Pipe clamp

4143844
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Inventors

Van Meter, William

Application #

813489

Filed

Jul-7-1977

Published

Mar-13-1979

Current US Class

248/62
248/901
411/129
411/984

International Classes

F16L 003/10

Field of Search

248/62 248/49 248/58 248/55 248/59 248/74 138/106 138/107 285/180 285/187 285/199 151/54

Examiners

Bonck; Rodney H.

Attorney, Agent or Firm

Caplan; Julian

US Patent References

4046169   Pipe support for us...

Referenced by:

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Citation

Cite This Patent

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Abstract
A pipe clamp used to support pipes of the type conveying dangerous materials -- e.g., steam pipes in nuclear installations -- especially where severe strains may be experienced -- e.g., seismic conditions -- is disclosed. The clamp has a yoke beam extending perpendicular to the axis of the pipe which is supported from a stationary support with an optional snubber interposed, the beam having a contact surface which fits against a portion of the pipe and a clevis or other means of attachment opposite the contact surface. The ends of the beam extend outward and have a "neutral" or "datum plane" surface tangent to the midpoint of the portion of the pipe engaged by the contact surface. Stabilizers extend axially of the pipe in either direction from the contact surface. Lugs on the pipe may be received in notches in the beam to prevent the pipe from sliding. A load bar extends around the pipe and is generally U-shaped, the ends of the bar being threaded and fitting through holes in the ends of the beam. Nuts on the ends of the bar bear against the beam at the datum plane. Preferably, a load strap of approximately the same coefficient of expansion as the pipe fits against the pipe and is slotted to receive the U-shaped portion of the load bar.
 
Claims
What is claimed is:

1. A pipe adapted to be subjected to varying temperatures having a substantially cylindrical exterior and having a longitudinal axis and a horizontal neutral plane tangent to the top of the exterior of said pipe,

and a pipe clamp for said pipe to tightly support said pipe in two opposite support directions perpendicular to said neutral plane throughout the range of said varying temperatures while allowing said pipe free thermal diametric expansion without restraining said expansion and without occurrence of thermal expansion constraint stresses in either said clamp or said pipe, said clamp comprising

a yoke beam having a deep section at its midpoint extending in a direction transverse to and away from said neutral plane and to said axis, the top of said yoke beam tapering downwardly-outwardly from the middle of said yoke beam to the outer ends of said yoke beam, said outer ends being formed with apertures perpendicular to said neutral plane, said yoke beam having a concave undersurface comprising a contact surface in contact with said pipe at the middle of said yoke beam, said contact surface being substantially complementary to the exterior of said pipe and engaging said pipe at said neutral plane at the top of said pipe and for a short distance laterally of said yoke beam to either side of said middle limited by lower beam reliefs,



Description
This invention is, in part, the subject of Disclosure Documents Nos. 054258 and 060336.

This invention relates to a new and improved pipe clamp particularly suitable for the nuclear power industry. The clamp has a high load rating, light weight, narrow width and applies a uniform and well distributed load on the pipe wall. No thermal stress on the pipe occurs because the expansion of the load bar and pipe are matched.

In accordance with the present invention, the load bar, which is in contact with the pipe, is preferably constructed of a material having the same coefficient of expansion as the pipe and hence expands at the same rate as the pipe and stresses on the pipe wall are eliminated.

Another advantage of the invention is the fact that considerably less material is required than conventional clamps thereby reducing cost and also reducing the weight applied to the pipe, a feature which is particularly important when seismic stress has occurred.

The present invention provides for a more efficient use of material. The clamp is thinner than conventional clamps and hence it is possible to place two clamps close together and preferably at right angles to each other to absorb seismic stresses.
 
  A pipe support for high temperature, thin-walled piping runs such as those used in nuclear systems. A section of the pipe to be supported is encircled...  A pipe hanger assembly having a pipe supporting and thermal insulating housing suspended in a hanger, the housing having a cylindrical outer surface matching...