EP4015201A2

Process for the production of a non-pneumatic tire

Abstract

In one aspect, the present invention is directed to a process for the production of a non-pneumatic tire comprising a structure and a shear band, wherein the process comprises the steps of providing a structure having a surface intended to be brought into contact with a shear band, the structure comprising a thermoplastic material; pretreating the surface of the structure to obtain a pretreated surface; providing an atmospheric pressure plasma generated from a gas mixture; depositing a plasma polymerized coating layer from the atmospheric pressure plasma on the pretreated surface to produce a structure with a coated surface comprising a plasma polymerized coating layer; providing a shear band with a layer of rubber material and contacting the coated surface of the structure with said layer of rubber material; and performing a co-vulcanization of the coated surface of the structure with the layer of rubber material of the shear band.

EP4015201A2, drawing sheet 1
Sheet 1 of 8

Term

15.2 yearsto projected expiry

Projected expiry 6 December 2041, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

15 claims: 13 independent, 2 dependent

  1. 1
    A process for the production of a non-pneumatic tire (29) comprising a structure and a shear band (39), wherein the process comprises the steps of:providing a structure (33) having a surface intended to be put in contact with a shear band (39) wherein the structure (33) comprises a thermoplastic material;pretreating the surface of the structure (33) to obtain a pretreated surface;providing an atmospheric pressure plasma generated from a gas mixture;depositing a plasma polymerized coating layer from the atmospheric pressure plasma on the pretreated surface to produce a structure (33) with a coated surface comprising a plasma polymerized coating layer;providing a shear band (39) with a layer of rubber material (41) and contacting the coated surface of the structure (33) with said layer of rubber material (41);and co-vulcanizing the coated surface of the structure (33) with the layer of rubber material (41) of the shear band (39).
  2. 4
    The process according to one or more of the preceding claims, wherein the thermoplastic material comprises at least one polyester-based thermoplastic elastomer having one or more of:a Shore D Hardness ranging from 30 to 85 as determined by ISO 868;a tensile modulus of at least 200 MPa as determined by ISO 527-1/-2;and a melt flow rate ranging from 1 to 50 g / 10 min as determined by ISO 1133 (230°C - 2.16 kg).
  3. 5
    The process according to one or more of the preceding claims, wherein the step of pretreating includes:a sub-step of roughening the surface, optionally followed by one or more sub-steps selected from solvent cleaning and air plasma activation;and/or a sub-step of air plasma activation, wherein the step of depositing a plasma polymerized coating layer from the atmospheric pressure plasma is performed at most 30 min after performing the sub-step of air plasma activation.
  4. 6
    The process according to one or more of the preceding claims, wherein the step of depositing a plasma polymerized coating layer from the atmospheric pressure plasma is performed using an atmospheric pressure plasma system (1) comprising a nozzle (11), with one or more of:a nozzle displacement velocity ranging from 1 to 20 m/min;a nozzle offset ranging from 1 to 10 mm;a gap between the nozzle and the pretreated surface ranging from 0.1 to 5 mm;a number of plasma coating passes ranging from 1 to 5.
  5. 7
    The process according to one or more of the preceding claims, wherein the step of depositing a plasma polymerized coating layer from the atmospheric pressure plasma is performed using an atmospheric pressure plasma system having a nozzle comprising a cylindrical body having a longitudinal axis and a bottom end, the body comprising a conical inlet coaxial with the longitudinal axis for receiving a plasma, a radial inlet for receiving a precursor material, a core outlet coaxial with the longitudinal axis for receiving plasma from the conical inlet and a toroidal outlet for receiving the precursor material from the radial inlet, wherein an inner sidewall of the toroidal outlet extends only a part of the way to the bottom end of the nozzle, and an outer sidewall of the toroidal outlet extends to the bottom end of the nozzle.
  6. 8
    The process according to one or more of the preceding claims, wherein the gas mixture comprises a carrier gas and a precursor comprising one or more sulfur-containing compounds.
  7. 9
    The process according to one or more of the preceding claims, wherein the structure (33) is made of a composite material comprising a thermoplastic material and one or more fillers, and wherein the composite material is comprising at least 30 weight percent of thermoplastic material based on the total weight of the composite material;and/or wherein the structure comprises a surface layer made of the thermoplastic material or of a composite material comprising the thermoplastic material wherein the surface layer is the surface intended to be put in contact with a shear band.
  8. 10
    The process according to one or more of the preceding claims, wherein the rubber material comprises one or more diene-based elastomers selected from a styrene butadiene rubber, a polybutadiene rubber, a natural rubber, a synthetic polyisoprene rubber or combinations thereof;and/or wherein the rubber material is a rubber composition comprising at least 25 phr of natural rubber.
  9. 11
    The process according to one or more of the preceding claims, wherein the step of co-vulcanizing the coated surface of the structure (33) with the layer of rubber material of the shear band (39) is carried out at a temperature of at least 120°C and for a time of at least 20 minutes.
  10. 12
    The process according to one or more of the preceding claims, comprising a sub-step of cleaning the surface which is performed with a polar solvent.
  11. 13
    The process according to one or more of the preceding claims, wherein the structure (3) comprises one or more annular strips forming one or more outer cylinders, the one or more outer cylinders being connected to an inner cylinder through a connecting structure comprising a plurality of connecting reinforcement members, and wherein the outside surface of one or more of the outer cylinders in the tire radial direction is the surface intended to be put in contact with the shear band (39).
  12. 14
    The process according to one or more of the preceding claims, wherein the process is devoid of a step of application of a polyisocyanate adhesive.
  13. 15
    A process for the co-vulcanization of i) a structure comprising a plate or a strip comprising a thermoplastic material with ii) a rubber material, which is preferably a part of a tire, wherein the process comprises the steps of:providing a structure comprising a plate or a strip with a surface intended to be submitted to co-vulcanization, wherein the plate or the strip comprises a thermoplastic material that is selected from one or more of thermoplastic elastomers, polyamides, polyesters, polyketones, polyurethanes, and polyaramids;pretreating the surface of the plate or the strip to obtain a pretreated surface, wherein the step of pretreating comprises a sub-step of roughening the surface, a sub-step of air plasma activation or a combination of those;providing an atmospheric pressure plasma generated from a gas mixture, wherein the gas mixture comprises a carrier gas and a precursor comprising one or more sulfur-containing compounds and optionally an alkyne;depositing a plasma polymerized coating layer from the atmospheric pressure plasma on the pretreated surface to produce a plate or a strip with a coated surface comprising a plasma polymerized coating layer;providing a rubber material comprising a diene-based elastomer and contacting a layer of said rubber material with the coated surface of the plate or the strip;and performing a co-vulcanization of the plate or the strip with the rubber material, optionally at a temperature of at least 120°C and for a time of at least 20 minutes.