ENERGY ABSORBER
An energy absorber includes a connecting portion provided between a protrusion and a fixing portion, and a part or all of the connecting portion is an inclined portion. When an external force is applied in a direction inclined with respect to an axis of the protrusion, the inclined portion is deformed, and the protrusion changes in direction so that its axis is aligned with the external force, and the energy absorber is crushed to absorb energy.
1 . A energy absorber provided between a vehicle door panel and a door trim covering the door panel from a passenger compartment and serving as an interior part of the passenger compartment, comprising:
a protrusion which protrudes from the door trim side toward the door panel side and has a tip capable of receiving the door panel and a base end spaced apart from a rear surface of the door trim; and
a fixing portion which is provided on an outer periphery of the base end of the protrusion and is fixable to the door trim,
wherein the base end of the protrusion and the fixing portion are connected through an annular connecting portion, and
wherein the connecting portion has an inclined portion which approaches the door trim as it moves radially inward with respect to an axis of the protrusion.
2 . The energy absorber according to claim 1 ,
wherein the connecting portion has a second inclined portion which is spaced apart from the door trim as it moves radially inward with respect to the axis of the protrusion, and
wherein the second inclined portion connects the inclined portion and the fixing portion.
3 . The energy absorber according to claim 2 ,
wherein the rear surface of the door trim has a base portion protruding toward the door panel side,
wherein the fixing portion is fixable to the base portion, and
wherein the base end of the protrusion with respect to an extension direction of the axis of the protrusion is located at the same position as a tip of the base portion.
4 . The energy absorber according to claim 2 ,
wherein the rear surface of the door trim has a base portion protruding toward the door panel side, and
wherein the base end of the protrusion with respect to the extension direction of the axis of the protrusion is closer to the door trim than a tip of the base portion.
5 . The energy absorber according to claim 3 ,
wherein a plurality of holes extending along the axis are provided in the protrusion.
6 . The energy absorber according to claim 5 ,
wherein the hole extends to the base end of the protrusion.
7 . The energy absorber according to claim 4 ,
wherein a plurality of holes extending along the axis are provided in the protrusion.
8 . The energy absorber according to claim 7 ,
wherein the hole extends to the base end of the protrusion.
9 . The energy absorber according to claim 3 ,
wherein a second connecting portion is interposed between the base end of the protrusion and the connecting portion, and
wherein the second connecting portion has an annular shape and extends in parallel to the rear surface of the door trim.
10 . The energy absorber according to claim 4 ,
wherein a second connecting portion is interposed between the base end of the protrusion and the connecting portion, and
wherein the second connecting portion has an annular shape and extends in parallel to the rear surface of the door trim.