage units enduringly slow releasing heat energy reach the unit-built type thermal insulation pad of heat insulation effect.
Background technology
At present, many article moving, transport, need insulation in preservation process, as provided fast food service for school student, in order to ensure student have look good, smell good and taste good, nutrition is good to eat, the Chinese meal of safety and sanitation, many schools all select large-scale catering enterprise to provide and deliver.Although select dispensing to solve food-safety problem, but also have the following disadvantages, when spring, fall and winter because temperature is low, it is long to add dispensing distance, the time, the food temperature be contained in cutlery box declines gradually, be distributed to and eat cooler and cooler when having dinner in student's hand, not only have a strong impact on appetite, but also the healthy of student can be affected.To provide and deliver the problems referred to above brought to solve Chinese meal, the heat adopting heat keeper slow releasing to store in advance can keep the temperature of food in cutlery box, thus ensures that student can have the hot meal of Hot dishes.
Current flat heat keeper is by comprising capping and box body fixedly forms, energy-accumulating medium is filled in the airtight chamber of capping and box body composition, in use have the following disadvantages: one is because flat heat keeper area is larger, this structure middle part planar mechanical intensity is very weak, the problem on deformation such as depression, bulge are easily produced during use, in airtight chamber, well-distributed energy-accumulating medium will produce movement, cause flat heat keeper heat accumulation inequality, be uneven, even normally can not use, have a strong impact on the service life of product.Two is that during use, heated object and heat keeper plane are close to, and do not have enough air flow passage, and heat keeper thermal conduction effect is undesirable because heat keeper surface adopts planar structure.Three is because flat heat keeper is by certain dimensioned, having different size requirement, just cannot meet, again must make processing mold once run into, and it is long to invest the large and required time, has a strong impact on the economic benefit in many ways such as manufacturer and user.For this reason, many manufacturers and knowledgeable people are studied for the problems referred to above and develop, but not yet have more rational product to emerge so far.
Summary of the invention
For overcoming the above-mentioned disadvantage that existing flat heat keeper exists, the object of the invention be to provide a kind of simple and reasonable, production and assembly convenient, mechanical strength is high, firm and reliable connection, heat-storage heat-preserving are effective, can change the unit-built type thermal insulation pad of heat keeper size flexibly.
The invention solves the technical scheme that its technical matters adopts, it comprises multiple energy-storage units and the connecting panel fixing with energy-storage units, four limit correspondences of described connecting panel are provided with the first Connection Block, second Connection Block, 3rd Connection Block and the 4th Connection Block, the first Connection Block between adjacent connection plates and the 3rd Connection Block mutually intert and join merga pass lateral connection connecting element and be fixedly connected with, the second Connection Block between adjacent connection plates and the 4th the Connection Block mutually interspersed longitudinal connection fixture of merga pass of joining are fixedly connected with, all connecting panels are assemblied to form oblong or square structure, first Connection Block of described connecting panel and the 3rd Connection Block and the second Connection Block and the 4th Connection Block misplace up and down, and lateral connection connecting element is intersected mutually with longitudinal connection fixture.
The further scheme of the invention, be fixedly connected with by lateral connection connecting element between first Connection Block of all connecting panels of described ragged edge, be fixedly connected with by lateral connection connecting element between 3rd Connection Block of all connecting panels of ragged edge, be fixedly connected with by longitudinal connection fixture between second Connection Block of all connecting panels of ragged edge, be fixedly connected with by longitudinal connection fixture between the 4th Connection Block of all connecting panels of ragged edge.
The further scheme of the invention, described energy-storage units comprises capping, box body, and capping is fixed on box body, is filled with energy-accumulating medium in the airtight chamber that capping and box body form.
The further scheme of the invention, described capping is fixedly connected with by anti-limit snap fit and box body.
After adopting said structure, have the following advantages compared with the prior art and effect: one is because heat keeper forms by multiple energy-storage units and with the connecting panel that energy-storage units is fixed, adjacent connection plates is mutually permanently connected by lateral connection connecting element and longitudinal connection fixture, assembled simple and convenient, firm and reliable connection, mechanical strength is high, the heating cushion of assembled different size and size can carry out satisfied different customer demand, thus solve generation depression, problem on deformation such as bulge and the problem of different size and size cannot be met, the energy-accumulating medium of energy-storage units can not produce movement simultaneously, greatly can improve the service life of product, ensure heat accumulation and homogeneous heating.Two is owing to there is thermal current interchange channel between each energy-storage units and heated object, effectively improves the performance of interchange of heat and insulation.
Accompanying drawing explanation
Fig. 1 is the plan structure schematic diagram of the invention.
Fig. 2 is the A-A cross-sectional view of the invention Fig. 1.
Fig. 3 is the B-B cross-sectional view of the invention Fig. 1.
Fig. 4 is the invention perspective view.
Wherein, 1 connecting panel, 2 anti-limits, 3 energy-storage units, 4 first Connection Blocks, 5 second Connection Blocks, 6 lateral connection connecting elements, 7 the 4th Connection Blocks, 8 longitudinal connection fixtures, 9 the 3rd Connection Blocks, 10 box bodys, 11 energy-accumulating mediums, 12 cappings.
Detailed description of the invention
Shown in Fig. 1 to Fig. 4, for the specific embodiments of a kind of flat heat keeper of the invention, the connecting panel 1 that it is comprised multiple energy-storage units 3 and is fixed with energy-storage units 3 by anti-limit 2, four limit correspondences of described connecting panel 1 are provided with the first Connection Block 4, second Connection Block 5, 3rd Connection Block 9 and the 4th Connection Block 7, first Connection Block 4, second Connection Block 5, 3rd Connection Block 9 and the 4th Connection Block 7 are provided with the mounting hole matched with connection fixture, first Connection Block 4 of adjacent connection plates 1 and the 3rd Connection Block 9 mutually interspersed merga pass lateral connection connecting element 6 of joining are fixedly connected with the mounting hole on the 3rd Connection Block 9 through the first Connection Block 4, second Connection Block 5 of adjacent connection plates 1 and the 4th the Connection Block 7 mutually interspersed longitudinal connection fixture 8 of merga pass of joining are fixedly connected with the mounting hole on the 4th Connection Block 7 through the second Connection Block 5, all connecting panels 1 are assemblied to form oblong or square structure, first Connection Block 4 of described connecting panel 1 and the 3rd Connection Block 9 and the second Connection Block 5 and the 4th Connection Block about 7 misplace, and are convenient to lateral connection connecting element 6 and longitudinal connection fixture 8 cross assembly.Described energy-storage units 3 comprises capping 12, box body 10, and capping 12 is fixed on box body 10, and be filled with energy-accumulating medium 11 in the airtight chamber that capping 12 and box body 10 form, energy-accumulating medium 11 first can absorb the heat of heat source, then slow releasing heat.
In order to improve mechanical strength, be fixedly connected with by lateral connection connecting element 6 between first Connection Block 4 of all connecting panels 1 of described ragged edge, be fixedly connected with by lateral connection connecting element 6 between 3rd Connection Block 9 of all connecting panels 1 of ragged edge, be fixedly connected with by longitudinal connection fixture 8 between second Connection Block 5 of all connecting panels of ragged edge 1, be fixedly connected with by longitudinal connection fixture 8 between the 4th Connection Block 7 of all connecting panels of ragged edge 1.In order to easy to process, firm and reliable connection, described capping 12 is fixedly connected with box body 10 by anti-limit snap fit.In order to ensure energy storage heating effect, described capping 12 and box body 10 are processed by the good material of heat conductivility such as metallic aluminium, and lateral connection connecting element 6 and longitudinal connection fixture 8 are with not easily to get rusty and the good metal material processing of laser intensity forms.
The above; just an embodiment of the invention, not makes any pro forma restriction, on the technical scheme basis not departing from the invention to the invention; done simple modification, equivalent variations or modification, all fall into the protection domain of the invention.

Claims (4)

1. a unit-built type thermal insulation pad, comprise multiple energy-storage units (3) and the connecting panel (1) fixing with energy-storage units (3), it is characterized in that: four limit correspondences of described connecting panel (1) are provided with the first Connection Block (4), second Connection Block (5), 3rd Connection Block (9) and the 4th Connection Block (7), first Connection Block (4) of adjacent connection plates (1) and the 3rd Connection Block (9) intert mutually joins merga pass lateral connection connecting element (6) and is fixedly connected with, second Connection Block (5) of adjacent connection plates (1) and the 4th Connection Block (7) mutually interspersed merga pass longitudinal direction connection fixture (8) of joining are fixedly connected with, all connecting panels (1) are assemblied to form oblong or square structure, first Connection Block (4) of described connecting panel (1) and the 3rd Connection Block (9) misplace up and down with the second Connection Block (5) and the 4th Connection Block (7), and lateral connection connecting element (6) is intersected mutually with longitudinal connection fixture (8).
2. unit-built type thermal insulation pad according to claim 1, it is characterized in that: be fixedly connected with by lateral connection connecting element (6) between first Connection Block (4) of all connecting panels of described ragged edge (1), be fixedly connected with by lateral connection connecting element (6) between 3rd Connection Block (9) of all connecting panels of ragged edge (1), be fixedly connected with by longitudinal connection fixture (8) between second Connection Block (5) of all connecting panels of ragged edge (1), be fixedly connected with by longitudinal connection fixture (8) between 4th Connection Block (7) of all connecting panels of ragged edge (1).
3. unit-built type thermal insulation pad according to claim 1 or 2, it is characterized in that: described energy-storage units (3) comprises capping (12), box body (10), capping (12) is fixed on box body (10), is filled with energy-accumulating medium (11) in the airtight chamber that capping (12) and box body (10) form.
4. unit-built type thermal insulation pad according to claim 3, is characterized in that: described capping (12) is fixedly connected with by anti-limit snap fit and box body (10).
CN201410823415.9A 2014-12-26 2014-12-26 Spliced heat-insulating pad Active CN104528176B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410823415.9A CN104528176B (en) 2014-12-26 2014-12-26 Spliced heat-insulating pad

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410823415.9A CN104528176B (en) 2014-12-26 2014-12-26 Spliced heat-insulating pad

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CN104528176A true CN104528176A (en) 2015-04-22
CN104528176B CN104528176B (en) 2017-04-12

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Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1290982A (en) * 1917-04-10 1919-01-14 Harry J Haigh Baking-pan.
US2618937A (en) * 1950-09-16 1952-11-25 Ernest J Francis Refrigerated package
US3425586A (en) * 1965-03-24 1969-02-04 Dynamit Nobel Ag Packaging container particularly for rockets or rocket-like missiles
JPS54182201U (en) * 1978-06-12 1979-12-24
JPS5746267Y2 (en) * 1978-12-28 1982-10-12
JPH04201839A (en) * 1990-11-30 1992-07-22 Showa Alum Corp Connection of rectangular container
JPH0637134U (en) * 1992-10-24 1994-05-17 吉比化成株式会社 Synthetic resin container connection structure
JPH0657821U (en) * 1993-01-20 1994-08-12 有限会社川原商店 Packaging basket
US5413236A (en) * 1993-07-02 1995-05-09 Kenevan; Timothy P. Modular shipping container
CN202321212U (en) * 2011-11-28 2012-07-11 阿诺德绝缘材料技术(吴江)有限公司 Detachable heat-insulating bag
US20130112695A1 (en) * 2011-11-09 2013-05-09 Alpine Thermal Technologies, Inc. Insulating Shipping System
CN204355495U (en) * 2014-12-26 2015-05-27 浙江典创工业设计有限公司 Unit-built type thermal insulation pad

Patent Citations (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1290982A (en) * 1917-04-10 1919-01-14 Harry J Haigh Baking-pan.
US2618937A (en) * 1950-09-16 1952-11-25 Ernest J Francis Refrigerated package
US3425586A (en) * 1965-03-24 1969-02-04 Dynamit Nobel Ag Packaging container particularly for rockets or rocket-like missiles
JPS54182201U (en) * 1978-06-12 1979-12-24
JPS5746267Y2 (en) * 1978-12-28 1982-10-12
JPH04201839A (en) * 1990-11-30 1992-07-22 Showa Alum Corp Connection of rectangular container
JPH0637134U (en) * 1992-10-24 1994-05-17 吉比化成株式会社 Synthetic resin container connection structure
JPH0657821U (en) * 1993-01-20 1994-08-12 有限会社川原商店 Packaging basket
US5413236A (en) * 1993-07-02 1995-05-09 Kenevan; Timothy P. Modular shipping container
US20130112695A1 (en) * 2011-11-09 2013-05-09 Alpine Thermal Technologies, Inc. Insulating Shipping System
CN202321212U (en) * 2011-11-28 2012-07-11 阿诺德绝缘材料技术(吴江)有限公司 Detachable heat-insulating bag
CN204355495U (en) * 2014-12-26 2015-05-27 浙江典创工业设计有限公司 Unit-built type thermal insulation pad

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Inventor after: Jin Keqin

Inventor before: Jin Keqin

Inventor before: Zhi Xiaohua

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Free format text: CORRECT: INVENTOR; FROM: JIN KEQIN ZHI XIAOHUA TO: JIN KEQIN

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Address after: 321300 Fourth Floor, 189 Zizheng Road, Yongkang Economic Development Zone, Jinhua City, Zhejiang Province

Patentee after: Jinhua Shi Shi Chuang Industrial Design Co.,Ltd.

Address before: 321300 189 Zi Zheng Road, Yongkang Economic Development Zone, Jinhua, Zhejiang

Patentee before: DC INNOVATION CO.,LTD.

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Effective date of registration: 20190527

Address after: 311121 West of No. 3 Shengyi Road, Yuhang Street, Yuhang District, Hangzhou City, Zhejiang Province, 1-2 stories, 2 buildings and 3 buildings

Patentee after: HANGZHOU RUHR NEW MATERIAL TECHNOLOGY CO.,LTD.

Address before: 321300 Fourth Floor, 189 Zizheng Road, Yongkang Economic Development Zone, Jinhua City, Zhejiang Province

Patentee before: Jinhua Shi Shi Chuang Industrial Design Co.,Ltd.

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CP03 Change of name, title or address

Address after: Building 1, No. 35 Xiucai Bridge, Tiaoxi Village, Cangqian Street, Yuhang District, Hangzhou City, Zhejiang Province, 310000

Patentee after: HANGZHOU RUHR NEW MATERIAL TECHNOLOGY CO.,LTD.

Country or region after: China

Address before: 311121 West of No. 3 Shengyi Road, Yuhang Street, Yuhang District, Hangzhou City, Zhejiang Province, 1-2 stories, 2 buildings and 3 buildings

Patentee before: HANGZHOU RUHR NEW MATERIAL TECHNOLOGY CO.,LTD.

Country or region before: China