PERFORMANCE ADAPTIVE TIRES UTILIZING ACTIVE MATERIAL ACTUATION
An adaptive tire employable by a vehicle traveling upon a surface includes at least one active material element operable to selectively modify a structural component of the tire, and as a result a performance characteristic, such as the traction between the tire and surface, the ability for the tire to dampen standing waves, or the required mounting force, when activated.
1 . A tire employable by a vehicle traveling upon a surface, and adapted to selectively enhance a performance characteristic, said tire comprising:
a first structural component configured to engage the surface along a face, wherein the component presents a first performance characteristic value; and
at least one active material element inter-engaged with, and operable to modify the component, so as to modify the performance characteristic to a second value when activated.
2 . The tire as claimed in claim 1 , wherein the element is formed of an active material selected from the group consisting essentially of shape memory alloys, electroactive polymers, piezoelectrics, and magnetostrictives.
3 . The tire as claimed in claim 1 , wherein the active material element is formed of a shape memory alloy and presents a geometric shape selected from the group consisting essentially of wires, strips, sheets, meshes, weaves, braids, cables, hoops, and discrete segments thereof.
4 . The tire as claimed in claim 1 , further comprising:
a signal source operable to produce an activation signal sufficient to activate the element; and
an input device communicatively coupled to the source, and operable to receive an input and cause the element to be activated when the input is received.
5 . The tire as claimed in claim 4 , further comprising:
a controller communicatively coupled to the source, element, and device, and configured to cause the element to become activated when the input is received,
said device is a sensor, and the input is a detected condition.
6 . The tire as claimed in claim 1 , wherein the tire defines an interior periphery, the component is a bead defined along the periphery, and the bead includes the element, and presents a first radial stiffness when the element is activated and a second radial stiffness when the element is deactivated.
7 . The tire as claimed in claim 6 , wherein the element is formed of Austenitic shape memory alloy, and the first stiffness is less than the second.
8 . The tire as claimed in claim 6 , wherein the element is formed of Martensitic shape memory alloy, and the first stiffness is greater than the second.
9 . The tire as claimed in claim 1 , wherein the component includes first and second opposite sidewalls interconnected by a treadwall, the element is a shape memory material presenting a hoop segment extending within the sidewalls and treadwall, and configured to reduce standing waves in the component when activated.
10 . The tire as claimed in claim 1 , the element is made of shape memory material and presents a band operable to reduce standing waves in the component when activated.
11 . The tire as claimed in claim 10 , wherein the component is a sidewall presenting a first stiffness, and the element is operable to increase the stiffness when activated.
12 . A method of passively reducing standing waves in a tire, said method comprising the steps of:
a. securing an active material element within at least a portion of the tire defining a first stiffness;
b. activating the element by exposure to a standing wave;
c. modifying said at least portion as a result of activating the element, so as to increase the stiffness;
d. reducing the wave as a result of increasing the stiffness; and
e. deactivating the element as a result of reducing the wave.
13 . A tire employable by a vehicle traveling upon a surface, and adapted to selectively enhance traction, said tire comprising:
a first structural component configured to engage the surface along a face, so as to present a first traction value; and
at least one active material element inter-engaged with, and operable to modify the face, so as to modify the traction to a second value when activated.
14 . The tire as claimed in claim 13 , wherein the face presents a tread defining a pattern, tread stiffness, and depth, and the element is operable to modify the pattern, stiffness, and/or depth when activated.
15 . The tire as claimed in claim 13 , wherein the active material element presents a sub-surface layer underneath the face, and is operable to produce a texturing on the face and increase the traction when activated.
16 . The tire as claimed in claim 13 , wherein the face is defined by a plurality of tread elements presenting a first dimension, stiffness, and spacing, the active material element is operable to modify the dimension, stiffness, and/or spacing when activated.
17 . The tire as claimed in claim 16 , wherein the dimension is depth, and the active material element is operable to reduce the depth and increase the stiffness, when activated.
18 . The tire as claimed in claim 16 , wherein the dimension is width, and the active material element is operable to reduce the width, when activated.
19 . The tire as claimed in claim 16 , wherein the tread elements define sipes, grooves, and/or openings, and the active material element is operable to close the sipes, grooves, and/or openings when activated.