IP Library Granted Patent US 10,183,191
Granted Patent B2
US 10,183,191 · App. 15/166,088 · Granted Jan 22, 2019

Leg-powered treadmill

Inventors: Alex Astilean (East Hampton, NY); Dan Bostan (Beaconsfield, CA)
Assignee: SpeedFit LLC
A63B22/0285A63B22/0017A63B22/02A63B24/0087B62K5/00B62K7/00B62M1/34B62M6/40F03G5/00F03G5/025A63B21/0051A63B21/0053A63B21/0054A63B21/157A63B22/0023A63B22/0207A63B22/0235A63B2022/0278A63B2024/0093A63B2071/0081A63B2209/02A63B2209/08B62J2017/086
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Quick Facts
Patent No.
US 10,183,191
App. No.
15/166,088
Granted
Jan 22, 2019
Kind
B2
Abstract

A motor-less leg-powered curved treadmill produced that allows people to walk, jog, run, and sprint without making any adjustments to the treadmill other than shifting the user's center of gravity forward and backwards. A closed loop treadmill belt running between front and rear pulley rollers is formed with a low friction running surface of transverse aluminum, wooden, plastic, rubber or carbon fiber slats attached to each other in a resilient fashion. Since an essential feature of treadmill is the concave shape of the running surface of belt in its respective upper portion, the treadmill configurations insure that this shape is maintained during actual use. These configurations prevent the concave upper running surface portion from being pulled taut into a flat shape between the front and rear pulley rollers.

Claims (28)

1. A motor-less, leg-powered curved treadmill comprising:

a treadmill frame;

said treadmill frame supporting a treadmill running surface;

said treadmill running surface having a top concave surface, said treadmill running surface being of such a length as compared to the length of said treadmill frame to permit it to assume a required concave upper contour;

a means for maintaining said treadmill running surface in said required concave upper contour, said treadmill running surface providing a running surface during exertion of walking or running force upon an upper concave portion of said treadmill surface;

wherein said means for said treadmill running surface is maintained in a concave configuration is a plurality of transverse parallel slats forming a continuous closed loop treadmill belt suspended by a pair of pulleys set apart horizontally at a pre-set distance;

an upper part of said continuous closed loop maintained in a concave configuration by concave arrays of bearings on each side of the treadmill, forming a slackened drooping upper catenary portion;

said continuous closed loop treadmill belt having a lower concave portion forming a lower concave contour, forming a slackened drooping upper catenary portion;

wherein each said upper concave portion and said lower concave portion of said belt forms a respective slackened drooping catenary curve;

wherein said closed loop treadmill belt is an a closed loop array of said plurality of transverse parallel slats;

wherein each said transverse slat is made of a material with sufficient resiliency and strength and weight to lie on and conform to a concave row of upper support peripheral bearings located at each peripheral side of an upper concave portion of said treadmill frame of said motor-less, leg-powered curved treadmill;

said catenary curves of said upper concave portion and said lower concave portion of said belt are maintained in a fixed concavity during the exertion of walking or running force upon said upper concave running surface of said belt.

2. The motor-less, leg-powered curved treadmill as in claim 1 wherein each said transverse parallel slat includes at least one fin extending side to side across said slat, said at least one fin descending downward from each said transverse parallel slat.

3. The motor-less, leg-powered curved treadmill as in claim 1 wherein said transverse parallel slats are made of a material selected from the group consisting of aluminum, rubber, plastic and wood.

4. The motor-less, leg-powered curved treadmill as in claim 1 wherein said transverse parallel slats are made of a carbon fiber material.

5. The motor-less, leg-powered curved treadmill as in claim 4 wherein said carbon fiber transverse parallel slats are made by a pultrusion process.

6. The motor-less, leg-powered curved treadmill as in claim 1 wherein said slackened drooping curve of said upper concave and lower concave portions of said continuous closed loop treadmill belt is determined by determining the linear density, of the continuous closed loop treadmill belt in units such as pounds/foot, wherein said slackened drooping curve is determined by fitting said catenary curve that passes through a crossection of said continuous closed loop treadmill belt with a slackened droop having a predetermined height relative to the distance between said upper concave and lower concave portions at their respective lowest heights above the ground.

7. The motor-less, leg-powered curved treadmill as in claim 6 wherein the dimensions of a treadmill having an upper and lower droop include a spacing of about 54 inches of pulley center spacing, said upper concave portion of said continuous closed loop treadmill belt having a concave top surface being a circular arc having a radius of at least 140 inches, said continuous closed loop treadmill belt being about 42 pounds in weight and said continuous closed loop treadmill belt having a total circumference of about 134 inches, wherein the resultant sag of the slackened drooping curve between said upper concave portion and said lower concave portion of said continuous closed loop treadmill belt is about 6.5 inches in height at center, wherein further said concave circular arc of said upper concave portion is determined from a plot of a top side catenary thereof.

8. A motor-less, leg-powered curved treadmill comprising:

a treadmill frame;

said treadmill frame supporting a treadmill running surface,

said treadmill running surface having a top concave surface, said treadmill running surface being of such a length as compared to the length of said treadmill frame to permit it to assume a required concave upper contour;

a means for maintaining said treadmill running surface in said required concave upper contour, said treadmill running surface providing a running surface during exertion of walking or running force upon an upper concave portion of said treadmill surface;

wherein said means for maintaining said treadmill running surface is a plurality of transverse parallel slats forming a continuous closed loop treadmill belt suspended by a pair of pulleys set apart horizontally,

an upper part of said continuous closed loop maintained in a concave configuration by concave arrays of bearings on each side of the treadmill;

said continuous closed loop treadmill belt having a lower portion; said upper portion of said continuous loop treadmill belt being supported by a partial loop flange supporting said upper portion of said belt on each side of said treadmill slats being connected to bearings attached to said partial loop flange;

wherein said closed loop treadmill belt is an a closed loop array of said plurality of transverse parallel slats;

wherein each said transverse slat is made of a material with sufficient resiliency and strength and weight to lie on and conform to a concave row of upper support peripheral bearings located at each peripheral side of an upper concave portion of said treadmill frame of said motor-less, leg-powered curved treadmill.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2018
From: BOSTAN, DAN; ASTILEAN, AUREL A
To: SPEEDFIT, LLC
Reel/Frame 047353/0959 →
Continuity (7)
Continuation In Part 14683051 · Apr 9, 2015
Continuation 13831212 · Mar 14, 2013
Continuation In Part 13711074 · Dec 11, 2012
Continuation 12925892 · Nov 1, 2010
Continuation In Part 12925770 · Oct 29, 2010
Provisional Application 61280265 · Nov 2, 2009
Related Publication 20160367851A1 · Dec 22, 2016
Cited By (4)
US 1,065,370 US 1,087,256 US 12,208,306 US 12,521,603