High capacity lifting systems involve rigging that frequently employ lines that are either high strength steel or the modern synthetic high strength lines. The synthetic lines with high strength fibers have advanced beyond available and suitable high strength thimbles. The thimbles are required to protect the synthetic and wire rope ends, termed eyes, from being crushed when the rope is attached to shackles or other connectors. The thimble's primary purpose is to control the rope eye radius under high loads. The strengths of some synthetic ropes have reached the capacity of steel ropes with the advantage of low weight. An example is a 3 inch diameter synthetic rope rated at nearly 900 metric tons breaking strength. While these modern ropes offer significant advantages due to their lighter weight and freedom from corrosions, they must be protected from abrasion. It is also important that the configuration of the eye be maintained geometrically to retain peak strength levels.
Apart from these issues it is very important to allow eyes previously braded into the ropes to be inserted into a thimble without the costly exercise of reforming the eyes by braiding. It is also beneficial if the eye can be retained within the thimble boundary without requiring manual lashing. Manual lashing requires materials that can be easily tom away or cut when dragged over a shop floor or job site with debris. Losing the braiding around the eye can allow damage to the eye and failure of the lifting rope creating safety issues and potential damage to equipment.
There are several unique and beneficial features of the detachable ears rope thimble that are currently not available in the market.
The thimble body of the invention is deeper than those available in the market place, furthermore the body is strengthened in the strategic areas that undergo high compression, shear loads and bending moments due to the rope tension being exerted on the thimble body. In areas away from highly loaded areas, the thimble body sections are reduced to allow increased ease and safety in handling.
The thimble body is also provided with rounded edges so that the thimble cannot damage the rope fibers during handling that could otherwise lead to reduced rope strength. The thimble body is preferentially made of high strength metals although it is evident that composite materials with internal metal stiffening in areas of high stress could be substituted.
The thimble body is provided with detachable ears. The detachable ears are recessed into the thimble body providing a smooth outline free of edges which could damage the rope fibers. The detachable ears are attached preferentially with fasteners that are also flush with the surface. The detachable ears cause the thimble to be ideal for fanning eyes in new wire or synthetic rope, furthermore the detachable ears allow rope with existing eyes to be readily fitted with a high strength thimble that will protect the eyes and retain the eye geometry to create the highest potential rope strength and highest safety rating. The material used for the ears can be selected from a broad range of metals, plastics or composites since the ears are not highly stressed during any stage of the operation. Their primary purpose is to retain rope within the confines of the thimble boundary to protect against abrasion. Their secondary purpose is to resist abrasion from rough handling on shop floors or job sites littered with debris and maintain their connection and position on the thimble body.
Apart from the basic features noted above, optional items can be added to the detachable ear thimble that yields certain other advantages not currently available in the market place. While most applications will employ the use of a standard shackle through the thimble body access hole, the thimble can be provided with a bale specifically mated to the configuration of the thimble for special applications such as short coupling two thimbles together while keeping them in line. This feature would allow the thimbles to be wound onto a drum along with the wire rope for special applications where extreme lengths were required. The thimble could further be equipped with a diaphragm in the lower portion of the eye to provide means of a retainer or stop off bar to support the suspended lines while an upper thimble is disconnected.
The thimble body 10 shown in
As illustrated by the components shown in
In
Also shown in
The circular nut plate 35 of the main load pin sub assembly 30, shown in
The present invention provides features which allow one end of the connector, the bale 20 or other components to which the tension has been relieved, to be removed while restraining the thimble body 10 to which the rope 50 is attached. The thimble body 10, in turn, restrains the synthetic or other rope 50 while under tension. This feature is both unique and useful for offshore mooring systems composed of multiple synthetic and other rope sections in deep water.
Those of skill in the art will recognize that numerous changes and modifications may be made to the exemplary systems and methods described herein without departing from the scope and spirit of the invention. In fact, the invention is intended to be limited only to the claims which follow and at permissible equivalents thereof.
This application claims priority from U.S. Provisional Application Ser. No. 61/395,561 (the '561 application’) filed May 14, 2010. The '561 application is incorporated here by reference.
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