Apparatus and Method for the Manufacture of Noodles
20240342743 ยท 2024-10-17
Inventors
- Robert Samuel Wilson (Belfast, GB)
- Mark Braniff (Belfast, GB)
- Alan Moore (Belfast, GB)
- Zacharias Kakaratsios (Ayrshire, GB)
Cpc classification
B05C11/025
PERFORMING OPERATIONS; TRANSPORTING
B29K2311/14
PERFORMING OPERATIONS; TRANSPORTING
B29K2705/00
PERFORMING OPERATIONS; TRANSPORTING
B29K2105/0854
PERFORMING OPERATIONS; TRANSPORTING
B29C48/02
PERFORMING OPERATIONS; TRANSPORTING
B29C2043/3438
PERFORMING OPERATIONS; TRANSPORTING
B05C5/0216
PERFORMING OPERATIONS; TRANSPORTING
B29C33/0055
PERFORMING OPERATIONS; TRANSPORTING
B29C48/002
PERFORMING OPERATIONS; TRANSPORTING
B29C48/92
PERFORMING OPERATIONS; TRANSPORTING
B29K2311/10
PERFORMING OPERATIONS; TRANSPORTING
B29C48/266
PERFORMING OPERATIONS; TRANSPORTING
B29D99/0005
PERFORMING OPERATIONS; TRANSPORTING
B29C43/34
PERFORMING OPERATIONS; TRANSPORTING
B29K2105/12
PERFORMING OPERATIONS; TRANSPORTING
International classification
B05C5/02
PERFORMING OPERATIONS; TRANSPORTING
B05C11/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An apparatus (2) for forming a noodle (20) within an elongate groove (14) of a product is provided comprising an extrusion system comprising at least one extruder nozzle (4) through which noodle material (16) is extruded, at least one levelling device (6) adjacent the extruder nozzle (4) which levels the noodle material (16), and a gantry system which moves the extruder nozzle (4) and the levelling device (6) along the elongate product groove (14), such that noodle material (16) is extruded along the product groove (14) and is levelled to form at least part of the noodle (20) within the product groove (14).
Claims
1-20. (canceled)
21. An apparatus for forming a noodle within an elongate groove of a product comprising: an extrusion system comprising at least one extruder nozzle through which noodle material is extruded, at least one levelling device adjacent the extruder nozzle which levels the noodle material, and a gantry system which moves the extruder nozzle and the levelling device along the elongate product groove, such that noodle material is extruded along the product groove and is levelled to form at least part of the noodle within the product groove.
22. An apparatus according to claim 21 in which the extruder nozzle extrudes noodle material along the product groove and the levelling device levels the noodle material to fill the product groove to form a noodle filling the product groove.
23. An apparatus according to claim 21 in which the levelling device comprises any of a L-shaped smoothing plate, a roller, a smoothing head integrated with the extruder nozzle.
24. An apparatus according to claim 21 comprising a heater which heats a first part of the levelling device proximate the extruder nozzle to control viscosity of the noodle material.
25. An apparatus according to claim 21 comprising a cooler which cools a second part of the levelling device proximate an end of the device to solidify the noodle material.
26. An apparatus according to claim 21 comprising a noodle material regulation system which regulates noodle material extrusion deposition rate into the product groove by regulating one or more operational parameters of the apparatus, using feedback from a noodle measurement system.
27. An apparatus according to claim 21 comprising a veil insertion system which inserts a veil between the noodle material and the product groove.
28. An apparatus according to claim 27 in which the veil comprises at least one non-woven material comprising any of a glass fibre material, an E glass fibre material, a carbon fibre material, a nickel-coated carbon fibre material, a copper and nickel-coated carbon fibre material.
29. An apparatus according to claim 27 in which the veil comprises at least one thermoplastics material comprising any of polyester, aramid, polyethylene terephthalate, polyphenylene sulphide, polyamide-12, polyamide, polyimide, PEEK, PPS, PEI.
30. An apparatus according to claim 27 in which the veil comprises at least one nano-sized material comprising a carbon-based non-woven sheet material consisting of carbon nanotubes.
31. An apparatus according to claim 21 further comprising a noodle embossing system which embosses an outer surface of the noodle.
32. An apparatus according to claim 21 further comprising a lead insertion system which inserts a lead within the noodle material.
33. An apparatus according to claim 21 comprising: a first extruder nozzle through which noodle material for a first noodle outer section of a hollow noodle is extruded along a base of the product groove and a first levelling device adjacent the first extruder nozzle which levels the noodle material in the base of the product groove, a second extruder nozzle through which, after placement of a noodle inner section of the hollow noodle in the product groove, noodle material for a second noodle outer section of the hollow noodle is extruded along a first groove located at a first corner of the noodle inner section and a second levelling device adjacent the second extruder nozzle which levels the noodle material in the first groove, and a third extruder nozzle through which, after placement of the noodle inner section in the product groove, noodle material for a third noodle outer section of the hollow noodle is extruded along a second groove located at a second corner of the noodle inner section and a third levelling device adjacent the third extruder nozzle which levels the noodle material in the second groove.
34. An apparatus according to claim 21 comprising: a first extruder nozzle through which noodle material for a first side of a hollow noodle is extruded, a second extruder nozzle through which noodle material for a second side of the hollow noodle is extruded, wherein, after suspension of a mandrel along the product groove, the first and second extruder nozzles simultaneously extrude noodle material along the product groove around first and second sides of the mandrel to form the first and second sides of the hollow noodle.
35. An apparatus according to claim 21 comprising: a first extruder nozzle through which noodle material for a first side of a hollow noodle is extruded, a second extruder nozzle through which noodle material for a second side of the hollow noodle is extruded, a third extruder nozzle through which noodle material for a third side of the hollow noodle is extruded, and a levelling device adjacent the third extruder nozzle which levels the noodle material for the third side of the hollow noodle, wherein, after suspension of a mandrel along the product groove, the first, second and third extruder nozzles simultaneously extrude noodle material along the product groove to surround the mandrel and form the first, second and third sides of the hollow noodle.
36. An apparatus according to claim 21 comprising a noodle termination system comprising a dam block positioned at an end of the noodle path and a control system to determine when the noodle material reaches a predetermined distance from the dam block and cause the extrusion system to deliver a predetermined charge of noodle material into the product groove from the predetermined distance to the dam block.
37. An apparatus according to claim 21 comprising a noodle termination system comprising a fill block positioned at an end of the noodle path having a groove into which surplus noodle material is extruded beyond the end of the noodle.
38. An apparatus according to claim 21 in which the noodle material comprises a thermoplastic material comprising any of acrylonitrile butadiene styrene, polyethersulfone, polycarbonate, polysulfone, thermoplastic polyurethane, polyetherimide, polyphthalamide, polyamide, polyphenylene sulphide, polyethylene terephthalate glycol, polyaryletherketone.
39. An apparatus according to claim 21 in which the noodle material comprises reinforcing fibres comprising any of carbon fibres typically up to 25%, glass fibres typically up to 20%, cork fibres, wood pulp fibres.
40. A method of manufacturing a noodle within an elongate groove of a product comprising: using an extrusion system comprising at least one extruder nozzle to extrude noodle material therethrough; using at least one levelling device adjacent the extruder nozzle to level the noodle material, and using a gantry system to move the extruder nozzle and the levelling device along the elongate product groove, such that noodle material is extruded along the product groove and is levelled to form at least part of the noodle within the product groove.
Description
DESCRIPTION OF THE FIGURES
[0087] Embodiments of the disclosure will now be described, by way of example only, with reference to the following Figures in which:
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DETAILED DESCRIPTION
[0103] In the aerospace industry, noodles are used to fill gaps between multi-component products.
[0104] Referring to
[0105] The extrusion system comprises a hopper (not shown) containing noodle material and a screw extruder head (not shown) connected to the hopper which pushes the noodle material through the extruder nozzle 4. Components of the noodle material, comprising, for example, thermoplastic granules and a filler, are fed into the hopper, heated and using the revolving screw extruder head, mixed to form a thermoplastic noodle material.
[0106] The gantry system moves the extruder nozzle 4 along an elongate product groove 14 (noodle cavity) and the noodle material 16 is extruded into the groove 14.
[0107] The gantry system also moves the levelling device 6, comprising an L-shaped smoothing plate 18, along the elongate product groove 14. The L-shaped smoothing plate 18 levels the noodle material 16, providing height control of the material, to fill the product groove 14 to form a noodle 20 which fills the product groove 14. The heater 8 heats a first part of the L-shaped smoothing plate 6 proximate the extruder nozzle 4. This controls viscosity of the noodle material 16 as it is extruded. The cooler 10 cools a second part of the L-shaped smoothing plate 6 proximate an end of the plate. This solidifies the noodle material 16 after it has been extruded.
[0108] Referring to
[0109] The gantry system moves the extruder nozzle 4 along an elongate product groove 14 (noodle cavity) and the noodle material 16 is extruded into the groove 14. The gantry system also moves the first and second rollers 22, 24 along the elongate product groove 14 which level the noodle material 16, providing height control of the material, to fill the product groove 14 to form a noodle 20 which fills the product groove 14. The heater 8 heats the first roller 22 proximate the extruder nozzle 4. This controls viscosity of the noodle material 16 as it is extruded. The cooler 10 cools the second roller 24 proximate an end of the levelling device. This solidifies the noodle material 16 after it has been extruded.
[0110] The heater of each embodiment may comprise any of an induction heater, a laser, an infra-red heater, a gas discharge flash lamp, an electrical resistance heater. The cooler of each embodiment may comprise any of a circulating dry chilled air cooler, a circulating chilled fluid cooler, a Peltier effect cooler.
[0111] Referring to
[0112] The gantry system moves the extruder nozzle 4 along an elongate product groove 14 (noodle cavity) and the noodle material 16 is extruded into the groove 14. The gantry system also moves the smoothing head 26 along the elongate product groove 14 which levels the noodle material 16, providing height control of the material, to fill the product groove 14 to form a noodle 20 which fills the product groove 14.
[0113] The apparatus 2 of
[0114] Referring to
[0115] The noodle material regulation systems 12 use feedback from the non-contact and contact measurement devices 28, 30 of the noodle measurement systems to regulate noodle material extrusion deposition rate. In these embodiments, the noodle material extrusion deposition rate is regulated such that product groove is filled with noodle material. The noodle material regulation system regulates the noodle material deposition rate by regulating one or more operational parameters of the apparatus 2. The operational parameters may be any of hopper temperature, extruder head speed, gantry linear speed. For example, if the noodle material deposition rate is too high, this may be regulated by either decreasing the extruder head speed or increasing the gantry linear speed.
[0116] Referring to
[0117] After insertion of the veil 34, there may be extra veil material protruding from each side of the groove 14. This could be left in place to facilitate the injection of resin for the product under the noodle material 16. Alternatively, the apparatus 2 may comprise a trimmer (not shown) which trims veil material protruding from one or more sides of the product groove 14. The trimmer may trim the veil material prior to or after noodle material extrusion. The trimmer may comprise any of a heated wire, a rotary pizza-style cutter.
[0118] The veil may comprise a light-weight material. The light weight material may be any of a light weight woven fabric or a light weight non-woven fabric. The veil made have a weight within a range from 2 g/m.sup.2 up to 400 g/m.sup.2, for example from 17 g/m.sup.2 to 25 g/m.sup.2. The weight can be tailored to suit the application requirements of the veil.
[0119] The veil may comprise at least one woven material. The veil may comprise at least one non-woven material. The non-woven material may be produced by any of fibre weaving, fibre knitting. The non-woven material may comprise non woven fabrics consisting of randomly dispersed or matted fibres. The non-woven material may comprise any of a glass fibre material, an E glass fibre material, a carbon fibre material, a nickel-coated carbon fibre material, a copper and nickel-coated carbon fibre material.
[0120] The veil 34 may comprise at least one non-woven material. The non-woven material may comprise any of a glass fibre material, an E glass fibre material, a carbon fibre material, a nickel-coated carbon fibre material, a copper and nickel-coated carbon fibre material. The veil may comprise at least one thermoplastics material. The thermoplastics material may comprise any of polyester, aramid, polyethylene terephthalate (PET), polyphenylene sulphide (PPS), polyamide-12 (PA), polyamide, polyimide, PEEK, PPS, PEI. The veil may comprise at least one nano-sized material. The nano-sized material may comprise a carbon-based non-woven sheet material consisting of carbon nanotubes (CNTs). The CNTs may be any of single-walled carbon nanotubes (SWCNTs), multi-walled carbon nanotubes (MWCNTs). The CNTs may be made using one or sheets of graphene.
[0121] The veil 34 may be used to isolate the product from extreme parameters, such as temperature and pressure, occurring during noodle material extrusion. The veil 34 may also be used to address potential reduction in resin flow paths around the noodle, created if the noodle material insertion pressures are excessive and restrict resin flow path. The veil 34 may also be used if the chosen noodle material is not fully compatible with a resin used in the product. The use of a carbon fibre material for the veil 34 will locally increase the percentage of carbon fibre at the periphery of the noodle, relieving stresses locally and concentrating their effect away from structural components of the product.
[0122] Referring to
[0123] Referring to
[0124] The apparatus 2 comprises a heater 52 disposed adjacent a portion of the lead 46 for heating the lead. This will facilitate flow of noodle material 16 around the lead 46. This is especially important for high viscosity noodle material options.
[0125] The apparatus may provide a sheath (not shown) for a portion of the lead approximate an outer end of the product groove. This will protect the portion of the lead from product resin ingress. The lead 46 may be any of a circuit return ground lead, a bonding lead, an insulated power lead. The lead 46 may be specifically tailored to meet the demands of its the application. The lead may have various cross-sectional areas and lengths.
[0126] The lead 46 may comprise any of a braid, a rope, a twisted rope. The lead 46 may comprise insulation such as a thermoplastic insulation coating. The lead 46 may comprise at least one identification element. The lead 46 may comprise at least one termination element. The lead has to be terminated outside the EOP of the product to create a wire tail and facilitate simplified electrical connection to the lead. In this case a preferred noodle termination system (see below) is use of a dam block positioned at an end of the noodle path with an access notch in the dam block to accommodate the lead. The lead 46 may comprise a material comprising any of copper, tin-plated copper, nickel plated copper, silver plated copper, aluminium, stainless steel, nickel. The lead 46 may comprise a tin-plated copper material having an operating temperature in the range ?65? C. to +150? C., or a nickel-plated copper material having an operating temperature in the range ?65? C. to +260? C., or an insulated copper material having an operating temperature in the range ?40? C. to +135? C.
[0127] Referring to
[0128] Referring to
[0129] The apparatus 2 comprises: [0130] a first extruder nozzle 82 through which noodle material 16 for the first noodle outer section 72 of the hollow noodle 70 is extruded along a base of the product groove 14 and a first levelling device (not shown) adjacent the first extruder nozzle 82 which levels the noodle material 16 in the base of the product groove 14, [0131] a second extruder nozzle 84 through which, after placement of the noodle inner section 74 of the hollow noodle 70 in the product groove 14, noodle material 16 for the second noodle outer section 76 of the hollow noodle 70 is extruded along a first groove 86 located at a first corner of the noodle inner section 74 and a second levelling device (not shown) adjacent the second extruder nozzle 84 which levels the noodle material 16 in the first groove 86, and [0132] a third extruder nozzle 88 through which, after placement of the noodle inner section 74 in the product groove 14, noodle material 16 for the third noodle outer section 78 of the hollow noodle 70 is extruded along a second groove 90 located at a second corner of the noodle inner section 74 and a third levelling device (not shown) adjacent the third extruder nozzle 88 which levels the noodle material 16 in the second groove 90.
[0133] The second extruder nozzle 84 and the third extruder nozzle 88 preferably simultaneously extrude noodle material 16 along the first and second grooves 86, 90. The apparatus 2 may comprise a pick and place mechanism (not shown) which places the noodle inner section 74 in the product groove 14. Alternatively, the noodle inner section 74 may be manually placed in the product groove 14. A mandrel (not shown) may be placed within the hollow noodle inner section 74.
[0134] The noodle inner section 74 is hollow and therefore has a weight which is much less than that of a similar volume of noodle material. The first, second and third noodle outer sections 72, 76, 78, comprising noodle material 16, are significantly reduced in size thus reducing the noodle material used. Thus the overall weight of the noodle 70 is reduced which reduces the weight of the noodle 70 in the product.
[0135] Referring to
[0136] The apparatus 2 comprises: [0137] a first extruder nozzle 102 through which noodle material 16 for the first side 98 of the hollow noodle 96 is extruded, [0138] a second extruder nozzle 104 through which noodle material 16 for the second side 100 of the hollow noodle 96 is extruded, [0139] wherein, after suspension of a mandrel 106 along the product groove 14, the first and second extruder nozzles 102, 104 simultaneously extrude noodle material 16 along the product groove 14 around first and second sides of the mandrel to form the first and second sides 98, 100 of the hollow noodle 96.
[0140] The apparatus 2 comprises a heater (not shown) which heats the mandrel 106 proximate the extruder nozzles 102, 104. This will facilitate flow of the noodle material 16 around the mandrel 106.
[0141] Referring to
[0142] The apparatus 2 comprises: [0143] a first extruder nozzle 128 through which noodle material 16 for the first side 122 of the hollow noodle 120 is extruded, [0144] a second extruder nozzle 130 through which noodle material 16 for the second side 124 of the hollow noodle 1200 is extruded, [0145] a third extruder nozzle 132 through which noodle material 16 for the third side 126 of the hollow noodle 120 is extruded, and [0146] a levelling device (not shown) adjacent the third extruder nozzle 132 which levels the noodle material 16 for the third side 126 of the hollow noodle 120, [0147] wherein, after suspension of a mandrel 134 along the product groove 14, the first, second and third extruder nozzles 128, 130, 132 simultaneously extrude noodle material 16 along the product groove 14 to surround the mandrel and form the first, second and third sides 122, 124, 126 of the hollow noodle 120.
[0148] The apparatus 2 comprises a heater (not shown) which heats the mandrel 134 proximate the extruder nozzles 128, 130, 132. This facilitates flow of the noodle material 16 around the mandrel 134.
[0149] The mandrels used above may comprise any of a metallic material, a polymeric material, a soluble polymeric material, a eutectic salt soluble material. The metallic material and the polymeric material may have high Cte properties. The soluble polymeric material and the eutectic salt soluble material facilitate removal of the mandrel by washing-out.
[0150] Referring to
[0151] Referring to
[0152] In the majority of cases the noodle 20 will be securely tacked in position in the product groove 14, the tacking being activated by the heat and pressure of the noodle material. However on the rare case where, depending on the noodle material used and/or low noodle material temperature and pressure, there is a risk that the noodle 20 will fall out of the product groove 14 when the product is turned. The apparatus 2 may comprise at least one noodle fixing device (not shown) which holds the noodle 20 in place on turning of the product. The noodle fixing device may comprise a grooved block and a clamp plate or tags.
[0153] Referring to
[0154] The noodle material preferably has a higher melting temperature than an infusion temperature and/or a cure temperature of a resin material used in the product. This will limit risks of geometric change of the product.
[0155] The noodle material is preferably compatible with a resin material used in the product. This will provide sufficient bonding strength between the noodle material and the resin material. In typical commercial aerospace requirements, a polyetherimide (PEI) noodle material has been shown to be compatible with epoxy thermoset resins.
[0156] The noodle material preferably has comparable or higher yield strength than a transverse tensile strength of a resin material used in the product.
[0157] The noodle material may comprise a thermoplastic material. The thermoplastic noodle material may comprise any of acrylonitrile butadiene styrene (ABS), polyethersulfone (PESU), polycarbonate (PC), polysulfone (PSU), thermoplastic polyurethane (TPU), polyetherimide (PEI), polyphthalamide (PPA), polyamide (PA), polyphenylene sulphide (PPS), polyethylene terephthalate glycol (PETG), polyaryletherketone (PAEK).
[0158] The noodle material may comprise reinforcing fibres. This will provide optimum structural properties (weight) and compatibility with the product. The noodle reinforcing fibres may be any of carbon fibres typically up to 25%, glass fibres typically up to 20%, cork fibres, wood pulp fibres. The noodle material may comprise a light weight filler.
[0159] The noodle material may comprise a 3D printed cork and thermoplastic polyurethane composite material. The thermoplastic polyurethane may have a specific gravity of 1.18 g.cm.sup.?3, a hardness of 95 (shore D) and a tensile strength of 42 MPa. The cork may have a granulometry inferior to 0.25 mm, a thermal conductivity of 0.045 W.m.sup.?1.K.sup.?1, a density of 120-240 kg.m.sup.?3 and a thermal diffusivity of 1?10.sup.?6 m.sup.2.s.sup.?1. The noodle material may comprise a 3D microsphere filler and thermoplastic polyurethane foam material. Noodle reinforced thermoplastic material: [0160] has a high viscosity which will not bleed or drain into the product and therefore not block resin fill paths for the product. [0161] does not cure, therefore after placement within the product, it will not age or constrain the time within which resin filling of the product has to occur. [0162] if embossed, the embossed pattern will remain in place to facilitate resin filling of the product. [0163] has a compatible Cte with the product after lamination [0164] can enhance damage tolerance of preformed laminate. [0165] avoids the need for filling the noodle with thermoset resin.
[0166] The noodle material may comprise a sheet moulding compound (SMC). The SMC may comprise a combination of fibre reinforcement and a themoset material. The fibre reinforcement may comprise any of glass fibre, carbon fibre. The thermoset material may comprise any of polyester, vinyl ester, epoxy. Short strand fibres may be matted together with an uncured thermoset material.
[0167] The noodle material preferably has a higher melting temperature than an infusion temperature and/or a cure temperature of a resin material used in the product. This will limit risks of geometric change of the product.
[0168] The noodle material is preferably compatible with a resin material used in the product. This will provide sufficient bonding strength between the noodle material and the resin material. In typical commercial aerospace requirements, a polyetherimide (PEI) noodle material has been shown to be compatible with epoxy thermoset resins.
[0169] Components of the noodle material may be fed into the hopper of the extrusion system, heated and mixed to form the noodle material.