LUGGAGE FORMED BY COMPOSITE MATERIAL AND MANUFACTURING METHOD THEREOF
20220142314 · 2022-05-12
Inventors
Cpc classification
B29C70/44
PERFORMING OPERATIONS; TRANSPORTING
B29C70/086
PERFORMING OPERATIONS; TRANSPORTING
B32B5/26
PERFORMING OPERATIONS; TRANSPORTING
A45C13/36
HUMAN NECESSITIES
B29L2031/712
PERFORMING OPERATIONS; TRANSPORTING
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
B32B2262/106
PERFORMING OPERATIONS; TRANSPORTING
B32B15/14
PERFORMING OPERATIONS; TRANSPORTING
B29C51/10
PERFORMING OPERATIONS; TRANSPORTING
B32B2260/021
PERFORMING OPERATIONS; TRANSPORTING
B29C70/54
PERFORMING OPERATIONS; TRANSPORTING
A45C2005/037
HUMAN NECESSITIES
International classification
A45C13/36
HUMAN NECESSITIES
B29C51/10
PERFORMING OPERATIONS; TRANSPORTING
B29C70/44
PERFORMING OPERATIONS; TRANSPORTING
B29C70/54
PERFORMING OPERATIONS; TRANSPORTING
B32B15/14
PERFORMING OPERATIONS; TRANSPORTING
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method for manufacturing a luggage formed by composite material includes the steps: A) using a vacuum molding method to make a thermoplastic sheet into a shell; B) placing the shell in an inner cavity mold area of a heating mold to correspond the outer surface of the shell to the inner wall surface of the inner cavity mold area; C) setting the outer surface of the thermosetting carbon fiber plastic layer on the inner surface of the shell ; D) setting the reinforcing layer on the inner surface of the thermosetting carbon fiber plastic layer at the location corresponding to the corner of the shell; and E) placing an airbag in the receiving area of the shell and inflating the airbag to support the inner surface of the thermosetting carbon fiber plastic layer and the reinforcing layer.
Claims
1. A method for manufacturing a luggage formed by composite material, comprising the steps of: A) using a vacuum molding method to make a thermoplastic sheet into a shell, said shell comprising an outer surface, an inner surface, a receiving area surrounded by said inner surface, and a corner; B) providing a heating mold, said heating mold comprising an inner cavity mold area and then placing said shell in said inner cavity mold area to correspond said outer surface of said shell to an inner wall surface of said inner cavity mold area; C) providing a thermosetting carbon fiber plastic layer, said thermosetting carbon fiber plastic layer comprising an outer surface and an inner surface, and then arranging the outer surface of said thermosetting carbon fiber plastic layer on the inner surface of said shell; D) providing a reinforcing layer and setting said reinforcing layer on the inner surface of said thermosetting carbon fiber plastic layer at the location corresponding to said corner of said shell; and E) placing an airbag in said receiving area of said shell and inflate said airbag to support the inner surface of said thermosetting carbon fiber plastic layer and said reinforcing layer, and at the same time heating said heating mold to heat said shell, said thermosetting carbon fiber plastic layer and said reinforcing layer in said inner cavity mold area, so that said shell, said thermosetting carbon fiber plastic layer and said reinforcing layer are combined with each other.
2. The method for manufacturing a luggage formed by composite material as claimed in claim 1, wherein said reinforcing layer is a thermosetting carbon fiber plastic.
3. The method for manufacturing a luggage formed by composite material as claimed in claim 1, wherein in step E), said thermosetting carbon fiber plastic layer is cured and bonded to the inner surface of said shell when heated by said heating mold.
4. The method for manufacturing a luggage formed by composite material as claimed in claim 1, wherein said reinforcing layer is a metal layer; the method for manufacturing a luggage formed by composite material further comprising a steps of: providing another thermosetting carbon fiber plastic layer, placing the said another thermosetting carbon fiber plastic layer on the inner surface of said thermosetting carbon fiber plastic layer and said metal layer, inflating said airbag to support the said another thermosetting carbon fiber plastic layer, and heating said heating mold to heat said shell, said two thermosetting carbon fiber plastic layers and said metal layer, so that said shell and said two thermosetting carbon fiber plastic layers are combined with each other and said metal layer is wrapped in between said two thermosetting carbon fiber plastic layers.
5. The method for manufacturing a luggage formed by composite material as claimed in claim 1, wherein in step E), the heating temperature of said inner cavity mold area is between 140 degrees and 150 degrees.
6. The method for manufacturing a luggage formed by composite material as claimed in claim 1, wherein in step A), said thermoplastic sheet is transparent.
7. The method for manufacturing a luggage formed by composite material as claimed in claim 1, further comprising a step of providing a pattern, said pattern being set on the inner surface of said shell selectively by painting, printing or labeling.
8. The method for manufacturing a luggage formed by composite material as claimed in claim 1, wherein in step A), said vacuum molding method is to provide a vacuum molding device with a mold, and put said thermoplastic sheet into said vacuum molding device to heat and soften said thermoplastic sheet, and then said vacuum molding device generates a negative pressure so that said thermoplastic sheet is attached to the surface of said mold surface made into said shell.
9. The method for manufacturing a luggage formed by composite material as claimed in claim 1, after step E), further comprising step F) moving said airbag out of said receiving area of shell, and cooling the luggage formed of said shell, said thermosetting carbon fiber plastic layer and said reinforcing layer.
10. A luggage made according to any one of claims 1, comprising: a shell comprising an outer surface, an inner surface, a receiving area surrounded by said inner surface, and a corner; a thermosetting carbon fiber plastic layer comprising an outer surface and an inner surface. the outer surface of said thermosetting carbon fiber plastic layer being set on the inner surface of said shell; and a reinforcing layer set on the inner surface of said thermosetting carbon fiber plastic layer at the location corresponding to said corner of said shell.
11. The luggage as claimed in claim 10, wherein said reinforcing layer is a thermosetting carbon fiber plastic layer.
12. The luggage as claimed in claim 10, wherein said reinforcing layer is a metal layer, and the luggage further comprising another thermosetting carbon fiber plastic layer set on the inner surface of the previously set said thermosetting carbon fiber plastic layer and said metal layer, said shell and said two thermosetting carbon fiber plastic layers being combined with each other, and said metal layer being wrapped in between said two thermosetting carbon fiber plastic layers.
13. The luggage as claimed in claim 10, further comprising a pattern set on the inner surface of said shell.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION OF THE INVENTION
[0029] The applicant first explains here that throughout the specification, including the embodiments described below and the claims in the scope of the patent application, the nouns related to directionality are based on the directions in the drawings. Secondly, in the embodiments and drawings to be introduced below, the same element numbers represent the same or similar elements or their structural features.
[0030] Referring to
[0031] Step S1-1: As shown in
[0032] Step S1-2: As shown in
[0033] Step S1-3: As shown in
[0034] Step S1-4: As shown in
[0035] Step S1-5: As shown in
[0036] Step S1-6: As shown in
[0037] Step S2-1˜S2-3: As shown in
[0038] Step S2-4: As shown in
[0039] Step S2-5: As shown in
[0040] Step S2-6: As shown in
[0041] Step S2-7: As shown in
[0042] In conclusion, the present invention uses the composite carbon fiber manufacturing method to make the luggage 10, 10′. Under the premise that the external structure of the luggage 10, 10′ formed by composite materials is unified, it utilizes the impact resistance characteristics of the thermoplastic sheet 20, and the high strength and high bonding characteristics of the thermosetting carbon fiber plastic layer 30, and applies the reinforcing layer (thermosetting carbon fiber plastic layer or metal layer) 50 at a specific location according to the needs to achieve better impact resistance and impact resistance.