CN210970227U - Antibacterial sound-absorbing non-woven fabric - Google Patents
Antibacterial sound-absorbing non-woven fabric Download PDFInfo
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- CN210970227U CN210970227U CN201921833288.5U CN201921833288U CN210970227U CN 210970227 U CN210970227 U CN 210970227U CN 201921833288 U CN201921833288 U CN 201921833288U CN 210970227 U CN210970227 U CN 210970227U
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Abstract
The utility model discloses an antibacterial sound-absorbing non-woven fabric, which comprises a non-woven fabric base layer and a plurality of nylon filaments at the top, wherein the nylon filaments are embedded in the non-woven fabric base layer, a sound-absorbing layer is bonded at the bottom end of the non-woven fabric base layer, a wavy glass fiber layer is bonded at the bottom end of the sound-absorbing layer, and the wavy glass fiber layer is connected with an antibacterial cotton wadding layer, the utility model has the advantages of scientific and reasonable structure, safe and convenient use, the toughness of the non-woven fabric can be firstly ensured through the nylon filaments on the non-woven fabric base layer, the sound-absorbing layer and the antibacterial cotton wadding layer can be ensured through the fiber layer at the edges of the sound-absorbing layer and the antibacterial cotton wadding layer, the damage phenomenon can be prevented, the service life of the non-woven fabric is prolonged, the static electricity in the antibacterial cotton wadding layer can be eliminated through antistatic particles, the interference of the static electricity can be prevented, and the isolation, and the isolation effect is increased.
Description
Technical Field
The utility model relates to a non-woven fabrics technical field specifically is an antibiotic sound absorption type non-woven fabrics.
Background
The non-woven fabric has no warp and weft, is very convenient to cut and sew, is light and easy to shape, is popular with hand lovers, because the non-woven fabric is a fabric formed without spinning and weaving, only the short textile fibers or the long textile fibers are directionally or randomly arranged to form a fiber web structure, and then the fiber web structure is reinforced by adopting mechanical, thermal bonding or chemical methods, and the non-woven fabric is not interwoven and knitted together by yarn one by one, but is directly bonded together by physical methods, so when a user takes the non-woven fabric into the clothes, the non-woven fabric is found to have no thread end drawn out. The non-woven fabric breaks through the traditional spinning principle and has the characteristics of short process flow, high production rate, high yield, low cost, wide application, multiple raw material sources and the like.
However, the nonwoven fabric in the current market is easy to wear and age in use, so that the sound insulation effect inside the nonwoven fabric is reduced, and the nonwoven fabric is often not high enough in toughness and strength and difficult to install in installation.
SUMMERY OF THE UTILITY MODEL
The utility model provides an antibiotic sound type non-woven fabrics of inhaling can effectively solve and propose non-woven fabrics in use on the existing market among the above-mentioned background, wear and tear appears easily and ageing, causes the effect of giving sound insulation of inside to reduce to in the installation, often toughness and intensity are high inadequately, appear the problem of installation difficulty.
In order to achieve the above object, the utility model provides a following technical scheme: an antibacterial sound-absorbing non-woven fabric comprises a non-woven fabric base layer on the top and a plurality of nylon filaments;
the sound absorption layer is bonded at the bottom end of the non-woven fabric base layer, the wavy glass fiber layer is bonded at the bottom end of the sound absorption layer, and the glass fiber layer is connected with the antibacterial cotton wadding layer;
a fiber layer is bonded at the edges of the sound absorption layer and the antibacterial cotton wadding layer;
the bottom end of the antibacterial cotton wadding layer is bonded with a shielding layer, and silica gel particles are embedded into the top end and the bottom end of the shielding layer at intervals;
the bottom end of the shielding layer is bonded with a polyester staple fiber layer;
a first reinforcing rib is bonded at the bottom end of the polyester staple fiber layer, and a flocking layer is bonded at the bottom end and the edge of the first reinforcing rib;
the wood pulp fiber layer is bonded at the edges of the non-woven fabric base layer, the fiber layer, the shielding layer and the flocking layer.
Preferably, a diagonal reinforcing rib II is embedded in the polyester staple fiber layer.
Preferably, the antibacterial cotton wadding layer is filled with antistatic particles.
Preferably, the height of the silica gel particles is two thirds of the height of the shielding layer, and the installation proportion of the silica gel particles is 50% -65% of the shielding layer.
Preferably, the length of the nylon filament is the same as the length of the non-woven fabric base layer.
Preferably, the first reinforcing rib and the second reinforcing rib are made of the same material.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model has the advantages of being scientific and reasonable in structure, convenience safe in utilization:
1. through the nylon yarn at the non-woven fabrics basic unit, can guarantee the toughness of non-woven fabrics at first, and through the fibrous layer at the sound-absorbing layer and antibiotic cotton wadding layer edge, when can guarantee the normal use on sound-absorbing layer and antibiotic cotton wadding layer, the phenomenon of damage prevents to appear, increases its life.
2. Static in the antibiotic cotton wadding layer can be eliminated through antistatic particles, the static is prevented from causing interference, and the isolation of static in the non-woven fabric is reduced again through the shielding layer, and the isolation effect is increased.
3. Can be convenient for guarantee the intensity and the self-healing nature of non-woven fabrics self through strengthening rib one and strengthening rib two, the flocking layer is guaranteeing also can be more pleasing to the eye when inhaling the sound, and through wood pulp fiber layer, protection non-woven fabrics self that can be better can not receive external wearing and tearing and ageing phenomenon.
Drawings
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention, and together with the description serve to explain the invention and not to limit the invention.
In the drawings:
fig. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic sectional view of the present invention;
fig. 3 is a schematic perspective view of the present invention;
reference numbers in the figures: 1. a nonwoven fabric base layer; 2. nylon wire; 3. a fibrous layer; 4. a sound absorbing layer; 5. a glass fiber layer; 6. an antibacterial cotton wadding layer; 7. antistatic particles; 8. a shielding layer; 9. silica gel particles; 10. a flocking layer; 11. reinforcing ribs I; 12. a polyester staple fiber layer; 13. a second reinforcing rib; 14. a wood pulp fiber layer.
Detailed Description
The preferred embodiments of the present invention will be described in conjunction with the accompanying drawings, and it will be understood that they are presented herein only to illustrate and explain the present invention, and not to limit the present invention.
Example 1: as shown in fig. 1-3, the utility model provides a technical solution, an antibacterial sound-absorbing non-woven fabric, comprising a non-woven fabric base layer 1 on the top and a plurality of nylon filaments 2;
the nylon yarn 2 is embedded into the non-woven fabric base layer 1, the number of the nylon yarns 2 can be two, and the length of the nylon yarn 2 is the same as that of the non-woven fabric base layer 1, so that the attractiveness of the non-woven fabric base layer is ensured;
the sound absorption layer 4 and the 6 edges of antibiotic cotton wadding layer bond together and have one deck fibrous layer 3, through nylon filament 2 at non-woven fabrics basic unit 1, can guarantee the toughness of non-woven fabrics at first, and through fibrous layer 3 at sound absorption layer 4 and 6 edges of antibiotic cotton wadding layer, when can guaranteeing the normal use of sound absorption layer 4 and antibiotic cotton wadding layer 6, prevent the phenomenon of damage, increase its life.
The bottom end of the antibacterial cotton wadding layer 6 is bonded with a shielding layer 8, the shielding layer 8 is a shielding net, so that external interference can be reduced firstly, noise is reduced, and the effect of toughness is enhanced, silica gel particles 9 are embedded into the top end and the bottom end of the inside of the shielding layer 8 at intervals, the silica gel particles 9 can ensure the hand feeling of the non-woven fabric, the height of the silica gel particles 9 is two thirds of the height of the shielding layer 8, and the installation ratio of the silica gel particles 9 is 50% of that of the shielding layer 8;
8 bottom bonds in shielding layer 8 have polyester staple fiber layer 12, 12 bottom bonds in polyester staple fiber layer have strengthening rib one 11, the inside embedding in polyester staple fiber layer 12 has diagonal type strengthening rib two 13, strengthening rib one 11 and two 13 materials of strengthening rib are the same, strengthening rib one 11 and two 13 rubber materials, can further increase the intensity on polyester staple fiber layer 12, strengthening rib one 11 bottom and edge bonding have flocking layer 10, can be convenient for guarantee the intensity and the self-healing of non-woven fabrics self through strengthening rib one 11 and two 13, flocking layer 10 is guaranteeing to inhale the sound in, also can be more pleasing to the eye.
And the wood pulp fiber layer 14 is bonded on the edges of the non-woven fabric base layer 1, the fiber layer 3, the shielding layer 8 and the flocking layer 10, and the non-woven fabric can be better protected from being aged due to external abrasion through the wood pulp fiber layer 14, so that the service life of the non-woven fabric is prolonged.
Example 2: as shown in fig. 1-3, the utility model provides a technical solution, an antibacterial sound-absorbing non-woven fabric, comprising a non-woven fabric base layer 1 on the top and a plurality of nylon filaments 2;
the nylon yarn 2 is embedded into the non-woven fabric base layer 1, the number of the nylon yarns 2 can be two, and the length of the nylon yarn 2 is the same as that of the non-woven fabric base layer 1, so that the attractiveness of the non-woven fabric base layer is ensured;
the sound absorption layer 4 and the 6 edges of antibiotic cotton wadding layer bond together and have one deck fibrous layer 3, through nylon filament 2 at non-woven fabrics basic unit 1, can guarantee the toughness of non-woven fabrics at first, and through fibrous layer 3 at sound absorption layer 4 and 6 edges of antibiotic cotton wadding layer, when can guaranteeing the normal use of sound absorption layer 4 and antibiotic cotton wadding layer 6, prevent the phenomenon of damage, increase its life.
The bottom end of the antibacterial cotton wadding layer 6 is bonded with a shielding layer 8, the shielding layer 8 is a shielding net, so that external interference can be reduced firstly, noise is reduced, and the effect of toughness is enhanced, silica gel particles 9 are embedded into the top end and the bottom end of the inside of the shielding layer 8 at intervals, the silica gel particles 9 can ensure the hand feeling of the non-woven fabric, the height of the silica gel particles 9 is two thirds of the height of the shielding layer 8, and the installation ratio of the silica gel particles 9 is 57% of that of the shielding layer 8;
8 bottom bonds in shielding layer 8 have polyester staple fiber layer 12, 12 bottom bonds in polyester staple fiber layer have strengthening rib one 11, the inside embedding in polyester staple fiber layer 12 has diagonal type strengthening rib two 13, strengthening rib one 11 and two 13 materials of strengthening rib are the same, strengthening rib one 11 and two 13 rubber materials, can further increase the intensity on polyester staple fiber layer 12, strengthening rib one 11 bottom and edge bonding have flocking layer 10, can be convenient for guarantee the intensity and the self-healing of non-woven fabrics self through strengthening rib one 11 and two 13, flocking layer 10 is guaranteeing to inhale the sound in, also can be more pleasing to the eye.
And the wood pulp fiber layer 14 is bonded on the edges of the non-woven fabric base layer 1, the fiber layer 3, the shielding layer 8 and the flocking layer 10, and the non-woven fabric can be better protected from being aged due to external abrasion through the wood pulp fiber layer 14, so that the service life of the non-woven fabric is prolonged.
Example 3: as shown in fig. 1-3, the utility model provides a technical solution, an antibacterial sound-absorbing non-woven fabric, comprising a non-woven fabric base layer 1 on the top and a plurality of nylon filaments 2;
the nylon yarn 2 is embedded into the non-woven fabric base layer 1, the number of the nylon yarns 2 can be two, and the length of the nylon yarn 2 is the same as that of the non-woven fabric base layer 1, so that the attractiveness of the non-woven fabric base layer is ensured;
the sound absorption layer 4 and the 6 edges of antibiotic cotton wadding layer bond together and have one deck fibrous layer 3, through nylon filament 2 at non-woven fabrics basic unit 1, can guarantee the toughness of non-woven fabrics at first, and through fibrous layer 3 at sound absorption layer 4 and 6 edges of antibiotic cotton wadding layer, when can guaranteeing the normal use of sound absorption layer 4 and antibiotic cotton wadding layer 6, prevent the phenomenon of damage, increase its life.
The bottom end of the antibacterial cotton wadding layer 6 is bonded with a shielding layer 8, the shielding layer 8 is a shielding net, so that external interference can be reduced firstly, noise is reduced, and the effect of toughness is enhanced, silica gel particles 9 are embedded into the top end and the bottom end of the inside of the shielding layer 8 at intervals, the silica gel particles 9 can ensure the hand feeling of the non-woven fabric, the height of the silica gel particles 9 is two thirds of the height of the shielding layer 8, and the installation proportion of the silica gel particles 9 is 59% of that of the shielding layer 8;
8 bottom bonds in shielding layer 8 have polyester staple fiber layer 12, 12 bottom bonds in polyester staple fiber layer have strengthening rib one 11, the inside embedding in polyester staple fiber layer 12 has diagonal type strengthening rib two 13, strengthening rib one 11 and two 13 materials of strengthening rib are the same, strengthening rib one 11 and two 13 rubber materials, can further increase the intensity on polyester staple fiber layer 12, strengthening rib one 11 bottom and edge bonding have flocking layer 10, can be convenient for guarantee the intensity and the self-healing of non-woven fabrics self through strengthening rib one 11 and two 13, flocking layer 10 is guaranteeing to inhale the sound in, also can be more pleasing to the eye.
And the wood pulp fiber layer 14 is bonded on the edges of the non-woven fabric base layer 1, the fiber layer 3, the shielding layer 8 and the flocking layer 10, and the non-woven fabric can be better protected from being aged due to external abrasion through the wood pulp fiber layer 14, so that the service life of the non-woven fabric is prolonged.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described in the foregoing embodiments, or equivalents may be substituted for elements thereof. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (6)
1. The utility model provides an antibiotic sound type non-woven fabrics that inhales which characterized in that: comprises a non-woven fabric base layer (1) at the top and a plurality of nylon filaments (2);
the sound absorption and insulation composite material is characterized in that nylon filaments (2) are embedded into the non-woven fabric base layer (1), a sound absorption layer (4) is bonded at the bottom end of the non-woven fabric base layer (1), a wavy glass fiber layer (5) is bonded at the bottom end of the sound absorption layer (4), and the glass fiber layer (5) is connected with an antibacterial cotton wadding layer (6);
a fiber layer (3) is bonded at the edges of the sound absorption layer (4) and the antibacterial cotton wadding layer (6);
a shielding layer (8) is bonded at the bottom end of the antibacterial cotton wadding layer (6), and silica gel particles (9) are embedded at intervals at the top end and the bottom end inside the shielding layer (8);
a polyester staple fiber layer (12) is bonded at the bottom end of the shielding layer (8);
a first reinforcing rib (11) is bonded at the bottom end of the polyester staple fiber layer (12), and a flocking layer (10) is bonded at the bottom end and the edge of the first reinforcing rib (11);
the wood pulp fiber layer (14) is bonded at the edges of the non-woven fabric base layer (1), the fiber layer (3), the shielding layer (8) and the flocking layer (10).
2. The antibacterial sound-absorbing nonwoven fabric as claimed in claim 1, wherein a diagonal rib (13) is embedded in the short polyester fiber layer (12).
3. The antibacterial sound-absorbing nonwoven fabric as claimed in claim 1, wherein the antibacterial cotton wadding layer (6) is filled with antistatic particles (7).
4. The antibacterial sound-absorbing nonwoven fabric as claimed in claim 1, wherein the height of the silica gel particles (9) is two thirds of the height of the shielding layer (8), and the installation ratio of the silica gel particles (9) is 50% -65% of the shielding layer (8).
5. The antibacterial and sound-absorbing nonwoven fabric as claimed in claim 1, wherein the nylon yarn (2) is two, and the length of the nylon yarn (2) is the same as that of the nonwoven fabric substrate (1).
6. The antibacterial sound-absorbing nonwoven fabric as claimed in claim 1, wherein the first rib (11) and the second rib (13) are made of the same material.
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CN201921833288.5U CN210970227U (en) | 2019-10-29 | 2019-10-29 | Antibacterial sound-absorbing non-woven fabric |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111941949A (en) * | 2020-09-21 | 2020-11-17 | 吴江市军荣纺织品有限公司 | Hollowed-out antibacterial floating decorative fabric |
CN116787876A (en) * | 2023-08-23 | 2023-09-22 | 晋江市高威电磁科技股份有限公司 | High-strength composite electromagnetic shielding flexible material and processing method thereof |
-
2019
- 2019-10-29 CN CN201921833288.5U patent/CN210970227U/en active Active
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111941949A (en) * | 2020-09-21 | 2020-11-17 | 吴江市军荣纺织品有限公司 | Hollowed-out antibacterial floating decorative fabric |
CN116787876A (en) * | 2023-08-23 | 2023-09-22 | 晋江市高威电磁科技股份有限公司 | High-strength composite electromagnetic shielding flexible material and processing method thereof |
CN116787876B (en) * | 2023-08-23 | 2023-11-10 | 晋江市高威电磁科技股份有限公司 | High-strength composite electromagnetic shielding flexible material and processing method thereof |
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