RESIN-MOLDED ARTICLES, AND A PROCESS AND AN APPARATUS FOR MANUFACTURING THE SAME
20170334146 ยท 2017-11-23
Assignee
Inventors
Cpc classification
B32B27/304
PERFORMING OPERATIONS; TRANSPORTING
B32B27/12
PERFORMING OPERATIONS; TRANSPORTING
B29C51/12
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/30
PERFORMING OPERATIONS; TRANSPORTING
B29C63/02
PERFORMING OPERATIONS; TRANSPORTING
B32B27/302
PERFORMING OPERATIONS; TRANSPORTING
B29K2995/0022
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/52
PERFORMING OPERATIONS; TRANSPORTING
B29C51/04
PERFORMING OPERATIONS; TRANSPORTING
B32B27/16
PERFORMING OPERATIONS; TRANSPORTING
B29K2105/0097
PERFORMING OPERATIONS; TRANSPORTING
B29K2105/06
PERFORMING OPERATIONS; TRANSPORTING
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
B29C51/14
PERFORMING OPERATIONS; TRANSPORTING
B29C51/08
PERFORMING OPERATIONS; TRANSPORTING
B29C51/264
PERFORMING OPERATIONS; TRANSPORTING
B29C51/46
PERFORMING OPERATIONS; TRANSPORTING
B32B27/308
PERFORMING OPERATIONS; TRANSPORTING
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
C08J5/04
CHEMISTRY; METALLURGY
B32B2262/106
PERFORMING OPERATIONS; TRANSPORTING
B29C51/10
PERFORMING OPERATIONS; TRANSPORTING
B29C65/40
PERFORMING OPERATIONS; TRANSPORTING
B32B3/30
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C65/40
PERFORMING OPERATIONS; TRANSPORTING
B32B27/12
PERFORMING OPERATIONS; TRANSPORTING
B29C51/10
PERFORMING OPERATIONS; TRANSPORTING
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Resin-molded articles, to which such advantages as strength, rigidness and light weight are secured thanks to kneading with fibers, and which has excellent surface characteristics such as smoothness of the surface and beauty in the appearance, and resistance against weather, ultraviolet rays and light are provided.
Claims
1. A resin-molded article prepared by sticking a resin surface skin material provide with an adhering layer to a molded fibrous base member comprising any of carbon fibers, glass fibers and the complex thereof.
2. A resin-molded article according to claim 1, wherein the molded article is prepared by adding at least one material selected from a group consisting of ABS, polycarbonate, acryl and nylon as a binding agent to the fibrous base member and performing the following molding.
3. A resin-molded article according to claim 1, wherein the resin surface skin member is so structured that an adhering layer is attached to the underside of a resin film and a decorative layer is formed on the surface of the molded fibrous base.
4. A resin-molded article according to claim 1, wherein the resin surface skin member is so structured that an adhering layer is attached to the underside of a resin film and a decorative layer is intervened between the resin film and the adhering layer.
5. A resin-molded article according to claim 1, wherein the resin surface skin member is prepared by etching the underside of the resin film and then attaching an adhering layer to the underside.
6. A resin-molded article according to claim 1, wherein the resin surface skin member comprises at least one material selected from a group consisting of acryl, polycarbonate, ABS, PET, vinyl chloride, polyurethane and polypropylene.
7. A resin-molded article according to claim 1, wherein the thickness of the resin surface skin member is in a range of from 0.1 mm to 0.5 mm.
8. A process for manufacturing resin-molded articles, wherein the process comprises the following steps: placing a molded base made of a fibrous base material comprising any of carbon fibers, glass fibers and the complex thereof on a tray, arranging the resin surface skin member provided with an adhering layer over the molded base such that the adhering layer of the resin surface skin member is directed downward, rendering the surroundings of the molded base and the resin surface skin member in a negatively-pressurized state and heating the resin surface skin member, heating the resin surface skin member and ascending the tray to thereby closely contact the molded base to the resin surface skin member, and rendering the upper region of the tray in a pressurized state and subsequently opening the surrounding of the tray to remove the molded base coated with the resin surface skin member.
9. A process for manufacturing resin-molded articles according to claim 8, wherein the resin surface skin member is so structured that an adhering layer is attached to the underside of a resin film and a decorative layer is formed on the surface of the molded fibrous base.
10. A process for manufacturing resin-molded articles according to claim 8, wherein the resin surface skin member is so structured that an adhering layer is attached to the underside of a resin film and a decorative layer is intervened between the resin film and the adhering layer.
11. A process for manufacturing resin-molded articles according to claim 8, wherein the resin surface skin member is prepared by etching the underside of the resin film and then attaching an adhering layer to the underside.
12. A process for manufacturing resin-molded articles according to claim 8, wherein the resin surface skin member comprises at least one material selected from a group consisting of acryl, polycarbonate, ABS, PET, vinyl chloride, polyurethane and polypropylene.
13. A process for manufacturing resin-molded articles according to claim 8, wherein the thickness of the resin surface skin member is in a range of from 0.1 mm to 0.5 mm.
14. A process for manufacturing resin-molded articles according to claim 8, wherein the molded article is prepared by adding at least one material selected from a group consisting of ABS, polycarbonate, acryl and nylon as a binding agent to the fibrous base member and performing the following molding.
15. An apparatus for manufacturing resin-molded articles comprising: a lower chamber box movably holding a tray for the molded fibrous base in the vertical direction, an upper chamber box having a heater built-in and movable in the vertical direction relative to the lower chamber box, a resin surface skin member extended over the area locating between the upper and lower chamber boxes, a negative pressure biasing means arranged in both of the upper and lower chamber boxes and communicating them, a pneumatic biasing means communicated with the upper chamber box, a driving unit for moving the tray in the vertical direction, and a driving unit for moving the upper chamber box in the vertical direction, characterized in that the apparatus is configured such that the resin surface skin member is coated to the molded base by virtue of press given by the molded base on the tray against the resin surface skin member owing to the elevation of the lower chamber box, or application and release of bias generated by the negative pressure biasing means and the pneumatic biasing means, or heating by the heater.
Description
BRIEF EXPLANATION FOR THE DRAWINGS
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
[0044]
[0045]
[0046]
DESCRIPTION OF REFERENCE NUMERALS
[0047] 1: Molded base [0048] 2: Adhering layer [0049] 3, 29: Resin surface skin member (Transparent resin film) [0050] 4: Decorative layer [0051] 5: Etching [0052] 10: Resin-molded article [0053] 20: Manufacturing apparatus for resin-molded articles [0054] 21: Lower chamber box [0055] 22: Upper chamber box [0056] 23: Tray [0057] 24, 31: Driving unit for vertical moving [0058] 26: Vacuum tank [0059] 27: Switching valve [0060] 28: Holding frame [0061] 30: Heater [0062] 32: Pneumatic tank [0063] 33: Cutter [0064] 41: Automotive bumper [0065] 42: Sideview mirror [0066] 50: Golf shaft
EMBODIMENT FOR CARRYING OUT THE INVENTION
[0067] Now, the present invention is explained by means of the examples given below with referring to the appended drawings.
[0068] As the manner for molding the fibrous base material, though various manners as exemplified below can be employed, it should not be limited to those manners given below. The molding manner includes molding the fibrous base material following to mixing a binding agent as a binder to the fibrous base material, molding after weaving or twisting the fibrous base material, molding by covering the fibrous base member formed by weaving the fibrous material with a binding agent, molding by covering the fibrous base member formed by twisting the fibrous material with a binding agent, molding by forming the fibrous material by employing the above-described manner and apply foundation painting to the surface, and molding by forming the fibrous material by employing the above-described manner and apply foundation painting to the surface and followed by sanding thereof. While, as the resin surface skin film, various types of synthetic resin sheets being capable of sticking to the fibrous base member may be employed. As an example, if acryl material is used for the transparent resin film 3, the resulted film may be resistant to weather and ultraviolet rays, and the film made of either PC or ABS material may acquire better moldability and productivity. Therefore, the material to be used can be appropriately selected depending on the application. For the adhering layer, an acrylic adhesive is the preferred. The thickness t of the resin surface skin film (transparent resin film 3) containing an adhering layer is preferably in a range of from 0.1 mm to 0.5 mm, however, it is arbitrary determined depending on the application such as place to be used of the molded article. The structures of the molded article 1, the adhering layer 2 and the resin surface skin film 3 as explained in the following are same as those described above, respectively. Note that the employable material examples to be used for the resin surface skin film 3, all materials respectively made of acryl, PC, ABS, PET, vinyl chloride, polyurethane and polypropylene may be given. While, for the binding agent, materials respectively made of ABS, polycarbonate, acryl and nylon are employable. However, the materials being employable for the resin surface skin member is not limited to those described above, any resin sheet that can stick to the molded article in the steps described latter and any material that can be molded with the fibrous material may be employed for the resin surface skin member and the binding agent, respectively.
[0069] With regard to the resin-molded article 10 according to the example shown in
[0070] With regard to the resin-molded article 10 according to the example shown in
[0071] In respect of the resin-molded article 10 shown in
[0072] With referring to
[0073] Inside the upper chamber box 22 that ascends and descends relative to the lower chamber box 21, a heater 30 is arranged at the upper position. A vertically-moving driving unit 31 is provided to the upper position of the upper chamber box 22, and the actuating rod 31a thereof is connected to the upper side of the upper chamber box 22. Besides, a pressuring apparatus, e.g. a pneumatic tank 32, for rendering the inside of the upper chamber box 22 to be in a pressurized state is connected to said upper chamber box 22 via the switching valve 27. In such a state that the upper chamber box 22 is lowered and closely contacted to the lower chamber box 21 being attached with the resin surface skin film 29, both insides of the upper and lower chamber boxes 22, 21 are kept in a sealed condition.
[0074] Taking the manufacturing apparatus for the resin-molded articles configured as described above as an example, the process for manufacturing the resin-molded articles according to the present invention will now be explained with referring to
[0075] Then, as shown in
[0076] Then, as shown in
[0077] Subsequently, the inside of the upper chamber box 22 is shifted from the negative pressurized state to either opened-to-air state or pneumatic state while actuating the heater 30 inside the upper chamber box 22 to thereby accelerate the adhesion of the resin surface skin film 29 to the surface of the molded article.
[0078] The resin-molded article to which surface processing having been applied according to the present invention may be used for various applications because it has advantages of high strength and rigidness, light weight, highly resistant to weather and ultraviolet rays, smoothed surface irregularity and beautiful appearance.
INDUSTRIAL USE OF THE INVENTION
[0079] According to the present invention, an resin-molded article having excellent surface property, such as surface smoothness and beautiful appearance, while securing advantages of strength, rigidness and lightweight given by virtue of kneading of fibers, and further being provided with resistance against weather, ultraviolet rays and light can be attained. In addition, a process and an apparatus for manufacturing resin-molded articles, which enables easy surface processing to the surface of a molded article comprising a fibrous base member, reduction of the manufacturing steps and homogenization of the surface aspect, such as smoothening of surface, can also attained.