IP Library Granted Patent US 10,005,317
Granted Patent B2
US 10,005,317 · App. 14/951,145 · Granted Jun 26, 2018

Devices and methods of thermal management for a motorized wheel

Inventors: Assaf Biderman (Boston, MA); Eric Barber (Cranston, RI); Long Hin Fong (Brighton, MA); John David Heinzmann (Manchester, NH); Robert Paul Roy (Dracut, MA)
Assignee: Superpedestrian, Inc.
B60B27/0015A61G5/045A61G5/048B60B27/04B60K7/00B60L3/003B60L3/0046B60L3/0061B60L3/12B60L7/00B60L7/12B60L11/007B60L11/1805B60L11/1809B60L11/1851B60L11/1861B60L11/1864B60L15/025B60L15/20B60L15/2009B60L15/2036B60Q5/005B60Q9/00B60W50/085B61L25/02B62B5/004B62M6/45B62M6/80B62M25/08E05B49/006E05B81/54G01C21/3461G01C21/3632G01C21/3664G01S19/05G08B21/182G08G1/015G08G1/09626G08G1/096716G08G1/096758G08G1/096775G08G1/096791G08G1/165G08G1/166G08G1/20H02K7/006H02K11/20H02K11/33H02P6/08H04L67/12H04W4/003H04W4/008A61B5/024A61B5/6894A63B21/0053A63B21/0058A63B21/00181A63B21/0618A63B22/20A63B23/047A63B2024/0093A63B2071/0018A63B2220/12A63B2220/14A63B2220/18A63B2220/34A63B2220/51A63B2220/54A63B2220/56A63B2220/58A63B2220/72A63B2225/20A63B2225/50B60B2360/102B60B2360/104B60B2360/106B60B2360/108B60B2900/513B60B2900/90B60K1/04B60K7/0007B60K2001/045B60K2007/0038B60K2007/0092B60L2200/12B60L2200/34B60L2200/36B60L2200/40B60L2220/44B60L2220/50B60L2240/12B60L2240/36B60L2240/421B60L2240/423B60L2240/425B60L2240/461B60L2240/463B60L2240/545B60L2240/547B60L2240/549B60L2240/622B60L2240/642B60L2240/662B60L2240/667B60L2240/68B60L2240/70B60L2250/10B60L2250/12B60L2250/16B60L2260/44B60W2050/0014B60W2050/0089B60Y2200/13B60Y2200/84B60Y2300/18B60Y2300/1884B62B3/007E05B2047/0088G06F8/65Y02P90/60Y02T10/641Y02T10/643Y02T10/7005Y02T10/7044Y02T10/7061Y02T10/72Y02T10/7275Y02T10/7291Y02T90/16Y02T90/161Y02T90/162
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Quick Facts
Patent No.
US 10,005,317
App. No.
14/951,145
Granted
Jun 26, 2018
Kind
B2
Abstract

A method of thermal management for an electrically motorized wheel, the method can include defining a thermally conductive path from at least one component, the at least one component becoming heated during operation of the electrically motorized wheel, providing the path with a thermally conductive material and further defining the path such that the path contacts the at least one component, further defining the path such that the path contacts a hub shell assembly of the electrically motorized wheel thereby conducting heat from the at least one component to the hub shell assembly.

Claims (29)

1. A method of thermal management for an electrically motorized wheel, the method comprising:

defining a thermally conductive path from at least one component, said at least one component becoming heated during operation of the electrically motorized wheel,

providing the thermally conductive path with a thermally conductive material and further defining the thermally conductive path such that the thermally conductive path contacts the at least one component,

further defining the thermally conductive path such that the thermally conductive path contacts a shaft or a hub shell assembly of the electrically motorized wheel thereby conducting heat from the at least one component to the shaft or the hub shell assembly.

2. The method as recited in claim 1 , further comprising arranging the hub shell assembly or the shaft in proximity to the at least one component to facilitate a short thermally conductive path therebetween.

3. The method as recited in claim 1 , further comprising locating a plurality of convection elements that extend from the hub shell assembly.

4. The method as recited in claim 1 , further comprising further defining the thermally conductive path from the at least one component through the shaft of the electrically motorized wheel to a frame of a wheeled vehicle upon which the electrically motorized wheel is installed.

5. The method as recited in claim 1 , further comprising defining the thermally conductive path through the hub shell assembly by selecting a thickness of the hub shell assembly wherein the thickness is between about 2-4 mm.

6. The method as recited in claim 1 , further comprising defining the thermally conductive path through the hub shell assembly by selecting a material of the hub shell assembly from one of an aluminum, magnesium, steel and titanium alloy.

7. The method as recited in claim 1 , further comprising defining the thermally conductive path through a plurality of convection elements of the hub shell assembly.

8. The method as recited in claim 7 , further comprising agitating airflow within the hub shell assembly with the plurality of convection elements.

9. A method of thermal management for an electrically motorized wheel having a hub shell assembly containing at least one component that becomes heated during operation of the electrically motorized wheel, the method comprising:

agitating airflow within the hub shell assembly via a plurality of convection elements that extend from the hub shell assembly; and

forming a thermal path from the at least one component that becomes heated during operation of the electrically motorized wheel to the hub shell assembly.

10. The method as recited in claim 9 , further comprising defining the thermal path through the hub shell assembly by selecting a thickness of the hub shell assembly wherein the thickness is between about 2-4 mm.

11. The method as recited in claim 9 , further comprising defining the thermal path through the hub shell assembly by selecting a material of the hub shell assembly from one of an aluminum, magnesium, steel and titanium alloy.

12. The method as recited in claim 9 , further comprising forming a thermal path from the at least one component that becomes heated during operation of the electrically motorized wheel to a shaft of the electrically motorized wheel.

13. The method as recited in claim 12 , further comprising defining the thermal path from the at least one component that becomes heated through the shaft of the electrically motorized wheel to a frame of a non-motorized wheeled vehicle upon which the electrically motorized wheel is installed.

14. A hub shell assembly for an electrically motorized wheel, comprising:

a drive side shell defined about an axis;

a non-drive side ring mounted to the drive side shell; and

a removable access door removably attachable to the non-drive side ring, wherein at least one of the drive side shell, the non-drive side ring and the removable access door forms a portion of a thermal path defined from at least one component that becomes heated during operation of the electrically motorized wheel.

15. The hub shell assembly as recited in claim 14 , wherein at least one of the drive side shell, the non-drive side ring and the removable access door includes at least one convection element to agitate an airflow within the hub shell assembly.

16. The hub shell assembly as recited in claim 15 , wherein at least one of the drive side shell, the non-drive side ring and the removable access door is about 2-4 mm thick.

17. The hub shell assembly as recited in claim 14 , wherein at least one of the drive side shell, the non-drive side ring and the removable access door is manufactured of at least one of an aluminum, magnesium, or titanium alloy.

18. The hub shell assembly as recited in claim 14 , wherein at least one of the drive side shell, the non-drive side ring and the removable access door is manufactured of a material that allows for heat transfer without air exchange.

19. The method as recited in claim 1 , further comprising passing outside air over the at least one component by locating a plurality of air intakes and a plurality of air outlets on the electrically motorized wheel.

20. The method as recited in claim 9 , further comprising passing outside air over the at least one component by locating a plurality of air intakes and a plurality of air outlets on the electrically motorized wheel.

21. The hub shell assembly as recited in claim 14 , wherein at least one of the drive side shell, the non-drive side ring and the removable access door includes at least one air intake or air outlet.

Assignments (9)
LIEN Recorded Dec 21, 2023
From: SUPERPEDESTRIAN IPCO, LLC
To: GTC LAW GROUP PC
Reel/Frame 066089/0093 →
LIEN Recorded Dec 21, 2023
From: SUPERPEDESTRIAN, INC.
To: GTC LAW GROUP PC
Reel/Frame 066089/0099 →
SECURITY INTEREST Recorded Nov 8, 2023
From: SUPERPEDESTRIAN, INC.; SUPERPEDESTRIAN IPCO, LLC; SUPERPEDESTRIAN IP HOLDCO, LLC
To: ANTARA CAPITAL MASTER FUND, LP
Reel/Frame 065494/0707 →
SECURITY INTEREST Recorded Jul 24, 2023
From: SUPERPEDESTRIAN, INC.; SUPERPEDESTRIAN IPCO, LLC; SUPERPEDESTRIAN IP HOLDCO, LLC
To: JEFFERIES CAPITAL SERVICES, LLC
Reel/Frame 064363/0356 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 2, 2023
From: SUPERPEDESTRIAN, INC.; ZAGSTER ACQUISITION COMPANY, LLC
To: SUPERPEDESTRIAN IPCO, LLC
Reel/Frame 063507/0889 →
RELEASE OF SECURITY INTEREST Recorded Dec 29, 2021
From: ALTER DOMUS (US) LLC, AS AGENT
To: SUPERPEDESTRIAN, INC.; LINK YOUR CITY, INC.; ZAGSTER ACQUISITION COMPANY, LLC
Reel/Frame 058498/0398 →
SECURITY INTEREST Recorded Dec 29, 2021
From: SUPERPEDESTRIAN, INC.; SUPERPEDESTRIAN IPCO, LLC; SUPERPEDESTRIAN IP HOLDCO, LLC; LINK YOUR CITY, INC.; ZAGSTER ACQUISITION COMPANY, LLC
To: U.S. BANK NATIONAL ASSOCIATION, AS THE COLLATERAL AGENT
Reel/Frame 058498/0733 →
SECURITY INTEREST Recorded Apr 8, 2021
From: SUPERPEDESTRIAN, INC.; LINK YOUR CITY, INC.; ZAGSTER ACQUISITION COMPANY, LLC
To: ALTER DOMUS (US) LLC, AS COLLATERAL AGENT
Reel/Frame 055867/0531 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 13, 2017
From: BIDERMAN, ASSAF; BARBER, ERIC; FONG, LONG HIN; HEINZMANN, JOHN DAVID; ROY, ROBERT PAUL
To: SUPERPEDESTRIAN, INC.
Reel/Frame 041563/0436 →
Continuity (7)
Continuation In Part 14678855 · Apr 3, 2015
Provisional Application 61975658 · Apr 4, 2014
Provisional Application 62083851 · Nov 24, 2014
Provisional Application 62092243 · Dec 15, 2014
Provisional Application 62083851 · Nov 24, 2014
Provisional Application 62092243 · Dec 15, 2014
Related Publication 20160082772A1 · Mar 24, 2016
Cited By (6)
US 1,057,053 US 1,080,773 US 1,129,585 US 12,296,867 US 12,384,490 US 12,493,989