Method for manufacturing a sheet of plastic material for the production of an equipment panel
A manufacturing method for vehicle interior panels using recycled materials addresses surface defects and odors by controlling melt flow indices and applying airflow treatment, resulting in a defect-free and odorless sheet.
Patent Information
- Authority / Receiving Office
- FR · FR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2026-04-03
AI Technical Summary
The incorporation of recycled materials into vehicle interior panels is hindered by surface defects and unpleasant odors due to impurities and volatile organic compounds, respectively, during the extrusion process of thermoplastic polyolefin (TPO) particles.
A manufacturing method that includes specific melt flow indices and hardness ranges for polyolefin particles, combined with an airflow treatment step to remove volatile compounds, results in a smooth and odor-free plastic sheet.
The method produces a sheet with reduced surface defects and eliminates unpleasant odors, making it suitable for vehicle interiors.
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Abstract
Description
Title of the invention: Method for manufacturing a sheet of plastic material for making an equipment panel
[0001] The present invention relates to a method for manufacturing a sheet of plastic material, said method comprising a hot extrusion step of thermoplastic particles, said thermoplastic particles comprising polyolefin particles selected from: thermoplastic polyolefin (TPO) particles; vulcanized thermoplastic polyolefin (TPV) particles; elastomeric thermoplastic polyolefin (TPE) particles; and a mixture of all or some of these particles; an amount of polyolefin particles being between 50% and 96% by mass relative to a total mass of thermoplastic particles, the polyolefin particles being at least partially derived from recycled materials.
[0002] The invention is particularly applicable to the production of interior equipment panels for vehicles, in particular for motor vehicles.
[0003] In order to reduce the environmental impact of vehicles, it is known to incorporate recycled materials into such panels. Document KR101946418 (D3) describes the manufacture of a composite panel incorporating TPOs derived from recycled materials.
[0004] However, the use of recycled materials presents implementation difficulties due to impurities that may remain in said materials. In particular, the extrusion of TPO from recycled materials frequently leads to sheets with surface defects, especially elongation defects.
[0005] Furthermore, recycled materials may retain traces of volatile organic compounds, which give the resulting products an unpleasant odor. It is therefore problematic to incorporate them into a vehicle interior.
[0006] The object of the invention is to provide a method for manufacturing a plastic sheet that addresses the aforementioned problems. To this end, the invention relates to a manufacturing method of the aforementioned type, wherein: where the polyolefin particles comprise thermoplastic polyolefin (TPO) particles, the melt flow index (MFI) of said thermoplastic polyolefin particles is between 0.3 g and 10 g / 10 min; where the polyolefin particles comprise vulcanized thermoplastic polyolefin (TPV) particles, the melt flow index (MFI) of said vulcanized thermoplastic polyolefin particles is between 10 g and 30 g / 10 min; and where the polyolefin particles comprise particles of thermoplastic elastomeric polyolefins (TPE), the hardness of said thermoplastic elastomeric polyolefin particles is between 45 and 65 Shore A.
[0007] Such hot melt indices or hardnesses make it possible in particular to sufficiently reduce the surface defects of the sheet obtained by extrusion.
[0008] According to other advantageous aspects of the invention, the manufacturing process comprises one or more of the following features, taken individually or in all technically possible combinations:
[0009] - before the extrusion step, the process includes a treatment step, in in which the polyolefin particles are subjected to an airflow at a temperature between 50°C and 150°C, preferably between 100°C and 120°C;
[0010] - the polyolefin particles comprise polyolefin particles thermoplastics (TPO), possibly mixed with vulcanized thermoplastic polyolefin (TPV) particles and / or elastomeric thermoplastic polyolefin (TPE) particles, the thermoplastic particles further comprise polypropylene particles, preferably at least partially derived from recycled materials, the quantity of said polypropylene particles preferably being between 5% and 40% by mass relative to a total mass of thermoplastic particles, said polypropylene particles preferably having a melt flow index between 0.5 g and 12.0 g / 10 min, and a density between 0.80 and 0.95 g / cm3;
[0011] - the thermoplastic particles further comprise polyethylene particles low-density polyethylene (LDPE), preferably at least partially derived from recycled materials, the quantity of said LDPE particles preferably being between 15% and 30% by mass relative to the total mass of thermoplastic particles, said LDPE particles preferably having a melt flow index between 0.3 g and 12.0 g / 10 min, and a density between 0.80 and 0.95 g / cm3
[0012] The invention further relates to a sheet of plastic material obtained by a process as described above.
[0013] According to one embodiment, the plastic material sheet has a thickness between 0.2 mm and 1.5 mm and / or has a density of at least 0.8 g / cm3.
[0014] The invention further relates to a vehicle equipment panel, comprising a substrate, a first support layer and a second protective layer, the first support layer being disposed between the substrate and the second protective layer, the first support layer being formed of a sheet of plastic material as described above.
[0015] According to other advantageous aspects of the invention, the manufacturing process comprises one or more of the following features, taken individually or in all technically possible combinations:
[0016] - the second protective layer has a thickness between 5 µm and 50 pm;
[0017] - the second protective layer is made of a polyurethane-type material (PU) or thermoplastic polyurethane (TPU), an acrylic, or a mixture of these compounds;
[0018] - the equipment panel further comprises: a third layer of foam polyolefin, disposed between the first support layer and the substrate; and preferably a fourth layer disposed between the third layer of polyolefin foam and the substrate, said fourth layer being made of woven or non-woven textile.
[0019] The invention will be better understood upon reading the following description, given solely by way of non-limiting example and made with reference to the drawings in which:
[0020] [Fig-1] [Fig.1] is a partial schematic view of an equipment panel according to an embodiment of the invention; and
[0021] [Fig.2] [Fig.2] is a schematic view of a step in a manufacturing process of the equipment panel of the [Fig.l].
[0022] Figure 1 shows a panel 10 of equipment according to an embodiment of the invention. The panel 10 is particularly intended to equip the interior of a vehicle, for example a motor vehicle, a train, a boat, or any other vehicle.
[0023] The motor vehicle is for example a car, a utility vehicle, a truck, etc.
[0024] The panel 10 comprises a substrate 12, a first support layer 14, and a second protective layer 16. The first support layer 14 is disposed between the substrate 12 and the second protective layer 16.
[0025] Optionally, the panel 10 further comprises a third layer 18 of polyolefin foam and / or a fourth layer 20 of textile and / or a fifth layer 22 of adhesive. In the embodiment shown, the panel 10 comprises a third 18, a fourth 20, and a fifth 22 layer. In an alternative not shown, the panel comprises only one or some of these layers.
[0026] The substrate 12 is a rigid substrate, for example made of an acrylonitrile-butadiene-styrene (ABS) type material. Alternatively, the substrate 12 is made of a natural fiber-reinforced composite material, such as natural fiber-reinforced polypropylene (NFPP).
[0027] The first support layer 14 comprises polyolefins. Said polyolefins are selected from: thermoplastic polyolefins (TPO); vulcanized thermoplastic polyolefins (TPV); elastomeric thermoplastic polyolefins (TPE); and a mixture of all or some of these polyolefins.
[0028] Said TPO and / or said TPV and / or said TPE are at least partially made from recycled materials.
[0029] A percentage of polyolefins in the first support layer 14 is between 50% and 96% by mass relative to a total mass of said first layer 14.
[0030] In the case where the polyolefins of the first support layer 14 comprise vulcanized thermoplastic polyolefins (TPV), said TPVs are for example of the EPDM rubber type.
[0031] In the case where the polyolefins of the first support layer 14 comprise thermoplastic elastomeric polyolefins (TPE), said TPEs are preferably used in the form of a mixture with TPOs and / or with TPVs.
[0032] According to one embodiment of the invention, the polyolefins of the first support layer 14 comprise TPOs, optionally mixed with TPVs and / or TPEs.
[0033] According to one embodiment, the first support layer 14 further comprises at least one polypropylene (PP). Preferably, at least one polypropylene is at least partially derived from recycled materials. The percentage of PP in the first support layer 14 is preferably between 5% and 40% by mass, more preferably between 10% and 30% by mass, relative to the total mass of said first support layer 14.
[0034] According to one embodiment, the first support layer 14 further comprises at least one low-density polyethylene (LDPE). Preferably, the at least one LDPE is at least partially made from recycled materials. The percentage of LDPE in the first support layer 14 is preferably between 15% and 30% by mass, more preferably approximately 20% by mass, relative to the total mass of said first support layer 14.
[0035] According to one embodiment, the first support layer 14 further comprises additives such as pigments or dyes, UV stabilizers, odor-absorbing components or flame retardants, in a quantity of less than 10% by mass, and preferably between 4 and 6% by mass.
[0036] According to one embodiment, the first support layer 14 further comprises materials of natural origin, such as short fibers or fillers.
[0037] Preferably, the first support layer 14 has a thickness of between 0.2 mm and 1.5 mm. Preferably, the first support layer 14 has a density of at least 0.8 g / cm3.
[0038] According to an embodiment not shown, the panel 10 comprises several first layers 14 of support as described above, superimposed one on top of the other.
[0039] The second protective layer 16 is intended to form a surface layer of the panel 10. In the embodiment shown, one face of the first support layer 14 is in contact with one face of the second protective layer 16.
[0040] Preferably, the second protective layer 16 has a thickness between 5 pm and 50 pm.
[0041] Preferably, the second protective layer 16 is formed of a polyurethane (PU) or thermoplastic polyurethane (TPU) type material, an acrylic, or a mixture of these compounds. Preferably, said material has a viscosity between 200 and 700 mPa.s (Brookfield, 25°C).
[0042] In the embodiment shown, the third layer 18 of polyolefin foam is arranged between the first support layer 14 and the substrate 12. More specifically, in the embodiment shown, one face of the first support layer 14 is in contact with one face of the third layer 18 of polyolefin foam.
[0043] Preferably, the third layer 18 of polyolefin foam is formed of a polypropylene-type material. More preferably, said material is at least partially derived from recycled materials.
[0044] Preferably, the third layer 18 of polyolefin foam has a thickness of between 0.2 mm and 2.5 mm. Preferably, the third layer 18 of polyolefin foam has a density of at least 45 kg / m³, preferably between 50 and 70 kg / m³. Preferably, the third layer 18 of polyolefin foam has a compression ratio at 25% of between 80 and 160 kPa, according to ISO 3386-1.
[0045] Preferably, the fourth textile layer 20 is made of a non-woven textile or jersey-type knit. Preferably, the fourth textile layer 20 has a thickness of between 0.2 mm and 3 mm.
[0046] In the embodiment shown, the fourth textile layer 20 is arranged between the third polyolefin foam layer 18 and the substrate 12. More precisely, in the embodiment shown, the fourth textile layer 20 is in contact with the substrate 12.
[0047] The fifth bonding layer 22 is formed of a polyurethane (PU) or thermoplastic polyurethane (TPU) type material, an acrylic, or a mixture of these compounds. Preferably, said material has a viscosity between 200 and 700 mPa.s (Brookfield, 25°C). Preferably, the fifth bonding layer 22 has a thickness between 3 pm and 10 pm, preferably about 5 pm.
[0048] In the embodiment shown, the fifth bonding layer 22 is arranged between the third polyolefin foam layer 18 and the substrate 12. More specifically, in the embodiment shown, the fifth bonding layer 22 is in contact with the third polyolefin foam layer 18 and with the fourth textile layer 20.
[0049] In an alternative not shown, the panel 10 comprises only one or the other of the fourth layer 20 of textile and the fifth layer 22 of adhesion, in contact with both the third layer 18 of polyolefin foam and the substrate 12.
[0050] Fig. 2 schematically represents a process 30 for manufacturing a sheet 32 of plastic material, said sheet 32 enabling the formation of the first support layer 14.
[0051] The process 30 includes a step 34 of hot extrusion of thermoplastic particles 36, 37, 38.
[0052] The thermoplastic particles 36, 37, 38 comprise polyolefin particles 36. The polyolefin particles 36 are selected from: thermoplastic polyolefin (TPO) particles; vulcanized thermoplastic polyolefin (TPV) particles; elastomeric thermoplastic polyolefin (TPE) particles; and a mixture of all or some of these particles.
[0053] A quantity of polyolefin particles 36 is between 50% and 96% by mass relative to a total mass of thermoplastic particles 36, 37, 38.
[0054] The thermoplastic particles 36, 37, 38 further comprise particles 37, 38 formed of other compounds forming part of the composition of the first layer 14 described above, such as polypropylenes and / or low-density polyethylenes.
[0055] The thermoplastic particles 36, 37, 38 are at least partially derived from recycled materials. In particular, the polyolefin particles 36 are at least partially derived from recycled materials.
[0056] In the case where the polyolefin particles 36 include TPO particles, the hot melt index (FMI) of said TPO particles is between 0.3 g and 10 g / 10 min, more preferably between 0.5 and 2 g / 10 min.
[0057] In the case where the polyolefin particles 36 include TPV particles, the hot melt index (FMI) of said TPV particles is between 10 g and 30 g / 10 min.
[0058] In the case where the polyolefin particles 36 comprise TPE particles, the hardness of said TPE particles is between 45 and 65 Shore A, preferably between 50 and 60 Shore A, more preferably about 55 Shore A.
[0059] In the case where the thermoplastic particles 36, 37, 38 comprise polypropylene (PP) particles 37, an amount of said polypropylene particles is preferably between 5% and 50% by mass relative to a total mass of the thermoplastic particles, and said polypropylene particles preferably have a hot melt index between 0.5 g and 12.0 g / 10 min, and a density between 0.80 and 0.95 g / cm3.
[0060] In the case where the thermoplastic particles 36, 37, 38 comprise low-density polyethylene (LDPE) particles 38, a quantity of said LDPE particles is preferably between 5% and 25% by mass relative to a total mass of the thermoplastic particles, and said LDPE particles preferably have a hot melt index between 0.3 g and 12.0 g / 10 min, and a density between 0.80 and 0.95 g / cm3.
[0061] The hot flow indices indicated above are based on measurements carried out in accordance with ISO 1133, with a 2.16 kg piston and at a temperature of 190°C.
[0062] Preferably, the hot extrusion step 34 of the thermoplastic particles 36, 37, 38 is carried out at a temperature between 150°C and 250°C, more preferably between 190°C and 220°C.
[0063] The hot flow indices specified above for particles 36, 37, 38 make it possible to obtain a sheet 32 having a smooth surface, free from elongation defects.
[0064] According to one embodiment, prior to the extrusion step 34, the process 30 includes a step 40 of processing the particles 36, 37, 38.
[0065] Preferably, during treatment step 40, the particles 36, 37, 38 are subjected to an airflow at a temperature between 90°C and 160°C, preferably between 130°C and 150°C.
[0066] Preferably, the duration of step 40 of the treatment is between 30 minutes and 180 minutes.
[0067] Such a treatment step 40 makes it possible to eliminate from the particles 36, 37, 38 certain volatile compounds remaining in said particles after the material recycling steps. The resulting sheet 32 obtained by extrusion is thus free of unpleasant odors, allowing its use in the manufacture of vehicle interior equipment.
[0068] A method for producing the equipment panel 10 from the layer 32 will now be described.
[0069] In one embodiment, the layer 32 is laminated onto a layer of polypropylene foam, a precursor of the third layer 18. The resulting assembly, as well as a Precursor film of the second protective layer 16, are vacuum-bonded to substrate 12. The equipment panel 10, described above, is thus obtained.
[0070] Optionally, the polypropylene foam layer, precursor of the third layer 18, is assembled to the fourth 20 and / or the fifth 22 layers before or after the lamination step described above.
[0071] All or part (14,16,18,20) of such a panel 10 of equipment can be recycled by grinding, without requiring a step of separating the different layers. EXAMPLES
[0072] EXAMPLE 1: Formulations
[0073] [Table 1] Table 1 shows formulations produced by hot extrusion of a mixture comprising thermoplastic polyolefin (TPO) particles 36, polypropylene (PP) particles 37, and low-density polyethylene (LDPE) particles 38 as described above. Percentages are expressed as the mass of each component relative to the total mass of the formulation. Formulation 1 Formulation 2 Formulation 3 36 (TPO) 58% 67% 86% 37 (PP) 19% 29% 10% 38 (LDPE) 19% - - additives and / or fillers 4% 4% 4%
[0074] Table 1
[0075] Preferably, the TPO particles 36 and / or the PP particles 37 and / or the LDPE particles 38 are at least partially derived from recycled materials.
[0076] Each of the formulations 1, 2 and 3 makes it possible to obtain a sheet 32 as described above, usable for the manufacture of a panel 10 as described above.
[0077] EXAMPLE 2: Particle Treatments
[0078] A batch of PP particles 37 and a batch of LDPE particles 38, at least partially derived from recycled materials, are provided for the production of formulations 1 to 3 described in Example 1 above.
[0079] Before the hot extrusion step implemented in Example 1, first samples ALI, A1.2, A1.3 from batch 37 of PP particles, as well as second samples A2.1, A2.2, A2.3 from batch 38 of LDPE particles, are subjected to the anti-odor treatment step 40: the particles are exposed to an airflow at a temperature of 145°C for 180 min.
[0080] Furthermore, control samples B 1.1, B 1.2, B 1.3 from batch 37 of PP particles, as well as control samples B2.1, B2.2, B2.3 from batch 38 of PEBD particles, are made without implementation of the anti-odor treatment.
[0081] The above samples are then subjected to an odor test according to the VDA 270 (05-2022) - 1,2,3 B protocol.
[0082] More specifically, the samples are subjected to the following conditions:
[0083] - Ai.l and Bi.l: 24 hours in water at 23°C;
[0084] - Ai.2 and Bi.2: 24 hours in water at 40°C;
[0085] - Ai.3 and Bi.3: 2 hours in dry conditions at 80°C.
[0086] The samples are evaluated by different testers, according to the following scale:
[0087] - Level 1: no perceptible odor;
[0088] - Level 2: slightly perceptible odor, not bothersome;
[0089] - Level 3: odor clearly perceptible, not bothersome;
[0090] - Level 4: unpleasant odor;
[0091] - Level 5: strongly unpleasant odor;
[0092] - Level 6: Unacceptable odor level.
[0093] [Table 2] Table 2 presents the results obtained: Treated / Control Sample Result Treated Sample Result Control Sample A1.1 / B1.1 (PP) 2 3.5 A1.2 / B1.2 (PP) 2.5 4.5 A1.3 / B1.3 (PP) 3.5 6 A2.1 / B2.1 (LDPE) 2.5 3 A2.2 / B2.2 (LDPE) 3 3.5 A2.2 / B2.1 (LDPE) 3 4.5
[0094] Table 2
[0095] Regardless of the conditions chosen for the odor test, the above results show that the odor-control treatment is effective in bringing the PP particles 37 and the LDPE particles 38 to an odor level acceptable for use in an interior equipment panel for a motor vehicle.
Claims
Demands
1. A method (30) for manufacturing a sheet (32) of plastic material, said method comprising a step (34) of hot extrusion of thermoplastic particles (36, 37, 38), said thermoplastic particles comprising polyolefin particles (36), said polyolefin particles being selected from: thermoplastic polyolefin (TPO) particles; vulcanized thermoplastic polyolefin (TPV) particles; elastomeric thermoplastic polyolefin (TPE) particles; and a mixture of all or some of these particles;a quantity of polyolefin particles (36) being between 50% and 96% by mass relative to a total mass of thermoplastic particles (36, 37, 38), the polyolefin particles (36) being at least partially derived from recycled materials, the process being characterized in that: - in the case where the polyolefin particles (36) comprise thermoplastic polyolefin particles (TPO), the melt flow index (MFI) of said thermoplastic polyolefin particles is between 0.3 g and 10 g / 10 min; - in the case where the polyolefin particles (36) comprise vulcanized thermoplastic polyolefin particles (TPV), the melt flow index (MFI) of said vulcanized thermoplastic polyolefin particles is between 10 g and 30 g / 10 min;and - in the case where the polyolefin particles (36) comprise elastomeric thermoplastic polyolefin (TPE) particles, the hardness of said elastomeric thermoplastic polyolefin particles is between 45 and 65 Shore A.;
2. A process according to claim 1, wherein, prior to the extrusion step (34), the process comprises a treatment step (40), in which the polyolefin particles (36), and preferably the thermoplastic particles (36, 37, 38), are subjected to an airflow at a temperature between 50°C and 150°C, preferably between 100°C and 120°C.
3. A method according to claim 1 or 2, wherein the polyolefin particles (36) comprise polyolefin particles thermoplastics (TPO), possibly mixed with vulcanized thermoplastic polyolefin (TPV) particles and / or elastomeric thermoplastic polyolefin (TPE) particles.
4. A process according to any one of the preceding claims, wherein the thermoplastic particles (36, 37, 38) further comprise polypropylene (PP) particles (37), preferably at least partially derived from recycled materials, an amount of said polypropylene particles preferably being between 5% and 40% by mass relative to a total mass of the thermoplastic particles, said polypropylene particles preferably having a melt flow index of between 0.5 g and 12.0 g / 10 min, and a density of between 0.80 and 0.95 g / cm3.
5. A process according to any one of the preceding claims, wherein the thermoplastic particles (36, 37, 38) further comprise particles (38) of low-density polyethylene (LDPE), preferably at least partially derived from recycled materials, an amount of said LDPE particles preferably being between 15% and 30% by mass relative to a total mass of the thermoplastic particles, said LDPE particles preferably having a melt flow index of between 0.3 g and 12.0 g / 10 min, and a density of between 0.80 and 0.95 g / cm3.
6. Sheet (32) of plastic material obtained by a process according to any one of the preceding claims.
7. A sheet (32) of plastic material according to claim 6, having a thickness between 0.2 mm and 1.5 mm and / or having a density of at least 0.8 g / cm3.
8. Vehicle equipment panel (10), comprising a substrate (12), a first support layer (14) and a second protective layer (16), the first support layer (14) being disposed between the substrate (12) and the second protective layer (16), the first support layer (14) being formed of a sheet (32) of plastic material according to any one of claims 6 or 7.
9. Equipment panel (10) according to claim 8, wherein the second protective layer (16) has a thickness between 5 pm and 50 pm.
10. Equipment panel (10) according to the preceding claim, wherein the second protective layer (16) is formed of a polyurethane (PU) or thermoplastic polyurethane (TPU) type material, an acrylic, or a mixture of these compounds.
11. Equipment panel (10) according to any one of claims 8 to 10, further comprising: a third layer (18) of polyolefin foam, disposed between the first support layer (14) and the substrate (12); and preferably a fourth layer (20) disposed between the third layer (18) of polyolefin foam and the substrate (12), said fourth layer being made of woven or non-woven textile.
Citation Information
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