IP Library Granted Patent US 8,663,528
Granted Patent B2
US 8,663,528 · App. 12/950,763 · Granted Mar 4, 2014

Caterpillar traction apparatus

Inventors: Peter David Jenkins (Framlingham, GB); Daniel Owen Jenkins (Framlingham, GB)
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Quick Facts
Patent No.
US 8,663,528
App. No.
12/950,763
Granted
Mar 4, 2014
Kind
B2
Abstract

A caterpillar traction apparatus ( 110 ), wherein two pairs of pulleys ( 122 & 123, 132 & 133 ) can be driven at different speeds, so that the linear member ( 40 ) being driven by the mechanism is subjected to either compression or extension forces.

Claims (9)

1. A method of processing a polymeric tubular member using a mechanical caterpillar apparatus, the apparatus comprising first and second elastically extensible traction members, and first, second, third and fourth rotatable members, both of said traction members having an interior portion and an exterior portion, and each of said rotatable members having an outer drive surface, the method comprising the steps of:

forming the polymeric tubular member such that there is tensile strain energy stored within the polymeric tubular member;

elastically stretching the first traction member around the first and second rotatable members in order to tension both the interior portion and the exterior portion of the first traction member and thereby provide frictional grip between the first traction member and said outer drive surfaces of the first and second rotatable members;

elastically stretching the second traction member around the third and fourth rotatable members in order to tension both the interior portion and the exterior portion of the second traction member and thereby provide frictional grip between the second traction member and said outer drive surfaces of the third and fourth rotatable members, such that the interior portion of each traction member opposes the interior portion of the other traction member;

using a motor connected to each of the rotatable members by a respective drivable connection to drive each of the rotatable members such that the first and third rotatable members are driven by said drivable connections at a first speed and the second and fourth rotatable members are driven by said drivable connections at a second speed, such that the polymeric tubular member is pulled into the opposed interior portions of the first and second traction members between the first and third rotatable members and advanced towards the opposed interior portions of the first and second traction members between the second and fourth rotatable members;

wherein the first speed is not equal to the second speed such that in both of said traction members the tension in one of said portions is reduced owing to elastic compression of said portion and the tension in the other one of said portions is increased owing to elastic extension of said portion, the first traction member being driven by frictional grip with the first and second rotatable members and the second traction member being driven by frictional grip with the third and fourth rotatable members, such that as the polymeric tubular member is advanced between the opposed interior portions of the first and second traction members, the polymeric tubular member is processed by linear compression or by linear extension depending on said speed difference in order to change the tensile strain energy stored within the polymeric tubular member.

2. A method of processing a polymeric tubular member according to claim 1 , wherein the difference between the first speed and the second speed linearly compresses the polymeric tubular member in order to reduce the tensile strain energy stored within said polymeric tubular member.

3. A method of processing a polymeric tubular member according to claim 1 , wherein the difference between the first speed and the second speed linearly extends the polymeric tubular member in order to increase the tensile strain energy stored within said polymeric tubular member.

4. A method of processing a polymeric tubular member according to claim 1 , wherein said rotatable members are substantially cylindrical and both of said traction members have a tread pattern on an inner surface thereof to increase said frictional grip.

Assignments (1)
CHANGE OF NAME Recorded Jul 29, 2016
From: MINIFLEX LIMITED
To: PPC BROADBAND FIBER LTD.
Reel/Frame 039288/0296 →
Priority Claims (1)
GB 0201793.7 · Jan 26, 2002 · national
Continuity (2)
Division 10502230
Related Publication 20110120836A1 · May 26, 2011