CN217759413U - Glass fiber sound insulation cement board - Google Patents

Glass fiber sound insulation cement board Download PDF

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Publication number
CN217759413U
CN217759413U CN202220887157.0U CN202220887157U CN217759413U CN 217759413 U CN217759413 U CN 217759413U CN 202220887157 U CN202220887157 U CN 202220887157U CN 217759413 U CN217759413 U CN 217759413U
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sound insulation
cement board
strip
board body
chute
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CN202220887157.0U
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Chinese (zh)
Inventor
廖合堂
罗伟坚
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Foshan Olar Board Co ltd
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Foshan Olar Board Co ltd
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Abstract

The utility model relates to a glass fiber cement board that gives sound insulation, its characteristics lie in including the cement board body that gives sound insulation, location strip, joint strip, wherein are equipped with the guide sloping arm on the location strip, joint strip sets up on the location strip, set up on the cement board body that gives sound insulation with the corresponding chute of guide sloping arm, the chute suit is on the guide sloping arm to a side of making the cement board body that gives sound insulation sticiss on joint strip. The utility model discloses during the installation, can not destroy the overall structure intensity of the cement board body that gives sound insulation, and the leakproofness is also very good with the effect that gives sound insulation.

Description

Glass fiber sound insulation cement board
Technical Field
The utility model relates to a building material field, especially a glass fiber cement board that gives sound insulation.
Background
At present, sound insulation cement boards are used as wall boards in a plurality of assembled rooms to achieve the purpose of sound insulation. In addition, in order to facilitate transportation, during production and manufacturing, the wall panel is usually manufactured into a plurality of long plates, and then the long plates are arranged between the upper cross beam and the lower cross beam of the assembled house one by one to form the whole wall panel. When the long plate is installed, the long plate is fixed between the upper cross beam and the lower cross beam mainly in a nailing mode, although the nailing fixing mode can firmly fix the long plate between the upper cross beam and the lower cross beam, the long plate is easy to crack when nailing occurs, and the integral structural strength of the long plate is damaged. And after being penetrated by the nail, a gap exists between the hole position on the long plate and the nail, so that the sealing performance of the long plate is poor, and the sound insulation effect of the long plate is influenced. Therefore, in view of the above problems associated with the use of existing acoustical cement panels as wall panels, improvements must be made to better facilitate their use.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to solve above-mentioned problem and not enough, provide a glass fiber cement board that gives sound insulation, during this glass fiber cement board that gives sound insulation installation, can not destroy the overall structure intensity of the cement board body that gives sound insulation, and leakproofness and syllable-dividing effect are also very good.
The technical scheme of the utility model is realized like this:
the utility model provides a glass fiber cement board that gives sound insulation, its characteristics lie in including cement board body, location strip, joint strip give sound insulation, wherein are equipped with the guide sloping arm on the location strip, joint strip sets up on the location strip, set up on the cement board body that gives sound insulation with the corresponding chute of guide sloping arm, the chute suit is on the guide sloping arm to a side that makes the cement board body gives sound insulation sticiss on joint strip.
Preferably, the utility model discloses still including hanging the knot structure, the guide sloping arm is hung through hanging the knot structure and is detained on the chute.
Preferably, the hanging buckle structure comprises a positioning groove formed in the wall of the chute and a hanging buckle elastic sheet arranged on the guide inclined arm, and the hanging buckle elastic sheet is buckled on the positioning groove.
Preferably, the guide oblique arm is provided with a limiting cover, the limiting cover is arranged on the hanging buckle elastic piece, and the limiting cover is embedded in the oblique groove.
Preferably, the sound insulation cement board body comprises a board body and a socket joint piece, wherein a groove is formed in the board body, the socket joint piece is embedded in the groove, and the chute is formed in the socket joint piece.
Preferably, the sealing rubber strip is detachably arranged on the positioning strip.
Preferably, an embedded groove is formed in the positioning strip, an embedded convex part is arranged on the sealing rubber strip, and the embedded convex part is embedded into the embedded groove.
The utility model has the advantages that: through the setting of location strip, can be convenient for fix a position the cement board body that gives sound insulation between upper and lower crossbeam to need not to make the nail punch the cement board body that gives sound insulation, both guaranteed like this that the cement board body that gives sound insulation has very good overall structure intensity, guaranteed again that the cement board body that gives sound insulation has very good leakproofness and syllable-dividing effect. Through the setting of chute and guide sloping arm, enable the mode that the cement board body that gives sound insulation passes through the suit and install on the location strip, can improve the convenience of the cement board body that gives sound insulation and the installation of location strip like this. Through joint strip's setting, can improve the leakproofness between syllable-dividing cement board body and the location strip to can further improve syllable-dividing effect.
Drawings
Fig. 1 is a schematic sectional view of the present invention.
Fig. 2 is a schematic view of a split structure of the structure shown in fig. 1 of the present invention.
Fig. 3 is the utility model discloses the split structure schematic diagram of well syllable-dividing cement board body.
Fig. 4 is the utility model discloses well location strip and joint strip's split structure sketch map.
Fig. 5 is a schematic perspective view of the present invention.
Fig. 6 is a schematic view of the usage state of the present invention.
Fig. 7 is a schematic view of the structure of fig. 6 according to the present invention.
Detailed Description
It should be noted that all directional indicators (such as top, bottom, left, right, front, back, 8230; in the embodiments of the present invention) are only used to explain the relative position of the components in a specific posture (as shown in the drawings), and if the specific posture is changed, the directional indicator is changed accordingly.
As shown in fig. 1 and 2, a glass fiber cement board that gives sound insulation, including cement board body 1 gives sound insulation, location strip 2, joint strip 3, wherein be equipped with guide sloping arm 21 on the location strip 2, joint strip 3 sets up on location strip 2, set up on cement board body 1 gives sound insulation and lead the corresponding chute 10 of sloping arm 21, chute 10 suit is on guide sloping arm 21 to a side that makes cement board body 1 gives sound insulation sticiss on joint strip 3.
Through the setting of location strip 2, can be convenient for fix a position the cement board body 1 that gives sound insulation between upper and lower crossbeam to need not to make the nail punch the cement board body 1 that gives sound insulation, both guaranteed like this that the cement board body 1 that gives sound insulation has very good overall structure intensity, guaranteed again that the cement board body 1 that gives sound insulation has very good leakproofness and syllable-dividing effect. Through the setting of chute 10 and guide sloping arm 21, enable the mode that gives sound insulation cement board body 1 passes through the suit and install on location strip 2, can improve the convenience of the installation of the cement board body 1 that gives sound insulation with location strip 2 like this. Through joint strip 3's setting, can improve the leakproofness between the cement board body that gives sound insulation 1 and the location strip 2 to can further improve syllable-dividing effect.
As shown in fig. 5 and 6, the upper and lower end surfaces of the positioning strip 2 protrude from the upper and lower end surfaces of the sound-insulating cement board body 1, so that the positioning strip 2 can be conveniently locked between the upper and lower beams 6 of the assembly room.
The utility model discloses when installing and using, fix the upper and lower both ends of location strip 2 respectively on assembling the upper and lower crossbeam 6 in room, then will give sound insulation cement board body 1's chute 10 suit on location strip 2's guide sloping arm 21 to make a side of the cement board body 1 that gives sound insulation sticiss on joint strip 3, can accomplish the installation.
As shown in fig. 7, in the actual installation process, the upper and lower ends of the positioning strip 2 are fixed on the upper and lower beams 6 of the splicing room by screws 5, respectively.
In the practical application process, the sound-proof cement board body 1 is a glass fiber sound-proof cement board. It has good insulating property, heat resistance and corrosion resistance.
As shown in fig. 2, the utility model also comprises a hanging buckle structure 4, and the guiding oblique arm 21 is hung and buckled on the chute 10 through the hanging buckle structure 4. Through the setting of hanging knot structure 4, enable syllable-dividing cement board body 1 quick, accurate, install on location strip 2 steadily to can improve the stability and the reliability of syllable-dividing cement board body 1 and location strip 2 installation location greatly.
As shown in fig. 2, the hook structure 4 includes a positioning slot 101 disposed on the chute wall of the chute 10, and a hook spring 211 disposed on the guiding inclined arm 21, wherein the hook spring 211 is buckled on the positioning slot 101. The structure of the hanging buckle structure 4 is very simple and reliable, and is very convenient to manufacture, and the installation and positioning of the chute 10 and the guide oblique arm 21 are very stable, which is helpful for further improving the reliability of the glass fiber sound insulation cement board. Through the setting of hanging and detaining shell fragment 211, at the suit in-process, and under the spring action of hanging and detaining shell fragment 211, hang and detain shell fragment 211 and can carry out slight swing to make and hang and detain shell fragment 211 and can slide into chute 10 easily, when sliding to constant head tank 101, hang and detain shell fragment 211 and detain the dress on constant head tank 101 under the spring action, this structure is very simple, reliable.
As shown in fig. 2 and 4, the guiding oblique arm 21 is provided with a limiting cover 212, the limiting cover 212 is covered on the hanging elastic sheet 211, and the limiting cover 212 is embedded in the chute 10. Through the setting of spacing cover 212, can play the effect of shielding, protection to hanging to detain shell fragment 211, like this in the transportation, just can reduce the harm to hanging to detain shell fragment 211, this helps improving the life who hangs and detain shell fragment 211. And through the setting of spacing cover 212, at the suit in-process, can also play spacing effect to make the cement board body that gives sound insulation 1 can install on location strip 2 more steadily, can improve the stability and the reliability of the cement board body that gives sound insulation 1 and location strip 2 installation location like this greatly.
As shown in fig. 3, the sound-insulating cement board body 1 includes a board body 11 and a socket 12, wherein a groove 111 is formed on the board body 11, the socket 12 is embedded in the groove 111, and the chute 10 is formed on the socket 12. Through making chute 10 set up on cup jointing 12, at the suit in-process, can reduce the wearing and tearing to the cement board body that gives sound insulation 1, can improve the life of cement board body 1 that gives sound insulation like this to help improving this glass fiber cement board that gives sound insulation's structural reliability.
In practical application, the socket 12 is fixed on the groove 111 by gluing or screw locking.
As shown in fig. 4, the sealing rubber strip 3 is detachably provided on the positioning strip 2. Through the structural design, the replacement and maintenance can be more convenient and quicker.
As shown in fig. 4, the positioning bar 2 is provided with an embedded groove 22, the bead filler 3 is provided with an embedded convex portion 31, and the embedded convex portion 31 is embedded in the embedded groove 22. Through such structural design, not only make joint strip 3 can install on location strip 2 very firmly, and change, maintain also very conveniently, this structure reliability that helps further improving this glass fiber cement board that gives sound insulation.
As shown in fig. 4 and 5, in the practical application process, the positioning strip 2 is provided with two guiding inclined arms 21, the two guiding inclined arms 21 are respectively located at the left and right ends of the positioning strip 2, the soundproof cement board body 1 is provided with two inclined slots 10, and the two inclined slots 10 are respectively located at the left and right ends of the soundproof cement board body 1. Through such structural design, can be convenient for assemble polylith sound insulation cement board body 1 and constitute the wallboard of assembling the room together.
When assembling, firstly, the upper and lower ends of the first positioning strip 2 are respectively fixed on the left ends of the upper and lower beams of the assembling room; then sleeving a chute 10 at the left end of the first sound-insulation cement board body 1 on a guide inclined arm 21 at the right end of the first positioning strip 2, and tightly pressing the left end of the first sound-insulation cement board body 1 on the sealing rubber strip 3 of the first positioning strip 2; then embedding a guide inclined arm 21 at the left end of a second positioning strip 2 into an inclined groove 10 at the right end of the first sound-insulation cement board body 1, and respectively fixing the upper end and the lower end of the second positioning strip 2 on an upper cross beam and a lower cross beam of the assembly room; then the chute 10 at the left end of the second sound-proof cement board body 1 is sleeved on the guiding inclined arm 21 at the right end of the second positioning strip 2, and the left end of the second sound-proof cement board body 1 is tightly pressed on the sealing rubber strip 3 of the second positioning strip 2, and so on.
As shown in fig. 5 and 7, both ends all are equipped with chute 10 about the cement board body 1 gives sound insulation, and like this assemble the completion back, can also play spacing effect to the cement board body 1 that gives sound insulation, make the difficult condition that the pine takes off of appearance of the cement board body 1 that gives sound insulation to the installation that makes the cement board body 1 that gives sound insulation is more firm.
And through the mode of assembling in proper order like this, after fixing first location strip 2, then the installation location of assembling the component such as first sound-proof cement board body 1, second location strip 2, second sound-proof cement board body 1 that assemble is all very convenient, can improve the convenience of assembling greatly like this.
The assembly mode is that the left ends of the upper and lower beams of the assembled house are sequentially assembled from left to right. In the actual assembling process, the right ends of the upper and lower beams of the assembled house can be assembled in sequence from right to left.
As shown in fig. 4 and 7, an extension portion 32 is provided in the middle of the sealing rubber strip 3. When assembling polylith sound insulation cement board body 1 like this, two blocks of adjacent sound insulation cement board bodies 1 can sticis respectively on the extension portion 32 of a joint strip 3. Through the setting of extension portion 32, two adjacent syllable-dividing cement board bodies 1 sticiss when extension portion 32, extension portion 32 also simultaneously elasticity top is pressed on two adjacent syllable-dividing cement board body 1's tip, thereby can play spacing effect to two adjacent syllable-dividing cement board bodies 1, can be so spaced apart two adjacent syllable-dividing cement board bodies 1 steadily, and difficult emergence is not hard up, the condition of rocking, thereby make two adjacent syllable-dividing cement board body 1's installation location more stable. And through the setting of extension portion 32, can not have the space between two adjacent syllable-dividing cement board bodies 1, sealed effect is better.

Claims (7)

1. The glass fiber sound insulation cement board is characterized in that: including cement slab body (1), location strip (2), joint strip (3) give sound insulation, wherein be equipped with guide sloping arm (21) on location strip (2), joint strip (3) set up on location strip (2), set up on cement slab body (1) gives sound insulation and guide corresponding chute (10) of sloping arm (21), chute (10) suit is on guide sloping arm (21) to make a side of cement slab body (1) give sound insulation sticis on joint strip (3).
2. The fiberglass acoustic cement panel of claim 1, wherein: the chute guide device is characterized by further comprising a hanging and buckling structure (4), and the guide inclined arm (21) is hung and buckled on the chute (10) through the hanging and buckling structure (4).
3. The fiberglass acoustic cement board according to claim 2, wherein: the hanging buckle structure (4) comprises a positioning groove (101) formed in the wall of the chute (10) and a hanging buckle elastic sheet (211) arranged on the guide inclined arm (21), and the hanging buckle elastic sheet (211) is buckled on the positioning groove (101).
4. The fiberglass acoustic cement panel of claim 3, wherein: the guide oblique arm (21) is provided with a limiting cover (212), the limiting cover (212) is covered on the hanging buckle elastic sheet (211), and the limiting cover (212) is embedded in the oblique groove (10).
5. The fiberglass acoustic cement panel of claim 3, wherein: the sound insulation cement board body (1) comprises a board body (11) and a sleeving piece (12), wherein a groove (111) is formed in the board body (11), the sleeving piece (12) is embedded in the groove (111), and the chute (10) is formed in the sleeving piece (12).
6. The fiberglass acoustic cement panel of claim 1, wherein: the sealing rubber strip (3) is detachably arranged on the positioning strip (2).
7. The fiberglass acoustic cement board according to claim 6, wherein: an embedded groove (22) is formed in the positioning strip (2), an embedded convex part (31) is arranged on the sealing rubber strip (3), and the embedded convex part (31) is embedded into the embedded groove (22).
CN202220887157.0U 2022-04-18 2022-04-18 Glass fiber sound insulation cement board Active CN217759413U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220887157.0U CN217759413U (en) 2022-04-18 2022-04-18 Glass fiber sound insulation cement board

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220887157.0U CN217759413U (en) 2022-04-18 2022-04-18 Glass fiber sound insulation cement board

Publications (1)

Publication Number Publication Date
CN217759413U true CN217759413U (en) 2022-11-08

Family

ID=83882783

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220887157.0U Active CN217759413U (en) 2022-04-18 2022-04-18 Glass fiber sound insulation cement board

Country Status (1)

Country Link
CN (1) CN217759413U (en)

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