CN105040902A - Hollow heat insulation wall body - Google Patents

Hollow heat insulation wall body Download PDF

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Publication number
CN105040902A
CN105040902A CN201510328095.4A CN201510328095A CN105040902A CN 105040902 A CN105040902 A CN 105040902A CN 201510328095 A CN201510328095 A CN 201510328095A CN 105040902 A CN105040902 A CN 105040902A
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CN
China
Prior art keywords
wall assemblies
case housing
insulation wall
wall
assemblies according
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Granted
Application number
CN201510328095.4A
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Chinese (zh)
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CN105040902B (en
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黄尚进
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Individual
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Individual
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Priority to CN201510328095.4A priority Critical patent/CN105040902B/en
Publication of CN105040902A publication Critical patent/CN105040902A/en
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Publication of CN105040902B publication Critical patent/CN105040902B/en
Expired - Fee Related legal-status Critical Current
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Abstract

The invention provides a hollow heat insulation wall body assembly, and belongs to the technical field of building sectional materials. The hollow heat insulation wall body assembly comprises an assembly frame body, wherein a heat insulation cavity and a wire passing passage are arranged in the assembly frame body; a heat isolation cavity is arranged between the inner side wall of the assembly frame body and the heat insulation cavity; separation bars are arranged in the heat isolation cavity; and the heat isolation cavity is separated into a plurality of small heat isolation cavities by the separation bars. The hollow heat insulation wall body assembly provided by the invention has the advantages of simple structure, high combining reliability and good heat isolation effect.

Description

A kind of hollow insulation body of wall
Technical field
The invention belongs to architectural shape field, particularly relate to a kind of hollow insulation body of wall.
Background technology
Modern architecture construction ground or other interim construction grounds all can be built for lightly constructed and simply equipped building for office and inhabitation, and current building method adopts common steel work to add that iron sheet plate is built, this mode heat insulation effect and thermal insulation effect all very poor, be unfavorable for the use of adverse circumstances, and the intensity of the lightly constructed and simply equipped building built with iron sheet plate is not high yet is easily subject to ambient influnence and is out of shape.
And for example publication number has the built-in light prefabricated wall assemblies with distribution linkage function of wire for a kind of disclosed in the Chinese invention patent of CN203296259, comprise prefabricated panel and distribution plug-in unit, in described prefabricated panel along its length on lead channels is set, described prefabricated panel at least one side arrange match with distribution plug-in unit with the distribution plug-in unit window that lead channels both ends are communicated with.It is inadequate that this patent of invention still cannot solve wall assemblies firmness, the problem that thermal insulation effect is general.
Summary of the invention
Structure is the invention provides simple and high in conjunction with reliability, a kind of hollow insulation body of wall that thermal insulation is effective for the deficiencies in the prior art part.
Technical scheme of the present invention is to provide a kind of hollow insulation body of wall, comprise wall assemblies, incubation cavity and passing channel is provided with in described wall assemblies, thermal insulating cavity is provided with between the inside wall of described wall assemblies and described incubation cavity, be provided with segmentation muscle in described thermal insulating cavity, described thermal insulating cavity is divided into multiple airtight thermal insulation loculus by described segmentation muscle.
Heat-insulation chamber of the present invention is cut off by a point muscle, form multiple closed heat insulation loculus, so just make the strength enhancing of the both sides in the vertical direction of heat-insulation chamber, in the vertical direction that the benefit brought is wall assemblies when deformation occurs because of high-temperature expansion for air in heat-insulation chamber time not easily there is deformation due to internal intensity lifting in inside and outside two side, even if two ends, left and right expand deformation is also the connection gap reducing neighboring walls assembly simultaneously, strengthen bonding strength, doing so avoids a lot of similar wall assemblies and at high temperature expand deformation respectively and problem that the degree of being connected firmly of neighboring walls assembly that causes declines in inside and outside two side.And the air total measurement (volume) of thermal insulating cavity does not reduce a lot by this structure, does not affect thermal insulation effect.
As preferably of the present invention, described thermal insulation loculus is arranged under the overlay along described wall assemblies length direction.
As preferably of the present invention, one end of described segmentation muscle is connected with the inside wall of described wall assemblies, and the other end is connected with the lateral wall of described incubation cavity.
As preferably of the present invention, described parallel or vertical being arranged in described thermal insulating cavity in segmentation muscle relative level face.
As preferably of the present invention, be provided with foamed heat insulating packed layer in described incubation cavity, described passing channel is arranged on described foamed heat insulating packed layer center.
Passing channel is independently arranged, instead of and the wall assemblies benefit of carrying out anatomical connectivity be broken off the heat transfer process of passing channel, the wall assemblies of other structures a lot of is structurally connected with passing channel, the temperature exchange on wall assemblies surface can be passed on passing channel, thus affect the heat insulation effect of insulation layer, because structurally the Integral sealing of insulation layer cut off by the coupling part of passing channel and wall assemblies, manufactured insulation layer inner with outside direct heat transfer pathway.
As preferably of the present invention, the top and bottom of described wall assemblies are respectively arranged with the location structure for locating, the location indentations that described location structure comprises positioning convex portion protruding outside described wall assemblies, caves in inside described wall assemblies, one in described positioning convex portion or described location indentations is provided with the positioning bar of the center line for neighbouring two the described wall assemblies that align, another one is provided with the locating slot coordinated with described positioning bar.
As preferably of the present invention, side edge and the intersection of top of described location indentations are provided with the seal groove for settling seal.
The corner that seal groove is arranged on location indentations edge can coordinate the corner of positioning convex portion to be compressed by seal, and this effect of carrying out compression mode with drift angle is better than the effect of plane squeeze sealing member.
As preferably of the present invention, the outer surface of described wall assemblies is provided with the protection outer wall for antiultraviolet, and inner surface is provided with protection inwall.
As preferably of the present invention, described protection outer wall comprises the adhesive linkage, anticorrosive coat, metal level, anti-corrosion primer layer, antiultraviolet flower-pattern layer and the surface course that set gradually.
This level distribution design of the present invention is the capability of resistance to radiation by increasing wall assemblies with metal level; also promote the intensity of protection outer wall simultaneously; then metal level is placed between two kinds of functional layers having antisepsis and protects; the flower-pattern layer arranging antiultraviolet again achieves different decorative pattern performances to promote anti-uv-ray simultaneously, finally protects decorative pattern at the surface coverage surface course of antiultraviolet flower-pattern layer.
As preferably of the present invention, the lateral wall of described wall assemblies is provided with the emulation separation trough being carried out according to the true form of the material corresponding to the decorative pattern on described antiultraviolet flower-pattern layer and size by the lateral wall of described wall assemblies splitting.
The object of the emulation separation trough that the present invention is arranged is that the size of the lateral wall in order to make wall assemblies is mapped with the material expressed by antiultraviolet flower-pattern layer, if plank decorative pattern is with regard to the scantling of corresponding width relative narrower, now emulate separation trough to arrange in ground with regard to level, by unit area consistent with actual strip width for the separate layer polylith of the lateral wall level of wall assemblies, the effect making user visually can have Artificial board to splice.
The present invention has following beneficial effect:
The present invention has easy for installation, high in conjunction with uniformity, and thermal insulation is effective, advantage attractive in appearance.
Accompanying drawing explanation
Fig. 1 is the structural representation of the embodiment of the present invention;
Fig. 2 is the protection outer wall construction schematic diagram of the embodiment of the present invention;
In figure, 1-wall assemblies; 2-incubation cavity; 3-passing channel; 4-thermal insulating cavity; 5-foamed heat insulating packed layer; 6-location structure; 401-splits muscle; 402-thermal insulation loculus; 601-positioning convex portion; 602-location indentations; 603-positioning bar; 604-locating slot; 605-seal groove; 101-protects outer wall; 102-protects inwall; 1011-adhesive linkage; 1012-anticorrosive coat; 1013-metal level; 1014-anti-corrosion primer layer; 1015-antiultraviolet flower-pattern layer; 1016-surface course; 7-emulates separation trough.
Detailed description of the invention
Below in conjunction with accompanying drawing, the present invention is described in further detail.
As shown in Figure 1, the embodiment of the present invention comprises wall assemblies 1, and wall assemblies 1 adopts aluminium extruded sections or high molecular resin material to make.Be provided with incubation cavity 2 and passing channel 3 in wall assemblies 1, be provided with thermal insulating cavity 4 between the inside wall of wall assemblies 1 and incubation cavity 2, be provided with segmentation muscle 401 in thermal insulating cavity 4, the divided muscle of thermal insulating cavity 4 401 is divided into multiple airtight thermal insulation loculus 402.Thermal insulation loculus 402 is arranged under the overlay along wall assemblies 1 length direction.One end of segmentation muscle 401 is connected with the inside wall of wall assemblies 1, and the other end is connected with the lateral wall of incubation cavity 2.The segmentation muscle 401 relative level face be arranged on the horizontal lateral of wall assemblies is arranged in thermal insulating cavity 4 abreast, is arranged on point vertical being arranged in thermal insulating cavity 4 of muscle 401 on the direction, top and bottom of wall assemblies 1.
As shown in Figure 1, be provided with foamed heat insulating packed layer 5 in the incubation cavity 2 of the embodiment of the present invention, passing channel 3 is arranged on foamed heat insulating packed layer 5 center.
As shown in Figure 1, the top and bottom of the wall assemblies 1 of the embodiment of the present invention are respectively arranged with the location structure 6 for locating, the location indentations 602 that location structure 6 comprises positioning convex portion 601 protruding outside wall assemblies 1, caves in inside wall assemblies 1.
As shown in Figure 1, the first embodiment of the location structure 6 of the embodiment of the present invention is, positioning convex portion 601 is arranged on the upper end of wall assemblies 1, location indentations 602 is arranged on the lower end of wall assemblies 1, the midline position place of the width in positioning convex portion 601 is provided with the positioning bar 603 of the center line for neighbouring two wall assemblies 1 that align, positioning bar 603 overlaps with the center line of the width of positioning convex portion 601, the midline position place of the width in location indentations 602 is provided with the locating slot 604 coordinated with positioning bar 603, locating slot 604 overlaps with the center line of the width of location indentations 602.
Location structure 6 of the present invention can also have three kinds of embodiments:
The second embodiment of location structure 6 is, positioning convex portion 601 is arranged on the lower end of wall assemblies 1, location indentations 602 is arranged on the upper end of wall assemblies 1, the midline position place of the width in positioning convex portion 601 is provided with the positioning bar 603 of the center line for neighbouring two wall assemblies 1 that align, positioning bar 603 overlaps with the center line of the width of positioning convex portion 601, the midline position place of the width in location indentations 602 is provided with the locating slot 604 coordinated with positioning bar 603, and locating slot 604 overlaps with the center line of the width of location indentations 602.
The third embodiment of location structure 6 is, positioning convex portion 601 is arranged on the upper end of wall assemblies 1, location indentations 602 is arranged on the lower end of wall assemblies 1, the midline position place of the width in positioning convex portion 601 is provided with the locating slot 604 of the center line for neighbouring two wall assemblies 1 that align, locating slot 604 overlaps with the center line of the width of positioning convex portion 601, the midline position place of the width in location indentations 602 is provided with the positioning bar 603 coordinated with locating slot 604, and positioning bar 603 overlaps with the center line of the width of location indentations 602.
4th kind of embodiment of location structure 6 is, positioning convex portion 601 is arranged on the lower end of wall assemblies 1, location indentations 602 is arranged on the upper end of wall assemblies 1, the midline position place of the width in positioning convex portion 601 is provided with the locating slot 604 of the center line for neighbouring two wall assemblies 1 that align, locating slot 604 overlaps with the center line of the width of positioning convex portion 601, the midline position place of the width in location indentations 602 is provided with the positioning bar 603 coordinated with locating slot 604, and positioning bar 603 overlaps with the center line of the width of location indentations 602.
As shown in Figure 1, the side of the location indentations 602 of the embodiment of the present invention along and the intersection of top, be the seal groove 605 that the corner, edge of location indentations 602 is provided with for settling seal.
As shown in Figure 1, the outer surface of the wall assemblies 1 of the embodiment of the present invention is provided with the protection outer wall 101 for antiultraviolet, and inner surface is provided with protection inwall 102.
As shown in Figure 2, the protection outer wall 101 of the embodiment of the present invention comprises the adhesive linkage 1011, anticorrosive coat 1012, metal level 1013, anti-corrosion primer layer 1014, antiultraviolet flower-pattern layer 1015 and the surface course 1016 that set gradually.Wherein anticorrosive coat 1012 adopts anticorrosive paint, and metal level 1013 adopts aluminium alloys, and anti-corrosion primer layer 1014 adopts putty, and antiultraviolet flower-pattern layer 1015 adopts fluororine-carbon coating, and surface course 1016 adopts transparent gloss oil paint or sub-gloss varnish.Antiultraviolet flower-pattern layer 1015 is printed with the decorative pattern of various material, as wood grain, common stone material lines, marble lines etc.
Protection outer wall 101 also can directly adopt aluminium plastic material to form.
As shown in Figure 1, the lateral wall of the wall assemblies 1 of the embodiment of the present invention is provided with the emulation separation trough 7 being carried out according to the true form of the material corresponding to the decorative pattern on antiultraviolet flower-pattern layer 1015 and size by the lateral wall of wall assemblies 1 splitting.The object of emulation separation trough 7 is that the size of the lateral wall in order to make wall assemblies 1 is mapped with the material expressed by antiultraviolet flower-pattern layer 1015, if plank decorative pattern is with regard to the scantling of corresponding width relative narrower, now emulate separation trough 7 to arrange in ground with regard to level, by unit area consistent with actual strip width for the separate layer polylith of the lateral wall level of wall assemblies 1, the effect making user visually can have Artificial board to splice.The inside wall of wall assemblies 1 then adopts flat surface structure, facilitates user at individual operations such as indoor wallpapering works.
Embodiment recited above is only be described the preferred embodiment of the present invention, not limits the spirit and scope of the present invention.Under the prerequisite not departing from design concept of the present invention; the various modification that this area ordinary person makes technical scheme of the present invention and improvement; all should drop into protection scope of the present invention, the technology contents of request protection of the present invention, all records in detail in the claims.

Claims (10)

1. a hollow insulation wall assemblies, it is characterized in that: comprise case housing (1), incubation cavity (2) and passing channel (3) is provided with in described case housing (1), thermal insulating cavity (4) is provided with between the inside wall of described case housing (1) and described incubation cavity (2), be provided with a point muscle (401) in described thermal insulating cavity (4), described thermal insulating cavity (4) is separated into multiple thermal insulation loculus (402) by a described point muscle (401).
2. a kind of hollow insulation wall assemblies according to claim 1, is characterized in that: described thermal insulation loculus (402) is parallel to the center line of the length direction of described case housing (1).
3. a kind of hollow insulation wall assemblies according to claim 1, is characterized in that: one end of described point muscle (401) is connected with the inside wall of described case housing (1), and the other end is connected with the lateral wall of described incubation cavity (2).
4. a kind of hollow insulation wall assemblies according to claim 3, is characterized in that: described point muscle (401) is perpendicular to the inside wall of connected described thermal insulating cavity (4).
5. a kind of hollow insulation wall assemblies according to claim 1, is characterized in that: be provided with foamed heat insulating packed layer (5) in described incubation cavity (2), and described passing channel (3) is arranged on described foamed heat insulating packed layer (5) center.
6. a kind of hollow insulation wall assemblies according to claim 1, it is characterized in that: the top and bottom of described case housing (1) are respectively arranged with the location structure (6) for locating, described location structure (6) comprises to the protruding positioning convex portion (601) in described case housing (1) outside, to the location indentations (602) of described case housing (1) inner side depression, one in described positioning convex portion (601) or described location indentations (602) is provided with the positioning bar (603) of the center line for neighbouring two described case housing (1) of aliging, another one is provided with the locating slot (604) coordinated with described positioning bar (603).
7. a kind of hollow insulation wall assemblies according to claim 6, is characterized in that: side edge and the intersection of top of described location indentations (602) are provided with the seal groove (605) for settling seal.
8. a kind of hollow insulation wall assemblies according to claim 1, is characterized in that: the outer surface of described case housing (1) is provided with the protection outer wall (101) for antiultraviolet, and inner surface is provided with protection inwall (102).
9. a kind of hollow insulation wall assemblies according to claim 1, is characterized in that: described protection outer wall (101) comprises the adhesive linkage (1011), anticorrosive coat (1012), metal level (1013), anti-corrosion primer layer (1014), antiultraviolet flower-pattern layer (1015) and the surface course (1016) that set gradually.
10. a kind of hollow insulation wall assemblies according to claim 1, is characterized in that: the lateral wall of described case housing (1) is provided with the emulation separation trough (7) being carried out according to the true form of the material corresponding to the decorative pattern on described antiultraviolet flower-pattern layer (1015) and size by the lateral wall of described case housing (1) splitting.
CN201510328095.4A 2015-06-15 2015-06-15 A kind of hollow insulation wall Expired - Fee Related CN105040902B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510328095.4A CN105040902B (en) 2015-06-15 2015-06-15 A kind of hollow insulation wall

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Application Number Priority Date Filing Date Title
CN201510328095.4A CN105040902B (en) 2015-06-15 2015-06-15 A kind of hollow insulation wall

Publications (2)

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CN105040902A true CN105040902A (en) 2015-11-11
CN105040902B CN105040902B (en) 2017-10-27

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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0731233A1 (en) * 1995-03-09 1996-09-11 Degussa Ag Framework panel with improved properties
CN2455813Y (en) * 2000-08-31 2001-10-24 曹双菊 Hollow lightweight wall board
JP2001348978A (en) * 2000-06-08 2001-12-21 Showa Denko Kk Heat insulating panel for partition wall
CN2773218Y (en) * 2005-03-02 2006-04-19 王继亮 Lightweight energy-saving precast wallboard
CN101787768A (en) * 2010-01-19 2010-07-28 杨众达 Highly-efficient energy-saving low-carbon wall board and manufacture method thereof
CN101988311A (en) * 2010-11-18 2011-03-23 陈泊冰 Partition wallboard with sound-insulating and heat-insulating function
CN102296727A (en) * 2011-05-03 2011-12-28 于淑敏 Composite wall body, production method and application
CN204753964U (en) * 2015-06-15 2015-11-11 黄尚进 Cavity thermal insulation wall

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0731233A1 (en) * 1995-03-09 1996-09-11 Degussa Ag Framework panel with improved properties
JP2001348978A (en) * 2000-06-08 2001-12-21 Showa Denko Kk Heat insulating panel for partition wall
CN2455813Y (en) * 2000-08-31 2001-10-24 曹双菊 Hollow lightweight wall board
CN2773218Y (en) * 2005-03-02 2006-04-19 王继亮 Lightweight energy-saving precast wallboard
CN101787768A (en) * 2010-01-19 2010-07-28 杨众达 Highly-efficient energy-saving low-carbon wall board and manufacture method thereof
CN101988311A (en) * 2010-11-18 2011-03-23 陈泊冰 Partition wallboard with sound-insulating and heat-insulating function
CN102296727A (en) * 2011-05-03 2011-12-28 于淑敏 Composite wall body, production method and application
CN204753964U (en) * 2015-06-15 2015-11-11 黄尚进 Cavity thermal insulation wall

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Granted publication date: 20171027

Termination date: 20210615