A smart card is constituted by a card body made of a first material that is integral with a support made of a second material. The body is overmoulded on the surface of the support such that the card is made integral therewith by local bonding of the first and second materials.
1. A smart card comprising a card body made of a first material and having a predetermined size format, said card body being overmoulded on the surface of a support made of a second material and having a size larger than said predetermined size format, so that said card body is made integral therewith by local welding of said first and second materials, wherein said support is made of a material chosen from paper and biodegradable materials.
2. A card according to claim 1 , wherein said card body is detachable from said support.
3. A card according to claim 1 , wherein said card comprises a mini-card.
4. A card according to claim 3 , wherein said mini-card comprises a SIM mini card.
5. A method of manufacturing a card comprising a card body made of a first material and having a predetermined size format, and a support made of a second material and having a size larger than said predetermined size format, wherein said first and second materials are distinct plastic materials, comprising the step of overmolding said card body on said support at a temperature higher than the respective vitreous transition temperatures of said materials and close to the transformation temperature of said second material.
6. A method according to claim 5 , wherein each of said materials has a transformation temperature approximately 150° C. higher than the vitreous transition temperature of the material.
7. A method of manufacturing a card comprising a card body made of a first material and a support made of a second material, wherein said first and second materials are identical plastic materials, comprising the step of overmolding said card body on said support at a temperature at least 100° C. higher than the vitreous transition temperature of said materials.
8. A method according to claim 7 , wherein each of said materials has a transformation temperature approximately 150° C. higher than the vitreous transition temperature of the material.