Luggage or wallet with three-dimensional elevations
Abstract
The invention relates to a storage device, in particular a baggage or a wallet, having at least one outer surface (12, 14, 16). According to the invention, an additional outer layer (2) is arranged on the outer surface (12, 14, 16) and this outer layer has at least one three-dimensional elevation (10) incorporated by means of a thermoforming process and projecting Of the outer surface (12, 14, 16).

Term
No projected expiry on record.
- Priority
- Filed
- Granted
- Today
17 claims: 17 independent, 0 dependent
- 1عناصر الحماية MODIFIEE 1 1- جهاز تخزين تحدينا قطعة حقيبة أو محفظة، تشتما على
- 22 -مطح خارجي واحد على الأقل (12، 14، 16)،
- 33 حيث
- 44 طبقة خارجية إضافية (2) يتم ترتيبها على السطح الخارجي المنكور (12، 14، 16)،
- 55 تحتوي الطبقة المتكورة على بروز ثلاثي الأبعاد واحد على الأقل (10) يتم تشكيله هناك
- 66 بوالبطة عملية تشكيا حراري ويبرز من السطح الخارجي (12، 14، 16)، حيث السطح
- 77 الخارجي (12، 14، 16) يحتوي على جزء مرفوع (11) مزؤد به هناك يتم تكييفه على
- 88 خكل البروز ثلاثي الأبعاد الواحد على الأقل (10)، يتم ترتيب الطبقة الخارجية (2) على
- 99 السطح الخارجي (12، 14، 16) بحيث يتم ترتيب الجزء المرفوع ثلاثي الأبعاد الواحد على 0 1 الأقل (11) على السطح الخارجي (12، 14، 16) تتم ملائمته تحت البروز ثلاثي الأبعاد 1 I الواحد على الأقل(10)للطبقة الخارجية (2).
- 101 2- قطعة الحقيبة أو ا حفظة وفئا لعنفر الحماية 1 ، تتسم بأن البروز ثلاثي الأبعاد الواحد 2 علي الأقل (10) يتخن شكل مقئع.
- 111 3- قطعة الحقيبة أو اتحفظة وفئا لعنصر الحماية 1 أو 2، تتسم بأن البروز على شكا مغذ. 2 (10)مجؤفة.
- 121 4- قطعة الحقيبة أو اتحفظة وفئا لأحد عناصر الحماية 1 إلى 3، تتسم بأن الطبقة الخارجية 2 معنوعة من مادة بلاستيكية، جلد أو ألياف منسوجة.
- 131 5- قطعة الحقيبة أو اتحفظة وفعا لأحد عناصر الحماية 1 إلى 4، تتسم بأن الطبقة الخارجية 2 (2) يتم وضعها على السطح الخارجي (12، 14، 16) بواسعلة طبقة لاصقة (4).
- 141 6- قطعة الحقيبة أو اتحفظة وفئا لأحد عناصر الحماية 1 إلى 5، تتم بأن البروز ثالاثي -1MODIFIEE 2 الأبعاد (10) يحتوي على شكل ستعرض مثلث.
- 151 7- قطعة الحقيبة أو الحفظة وفئا لعنعر الحماية 1 ، تتم بأن الجزء المرفوع ثلاثي الأبعاد 2 الواحد على الأقل (11) الذي يتم ترتيبه على الطح 'لخارجي (12، 14، 16) يشتمل 3 على طبقين (31، 32، 33، 34، 35) مكدستين الو'حد فوق ؛لأخرى ومربوطتين 4 ببعضهما البعض.
- 161 8- قطعة الحقيبة أو الحفظة وفئا لعنصر الحماية 7، تتم بأن الطبقتين على الأقإ مطبوعتين 2 على الطح الخارجي.
- 171 9- طريقة لإنتاج قطعة حقيبة، تشتمل على الخطوات التالية:2 - إنتاج قطعة حقيبة لها سطح خارجي واحد على الأقل (12، 14، 3 16)، 4 -إنتاج طبقة خارجية إضافية واحدة على الأقل (2)، 5 —وضع بروز مغئعة (10) في الطبقة الخارجية الإضافية (2) بواسطة التشكيل الحراري، 6 تنبيت، يغصا باللعق، الطبقة الخارجية (2) على الطح الحارجي الواحد على الأقا (12، 7 14، 16).
Independent claims17
80 paragraphs in 5 sections, as filed
Disclosure summary
In storage facilities, especially a piece of luggage or a wallet, which has an external surface (
12, 14, 16), an outer layer (2) is provided on the outer surface (12, 14, 16),
This method includes no less than one of the three-dimensional spurs (10) formed by
The thermoforming process that protrudes from the outer surface (12, 14, 16).
(Figure 1)
<img file="MA38539B1_D0001.tif" />
MA 1
38539Β1 on TΑ. 1.15Λ) ΐς
Aswan
.
Three-dimensional prototyping means the background of the invention
This arm relates to storage media with 3D protrusions according to Part M Advance Description of Protection Element 1.
Describe the state of the previous industrial technology
There are storage facilities, especially bags with 3D luminaries. And with hard-shell bags, 3D protrusions are provided in a mold during production.
However, a simple and economical method is needed to produce such 3D protrusions.
Summary of the Invention
The goal of the invention is to provide a simple and economical way to apply 3D protrusions to the surface of the storage media. The target is achieved by trained Maria in the protection element.
The biopsy is usefully presented by arranging the extra layer on the outer surface, and the extra layer contains at least one of the protrusions formed in it by the process of free formation emerging from the outer surface.
This concealment mir includes making 3D protrusions in a simple and economical way, while the shape of 3D protrusions can vary according to desire.
At least one of the 3D protrusions can be of two sides.
<img file="MA38539B1_D0002.tif" />
I
38539Β1
At least a bump in the form of a hollow rib.
The outer layer can be made of plastic, leather or fencing materials.
The outer layer is applied to the outer surface by means of an adhesive layer. The 3D bump has a triangular cross section.
At least a raised part is provided on the outside, which corresponds to the shape of at least a three-dimensional protrusion, and the outer layer is arranged on the external surface in such a way that a raised three-dimensional portion raised on the outside is provided under no less than one three-dimensional protrusion from The outer layer.
That is why it has a mir that a 3D bump is not hollow and therefore cannot be bitten when a force is applied to it.
In this way, the 3D protrusion retains the contour of the shape for a long time.
The raised 3D part arranged on the outside includes two stacked and bonded layers. At least two layers can be printed on the outside. It has the merit that the layers can be applied to the outer surface in a simple and economical way. Moreover, the width and shape of the layers loosen so that the shape of the raised 3D part differs. In this way, the shape of the raised 3D part can be easily adapted to the 3D extrusion of the outer layer.
Layers can be produced using 3D printing or silk screen printing.
Moreover, a method can be provided to produce a piece of luggage that includes the following steps:
- Produce a piece of luggage containing at least an outer surface,
<img file="MA38539B1_D0003.tif" />
B
38539Β1
- production of at least an additional outer layer,
- Application of protrusions in the form of ribs in the additional outer layer by thermoforming,
- Attach the outer layer to no less than the outer surface, preferably from the adhesive seal.
Brief description of the graphics
A full disclosure of this implant, including its best pattern, which enables that person with ordinary skill in the art to perform the invention, is provided in more detail in the following description, including a reference to the accompanying drawing that shows the diagrams.
FIG. 1 is a storage facility formed as a piece of luggage, which includes 3D protrusions on the outside,
Figure 2 is a storage device formed as a bag,
Figure 3 means of storage, as in Figure 2 in the side view.
Figure 4 3D protrusions on the surface of the storage media in a side view.
Figure 5 is an alternative model.
Figure 6 caliber for a model as shown in Figure 4 in a side view.
Figure 7 is an alternative model.
Figure 8 is another alternative model.
FIG. 9 is a block forming unit for applying 3D protrusions to the outer layer.
Detailed description of favorite models
MA
38539Β1
Figure 1 shows shaped storage media such as a travel bag 6. This travel bag is a piece of luggage. The bag 6 contains at least an outer surface 12, where the outer surface is provided with an additional outer layer 2 which includes the 3D protrusions 10 applied by the thermoforming process that extends outward with respect to the outer surface 12. The protrusions of the triple 10 are formed in the form of ribs . The 3D prototype design 10 is further illustrated in Figures 4-8. The travel bag can be a rigid case made of aluminum or plastic (methene, polyethylene).
Figure 2 shows the storage media formed as a bag 8. The bag 8 contains at least an outer surface 14 and an outer surface 16 that form a front side and a back side of the bag 8. At least one of the outer surfaces 14, 16 that falls onto the 3D protrusions is stitched 10. The three-dimensional protrusions 10 are achieved on the outer layer by the process of thermal formation, and the arrangement of the outer layer on the outer surface is 14, 16. The three-dimensional protrusions 10 are shaped like ribs. On this outer surface 14 and 16, a number of three-dimensional protrusions are arranged 10 'and the 10 results are parallel to each other. Bag 8 is shown in Figure 3 as a side view. Only 3D protrusions are shown schematically in Figures 1-3.
Just as the storage methods shown in Figs 1, 2 and 3, that is, travel bag 6 and bag 8;
It has only 10 3D protrusions on one of its 12, 4a exterior surfaces. Instead, the travel bag 6 and the 8 bag have 3D protrusions 10 on two more than their outer surfaces 12, 14, 6a.
VAA 19
The travel bag 6, as in Figure 1, is preferably covered with three-dimensional protrusions on all external surfaces.
It is preferable to provide the outer surfaces 12, 14, and 16 with a number of three-dimensional protrusions 10, where these three-dimensional protrusions 10 are shaped as ribs, and the three-dimensional prototypes are arranged in the form of 10 sides in parallel to each other and at distances that are grilled with each other. The 3D protrusions 10 can also be arranged on the outside of the case. The design of the three-dimensional protrusions 10 for storage media is illustrated in Figs 1-3 in more detail in Fig. 4-8.
Figure 4 shows 3D protrusions 10. The 3D protrusions 10 are formed on the outer layer 2 via the grooving process. 3D means that protrusions have a width B, L length and H. height. The outer layer 2 is applied to the outer surfaces 12, 14, 5 by adhesive layer 4. Looking at the process of guesswork, the shape of the 3D protruses formed in the outer layer 2 varies. According to the cliff. In Figure 4, the 3D protrusions formed in the form of ribs 10, including a triangular shape, are shown. Thus, the 3D bump pitch changes across width B. The 3D bump 10 is defined conical. The 3D protrusions are 10 hollow. The outer layer 2 can be made of plastic, leather or textiles.
However, the 3D 3D protrusions contain any other shape. Figure 5 shows round 3D protrusions at the edge.
<img file="MA38539B1_D0004.tif" />
38539Β1
In Figure 6, the 3D protrusions 10 are shown as in Figure 4 in a side view. The three-dimensional extrusion 10 as in the embodiment shown in Figure 6 includes the H-height of the length alignment
Figure 7 shows a model in which the 3D protrusion 10 differs in patch H along length L. In the farthest edge, the height H decreases continuously and ends at the peripheral regions. Figure 8 illustrates another alternative model. In this case, the raised parts 11 are arranged on the outer surface 12, 14, 16, and the action is adapted to no less than the shape of the 3D protrusion 10, and the outer layer is arranged on the outer surface 12, 14, 16 so that at least one is arranged Of the raised particles 11 the elastic on the outer surface 12, 14, 16 under the 3D protrusion is at least 10 of the outer layer 2.
The elevated 3D object 11 provided on the outer surface 12, 14, 16 have at least two continuous and continuous layers.
The hardened and bonded layers 31-35 can be coated on the outer surface 14, 16, 12 by printing process. In this regard, the first layer 31 is printed on the outer surface 12, 14, 16. The first layer forms 31 lower layers and is the layer next to the outer surface 12, 14, 16. The second layer 32 is then printed on the first layer 31. Then the layer is printed Third 33 on the second layer 32, printing the fourth layer 34 on the third layer, and printing the fifth layer 35 on the fourth layer 34. In this illustrated pattern, the fifth layer 35 is the top layer and the outermost layer is 12, 14, 16. The raised 3D part also includes a number of other layers.
<img file="MA38539B1_D0005.tif" />
38539Β1
The reason for printing the layers 31-35 is on the outer surface 12, 14, 16 and the raised 3D parts 11 are formed by a number of layers 31-35, and the raised 3D part can contain any desired shape. In this way, the shape and design of the three-dimensional raised part can be changed according to the desire of the production process and adapted to the three-dimensional outline 10.
In the form as in Figure 8; Five layers are patted over one layer. The 35-31 classes differ in their width from Β31 to Β35. The width of Layer 31 supplied with the outer surface was 12, 14, 16, the largest width. Β35 is for the 35th layer farthest from the outer surface 12, 14; 16 yellow width. The width Β34-Β32 for the 32-35 layers, located between layers 31 and 35 in width, varies between the width Β31 and بحيث35 so that the elevated three-part parts 11 are cone shaped and adapted to the 10-dimensional protrusions 10 of the outer layer 2. Moreover, the length L of the layers and the thickness D of the outer layers vary. The outer layer 2 is applied to the outer surface 12, 14, 16 and to the raised 3D parts 11 by adhesive layer 4.
And referring to the shape and, how the 3D protrusions 10 in the outer layer 2 are explained by the thermoforming process. The tissue 22 can be unwrapped from the drum and heated in the heating tube 24. After it has been heated in the heating furnace 24, the layer 22 mesh is inserted into the shale means 26 in which the three-dimensional protrusions are formed in a mesh-shaped layer, especially the protrusions. Three-dimensional ribs. This is done by means of pressure that has the shape of three-dimensional protrusions. And at the bottom of the shakeel means, it works
<img file="MA38539B1_D0006.tif" />
The layer is a grid in individual segments in the perforation medium 28 so that the layer is formed
External 2. The outer layer 2 has external dimensions of the outer surface 12, 14, 16.
Alternatively, a laminar material can be used in the thermoforming process instead of a layer
On the thickness of a net, and the particulate matter already contains the outer surface dimensions of which are 12, 14,
16. And this laminate material is heated and formed.
- Produce a piece of luggage containing at least an outer surface,
- production of at least an additional outer layer 2,
- We form protrusions in the form of 10 ribs in the additional outer layer 2 by forming
Al-Hizri,
- Attach the outer layer to at least an outer surface, preferably by pasting.
Contents5
11 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6 Sheet 7 Sheet 8 Sheet 9 Sheet 10 Sheet 11
39 members in 24 offices
Priority claims9
| Document | Office | Kind | Date |
|---|---|---|---|
| 202013002981 | Germany | U | |
| 202013002981 | Germany | U | |
| 2020130029811 | Germany | – | |
| 2014056286 | European Patent Office (EPO) | W | |
| 2014056286 | European Patent Office (EPO) | W | |
| 2020130029811 | – | – | – |
| DE20132002981U | – | – | – |
| PCTEP2014056286 | – | – | – |
| WO2014EP56286 | – | – | – |
Members39
| Document | Office | Kind | |
|---|---|---|---|
| DE202013002981U1 | Germany | U1 | |
| CA2907727A1 | Canada | A1 | |
| WO2014170116A1 | World Intellectual Property Organization (WIPO) | A1 | |
| UY35511A | Uruguay | A | |
| TW201446179A | Taiwan Province of China | A | |
| AR095750A1 | Argentina | A1 | |
| AU2014255997A1 | Australia | A1 | |
| SG11201507905XA | Singapore | A | |
| MX2015013508A | Mexico | A | |
| KR20150135423A | Republic of Korea | A | |
| CN105246366A | China | A | |
| PH12015502227A1 | Philippines | A1 | |
| PH12015502227B1 | Philippines | B1 | |
| EP2978336A1 | European Patent Office (EPO) | A1 | |
| MA38539A1 | Morocco | A1 | |
| SA515361236A | Saudi Arabia | A | |
| JP2016514525A | Japan | A | |
| CL2015002868A1 | Chile | A1 | |
| US2016278492A1 | United States of America | A1 | |
| MA38539B1This record | Morocco | B1 | |
| ZA201507813B | South Africa | B | |
| HK1220332A | Hong Kong, China | A | |
| HK1220332A1 | Hong Kong, China | A1 | |
| RU2015145317A | Russian Federation | A | |
| BR112015024488A2 | Brazil | A2 | |
| SA515361236B1 | Saudi Arabia | B1 | |
| SA5505B1 | Saudi Arabia | B1 | |
| CA2907727C | Canada | C | |
| TWI602526B | Taiwan Province of China | B | |
| RU2015145317A3 | Russian Federation | A3 | |
| EP2978336B1 | European Patent Office (EPO) | B1 | |
| US10058151B2 | United States of America | B2 | |
| AU2014255997B2 | Australia | B2 | |
| TR2018016044T4 | Türkiye | T4 | |
| TR201816044T4 | Türkiye | T4 | |
| JP6453847B2 | Japan | B2 | |
| RU2684125C2 | Russian Federation | C2 | |
| KR102132913B1 | Republic of Korea | B1 | |
| MY181794A | Malaysia | A |
Numbers
- Publication
- 38539
- Publication, DOCDB
- 38539
- Publication, EPODOC
- MA38539
- Application
- 38539
- Application, DOCDB
- 38539
- Application, EPODOC
- MA20150038539
Titles2
- French
- DISPOSITIF DE CONSERVATION À ÉLÉVATIONS TRIDIMENSIONNELLES
- English
- Three-dimensional lifting device
Classification
- CPC, 10
- A45C5/02
- A45C1/06
- A45C5/03
- A45C13/08
- A45C2005/037
- B32B9/025
- B32B9/04
- B32B3/30
- B32B2439/00
- B32B2439/40
- IPC, 3
- A45C1 06
- A45C5 02
- A45C13 08