Storage device with three-dimensional protrusions on the outer surface
10568399 ยท 2020-02-25
Assignee
Inventors
Cpc classification
B32B9/04
PERFORMING OPERATIONS; TRANSPORTING
B32B2250/44
PERFORMING OPERATIONS; TRANSPORTING
A45C2005/037
HUMAN NECESSITIES
B32B3/30
PERFORMING OPERATIONS; TRANSPORTING
International classification
B32B9/00
PERFORMING OPERATIONS; TRANSPORTING
B32B27/28
PERFORMING OPERATIONS; TRANSPORTING
B32B9/04
PERFORMING OPERATIONS; TRANSPORTING
B32B3/30
PERFORMING OPERATIONS; TRANSPORTING
Abstract
In a storage device, particularly a piece of baggage or a purse, comprising at least one outer surface, wherein the at least one outer surface has arranged on it at least one three-dimensional protrusion extending from the outer surface, it is provided that the three-dimensional protrusion extending from the outer surface includes at least two mutually superimposed and interconnected layers.
Claims
1. A storage device, particularly a piece of baggage, said storage device comprising: at least one outer surface, wherein said at least one outer surface has arranged on it a plurality of three-dimensional protrusions extending from the outer surface, wherein said three-dimensional protrusions extending from the outer surface comprises at least two mutually superimposed and interconnected layers, wherein the at least two layers are stacked and joined and have varying widths matching the shape of a corresponding pre-formed additional outer layer protrusion, wherein said protrusions are rib-shaped and wherein the rib-shaped protrusions are arranged parallel next to each other at an equal distance running along-the outer surface, wherein an additional outer layer is provided, the additional layer having at least one pre-formed additional outer layer protrusion, wherein the additional outer layer is affixed to the outer surface and the plurality of three-dimensional protrusions, and wherein the additional outer layer is arranged on the outer surface such that the plurality of three-dimensional protrusions are situated beneath the at least one pre-formed additional outer layer protrusion, and wherein at least one space is provided between the layers of the protrusions and the additional outer layer.
2. The storage device according to claim 1, wherein the protrusions extending from the outer surface are formed of at least two mutually superimposed and interconnected layers.
3. The storage device according to claim 1, wherein the layers of the protrusions are printed.
4. The storage device according to claim 1, wherein the protrusions comprise more than three mutually superimposed and interconnected layers which preferably are printed onto each other.
5. The storage device according to claim 1, wherein the layers comprise a material which further comprises silicone and a ceramic paste.
6. The storage device according to claim 1, wherein that layer of the protrusions which is adjacent to the outer surface is the lowermost layer, and that layer of the-protrusions which is most remote from the outer surface is the uppermost layer, the layers having different widths and the lowermost layer being wider than the uppermost layer.
7. The storage device according to claim 6, wherein the widths of a plurality of mutually superimposed layers decrease, preferably continuously, from the lowermost layer to the uppermost layer.
8. The storage device according to claim 1, wherein the layers are printed by offset printing or screen printing or by a 3D printing method.
9. The storage device according to claim 1, wherein the plurality of protrusions arranged on the outer surface, are positioned on the outer surface with uniform distribution.
10. The storage device according to claim 1, wherein the rib-shaped protrusions have a varying height in the longitudinal direction of the rib-shaped protrusions, the central area of the rib-shaped protrusions being higher than the edge areas of the rib-shaped protrusions.
11. The storage device according to claim 1, wherein the individual layer thicknesses of the rib-shaped protrusions are varying in the longitudinal direction of the rib-shaped protrusions.
12. The storage device according to claim 1, wherein said additional outer layer comprises at least one three-dimensional protrusion, applied by a thermoforming method, which is adapted to the three-dimensional protrusions arranged on the outer surface.
13. The storage device according to claim 1, wherein the storage device is a piece of baggage comprising two major surfaces and four lateral surfaces, at least one of the major surfaces comprising rib-shaped protrusions, and the longitudinal direction of the rib-shaped protrusions extending parallel to the longitudinal direction of the major surfaces.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A full and enabling disclosure of the present invention, including the best mode thereof, enabling one of ordinary skill in the art to carry out the invention, is set forth in greater detail in the following description, including reference to the accompanying drawing in which
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
(11)
(12)
(13) Said three-dimensional protrusion 10 are rib-shaped. On a given outer surface 14 and respectively 16, a plurality of such three-dimensional protrusions 10 are arranged, the protrusions 10 running parallel next to each other. In
(14) It can be provided that the storage devices shown in
(15) Preferably, suitcase 6 of
(16) Preferably, the respective outer surfaces 12, 14, 16 are provided with a plurality of three-dimensional protrusions 10, wherein these three-dimensional protrusions 10 are preferably rib-shaped, and the rib-shaped three-dimensional protrusions 10 are preferably arranged parallel next to each other and a equal distances to each other. The three-dimensional protrusions 10 can also be arranged on the outer surface of a purse.
(17) The design of the three-dimensional protrusions 10 of the storage device of
(18) The three-dimensional protrusions 10 comprise at least two mutually super-imposed and interconnected layers. In
(19)
(20) Since the layers are printed onto the outer surface 12, 14, 16 and the three-dimensional protrusion 10 consists of a plurality of layers 1-5, the three-dimensional protrusion can have any desired shape. Thus, in a production process, the shape and the design of the three-dimensional protrusion 10 can be changed and adjusted as desired.
(21) With preference, the three-dimensional protrusions 10 are formed as rib-shaped protrusions, wherein these rib-shaped protrusions 10 are conically tapering. This is realized in that, as shown in
(22) Further, the different layers 1-5 can have different colors. With the aid of the colors, the design of the three-dimensional protrusions can be considerably influenced. For instance, by means of dark colors, shadows can be represented, and the contour of the three-dimensional protrusions 10 can be particularly emphasized. For instance, the lowermost layer 1 can have the darkest layer. Further, the three-dimensional protrusions 10 can have different colors that the outer surface 12, 14, 16 of the storage device.
(23) Since the layers are preferably printed, the colors can also be conveniently changed, and storage devices with differently colored three-dimensional protrusions can be produced in a simple manner.
(24) In
(25) However, the thicknesses D1-D5 and the lengths L1-L5 of the three-dimensional protrusions can also vary. The individual layers 1-5 can thus have different lengths L1-L5 and/or different thicknesses D1-D5. In this manner, slight variations can be performed on the design of the three-dimensional protrusion 10.
(26) In
(27) Alternatively, the individual layers 1-5 can also have different lengths L1-L5. Shown in
(28) The three-dimensional protrusion 10 shown in
(29)
(30) The three-dimensional protrusions 11 of the additional outer layer 20 can already have been formed in the outer layer 20 prior to application on the outer surface 12, 14, 16 and the three-dimensional protrusions 10. This can be performed e.g. by means of a thermoforming method. In a thermoforming method, as shown in
(31) Alternatively, the thermoforming method can also be performed using plate articles. In this case, plates which already have a specific size will be individually heated and molded.
(32) By means of said additional outer layer 20, the outer surface and/or the protrusions 10 can be provided with a high-quality coating.
(33) Although the invention has been described and illustrated with reference to specific illustrative embodiments thereof, it is not intended that the invention be limited to those illustrative embodiments. Those skilled in the art will recognize that variations and modifications can be made without departing from the true scope of the invention as defined by the claims that follow. It is therefore intended to include within the invention all such variations and modifications as fall within the scope of the appended claims and equivalents thereof.