Device and method of manufacturing omega stringers
09914270 ยท 2018-03-13
Assignee
Inventors
- Gabriel Cruzado Parla (Madrid, ES)
- Alberto Martinez Cerezo (Madrid, ES)
- Jorge Galiana Blanco (Madrid, ES)
- Jose Cuenca Rincon (Madrid, ES)
- Aquilino Garcia Garcia (Madrid, ES)
- Augusto PEREZ PASTOR (Madrid, ES)
Cpc classification
B29C33/202
PERFORMING OPERATIONS; TRANSPORTING
Y02T50/40
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B29L2031/001
PERFORMING OPERATIONS; TRANSPORTING
B29C70/543
PERFORMING OPERATIONS; TRANSPORTING
B29C70/462
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C43/32
PERFORMING OPERATIONS; TRANSPORTING
B29D99/00
PERFORMING OPERATIONS; TRANSPORTING
B64C1/06
PERFORMING OPERATIONS; TRANSPORTING
B29C70/46
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An apparatus for manufacturing composite stringers from a composite laminate comprising a male mold, a main caul plate, two fixed female mold halves, two secondary movable caul plates and a retention device. The main caul plate is located below the male mold, the female mold halves are located at both sides of the main caul plate and the secondary movable caul plates, each of them located respectively over each one of the two female mold halves. The male mold, the main caul plate, the two female mold halves and the two secondary caul plates are non-developable surfaces. The retention device keeps each secondary movable caul plate at a predetermined distance of its respective female mold half.
Claims
1. An apparatus for manufacturing composite stringers from a composite laminate, comprising: a male mould, a main caul plate, the main caul plate located below the male mould and adapted to hold the composite laminate against the male mould, two fixed female mould halves, located at both sides of the main caul plate, two secondary movable caul plates, each of the two secondary movable caul plates located respectively over each one of the two female mould halves and adapted to be lowered from a high position to a low position, and adapted to hold the composite laminate when being in said low position, and a retention device, wherein: the male mould, the main caul plate, the two female mould halves and the two secondary caul plates are non developable surfaces, and the retention device keeps each secondary movable caul plate at a predetermined distance of its respective female mould half.
2. The apparatus for manufacturing composite stringers according to claim 1, wherein the retention device comprises blocks adapted to retain the secondary movable caul plates, creating a predetermined gap always lower than 2 mm between each secondary caul plate and the composite laminate to allow the free sliding of the composite laminate during the manufacturing process, but preventing said composite laminate from separating from the female mould halves.
3. The apparatus for manufacturing composite stringers according to claim 1, wherein the retention device is a secondary caul plates control device adapted to make the secondary caul plates apply a predetermined pressure against the composite laminate.
4. The apparatus for manufacturing composite stringers according to claim 3 further comprising a male mould control device.
5. The apparatus for manufacturing composite stringers according to claim 4 wherein the male mould control device is inter-related with the secondary caul plates control device.
6. The apparatus for manufacturing composite stringers according to claim 1 further comprising a main caul plate control device.
7. The apparatus for manufacturing composite stringers according to claim 1, wherein the main caul plate comprise one or more embossments suitable for retaining the composite laminate between the male mould and the main caul plate preventing the composite laminate from moving in relation to those elements.
8. The apparatus for manufacturing composite stringers according to claim 1, wherein the female mould halves comprise a heating device suitable for heating the composite laminate within a controlled and registered cycle and thermal insulating materials.
9. The apparatus for manufacturing composite stringers according to claim 1, wherein the two secondary movable caul plates comprise thermal insulating materials.
10. The apparatus for manufacturing composite stringers according to claim 1 wherein the two secondary movable caul plates comprise a temperature control device suitable for controlling the composite laminate temperature.
11. The apparatus for manufacturing composite stringers according to claim 1, further comprising a centering device adapted to help the positioning of the composite laminate when the composite laminate is placed on the female mould halves.
12. An apparatus for manufacturing composite stringers from a composite laminate, comprising: a male mould, a main caul plate, the main caul plate located below the male mould and adapted to hold the composite laminate against the male mould, two receiving mould halves slidable in a direction which is orthogonal to the movement of the male mould, two secondary movable caul plates, each of the two secondary movable caul plates located respectively over each one of the two receiving mould halves and adapted to be lowered from a high position to a low position, and adapted to hold the composite laminate when being in said low position, and a retention device to keep each secondary movable caul plate at a predetermined distance of its respective receiving mould half, wherein the male mould, the main caul plate, the two receiving mould halves, and the two secondary movable caul plates are non-developable surfaces.
13. An apparatus for manufacturing composite stringers from a composite laminate, comprising: a male mould, a main caul plate, the main caul plate located below the male mould and adapted to hold the composite laminate against the male mould, two fixed female mould halves, located at both sides of the main caul plate, two secondary movable caul plates, each of the two secondary movable caul plates located respectively over each one of the two female mould halves and adapted to be lowered from a high position to a low position, and adapted to hold the composite laminate when being in said low position, and at least one retention device, a centering device adapted to help the positioning of the composite laminate when the composite laminate is placed on the female mould halves, wherein: the male mould, the main caul plate, the two female mould halves and the two secondary caul plates are non developable surfaces, and the retention device keeps each secondary movable caul plate at a predetermined distance of its respective female mould half.
14. The apparatus for manufacturing composite stringers according to claim 13, wherein the retention device comprises blocks adapted to retain the secondary movable caul plates, creating a predetermined gap always lower than 2 mm between each secondary caul plate and the composite laminate to allow the free sliding of the composite laminate during the manufacturing process, but preventing said composite laminate from separating from the female mould halves.
15. The apparatus for manufacturing composite stringers according to claim 13, wherein the retention device is a secondary caul plates control device adapted to make the secondary caul plates apply a predetermined pressure against the composite laminate.
16. The apparatus for manufacturing composite stringers according to claim 13, wherein the main caul plate comprise one or more embossments suitable for retaining the composite laminate between the male mould and the main caul plate preventing the composite laminate from moving in relation to those elements.
17. The apparatus for manufacturing composite stringers according to claim 13, wherein the female mould halves comprise a heating device suitable for heating the composite laminate within a controlled and registered cycle and thermal insulating materials.
18. The apparatus for manufacturing composite stringers according to claim 13, wherein the two secondary movable caul plates comprise thermal insulating materials.
19. The apparatus for manufacturing composite stringers according to claim 13, wherein the two secondary movable caul plates comprise a temperature control device suitable for controlling the composite laminate temperature.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The various embodiments will hereinafter be described in conjunction with the following drawing figures, wherein like numerals denote like elements, and wherein:
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DETAILED DESCRIPTION
(9) The following detailed description is merely exemplary in nature and is not intended to limit the present disclosure or the application and uses of the present disclosure. Furthermore, there is no intention to be bound by any theory presented in the preceding background or the following detailed description.
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(11)
(12) In said
(13)
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(17)
(18) The male mould (11) has a trapezoidal shape with a head base (41) and a tail base (42). The head base (41) is adapted to form the head of the omega section of the stringer (9), together with the main caul plate (12). In the normal operation of the apparatus, the main caul plate (12) presses the composite laminate (2) against the head base (41) of the male mould (11). The male mould (11) also has two oblique lateral walls (43, 44), which are adapted to form the two webs (32) of the omega section of the stringer (9).
(19) The main caul plate has a front face (45) being opposite to the head base (41) face of the male mould (11), being therefore adapted to hold the composite laminate (2) against the male mould (11). To this extent, it comprises some embossments (19) in said front face (45), adapted to improve the supporting of the composite laminate (2) against the head base (41) face of the male mould (11), preventing the laminate from moving in relation to those elements but without damaging it.
(20) The two fixed female mould halves (13) act as receivers of the male mould (11), helping it form the legs of the omega cross section of the stringer (9). As the male mould (11) is descending, it biases the composite laminate (2) against the female mould halves (13), the walls of which are parallel to the walls of the male mould (11).
(21) The two secondary movable caul plates (14) are adapted to be lowered from a high position to a low position. When they are in the low position, they prevent the composite laminate (2) from separating from the fixed female mould halves (13), together with the blocks (15).
(22) These blocks (15) are adapted to retain the secondary movable caul plates (14), creating a predetermined gap, always lower than about 1.5 mm and lower than about 20% of the dry fabric thickness, between each secondary caul plate (14) and the composite laminate (2) to allow the free sliding of the composite laminate (2) during a manufacturing process, but preventing said composite laminate (2) from separating from the female mould halves (13). This separation would cause the appearance of some wrinkles in the laminate (9) during the forming process, or even causing the malformation of the laminate (9). The position and thickness of these blocks (15) is conditioned by the thickness and shape of the laminate (2), because the thicker of the laminate (2) the thicker the block (15) need to be to maintain the same gap between the secondary caul plate (14) and the laminate (2).
(23) As it can be shown in the figure, the male mould (11), the main caul plate (12), the two female mould halves (13) and the two secondary caul plates (14) are non-developable surfaces. This means that these surfaces are torsioned so that the orientation of an axis defined by any wall of these elements in a cross section is not the same throughout all the length of said element. This is the way to produce torsion in the stringer (9) in the way shown in
(24) Further, the size and position of the blocks (15) and of the secondary caul plates (14) is not the same throughout all the length of the section, as the thickness and size of the laminate (2) varies, and these elements adapt to this variation. Further, the male mould (11), the main caul plate (12), the female mould halves (13) and the secondary caul plates (14) adapt their shapes to follow the changes in the longitudinal deflection and size of the omega section.
(25) The apparatus (1) also comprises control means: male mould control means (16), which are pneumatic actuators that control the pressure applied by the male mould (11) against the composite laminate (2); and main caul plate control means (18), which are in communication with male mould control means (16), and are pneumatic actuators that controls the pressure applied by the main caul plate (12) against the composite laminate (2).
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(30) These secondary pneumatic actuators (17) are in relation with the male mould control means (16), to control the pressure of the secondary caul plates (14) in relation with the pressure applied by the male mould (11).
(31)
(32) The main caul plate (112) is located below the male mould (111) and adapted to hold the composite laminate (2) against the male mould (112), the same as the apparatuses shown in
(33) The receiving mould halves (113) are slightly different from the female mould halves (13) of the
(34) This apparatus (101) also comprises control means: male mould control means (116), which are pneumatic actuators that controls the pressure applied by the male mould (111) against the composite laminate (2), main caul plate control means (118), which are pneumatic actuators that controls the pressure applied by the main caul plate (112) against the composite laminate (2), and secondary pneumatic actuators (17) adapted to make the secondary caul plates (114) apply a predetermined pressure against the laminate composite (2).
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(36) This
(37) The process of manufacturing a stringer (9) out of a laminate (2) using an apparatus as described in
(38) While at least one exemplary embodiment has been presented in the foregoing detailed description, it should be appreciated that a vast number of variations exist. It should also be appreciated that the exemplary embodiment or exemplary embodiments are only examples, and are not intended to limit the scope, applicability, or configuration of the present disclosure in any way. Rather, the foregoing detailed description will provide those skilled in the art with a convenient road map for implementing an exemplary embodiment, it being understood that various changes may be made in the function and arrangement of elements described in an exemplary embodiment without departing from the scope of the present disclosure as set forth in the appended claims and their legal equivalents.