LUGGAGE WITH COMPOSITE MATERIAL INTEGRALLY FORMED FRAME AND MANUFACTURING METHOD THEREOF
20220176612 · 2022-06-09
Inventors
Cpc classification
B29C51/10
PERFORMING OPERATIONS; TRANSPORTING
A45C2005/037
HUMAN NECESSITIES
B29C51/14
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C51/10
PERFORMING OPERATIONS; TRANSPORTING
B29C51/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method for manufacturing a luggage includes the steps: A) making a thermoplastic sheet into a shell, B) placing the shell body of the shell in an inner concave mold area of a heating mold and setting the shell edge of the shell to a frame mold area of the heating mold to correspond the outer surface of the shell to an inner wall surface of the heating mold, C) setting the outer surface of the thermoset carbon fiber plastic layer on the inner surface of the shell, D) setting the filling layer on the inner surface of the thermoset carbon fiber plastic layer within the frame mold area, E) expanding an air bag to the thermoset carbon fiber plastic layer and the filling layer and heating a heating mold, so that the shell, the thermoset carbon fiber plastic layer and the filling layer are combined with each other.
Claims
1. A method for manufacturing a luggage with composite material integrally formed frame, comprising the steps of: A) using a vacuum molding method to make a thermoplastic sheet into a shell, said shell comprising a shell body, a shell edge disposed on an outer edge of said shell body and an accommodation area surrounded by said shell body and said shell edge; B) providing a heating mold, said heating mold comprising an inner concave mold area, a frame mold area and an inner wall surface, said frame mold area being located at an outer edge of said inner concave mold area, then placing said shell body in said inner concave mold area to set said shell edge in said frame mold area and to correspond an outer surface of said shell to said inner wall surface of said heating mold; C) providing a thermoset carbon fiber plastic layer, and setting an outer surface of said thermoset carbon fiber plastic layer on an opposing inner surface of said shell; D) providing a filling layer, and attaching said filling layer to an opposing inner surface of said thermoset carbon fiber plastic layer within said frame mold area; and E) setting an air bag in said accommodation area of said shell, and then expanding said air bag to the inner surface of said thermoset carbon fiber plastic layer and said filling layer, and then operating a heating mold to heat said shell body and said thermoset carbon fiber plastic layer in said inner concave mold area and said thermoset carbon fiber plastic layer and said filling layer in said frame mold area, so that said shell, said thermoset carbon fiber plastic layer and said filling layer are combined with each other.
2. The method for manufacturing a luggage with composite material integrally formed frame as claimed in claim 1, wherein in step B) to step D), said frame mold area comprises an inner groove and an outer groove, said inner groove being adjacent to said inner wall surface of said heating mold and spaced apart from said outer groove, and said shell edge of said shell is set in said inner groove, and said thermoset carbon fiber plastic layer and said filling layer are set in said inner groove and said outer groove.
3. The method for manufacturing a luggage with composite material integrally formed frame as claimed in claim 2, wherein in step C) and step D), said thermoset carbon fiber plastic layer is placed in said inner groove, and said filling layer is placed in said inner groove and said outer groove.
4. The method for manufacturing a luggage with composite material integrally formed frame as claimed in claim 2, wherein said inner groove of said frame mold area is composed of a flat surface, an inclined surface and said inner wall surface of said heating mold, said flat surface having two opposite lateral sides thereof respectively connected to said inner wall surface and said inclined surface.
5. The method for manufacturing a luggage with composite material integrally formed frame as claimed in claim 1, wherein in step B) to step D), said frame mold area comprises an inner bump, an outer bump and a recessed portion, said inner bump protruding from said inner wall surface of said heating mold, said recessed portion being located between said inner bump and said outer bump; said shell edge of said shell and said thermoset carbon fiber plastic layer are placed on said inner bump and said recessed portion, and said filling layer is placed on said recessed portion and said outer bump.
6. The method for manufacturing a luggage with composite material integrally formed frame as claimed in claim 5, wherein said recessed portion of said frame mold area is mainly composed of a second inclined surface connected to a third inclined surface.
7. The method for manufacturing a luggage with composite material integrally formed frame as claimed in claim 1, wherein said filling layer is thermosetting carbon fiber plastic.
8. The method for manufacturing a luggage with composite material integrally formed frame as claimed in claim 1, wherein in step E), after said thermoset carbon fiber plastic layer and said filling layer are heated by said heating mold, said thermoset carbon fiber plastic layer and said filling layer are fused and cured and adhered to the inner surface of said shell.
9. The method for manufacturing a luggage with composite material integrally formed frame as claimed in claim 1, wherein in step A), said thermoplastic sheet is a transparent material.
10. The method for manufacturing a luggage with composite material integrally formed frame as claimed in claim 1, wherein in step A), said vacuum molding method is to provide a vacuum molding device with a mold, and then put said thermoplastic sheet into said vacuum molding device for heating and softening, so that said vacuum molding device generates a negative pressure to make said thermoplastic sheet adhere to the surface of said mold to form said shell.
11. The method for manufacturing a luggage with composite material integrally formed frame as claimed in claim 1, further comprising step F) after step E) to move said air bag out of said accommodation area, and cool the integrated said shell and said frame.
12. A luggage made by using the method for manufacturing a luggage with composite material integrally formed frame as any one of claim 1, comprising: a first shell; a second shell openably assembled to said first shell; a first frame integrally formed with said first shell and located on an outer edge of said first shell; and a second frame integrally formed with said second shell and located on an outer edge of said second shell, so that when said first shell and said second shell are closed, said second frame is engaged in said first frame.
13. The luggage as claimed in claim 11, wherein said first shell and said second shell each comprise a shell and a thermoset carbon fiber plastic layer, said thermoset carbon fiber plastic layer being set on an inner surface of said shell.
14. The luggage as claimed in claim 12, wherein said first frame and said second frame each comprise a shell, a thermoset carbon fiber plastic layer and a filling layer, said thermoset carbon fiber plastic layer being set on an inner surface of the associating said shell, said filling layer being set on an inner surface of the associating said thermoset carbon fiber plastic layer.
15. The luggage as claimed in claim 14, wherein said filling layer is a thermoset carbon fiber plastic layer.
16. The luggage as claimed in claim 12, wherein said first frame comprises a recessed engagement groove, and said second frame comprises a protruding engagement member engaged in said recessed engagement groove.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION OF THE INVENTION
[0025] 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.
[0026] Referring to
[0027] The second shell 30 is openably assembled to the first shell 20. The second shell 30 comprises a shell 31 and a thermoset carbon fiber plastic layer 33, and the thermoset carbon fiber plastic layer 33 is provided on the inner surface of the shell 31.
[0028] The first frame 40 is integrated with the first shell 20 and is located on the outer edge of the first shell 20. The first frame 40 comprises a shell 41, a thermoset carbon fiber plastic layer 43, a filling layer 45 and a recessed engagement groove 47. The thermoset carbon fiber plastic layer 43 is provided on the inner surface of the shell 41. The filling layer 45 is provided on the inner surface of the thermoset carbon fiber plastic layer 43.
[0029] The second frame 50 is integrated with the second shell 30 and is located on the outer edge of the second shell 30. The second frame 50 comprises a shell 51, a thermoset carbon fiber plastic layer 53, a filling layer 55 and a protruding engagement member 57. The thermoset carbon fiber plastic layer 53 is provided on the inner surface of the shell 51. The filling layer 55 is provided on the inner surface of the thermoset carbon fiber plastic layer 53. When the first shell 20 and the second shell 30 are closed, the protruding engagement member 57 of the second frame 50 is engaged in the recessed engagement groove 47 of the first frame 40.
[0030] The manufacturing method for manufacturing the luggage 10 with composite material integrally formed frame in accordance with the present invention is divided into two parts, one is the manufacturing method of the first shell 20 and the first frame 40 being integrally formed, and the second is the manufacturing method of the second shell 30 and the second frame 50 being integrally formed.
[0031] Referring to
[0032] Step S1-1: Referring to
[0033] Step S1-2: As shown in
[0034] Step S1-3: As shown in
[0035] Step S1-4: As shown in
[0036] Step S1-5: As shown in
[0037] Step S1-6: As shown in
[0038] Referring to
[0039] Step S2-2: As shown in
[0040] Place the shell edge 213 of the shell 31, 51 on the inner bump 636 and the recessed portion 638. Of course, you can also choose to place the shell edge 213 of the shell 31, 51 on the inner wall surface of the heating mold 60 and adjacent to the inner bump 636 according to your needs.
[0041] Step S2-3: As shown in
[0042] Step S2-4: As shown in
[0043] Step S2-5: As shown in
[0044] Step S2-6: As shown in
[0045] In summary, the luggage with composite material integrally formed frame and manufacturing method thereof of the present invention can obtain an integral shell and frame structure in a one-time mold forming process. The luggage made by this method has the functions of high strength, light weight and high precision, so as to increase the durability of the luggage and improve the fit of the two frames when the two shells are closed.