IP Library › Granted Patent US 12,151,773
Granted Patent B2
US 12,151,773 · App. 17/333,774 · Granted Nov 26, 2024

Method for forming a bicycle frame component made of thermoplastic composite laminates and the bicycle frame for the same

Inventors: Samuel Hu (Changhua, TW); Liu-Cheng Liu (Changhua, TW)
Assignee: ASTRO TECH CO., LTD.
B62K3/06B29C70/462B29C70/465B29K2101/12B29K2307/04B29L2031/3091
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Quick Facts
Patent No.
US 12,151,773
App. No.
17/333,774
Granted
Nov 26, 2024
Kind
B2
Abstract

A method for forming a bicycle frame component made of thermoplastic composite laminates has: a shell forming step: manufacturing multiple shells by compression molding; an overlapping step: overlapping two corresponding connecting margins of each two of the multiple shells to form an overlapping section of the two of the multiple shells and deploying a supporting unit within the multiple shells for supporting; a hot compressing connection step: heating and compressing the multiple shells to diffuse polymers of the multiple shells and to turn the multiple overlapping sections into multiple fusion areas for connection; a supporting unit removal step: removing the supporting unit disposed within the bicycle frame component.

Claims (34)

1. A method for forming a bicycle frame component made of thermoplastic composite, characterized in that the method comprises:

a shell forming step: turning multiple thermoplastic composite laminates into multiple shells that are capable of being symmetrically assembled together by compression molding, wherein each one of the multiple shells has

an exterior surface;

a cavity surrounded by the shell; and

multiple connecting margins, each one of the multiple connecting margins configured to be connected to a corresponding one of the multiple connecting margins of another one of the multiple shells;

an overlapping step: overlapping two corresponding connecting margins of each two of the multiple shells to form an overlapping section of the two of the multiple shells; and deploying a supporting unit within the multiple shells to support each one of the multiple shells;

a hot compressing connection step: heating and compressing the multiple overlapping sections of the multiple shells by compression molding to diffuse polymers of the multiple shells, to turn the multiple overlapping sections into multiple fusion areas, and to connect the multiple shells to form the bicycle frame component; and

a supporting unit removal step: removing the supporting unit disposed within the bicycle frame component accompanied with trimming the bicycle frame component to finish the bicycle frame component.

2. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 1 , wherein the thermoplastic composite laminates are carbon fiber reinforced thermoplastic composite laminates or glass fiber reinforced thermoplastic composite laminates.

3. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 2 , wherein the multiple shells are two shells.

4. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 3 , wherein each one of the multiple fusion areas has a fused protrusion with a thickness larger than a thickness of each one of the multiple shells.

5. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 4 , wherein

the supporting unit has multiple receiving recesses corresponding to the multiple overlapping sections in position;

each one of the multiple fusion areas forms a fused protrusion disposed within a corresponding one of the multiple receiving recesses and corresponds to said corresponding receiving recess in shape.

6. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 5 , wherein the supporting unit is made of metal and has a middle supporting member, an upper supporting member, and a lower supporting member.

7. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 3 , wherein

each one of the two corresponding connecting margins has a stepped structure configured to be overlapped and engaging with the stepped structure of the other one of the two connecting margins; and

the two stepped structures of the two corresponding connecting margins are overlapped and engaged with each other in the overlapping step.

8. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 2 , wherein each one of the multiple fusion areas has a fused protrusion with a thickness larger than a thickness of each one of the multiple shells.

9. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 8 , wherein

the supporting unit has multiple receiving recesses corresponding to the multiple overlapping sections in position;

each one of the multiple fusion areas forms a fused protrusion disposed within a corresponding one of the multiple receiving recesses and corresponds to said corresponding receiving recess in shape.

10. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 9 , wherein the supporting unit is made of metal and has a middle supporting member, an upper supporting member, and a lower supporting member.

11. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 2 , wherein

each one of the two corresponding connecting margins has a stepped structure configured to be overlapped and engaging with the stepped structure of the other one of the two connecting margins; and

the two stepped structures of the two corresponding connecting margins are overlapped and engaged with each other in the overlapping step.

12. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 1 , wherein each one of the multiple fusion areas has a fused protrusion with a thickness larger than a thickness of each one of the multiple shells.

13. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 12 , wherein

the supporting unit has multiple receiving recesses corresponding to the multiple overlapping sections in position;

each one of the multiple fusion areas forms a fused protrusion disposed within a corresponding one of the multiple receiving recesses and corresponds to said corresponding receiving recess in shape.

14. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 13 , wherein the supporting unit is made of metal and has a middle supporting member, an upper supporting member, and a lower supporting member.

15. The method for forming a bicycle frame component made of thermoplastic composite as claimed in claim 1 , wherein

each one of the two corresponding connecting margins has a stepped structure configured to be overlapped and engaging with the stepped structure of the other one of the two connecting margins; and

the two stepped structures of the two corresponding connecting margins are overlapped and engaged with each other in the overlapping step.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2021
From: ASTRO ENGINEERING CO., LTD.
To: ASTRO TECH CO., LTD.
Reel/Frame 057397/0598 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2021
From: HU, SAMUEL; LIU, LIU-CHENG
To: ASTRO ENGINEERING CO., LTD.
Reel/Frame 056385/0501 →
Continuity (2)
Continuation In Part PCTCN2018122595 · Dec 21, 2018
Related Publication 20210284269A1 · Sep 16, 2021