Shock and vibration mitigation baseplate and method of manufacturing the same
View Patent ↗Shock and vibration mitigation baseplates and related manufacturing methods. A shock and vibration mitigation baseplate includes a mounting frame configured for placement between a console operator chair and a rigid floor surface, and one or more viscoelastic polymer shock absorption and vibration dampening pads. The mounting frame houses the one or more viscoelastic polymer shock absorption and vibration dampening pads therein.
1. A shock and vibration mitigation baseplate, comprising:
a mounting frame configured for placement between a console operator chair and a rigid floor surface; and
one or more viscoelastic polymer shock absorption and vibration dampening pads, wherein
the mounting frame houses the one or more viscoelastic polymer shock absorption and vibration dampening pads therein,
the mounting frame includes:
a bottom plate;
inner members fixedly connected to the bottom plate; and
outer members fixedly connected to the bottom plate, and
the bottom plate, the inner members, and the outer members form a grid structure.
2. The shock and vibration mitigation baseplate of claim 1 , wherein the mounting frame includes at least one of steel, aluminum, carbon composite, and carbon fiber material.
3. The shock and vibration mitigation baseplate of claim 1 , wherein the mounting frame includes outer dimensions measuring about 16 inches in length by about 12 inches in width by about 1 inch in height.
4. The shock and vibration mitigation baseplate of claim 1 , wherein the one or more viscoelastic polymer shock absorption and vibration dampening pads include 4 viscoelastic polymer shock absorption and vibration dampening pads.
5. The shock and vibration mitigation baseplate of claim 1 , further comprising:
a compression plate configured for attachment between the console operator chair and the one or more viscoelastic polymer shock absorption and vibration dampening pads.
6. The shock and vibration mitigation baseplate of claim 5 ,
the one or more viscoelastic polymer shock absorption and vibration dampening pads include 4 viscoelastic polymer shock absorption and vibration dampening pads.
7. The shock and vibration mitigation baseplate of claim 6 , wherein the mounting frame includes outer dimensions measuring about 16 inches in length by about 12 inches in width by about 1 inch in height.
8. The shock and vibration mitigation base plate of claim 7 , wherein at least one of the 4 viscoelastic polymer shock absorption and vibration dampening pads includes a height measuring about 1 inch.
9. The shock and vibration mitigation base plate of claim 8 , wherein each of the 4 viscoelastic polymer shock absorption and vibration dampening pads includes dimensions measuring about 10 to about 11 inches in length by about 2.5 inches in width by about 1 inch in height.
10. The shock and vibration mitigation baseplate of claim 9 , wherein the compression plate is constituted by a rigid structure including at least one substantially flat surface above the 4 viscoelastic polymer shock absorption and vibration dampening pads.
11. The shock and vibration mitigation baseplate of claim 10 , wherein the compression plate includes:
a first plurality of holes configured for attachment to the console operator chair; and
a second plurality of holes configured for attachment to the frame.
12. The shock and vibration mitigation baseplate of claim 11 , wherein the 4 viscoelastic polymer shock absorption and vibration dampening pads including one or more shock absorption and vibration dampening properties reducing or eliminating transfer of physical forces from the mounting frame to the compression plate thereby reducing or eliminating transfer of the physical forces from the rigid floor surface to the console operator chair.
13. A shock and vibration mitigation baseplate,
comprising:
a rigid mounting frame configured for placement between a console operator chair and a rigid floor surface, the rigid mounting frame including:
a bottom plate;
inner members fixedly connected to the bottom plate; and
outer members fixedly connected to the bottom plate,
the inner members and the outer members forming a grid structure,
a plurality of viscoelastic polymer pads housed within the grid structure of the rigid frame; and
a compression plate configured for attachment between the console operator chair and the plurality of viscoelastic polymer pads.
14. The shock and vibration mitigation baseplate of claim 13 , wherein the plurality of viscoelastic polymer pads housed within the grid structure of the frame include 4 viscoelastic polymer pads.
15. The shock and vibration mitigation baseplate of claim 14 , wherein the compression plate includes:
a first plurality of holes configured for attachment to the console operator chair; and
a second plurality of holes configured for receipt of fasteners engaged with holes of the rigid frame.
16. A method of assembling a shock and vibration mitigation baseplate, including:
providing one or more frame members;
providing one or more viscoelastic shock absorption and vibration dampening pads; and
housing the one or more viscoelastic shock absorption and vibration dampening pads within the one or more frame members to form the shock and vibration mitigation baseplate, wherein
the one or more frame members include;
a bottom plate;
inner members fixedly connected to the bottom plate; and
outer members fixedly connected to the bottom plate, and
the bottom plate, the inner members, and the outer members form a grid structure.
17. The method of assembling a shock and vibration mitigation baseplate of claim 16 , wherein the one or more viscoelastic shock absorption and vibration dampening pads include 4 viscoelastic shock absorption and vibration dampening pads.
18. The method of assembling a shock and vibration mitigation baseplate of claim 17 , further comprising:
providing a compression plate configured for attachment between a console operator chair and the one or more viscoelastic shock absorption and vibration dampening pads.