CN212129660U - High gas tightness rock wool battenboard - Google Patents

High gas tightness rock wool battenboard Download PDF

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Publication number
CN212129660U
CN212129660U CN202020288744.9U CN202020288744U CN212129660U CN 212129660 U CN212129660 U CN 212129660U CN 202020288744 U CN202020288744 U CN 202020288744U CN 212129660 U CN212129660 U CN 212129660U
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CN
China
Prior art keywords
rock wool
side plate
plate
male
female
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Expired - Fee Related
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CN202020288744.9U
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Chinese (zh)
Inventor
苗鑫
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Sanhe Xinshun Mingda Building Materials Co ltd
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Sanhe Xinshun Mingda Building Materials Co ltd
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Priority to CN202020288744.9U priority Critical patent/CN212129660U/en
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Publication of CN212129660U publication Critical patent/CN212129660U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a high gas tightness rock wool battenboard, this battenboard have two-layer panel and press from both sides the rock wool of locating between two panels. On two sides of the high-air-tightness rock wool sandwich board in the width direction, a female side flanging and a male side flanging are respectively constructed at two side edges of the board. The two male side flanges are bent towards the inner side of the plate to form a splicing part, and a male side plate is arranged between the two male side flanges. In addition, be provided with female side plate between two female side turn-ups, female side plate encloses the configuration jointly with two female side turn-ups and supplies the inserted concatenation recess of concatenation portion. The utility model discloses a high gas tightness rock wool battenboard has realized the concatenation certainly of rock wool battenboard to improve rock wool battenboard's dampproofing and waterproofing effect, prolonged rock wool battenboard's life.

Description

High gas tightness rock wool battenboard
Technical Field
The utility model relates to a battenboard technical field, in particular to high gas tightness rock wool battenboard.
Background
Along with the improvement of science and technology and the enhancement of environmental awareness and the improvement of the living standard of people, the sandwich board is more and more popular in the current world, wherein the rock wool sandwich board shows strong vitality and wide market prospect and is favored by buildings, household appliances, electromechanics, transportation, interior decoration, office appliances and other industries. However, because the rock wool sandwich panel is formed by arranging the rock wool between the upper plate and the lower plate and arranging the supporting plate on the side wall, and the flanges are respectively arranged between the upper plate and the lower plate and between the upper plate and the supporting plate and between the lower plate and the supporting plate, when two adjacent rock wool sandwich panels are assembled, the flanges at the joint of the two rock wool sandwich panels can be directly clamped, and then gluing or nailing fixation is carried out. For the use place of the common rock wool sandwich board, the rock wool sandwich board has a certain waterproof and moistureproof effect, but along with the change of time, the common rock wool sandwich board easily has the problem that the use requirement can not be met at the interface.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model aims at providing a high gas tightness rock wool battenboard helps improving the dampproofing and waterproofing effect of battenboard, prolongs rock wool battenboard's life.
In order to achieve the above purpose, the technical scheme of the utility model is realized like this:
a high-air-tightness rock wool sandwich board is provided with two layers of boards and rock wool clamped between the two boards, wherein female side flanges and male side flanges are respectively constructed at two side edges of the boards on two sides of the high-air-tightness rock wool sandwich board in the width direction; the two male side flanges are bent towards the inner side of the plate to form a splicing part, and a male side plate is arranged between the two male side flanges; and a female side plate is arranged between the two female side flanges, and the female side plate and the two female side flanges jointly enclose a splicing groove for inserting the splicing part.
Furthermore, the two side edges of the female side plate and the female side flanging adopt an inserting structure.
Furthermore, both sides of the female side plate are provided with an outer side plate and an inner side plate, the outer side plate and the inner side plate extend towards the outside of the high-air-tightness rock wool sandwich plate along the width direction of the high-air-tightness rock wool sandwich plate, and a side plate slot is formed between the outer side plate and the inner side plate; the female side flanging is bent and roundabout to form a slot side edge, and the slot side edge is inserted into the side plate slot.
Furthermore, the cross section of the male side plate is in a shape of a Chinese character 'ji', and is blocked between the two male side flanges, so that the side edges of the rock wool are wrapped.
Furthermore, a clamping structure is arranged between the male side flanging and the male side plate.
Furthermore, a clamping groove is formed on the inner side of the edge of the male side flanging, a clamping protrusion is formed on the male side plate corresponding to the clamping groove, and the clamping protrusion is clamped in the clamping groove.
Furthermore, a bulge is formed on the outer side surface of the male side flanging, and a clamping groove matched with the bulge is formed in the side surface of the splicing groove; when the splicing part is inserted into the splicing groove, the clamping groove clamps the protrusion.
Furthermore, sealing rubber strips are arranged at the joint of the female side flanging and the female side plate and the joint of the male side flanging and the male side plate on the outer surface of the high-air-tightness rock wool sandwich plate.
Furthermore, the two sides of the rock wool are tightly provided with adhesive tape layers, and the adhesive tape layers are clamped between the rock wool and the plates.
Compared with the prior art, the utility model discloses following advantage has:
(1) high gas tightness rock wool battenboard, enclose the concatenation recess that constructs to be by two female side turn-ups and female side board through the design, and public side turn-ups to the concatenation portion of panel inboard bending type one-tenth to in the concatenation recess can insert the concatenation portion, not only realize rock wool battenboard from the concatenation, also improve the waterproof and dampproofing effect of battenboard when using, and then promoted rock wool battenboard's life.
(2) The side edges of the slot are designed to be inserted into the side plate slot, so that the two female side flanges and the female side plate are connected and fixed. Not only reduces the installation difficulty, but also reduces the using amount of glue, so that the product is firmer.
(3) The cross section of the public side plate is designed into a shape like a Chinese character 'ji', so that the two adjacent rock wool sandwich plates can be conveniently spliced and matched in the installation process, and the splicing is more convenient and stable.
(4) Through design card groove and card put the arch, increased the stability of rock wool sandwich panel structure, simultaneously, the cooperation concatenation recess is pegged graft with concatenation portion, has further improved the stability of self.
(5) The bulges and the clamping grooves are designed, so that the two adjacent rock wool sandwich boards are not easy to separate after being spliced, and the splicing stability effect is improved.
(6) The sealing rubber strip is designed, so that the sealing performance of the product is improved, and the waterproof and moistureproof effects of the rock wool sandwich board are further improved.
(7) Be provided with the adhesive tape layer, not only further strengthened the dampproofing and waterproofing ability of rock wool battenboard, also further strengthened the laminating between rock wool and two panels.
Drawings
The accompanying drawings, which form a part of the present disclosure, are provided to provide a further understanding of the present disclosure, and the exemplary embodiments and descriptions thereof are provided to explain the present disclosure, wherein the related terms in the front, back, up, down, and the like are only used to represent relative positional relationships, and do not constitute an undue limitation of the present disclosure. In the drawings:
fig. 1 is a schematic structural view of a high-airtightness rock wool sandwich panel according to an embodiment of the present invention;
FIG. 2 is an enlarged view of a portion of A in FIG. 1;
fig. 3 is an installation diagram of the rock wool sandwich panel with high air tightness according to the embodiment of the present invention;
description of reference numerals:
1-a layer of adhesive tape; 2-a plate material; 3-female side flanging, 301-flanging slot and 302-slot side edge; 4-male side flanging, 401-clamping part, 402-clamping groove, 403-chamfer and 404-bulge; 6-rock wool; 7-male side plate, 701-clamping protrusion; 8-female side plate, 800-splicing groove, 801-outer side plate, 802-side plate slot, 803-inner side plate and 804-clamping groove; 9-sealing rubber strips.
Detailed Description
It should be noted that, in the present invention, the embodiments and features of the embodiments may be combined with each other without conflict.
In the description of the present invention, terms of orientation such as left, right, up, down, and the like are used in the illustrated state for convenience of description, and should not be construed as limiting the structure of the present invention.
The embodiment relates to a high gas tightness rock wool battenboard helps improving battenboard's waterproof and dampproofing effect, and then promotes battenboard's life. The high-air-tightness rock wool sandwich board is provided with two layers of boards and rock wool clamped between the two boards, and female side flanges and male side flanges are respectively constructed at two sides of the high-air-tightness rock wool sandwich board in the width direction. The two male side flanges are bent towards the inner side of the plate to form a splicing part, and a male side plate is arranged between the two male side flanges. And a female side plate is arranged between the two female side flanges, and the female side plate and the two female side flanges jointly enclose a splicing groove for inserting the splicing part.
Based on the above general structural principles, the present invention will be described in detail with reference to the accompanying drawings in conjunction with embodiments. An exemplary structure of the high gas tightness rock wool sandwich panel of the embodiment is shown in fig. 1, and mainly includes two layers of panels 2 and rock wool 6 sandwiched between the two panels 2, and at two sides of the high gas tightness rock wool sandwich panel in the width direction, a female side flange 3 and a male side flange 4 are respectively configured at two side edges of the panels 2. Wherein, a female side plate 8 is arranged between the female side flanging 3 of the two layers of plates 2. The two side edges of the female side plate 8 and the female side flanging 3 are in an inserting structure.
In addition, the two male side flanges 4 are bent towards the inner side of the plate 2 to form a splicing part, and a male side plate 7 is arranged between the two male side flanges 4, wherein the cross section of the male side plate 7 is in a shape like a Chinese character 'ji' and is blocked between the two male side flanges 4, so that the side edge of the rock wool 6 is wrapped. And the cross section of the public side plate 7 is designed into a shape like a Chinese character 'ji', so that the two adjacent rock wool sandwich plates can be conveniently spliced and matched in the installation process, and the splicing is more convenient and stable. Through enclosing the concatenation recess 800 that the structure is formed with female side plate 8 by two female side turn-ups 3, with the concatenation portion that public side turn-ups 4 formed to 2 inside bending types of panel to concatenation recess 800 can insert in the concatenation portion, not only realizes the self-splicing of rock wool battenboard, also improves the dampproofing and waterproofing effect of rock wool battenboard when using, has prolonged the life of rock wool battenboard.
Based on the above structure, further optimization is performed, the outer side plate 801 and the inner side plate 803 are respectively arranged on two sides of the female side plate 8, the outer side plate 801 and the inner side plate 803 extend towards the outside of the high-air-tightness rock wool sandwich plate along the width direction of the high-air-tightness rock wool sandwich plate, a side plate slot 802 is formed between the outer side plate 801 and the inner side plate 803, and meanwhile, a flanging slot 301 and a slot side wall 302 formed by bending and circuitous are formed on the side edge of the female side flanging 3. The slot ledge 302 may be inserted into the side panel slot 802. In this embodiment, the slot side 302 is designed to be inserted into the side panel slot 802, so that the two female side flanges 3 and the female side panel 8 are connected and fixed. Not only reduces the installation difficulty, but also reduces the using amount of glue, so that the product is firmer.
In addition, in order to stabilize the rock wool sandwich panel structure, as shown in fig. 2, a clamping structure is provided between the male side flange 4 and the male side plate 7. The specific structure is optimized to be that a clamping part 401 is arranged on the inner side of the edge of the male side flanging 4, in this embodiment, the clamping part 401 comprises a clamping groove 402 and a chamfer 403, a clamping protrusion 701 is configured on the male side plate 7 corresponding to the clamping groove 402, and the clamping protrusion 701 is clamped in the clamping groove 402. The chamfer 403 can better fix the engaging protrusion 701 and prevent the engaging protrusion 701 from being disengaged from the paper engaging groove 402. The clamping grooves 402 and the clamping protrusions 701 are matched together through clamping, so that the stability of the rock wool sandwich plate structure is improved, and meanwhile, when two adjacent rock wool sandwich plates are spliced, the stability of the rock wool sandwich plate structure is further improved.
Meanwhile, a protrusion 404 is further formed on the outer side surface of the male side flange 4, and a clamping groove 804 matched with the protrusion 404 is formed on the side surface of the splicing groove 800. When the splicing part is inserted into the splicing groove 800, that is, when two adjacent rock wool sandwich panels are assembled, as shown in fig. 3, the protrusion 404 is clamped in the clamping groove 804. In this embodiment, two protrusions 404 are formed on the male side flange 4, and more protrusions 404 may be designed, or the depth of the protrusions 404 may be increased, so as to achieve the final clamping effect. The purpose of the design of the protrusion 404 and the fastening groove 804 is to make the two adjacent rock wool sandwich panels not easily separated after splicing, thereby improving the stable effect of splicing.
Based on the structure, in order to further optimize the rock wool sandwich board, sealing rubber strips 9 are arranged at the joints of the female side flanging 3 and the female side plate 8 and the joints of the male side flanging 4 and the male side plate 7 on the outer surface of the high-air-tightness rock wool sandwich board. The design of the sealing strip 9 not only increases the sealing performance of the product, but also further improves the waterproof and moistureproof effects of the rock wool sandwich board. In addition, the two sides of the rock wool 6 are also provided with adhesive tape layers 1 in a clinging manner, and the adhesive tape layers 1 are clamped between the rock wool 6 and the plate 2. The purpose of setting up of adhesive tape layer 1 is in order to further strengthen the waterproof and dampproofing ability of rock wool battenboard, simultaneously, also further strengthened the laminating between rock wool and two panels.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (9)

1. The utility model provides a high gas tightness rock wool battenboard, has two-layer panel (2) and presss from both sides and locates two rock wool (6) between panel (2), its characterized in that: on two sides of the high-airtightness rock wool sandwich board in the width direction, a female side flanging (3) and a male side flanging (4) are respectively constructed on two side edges of the board (2); the two male side flanges (4) are bent towards the inner side of the plate (2) to form a splicing part, and a male side plate (7) is arranged between the two male side flanges (4); and a female side plate (8) is arranged between the two female side flanges (3), and the female side plate (8) and the two female side flanges (3) jointly enclose a splicing groove (800) for inserting the splicing part.
2. The high gas tightness rock wool battenboard of claim 1, characterized in that: and the side edges of the two sides of the female side plate (8) and the female side flanging (3) adopt an inserting structure.
3. The high gas tightness rock wool battenboard of claim 2, characterized in that: both sides of the female side plate (8) are provided with an outer side plate (801) and an inner side plate (803), the outer side plate (801) and the inner side plate (803) extend towards the outside of the high-air-tightness rock wool sandwich plate along the width direction of the high-air-tightness rock wool sandwich plate, and a side plate slot (802) is formed between the outer side plate and the inner side plate; the female side flanging (3) is bent and roundabout to form a slot side wall (302), and the slot side wall (302) is inserted into the side plate slot (802).
4. The high gas tightness rock wool sandwich panel according to any one of claims 1 to 3, characterized in that: the cross section of the male side plate (7) is in a shape of a Chinese character 'ji', and the male side plate is blocked between the two male side flanges (4), so that the side edges of the rock wool (6) are wrapped.
5. The high gas tightness rock wool battenboard of claim 4, characterized in that: a clamping structure is arranged between the male side flanging (4) and the male side plate (7).
6. The high gas tightness rock wool battenboard of claim 5, characterized in that: a clamping groove (402) is formed in the inner side of the edge of the male side flanging (4), a clamping protrusion (701) is formed on the male side plate (7) corresponding to the clamping groove (402), and the clamping protrusion (701) is clamped in the clamping groove (402).
7. The high gas tightness rock wool battenboard of claim 6, characterized in that: a bulge (404) is formed on the outer side surface of the male side flanging (4), and a clamping groove (804) matched with the bulge (404) is formed in the side surface of the splicing groove (800); when the splicing part is inserted into the splicing groove (800), the clamping groove (804) clamps the protrusion (404).
8. The high gas tightness rock wool battenboard of claim 1, characterized in that: sealing rubber strips (9) are arranged at the joint of the female side flanging (3) and the female side plate (8) on the outer surface of the high-airtightness rock wool sandwich plate and the joint of the male side flanging (4) and the male side plate (7).
9. The high gas tightness rock wool battenboard of claim 1, characterized in that: the two sides of the rock wool (6) are provided with the adhesive tape layers (1) in a clinging mode, and the adhesive tape layers (1) are clamped between the rock wool (6) and the plates (2).
CN202020288744.9U 2020-03-10 2020-03-10 High gas tightness rock wool battenboard Expired - Fee Related CN212129660U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020288744.9U CN212129660U (en) 2020-03-10 2020-03-10 High gas tightness rock wool battenboard

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020288744.9U CN212129660U (en) 2020-03-10 2020-03-10 High gas tightness rock wool battenboard

Publications (1)

Publication Number Publication Date
CN212129660U true CN212129660U (en) 2020-12-11

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Application Number Title Priority Date Filing Date
CN202020288744.9U Expired - Fee Related CN212129660U (en) 2020-03-10 2020-03-10 High gas tightness rock wool battenboard

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113700261A (en) * 2021-09-27 2021-11-26 广州市彩蝶节能技术有限公司 Sealing socket device and sealing socket method for end part of exhaust passage

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113700261A (en) * 2021-09-27 2021-11-26 广州市彩蝶节能技术有限公司 Sealing socket device and sealing socket method for end part of exhaust passage

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GR01 Patent grant
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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20201211

CF01 Termination of patent right due to non-payment of annual fee