1. Field of the Invention
The present invention is related to a buffering structure, more particularly to a buffering structure that is easily connected with the surface of clothes, fabrics or any object and can absorb outside impact forces and pressures.
2. Description of the Prior Art
Nowadays, some professional clothes for sports may be sewed some support portions on some special areas; each support portion is with a certain thickness in order to support muscle for stable actions while in practice. Further, the support portion is capable of buffering outside impact forces and pressures. Such support portions are used to be placed on some special areas of clothes and are mostly made of materials without flexibility. Hence the action range of a user may be limited while wearing such clothes, and the manufacturers will sew the support portions based on demands so as to cause that such clothes may only suit to sportsmen/sportswomen and raise cost correspondingly.
Manufacturer thus develops a sheath independent to a clothes, and the sheath with protection function lets a user directly wear on a protective area of the user body and other areas neighbor to the protective area. For demands, such sheath shall be easily bendable and not interfere the action range as possible as it can, so that the purposes of supporting and protecting a joint to bend and stretch out. More, the sheath is only covered on the joint of a human being, and may be moved while the joint bends or stretches out, so that it is still limited and needs to be improved.
As a matter of fact, providing a buffering structure that is easily connected with the surface of a clothes, fabrics or any object and can absorb outside impact forces and pressures and does not interfere the action range of a user will be a best solution to prior arts.
The main objective of the present invention is to provide a buffering structure that can be connected with the surface of a clothes, fabrics or any objective.
The second objective of the present invention is to provide a buffering structure that can absorb vibrations and disperse impact forces, and the action range of a user may not be affected.
To approach above objectives, the buffering structure comprises an interface layer, a hot melt adhesive layer and an absorbing and dispersing layer, wherein the interface layer is to connect with the hot melt adhesive layer and the absorbing and dispersing layer in order to form at least a three-layer structure, the surface of the hot melt adhesive layer can be appressed to the surface of a clothes, fabrics or any object, and the other surface of the clothes, fabrics or any object is then ironed or high-temperature pressed in order to let the hot melt adhesive layer be in the state of melting and then permeate into the tiny organization structure of the surface of the clothes, fabrics or any object, the hot melt adhesive layer is thus firmly adhered to the surface of the surface of the clothes, fabrics or any object after cooling, continuously the clothes, fabrics or any object is able to absorb vibrations, disperse pressure and impact forces.
The hot melt adhesive layer can also be high-temperature heated in order to let the hot melt adhesive layer be in the state of melting, hence the hot melt adhesive layer is thus firmly adhered to the surface of the surface of the clothes, fabrics or any object after cooling.
Other and further features, advantages, and benefits of the invention will become apparent in the following description taken in conjunction with the following drawings. It is to be understood that the foregoing general description and following detailed description are exemplary and explanatory but are not to be restrictive of the invention. The accompanying drawings are incorporated in and constitute a part of this application and, together with the description, serve to explain the principles of the invention in general terms. Like numerals refer to like parts throughout the disclosure.
The objects, spirits, and advantages of the preferred embodiments of the present invention will be readily understood by the accompanying drawings and detailed descriptions, wherein:
Following preferred embodiments and figures will be described in detail so as to achieve aforesaid objects.
With references to
an interface layer 12 having a first surface 121 and a second surface 122;
a hot melt adhesive layer 11, being coated on or partially connected with the first surface 121 of the interface layer 12 and being the state of melt after heating for a while so as to adhere to an object, wherein the object is the surface of clothing, fabrics, sports aids, protective gear, or the structure of various types of products need buffer;
an absorbing and dispersing layer 13, being a planar type or other types and being connected with the second surface 122 of the interface layer 12 in order to form a three-layer structure, the absorbing and dispersing layer 13 being able to absorb vibrations and disperse impact forces and being selectively one of the group consisted of reticular, reticulate body and solid body structure;
wherein the hot melt adhesive layer 11, interface layer 12 and absorbing and dispersing layer 13 are all soft materials and can be bendable or coiled up;
wherein the interface layer 12 is selectively made by the group consisted of: non-woven cloth, woven cloth, elastic mesh, and other material that can be bent;
wherein the absorbing and dispersing layer 13 is selectively made by the group consisted of: gel material, latex materials, silicone, soft rubber, soft synthetic rubber, soft PU rubber, and other flexible materials, and the gel material is preferred;
wherein the hot melt adhesive layer 11 can be coated or sprayed on the first surface 121 of the interface layer 12;
wherein the hot melt adhesive layer 11 is a thin film and adhered to the first surface 121 of the interface layer 12, that is, the hot melt adhesive layer 11 is the state of melt after heating for a while so as to adhere to the first surface 121 of the interface layer 12;
wherein the absorbing and dispersing layer 13 is formed on the second surface 122 of the interface layer 12 through casting.
The absorbing and dispersing layer 13 is appressed to the surface of clothes, fabrics, aids, or other objects, then the other surface corresponding to the surface shall be processed by ironing, high-temperature pressing or other heating treatments as well, the absorbing and dispersing layer 13 is thus the state of melting so as to tightly adhere the two surfaces. Since the interface layer 12 and the absorbing and dispersing layer 13 are bendable and coiled, so a user wearing clothes, fabrics, aids, or other objects is able to be supported while bending and stretching, further, the absorbing and dispersing layer 13 is able to absorb vibrations, disperse impact forces and avoid hit for the user.
Additionally, the formed hot melt adhesive layer 11, the interface layer 12 and the absorbing and dispersing layer 13 can be made as a roll type for industrial applications, and can be cut while in use.
With reference to
Wherein the outer layer 14 is selectively made by the group consisted of: non-woven cloth, woven cloth, elastic mesh, net cloth, cotton cloth, or felts.
Wherein the outer layer 14 is a 3-D woven layer with the characteristic of 3-D weave as well.
Wherein the surface of the outer layer 14 is able to print or draw figure, pattern or trademark for better appearance.
With reference to
a surface layer 151 with weave;
a bottom layer 153 with weave;
a connecting layer 152, which is continuously curved along a vertical direction or a horizontal direction itself and is with weave, wherein the surface layer 151 is connected with the bottom layer 153 via the connecting layer 152 so as to form a 3-D fabric, so that the 3-D woven layer 15 has the characteristics of outstanding buffer and softness. Hence the effects of the integral buffer, absorption and dispersion of the third preferred embodiment are increased due to the functions of buffer, absorption and dispersion of the 3-D woven layer 15.
With reference to
The two surfaces 131, 132 of the absorbing and dispersing layer 13 both are connected with 3-D weave, hence the effects of the integral buffer, absorption and dispersion are increased.
With references to
With references to
Wherein the buffer structure 1 is freely touched onto the inner or outer surface of a pants 2, then the hot melt adhesive layer 13 or the pants 2 is ironed or high-temperature heated, the absorbing and dispersing layer 13 may tightly adhere onto the inner or outer surface of the pants 2.
With references to
With references to
Wherein the buffer structure 1 is freely touched onto the inner or outer surface of the coat 3, then the coat 3 is ironed or high-temperature heated, the buffer structure 1 may tightly adhere onto the inner or outer surface of the coat 3.
Further,
With reference to
With references to
Compared to prior arts, the present invention has following advantages:
Although the invention has been disclosed and illustrated with reference to particular embodiments, the principles involved are susceptible for use in numerous other embodiments that will be apparent to persons skilled in the art. This invention is, therefore, to be limited only as indicated by the scope of the appended claims
Number | Date | Country | Kind |
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099145805 | Dec 2010 | TW | national |