Heat-shrinkable hollow article

4297155
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Inventors

Jervis, James E.

Application #

875110

Filed

Feb-3-1978

Published

Oct-27-1981

Current US Class

038/103
138/104
138/178
138/96R
156/86
174/74A
174/DIG8
264/230
285/381.4
428/35.1
428/913

International Classes

B29C 027/00; H02G 015/02; F10L 057/00; B65D 059/06

Field of Search

174/74 138/89 138/95 138/96 285/381 403/273 403/28 403/29 403/30 264/230 264/249 264/25 156/84 156/85 156/86 156/344 428/35 428/36 428/43 428/212 428/913

Assignee

Raychem Corporation (Menlo Park, CA)

Examiners

Dixon, Jr.; William R.

Attorney, Agent or Firm

Lyon & Lyon

Referenced by:

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Citation

Cite This Patent

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Abstract
A heat-shrinkable hollow article having one open end affording access to an internal cavity, the wall defining the internal cavity being shaped to provide stop means projecting into the cavity at a position or positions between the open end and the end of the cavity remote from the open end, whereby after heat-shrinking of the article onto a substrate a gap is left between the substrate and the end of the cavity remote from said open end.
 
Claims
I claim:

1. A process for covering the end of a cable comprising positioning over the end of the cable a heat-recoverable cap having a closed end and an open end and a dimensionally heat-unstable boss projecting into the internal cavity of the cap from said closed end of the cap so that the end of the cable abuts the boss, and heating the cap including the boss to cause the cap to shrink about the cable end and to cause the boss to retract to a dimensionally heat-stable form to leave a gap between the end of the cable and the closed end of the cap, wherein the boss in its dimensionally heat-stable form does not project into said gap.

2. A heat-recoverable hollow cap having a wall defining a closed end and an open end, at least a portion of the wall being heat-unstable, the open end of the cap affording access to a relatively large internal cavity of relatively large circumference, the heat-unstable wall of the cap defining the shape of the relatively large internal cavity and being shaped to provide a boss which projects into said relatively large internal cavity from said closed end, at least part of the boss being in a dimensionally heat-unstable form, wherein upon heating of the cap to cause recovery thereof, the heat-unstable wall of the cap recovers to form a relatively small internal cavity of relatively small circumference compared to the circumference of the relatively large internal cavity, such recovery resulting in the boss being in a dimensionally heat-stable form that projects less into the relatively small internal cavity than the boss projects into the relatively large internal cavity.



Description
BACKGROUND TO THE INVENTION

1. Field of the Invention

This invention relates to heat-recoverable articles, more especially to such articles for use in protecting the ends of a length of cable, and to processes for their use.

2. Summary of the Prior Art

When electric cables, for example power or telecommunications cables, having a number of conductors surrounded by a jacket of insulating material are manufactured, they are frequently cut into lengths suitable for transport and storage on a former, for example a spool. The cut ends are protected against attack by water or other damaging media, and against mechanical injury by a covering which may be a wrapping of a tape or by a heat-shrinkable "end-cap".

The end cap is a generally tubular article, having one closed and one open end, which is capable of shrinking radially when heated above a certain temperature or temperature range. The article is made, for example, by moulding a thermoplastic composition containing a chemical crosslinking agent, in an appropriate shape having a diameter slightly smaller than the smallest diameter of cable in the range of sizes for which it is to be used. The crosslinked moulded article is then heated, expanded by air or mechanical pressure, cooled while maintaining the pressure, and then the pressure is released. In use, the article is placed over the end of the cable to be protected, and heated to cause it to shrink. The inner surface of the article may, if desired, be provided with a coating that assists in bonding the cap to substrate cable, and in preventing moisture ingress, for example a hot melt adhesive, or a non-crystalline layer of, for example, mastic.
 
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