The present disclosure generally relates to methods and equipment for making composite stiffeners, and deals more particularly with a method and apparatus for making contoured composite hat stringers having reduced wrinkling.
Various processes and equipment may be used to form a flat composite charge into a stiffener such as a stringer having a desired cross-sectional shape. For example, stringers may be made by forming the composite charge into a die cavity using a punch or inflatable bladder. In those applications where the stringer is contoured long its length as part of the forming process, stresses are locally created within the composite charge during forming that may result in buckling or wrinkling in the areas of the stringer containing these stresses. In the case of a contoured stringer having a hat-shaped cross section (“hat stringer”), the stresses tend to form in the contoured regions of the stringer, and cause buckling or wrinkling of the cap. Buckling or wrinkling of the cap is undesirable because it may affect the structural performance of the stringer, resulting in the need for stringer rework or alteration of the stringer design that may increase labor and/or material costs.
Accordingly, it would be desirable to provide a method and apparatus for making contoured hat stringers that reduces or eliminates buckling and/or wrinkling of the cap, particularly in contoured sections of the stringer.
The disclosure relates in general to manufacturing composite parts, and more specifically to methods and apparatus for producing contoured composite hat stringers having reduced wrinkling.
According to one aspect, a method is provided of forming a contoured composite hat stringer having a contoured hat section including sides and a cap. The method comprises forcing a composite charge into a die cavity with a punch. The method further comprises constraining the cap between an inflatable bladder and the punch as the composite charge is being forced into the die cavity. The method further comprises applying pressure to outer edges of the composite charge with a pair of inflatable pinch bladders.
According to another aspect, a method is provided of forming a contoured composite hat stringer having reduced wrinkling. The method comprises forming a composite charge into a contoured hat section having sides and a cap by forcing the composite charge into a die cavity. The method further comprises reducing stress in the cap during the forming by constraining the cap as the composite charge is being formed.
According to still another aspect, a method is provided of forming a contoured composite hat stringer having a hat section including sides and a cap. The method comprises placing a flat composite charge on a pair of dies defining a die cavity, and forcing the flat composite charge into the die cavity to form a hat section of the stringer having sides and a cap. The method further comprises contouring the die cavity, and reducing wrinkling of the cap during forming of the hat section by transferring stress in the cap away from the cap.
One of the advantages of the disclosed method and apparatus is that contoured composite hat stringers can be produced in which wrinkling in contoured areas of the cap is reduced or eliminated. Another advantage is that the method can be implemented with only minor modifications of existing stringer forming equipment. Still another advantage is that rework and attendant labor and material costs caused by stringer wrinkling may be reduced or eliminated. A further advantage is that reduced cap wrinkling may lead to improved structural performance of hat stringers.
The features, functions, and advantages can be achieved independently in various examples of the present disclosure or may be combined in yet other examples in which further details can be seen with reference to the following description and drawings.
The novel features believed characteristic of the illustrative examples are set forth in the appended claims. The illustrative examples, however, as well as a preferred mode of use, further objectives and advantages thereof, will best be understood by reference to the following detailed description of an illustrative examples of the present disclosure when read in conjunction with the accompanying drawings, wherein:
Referring first to
The hat stringer 20 may comprises a composite laminate formed of multiple plies of a fiber reinforced polymer such as a thermoset or thermoplastic. As will be discussed below, the hat stringer 20 may have one or more out-of-plane contours or curvatures along its length. In the example shown in
Attention is now directed to
The dies 42 are mounted for lateral movement 50 on a flexible bottom plate 38. In one example, the dies 42 are segmented along their lengths, allowing them to flex out-of-plane. In another example, the dies 42 may each comprise a series of individual die blocks (not shown), likewise permitting the dies 42 to flex out-of-plane. A pair of side rails 46 are secured to the bottom plate 38, outboard of the dies 42. Inflatable side bladders 44 are respectively located between the dies 42 and the side rails 46. The side bladders 44 may be inflated with a fluid such as air, and function to control the outward lateral movement of the dies 42 during the forming process. In other examples, as shown in
Referring to
A stringer forming operation begins with the tool set 34 arranged as shown in
To perform a forming operation, the top plate 36 moves down, causing the punch 40 to initially contact the composite charge 56. Immediately prior to the punch 40 contacting the composite charge 56, the cap pinch bladder 60 is inflated, causing it to come into contact with and apply pressure against the bottom of the composite charge 56. Continued downward movement of the top plate 36 (
As the punch 40 forms the composite charge 56 into the die cavity 48, the pressurized cap pinch bladder 60 bears against and applies pressure on the cap 24, thereby restraining the cap 24 against buckling or wrinkling. Continued movement of punch 40 into the die cavity 48 results in the cap pinch bladder 60 moving onto and applying pressure to the sides 26 of the hat section 22 (see
In one example, as previously mentioned, prior to forming the composite charge 56 to the desired cross-section, the tool set 34 is contoured along its length using, for example, a later discussed contour changing mechanism 74 (
Referring to
Various mechanisms may be used to configure the tool set 34 for forming one or more out-of-plane contours in the hat stringer 20.
Attention is now directed to
Examples of the disclosure may find use in a variety of potential applications, particularly in the transportation industry, including for example, aerospace, marine, automotive applications and other application where hat stringers may be used. Thus, referring now to
Each of the processes of method 104 may be performed or carried out by a system integrator, a third party, and/or an operator (e.g., a customer). For the purposes of this description, a system integrator may include without limitation any number of aircraft manufacturers and major-system subcontractors; a third party may include without limitation any number of vendors, subcontractors, and suppliers; and an operator may be an airline, leasing company, military entity, service organization, and so on.
As shown in
Systems and methods embodied herein may be employed during any one or more of the stages of the aircraft manufacturing and service method 206. For example, components or subassemblies corresponding to production process 112 may be fabricated or manufactured in a manner similar to components or subassemblies produced while the aircraft 106 is in service. Also, one or more apparatus examples, method examples, or a combination thereof may be utilized during the production processes 112 and 1114, for example, by substantially expediting assembly of or reducing the cost of an aircraft 106. Similarly, one or more of apparatus examples, method examples, or a combination thereof may be utilized while the aircraft 106 is in service, for example and without limitation, to maintenance and service 120.
The description of the different illustrative examples has been presented for purposes of illustration and description, and is not intended to be exhaustive or limited to the examples in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Further, different illustrative examples may provide different advantages as compared to other illustrative examples. The example or examples selected are chosen and described in order to best explain the principles of the examples, the practical application, and to enable others of ordinary skill in the art to understand the disclosure for various examples with various modifications as are suited to the particular use contemplated.
This application is a Divisional Application of U.S. patent application Ser. No. 17/447,593, filed Sep. 14, 2021, which claims the benefit of U.S. Provisional Patent Application Ser. No. 63/079,805, filed Sep. 17, 2020, both of which are herein incorporated by reference in their entirety.
Number | Name | Date | Kind |
---|---|---|---|
2484288 | Hamm | Oct 1949 | A |
4548859 | Kline et al. | Oct 1985 | A |
5378134 | Blot et al. | Jan 1995 | A |
7357166 | Pham et al. | Apr 2008 | B2 |
8465613 | Rotter et al. | Jun 2013 | B2 |
8557165 | Jones et al. | Oct 2013 | B2 |
8997642 | Stewart et al. | Apr 2015 | B2 |
9162396 | Coxon et al. | Oct 2015 | B2 |
9272767 | Stewart | Mar 2016 | B2 |
9387628 | Chapman et al. | Jul 2016 | B2 |
9782960 | Roins et al. | Oct 2017 | B1 |
10315750 | Stewart | Jun 2019 | B2 |
10369740 | Chapman | Aug 2019 | B2 |
10399283 | Offensend et al. | Sep 2019 | B2 |
10456960 | Chapman et al. | Oct 2019 | B2 |
20040043196 | Willden | Mar 2004 | A1 |
20100102482 | Jones et al. | Apr 2010 | A1 |
20100225016 | Prebil et al. | Sep 2010 | A1 |
20110127698 | Alenby et al. | Jun 2011 | A1 |
20130092323 | Pham et al. | Apr 2013 | A1 |
20130340928 | Rotter et al. | Dec 2013 | A1 |
20140103585 | Coxon et al. | Apr 2014 | A1 |
20140314996 | Stewart | Oct 2014 | A1 |
20160016366 | Robins et al. | Jan 2016 | A1 |
20160023409 | Coxon | Jan 2016 | A1 |
20160339682 | Bahe et al. | Nov 2016 | A1 |
20170021534 | Chapman | Jan 2017 | A1 |
20170057100 | Shaw et al. | Mar 2017 | A1 |
20170095986 | Feigenblum et al. | Apr 2017 | A1 |
20190291306 | Hannan et al. | Sep 2019 | A1 |
20200231267 | Rotter et al. | Jul 2020 | A1 |
20210107238 | Saini et al. | Apr 2021 | A1 |
20210107239 | Saini et al. | Apr 2021 | A1 |
20220080649 | Plummer et al. | Mar 2022 | A1 |
20220080680 | Plummer et al. | Mar 2022 | A1 |
20220080683 | Plummer et al. | Mar 2022 | A1 |
Number | Date | Country |
---|---|---|
1393875 | Mar 2004 | EP |
2170699 | Feb 2012 | EP |
3115185 | Jan 2017 | EP |
3162544 | May 2017 | EP |
3628472 | Apr 2020 | EP |
3677397 | Jul 2020 | EP |
3693155 | Aug 2020 | EP |
3708347 | Sep 2020 | EP |
Entry |
---|
Notice of Allowance, dated Jun. 20, 2023, regarding U.S. Appl. No. 17/447,591, 24 pages. |
Final Office Action, dated Sep. 12, 2023, regarding U.S. Appl. No. 17/447,595, 20 pages. |
Advisory Action dated Nov. 16, 2023 regarding U.S. Appl. No. 17/447,595, 13 pages. |
Office Action dated Jan. 18, 2024, regarding U.S. Appl. No. 17/447,595, 28 pages. |
European Patent Office Extended Search Report, dated Dec. 1, 2021, regarding EP Application No. 21180643.5, 8 pages. |
European Patent Office Extended Search Report, dated Dec. 17, 2021, regarding EP Application No. 21183660.6, 8 pages. |
European Patent Office Extended Search Report, dated Feb. 11, 2022, regarding EP Application No. 21192330.5, 6 pages. |
EPO. “European Search Report for EP 3970955 A 1 ”. EPO. Espacenet. 2023 (Year: 2023). |
Office Action, dated Nov. 29, 2022, regarding U.S. Appl. No. 17/447,593, 28 pages. |
Office Action, dated Feb. 17, 2023, regarding U.S. Appl. No. 17/447,591, 19 pages. |
Final Office Action, dated Feb. 21, 2023, regarding U.S. Appl. No. 17/447,593, 9 pages. |
Office Action, dated Apr. 19, 2023, regarding U.S. Appl. No. 17/447,595, 45 pages. |
Number | Date | Country | |
---|---|---|---|
20230256663 A1 | Aug 2023 | US |
Number | Date | Country | |
---|---|---|---|
63079805 | Sep 2020 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 17447593 | Sep 2021 | US |
Child | 18306432 | US |