Joint structure for fiber reinforced resin and metal
View Patent ↗There is provided a joint structure for a fiber reinforced resin and a metal. In the joint structure, respective end portions of a fiber reinforced plastic and a metallic material are joined to each other. A large number of projections having a height that enables the projections to contact fibers constituting the fiber reinforced plastic are formed on a joint surface of the metallic material serving as a part of a joint surface between the fiber reinforced plastic and the metallic material.
1. A joint structure, comprising:
a fiber reinforced plastic comprising a resin and fibers embedded in the resin; and
a metallic material, respective end portions of the fiber reinforced plastic and the metallic material being joined to each other,
wherein the metallic material comprises a joint surface between the fiber reinforced plastic and the metallic material, the joint surface comprising a plurality of projections having a height that enables the projections to contact the fibers of the fiber reinforced plastic, and
wherein the fibers include:
a first set of equally spaced parallel fibers; and
a second set of equally spaced parallel fibers,
wherein the first set of fibers is in contact with the projections and is perpendicular to the second set of fibers,
wherein the second set of fibers is spaced from the projections and the first set of fibers, and
wherein a direction of a protrusion of the projections from the metallic material is perpendicular to each of the first and second sets of fibers.
2. The joint structure according to claim 1 , wherein a plurality of grooves is formed around each of the projections to extend radially from a center of each of the projections, and
wherein the plurality of grooves curves in an identical direction.
3. The joint structure according to claim 1 , wherein a width of each of the projections decreases as said each of the projections projects from the metallic material to terminate at the first set of fibers.
4. The joint structure according to claim 1 , wherein the projections end at a surface of the first set of fibers.
5. The joint structure according to claim 4 , wherein, in the direction of the protrusion of the projections from the metallic material, the resin in the fiber reinforced plastic is disposed on an upper surface of the second set of fibers.
6. The joint structure according to claim 5 , wherein, in the direction of the protrusion of the projections from the metallic material, each fiber of the first set of fibers is disposed above the second set of fiber, the resin being disposed on the surface of the first set of fibers.
7. The joint structure according to claim 1 , wherein an entirety of the second set of fibers is spaced apart from the projections and the first set of fibers.
8. The joint structure according to claim 1 , wherein the resin is disposed between the second set of fibers and the projections.
9. The joint structure according to claim 8 , wherein the resin is further disposed between the second set of fibers and the first set of fibers.
10. A joint structure, comprising:
a fiber reinforced plastic comprising a resin and fibers embedded in the resin; and
a metallic material comprising a joint surface between the fiber reinforced plastic and the metallic material, the joint surface comprising a plurality of projections having a height that enables the projections to contact the fibers of the fiber reinforced plastic,
wherein the fibers include:
a first set of equally spaced parallel fibers; and
a second set of equally spaced parallel fibers,
wherein the first set of fibers is in contact with the projections and is perpendicular to the second set of fibers,
wherein the second set of fibers is spaced from the projections and the first set of fiber, and
wherein a direction of a protrusion of the projections from the metallic material is perpendicular to each of the first and second sets of fibers, and
wherein the metallic material comprises:
a first portion that is in contact with the fiber reinforced plastic at a side surface of the first portion; and
a second portion protruding from the first portion into the fiber reinforced plastic in a direction orthogonal to the direction of the protrusion of the projections from the metallic material.
11. The joint structure according to claim 10 , wherein the first portion is devoid of the projections, and
wherein, in the direction of the protrusion of the projections from the metallic material, the projections protrude from a bottom surface of the second portion.
12. The joint structure according to claim 11 , wherein the metallic material further comprises:
a third portion protruding from the second portion into the fiber reinforced plastic in the direction orthogonal to the direction of the protrusion of the projections from the metallic material.
13. The joint structure according to claim 12 , wherein, in the direction of the protrusion of the projections from the metallic material, the projections protrude from a bottom surface of the third portion.
14. The joint structure according to claim 13 , wherein, in the direction of the protrusion of the projections from the metallic material, a thickness of the metallic material decreases as the metallic material extends from the first portion to the second portion, and extends from the second portion to the third portion.
15. The joint structure according to claim 14 , wherein, in the direction of the protrusion of the projections from the metallic material, a thickness of the fiber reinforced plastic increases as the fiber reinforced plastic extends from above the second portion to above the third portion.