CN214943771U - Sound insulation glass - Google Patents

Sound insulation glass Download PDF

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Publication number
CN214943771U
CN214943771U CN202120327313.3U CN202120327313U CN214943771U CN 214943771 U CN214943771 U CN 214943771U CN 202120327313 U CN202120327313 U CN 202120327313U CN 214943771 U CN214943771 U CN 214943771U
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China
Prior art keywords
glass
connecting frame
glass plate
sound insulation
frame
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CN202120327313.3U
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Chinese (zh)
Inventor
陈国明
刘国银
马王仑
高秀金
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Wenzhou Juxing Special Glass Co ltd
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Wenzhou Juxing Special Glass Co ltd
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Priority to CN202120327313.3U priority Critical patent/CN214943771U/en
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Abstract

The application relates to sound insulation glass, which relates to the field of glass and comprises a first glass plate, a second glass plate and a connecting frame, wherein the first glass plate, the second glass plate and the connecting frame are spliced to form a sound insulation cavity; and a sealing sleeve is arranged between the first glass plate and the second glass plate, is positioned at the outer side of the connecting frame and is attached to the inner wall of the groove. Through setting up the extension strip, increased the connection area between connecting frame and first glass board, connecting frame and the second glass board to improved the connection stability between connecting frame and first glass board and the second glass board, compared in the outside cross-sectional area who directly enlarges the connecting frame, reduced the consumption of material, certain energy-conserving effect has, and further improved the holistic connection stability of sound insulation glass through the cooperation with the seal cover.

Description

Sound insulation glass
Technical Field
The application relates to the field of glass, in particular to sound insulation glass.
Background
Along with the development of society, noise pollution is more and more serious and more receives attention of people, so that the sound insulation glass is produced at the same time.
Soundproof glass is a glass product that plays certain shielding effect to sound, generally is double glazing, is provided with the linking frame between the two-layer glass, is formed with the cavity between two-layer glass and the linking frame in order to weaken the propagation to sound to reach syllable-dividing effect.
Generally, the connecting frame and the glass are bonded and fixed through an adhesive, and the connecting stability of the connecting frame and the glass needs to be improved.
SUMMERY OF THE UTILITY MODEL
In order to improve the connection stability between the glass and the frame, the present application provides an soundproof glass.
The application provides a sound-proof glass adopts following technical scheme:
a sound insulation glass comprises a first glass plate, a second glass plate and a connecting frame, wherein the connecting frame is positioned between the first glass plate and the second glass plate, sound insulation cavities are formed by splicing the first glass plate, the second glass plate and the connecting frame, extension strips are arranged on the outer peripheral wall of the connecting frame and positioned on two opposite sides of the connecting frame, and grooves are formed by splicing the extension strips on the two sides with the connecting frame; and a sealing sleeve is arranged between the first glass plate and the second glass plate and is positioned at the outer side of the connecting frame and attached to the inner wall of the groove.
By adopting the technical scheme, the extension strip is arranged, so that the connection area between the connection frame and the first glass plate and the connection area between the connection frame and the second glass plate are increased, the connection stability between the connection frame and the first glass plate and the second glass plate is improved, compared with the mode that the cross sectional area of the outer side of the connection frame is directly enlarged, the material consumption is reduced, and a certain energy-saving effect is achieved; set up the seal cover, improved the leakproofness between linking frame and first glass board and the second glass board to further improved sound insulation glass's syllable-dividing effect, the inner wall of seal cover laminating recess is compared in the direct lateral wall that laminates in the linking frame of seal cover, has improved the stability of being connected between seal cover and the linking frame, thereby has further improved the holistic stability of being connected of sound insulation glass.
Optionally, a sealing layer is disposed between the first glass plate, the second glass plate and the connecting frame.
Through adopting above-mentioned technical scheme, set up the sealing layer, increased the leakproofness between linking frame and first glass board and the second glass board, be favorable to improving sound insulation glass's syllable-dividing effect.
Optionally, a containing cavity is formed in the connecting frame, a through hole is formed in the inner wall of the connecting frame, the through hole is communicated with the containing cavity, and the containing cavity is filled with water-absorbing filler.
Through adopting above-mentioned technical scheme, the moisture that exists in the intracavity that gives sound insulation is adsorbed through the through-hole to the filler that absorbs water that holds the intracavity, has reduced the condition that takes place the liquefaction and then fuzzy first glass board or second glass board behind the moisture contact first glass board or the second glass board for it is more clear to look the thing through first glass board or second glass board.
Optionally, a feeding port is formed in the outer side wall of the connecting frame, and the feeding port is located in the groove and communicated with the accommodating cavity.
Through adopting above-mentioned technical scheme, set up the dog-house, the accessible dog-house drops into to holding the intracavity and absorbs water and packs, thereby the sealed recess inner wall of rethread carries out the shutoff to the dog-house for it is more convenient to drop into to absorb water to pack.
In summary, the present application includes at least one of the following beneficial technical effects:
1. by arranging the extension strips, the connection area between the connection frame and the first glass plate and between the connection frame and the second glass plate is increased, so that the connection stability between the connection frame and the first glass plate and between the connection frame and the second glass plate is improved, compared with the method of directly enlarging the cross-sectional area of the outer side of the connection frame, the consumption of materials is reduced, a certain energy-saving effect is achieved, and the connection stability of the whole soundproof glass is further improved through the matching with the sealing sleeve;
2. by arranging the accommodating cavity and the through hole, the water-absorbing filler in the accommodating cavity absorbs moisture in the sound-insulating cavity through the through hole, so that the situation that the first glass plate or the second glass plate is blurred due to liquefaction of the moisture is reduced, and objects can be seen more clearly through the first glass plate or the second glass plate;
3. through setting up the dog-house, the accessible dog-house drops into the filler that absorbs water to holding the intracavity, thereby the sealed recess inner wall of rethread carries out the shutoff to the dog-house for it is more convenient to drop into the filler that absorbs water.
Drawings
FIG. 1 is an overall schematic view of embodiment 1 of the present application;
fig. 2 is an exploded view of embodiment 1 of the present application, mainly showing the structure of the sealing sleeve;
FIG. 3 is a partial structural view of example 1 of the present application, mainly showing the structure of the sealing layer;
fig. 4 is a structural view of the sealing sleeve of embodiment 1 of the present application, which mainly shows the structure of the sound insulation cavity and the accommodating cavity;
fig. 5 is a partial structural schematic view of embodiment 2 of the present application, mainly showing the structure of the extension block.
Description of reference numerals: 1. a first glass plate; 2. a second glass plate; 3. a connecting frame; 4. a sealing layer; 5. an extension bar; 51. an extension block; 6. sealing sleeves; 7. a sound-insulating chamber; 8. an accommodating chamber; 9. a through hole; 10. a feeding port; 11. and (4) a groove.
Detailed Description
The present application is described in further detail below with reference to figures 1-5.
Example 1
The embodiment of the application discloses sound insulation glass. Referring to fig. 1 and 2, the soundproof glass includes a first glass plate 1, a second glass plate 2, and a connection frame 3, the first glass plate 1 and the second glass plate 2 are the same size, the first glass plate 1 and the second glass plate 2 are spaced and aligned, and the connection frame 3 is located between the first glass plate 1 and the second glass plate 2.
Referring to fig. 1 and 2, sealing layers 4 are fixed between the first glass plate 1 and the connecting frame 3 and between the second glass plate 2 and the connecting frame 3, and the sealing layers 4 between the first glass plate 1 and the connecting frame 3 are arranged to cover the end face of the connecting frame 3 close to the first glass plate 1 and connect the first glass plate 1 and the connecting frame 3. The sealing layer 4 between the second glass plate 2 and the connecting frame 3 covers the end face of the connecting frame 3 close to the second glass plate 2 and connects the first glass plate 1 and the connecting frame 3.
Referring to fig. 2 and 3, the extension strips 5 are fixed on the peripheral wall of the connection frame 3, the extension strips 5 are located on two opposite sides of the connection frame 3, and the length direction of the extension strips 5 is arranged along the peripheral wall of the connection frame 3. The extension strips 5 on the two sides are arranged at intervals, and the extension strips 5 on the two sides and the connecting frame 3 are spliced to form grooves 11. The sealing layer 4 between the first glass pane 1 and the connection frame 3 is arranged in covering relation to the extension strip 5 adjacent to the first glass pane 1, and the sealing layer 4 between the second glass pane 2 and the connection frame 3 is arranged in covering relation to the extension strip 5 adjacent to the second glass pane 2.
Referring to fig. 2 and 4, a sealing sleeve 6 is fixed between the first glass plate 1 and the second glass plate 2, the sealing sleeve 6 is located outside the connecting frame 3, and the sealing sleeve 6 is attached to the end faces of the first glass plate 1 and the second glass plate 2 close to each other and the outer side wall of the connecting frame 3 and attached to the inner wall of the groove 11. In this embodiment, the sealing sleeve 6 and the sealing layer 4 are made of the same material and are made of rubber, and the sealing sleeve 6 is formed by pouring rubber between the first glass plate 1 and the second glass plate 2 and curing the rubber.
Referring to fig. 2 and 4, the first glass plate 1, the second glass plate 2 and the connecting frame 3 are spliced to form a sound insulation cavity 7. The interior of the connecting frame 3 is provided with a containing cavity 8, and the length direction of the containing cavity 8 is arranged along the length direction of the connecting frame 3. The accommodating cavity 8 is filled with water-absorbing filler, and in the embodiment, the water-absorbing filler is a drying agent.
Referring to fig. 2 and 4, a plurality of through holes 9 have been seted up on the inner wall of connecting frame 3, and a plurality of through holes 9 are circumference evenly distributed along the inner wall of connecting frame 3, and a plurality of through holes 9 all communicate sound insulation chamber 7 and hold chamber 8. A feeding port 10 is formed in the outer side wall, far away from the sound insulation cavity 7, of the connecting frame 3, and the feeding port 10 is located in the groove 11 and communicated with the accommodating cavity 8.
The implementation principle of the sound-proof glass in the embodiment of the application is as follows:
the connection area between the connection frame 3 and the first glass plate 1, between the connection frame 3 and the second glass plate 2 is increased by the arrangement of the extension strip 5, so that the connection stability between the connection frame 3 and the first glass plate 1 and the second glass plate 2 is improved, the outside cross-sectional area of the connection frame 3 is directly enlarged, the consumption of materials is reduced, and a certain energy-saving effect is achieved.
When pouring into and forming seal cover 6, the sizing material that forms seal cover 6 pours into in the recess 11 to flow along recess 11, make the sizing material distribute more evenly, the seal cover 6 surface of formation is more level and more smooth, the outstanding condition in first glass board 1 and second glass board 2 of seal cover 6 has been reduced, and seal cover 6 pours into the inner wall of shaping in-process sizing material laminating recess 11 into, the stability of being connected between seal cover 6 and the connection frame 3 has been improved, thereby further improved the holistic stability of being connected of soundproof glass.
Example 2
Referring to fig. 5, the difference from embodiment 1 is that the extension bar 5 is composed of a plurality of extension blocks 51, the plurality of extension blocks 51 are uniformly distributed along the length direction of the extension bar 5 at intervals, and the distance between two adjacent extension blocks 51 is less than the sum of the lengths of the two extension blocks 51 along the length direction of the extension bar 5.
The implementation principle of the embodiment 2 is as follows:
after the sealing sleeve 6 is poured and molded, the contact area between the sealing sleeve 6 and the connecting frame 3 is increased, so that the connection stability of the connecting frame 3 and the sealing sleeve 6 is improved.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (4)

1. The utility model provides a sound insulation glass, includes first glass board (1), second glass board (2) and linking frame (3), linking frame (3) are located first glass board (1) with between second glass board (2), first glass board (1), second glass board (2) with linking frame (3) concatenation is formed with sound insulation chamber (7), its characterized in that: the outer peripheral wall of the connecting frame (3) is provided with extending strips (5), the extending strips (5) are positioned at two opposite sides of the connecting frame (3), and the extending strips (5) at two sides and the connecting frame (3) are spliced to form grooves (11);
a sealing sleeve (6) is arranged between the first glass plate (1) and the second glass plate (2), and the sealing sleeve (6) is located on the outer side of the connecting frame (3) and attached to the inner wall of the groove (11).
2. The soundproof glass according to claim 1, wherein: sealing layers (4) are arranged among the first glass plate (1), the second glass plate (2) and the connecting frame (3).
3. The soundproof glass according to claim 1, wherein: the water-absorbing packing box is characterized in that a containing cavity (8) is formed in the connecting frame (3), a through hole (9) is formed in the inner wall of the connecting frame (3), the through hole (9) is communicated with the containing cavity (8), and the containing cavity (8) is filled with water-absorbing packing.
4. The soundproof glass according to claim 3, wherein: a feeding port (10) is formed in the outer side wall of the connecting frame (3), and the feeding port (10) is located in the groove (11) and communicated with the accommodating cavity (8).
CN202120327313.3U 2021-02-05 2021-02-05 Sound insulation glass Active CN214943771U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120327313.3U CN214943771U (en) 2021-02-05 2021-02-05 Sound insulation glass

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120327313.3U CN214943771U (en) 2021-02-05 2021-02-05 Sound insulation glass

Publications (1)

Publication Number Publication Date
CN214943771U true CN214943771U (en) 2021-11-30

Family

ID=79120485

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120327313.3U Active CN214943771U (en) 2021-02-05 2021-02-05 Sound insulation glass

Country Status (1)

Country Link
CN (1) CN214943771U (en)

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