Micro-Circulation Breathable Cushion
20190365115 ยท 2019-12-05
Inventors
Cpc classification
B32B3/266
PERFORMING OPERATIONS; TRANSPORTING
A47C27/001
HUMAN NECESSITIES
B60N2/5642
PERFORMING OPERATIONS; TRANSPORTING
B32B3/04
PERFORMING OPERATIONS; TRANSPORTING
B32B5/028
PERFORMING OPERATIONS; TRANSPORTING
B60N2/70
PERFORMING OPERATIONS; TRANSPORTING
A47C7/746
HUMAN NECESSITIES
B32B3/08
PERFORMING OPERATIONS; TRANSPORTING
A47C21/046
HUMAN NECESSITIES
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A micro-circulation breathable cushion includes a cushion cover and a cushion core. The cushion core includes a breathable layer. At least one micro-circulation layer is disposed at a lower part of the breathable layer. The micro-circulation layer is connected to the breathable layer. The cushion cover wraps the cushion core, the breathable layer and the micro-circulation layer of the cushion core may be fixed together by glue or other manners, and may also be laminated together, thereby facilitating the replacement of different numbers of micro-circulation layers. The breathable layer may be directly washed, and an air micro-circulation is formed through an internal structure. An air micro-circulation may be likewise formed through an internal structure of the layer, and the breathable layer and the micro-circulation layer may co-form an air micro-circulation, thus increasing the breathability of the cushion core. Furthermore, different numbers of micro-circulation layers may be according to different temperatures.
Claims
1. A micro-circulation breathable cushion, comprising a cushion cover and a cushion core, the cushion core comprising a breathable layer, at least one micro-circulation layer being disposed at a lower part of the breathable layer, and the micro-circulation layer being connected to the breathable layer.
2. The micro-circulation breathable cushion of claim 1, wherein the density of the breathable layer is in a range of 25 Kg/m.sup.3 to 85 Kg/m.sup.3.
3. The micro-circulation breathable cushion of claim 1, wherein the aperture of an internal hole of the micro-circulation layer is in a range of 10 ppi to 60 ppi.
4. The micro-circulation breathable cushion of claim 3, wherein the density of the micro-circulation layer is in a range of 0.02 g/cm.sup.3 to 0.035 g/cm.sup.3.
5. The micro-circulation breathable cushion of claim 1, wherein the micro-circulation layer is fixedly connected to the breathable layer.
6. The micro-circulation breathable cushion of claim 1, wherein the micro-circulation layer is movably connected to the breathable layer.
7. The micro-circulation breathable cushion of claim 1, wherein a base layer is disposed below the micro-circulation layer, the base layer being fixedly connected to the micro-circulation layer.
8. The micro-circulation breathable cushion of claim 1, wherein a base layer is disposed below the micro-circulation layer, the base layer being movably connected to the micro-circulation layer.
9. The micro-circulation breathable cushion of claim 1, wherein the cushion cover is made of a fiber material with a mesh structure.
10. The micro-circulation breathable cushion of claim 1, wherein a zipper is disposed on the cushion cover, the zipper being fixedly connected to the cushion cover.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
[0021]
[0022]
[0023] 1. Cushion cover; 2. cushion core; 3. zipper; 21. base layer; 22. micro-circulation layer; 23. breathable layer.
DETAILED DESCRIPTION OF THE INVENTION
[0024] The technical schemes of the present invention are further illustrated below in conjunction with the specific embodiments and the drawings.
[0025] Embodiment 1: Micro-circulation breathable cushion (see
[0026] The cushion cover of the present application wraps the cushion core, the breathable layer may be directly washed, and an air micro-circulation is formed through an internal structure. An air micro-circulation may be likewise formed through an internal structure of the micro-circulation layer, and the breathable layer and the micro-circulation layer may co-form an air micro-circulation, thus increasing the breathability of the cushion core. Furthermore, different numbers of micro-circulation layers may be selected according to the requirements of different people, and different numbers of micro-circulation layers may also be selected according to different temperatures. The density of the breathable layer is controlled to be in a range of 25 Kg/m.sup.3 to 85 Kg/m.sup.3, so that the breathable layer can be directly washed and may be kept super-breathable. The aperture of the internal hole of the micro-circulation layer is kept in a range of 10 ppi to 60 ppi, and the density of the micro-circulation layer is in a range of 0.02 g/cm.sup.3 to 0.035 g/cm.sup.3, so that the micro-circulation layer can be directly washed and is super-breathable. The cushion cover is made of a fiber material with a mesh structure. The cushion cover of the cushion, made of the fiber material with the mesh structure, is good in breathability and easy to clean. The zipper on the cushion cover may facilitate the separation and cleaning of the cushion cover and the cushion core.
[0027] Embodiment 2: Micro-circulation breathable cushion (see
[0028] The foregoing specific implementation manner is used to explain the present invention, and not intended to limit the present invention. Any modifications and changes made for the present invention within the spirit of the present invention and the scope of claims fall within the scope of protection of the present invention.