Not applicable.
The present invention relates generally to spectacle blinds, and more particularly to a device for moving large spectacle blinds between first and second operational positions.
Spectacle blinds have been used in piping runs for many years. As shown in
The spectacle blind 10 is installed in piping between two flanges. Neither of the two circular discs 12 and 14 are drilled with bolt holes, but instead are sized to fit inside the bolting circle of the mating flanges. The full opening disc 14 is inserted between the two flanges for full flow through the piping run and the solid disc 12 is inserted between the two flanges to block or isolate the section of line when it needs to be inspected or removed from service.
Spectacle blinds are typically used in piping systems that need to be separated from other installations. The spectacle blind is usually permanently installed in the piping system and rotated as needed. Normally, the spectacle blind is mounted in the open position so that flow through the pipe is possible and rotated to the closed position to prevent flow, as for example to perform maintenance. One benefit of the spectacle blind is that it provides visual confirmation as to whether the flow through the flanged connection is open or closed.
The size and weight of spectacle blinds depends on the flange size and pressure class. In the past some spectacle blinds had a hole in the web through which one of the bolts of the flanged connection passed and formed a pivot point about which the spectacle blind could be rotated when the majority of other flange bolts were removed. However, the larger size, higher pressure spectacle blinds weigh hundreds of pounds and can even weigh more than a thousand pounds. Typically, such large, heavy spectacle blinds do not use the flange bolt technique to rotate but instead require the use of a crane.
It is desirable to be able to reposition large, heavy spectacle blinds from open to closed position and from closed to open position without the use of a crane. It is desirable to be able to have a portable device that can rotate large, heavy spectacle blinds between open and closed positions. It is further desirable to have a manually-operated portable device that can rotate large, heavy spectacle blinds between open and closed positions.
The present invention relates to a swinging device for a spectacle blind. A preferred embodiment of the invention includes case having first and second shafts mounted to and within the case. The shafts are supported by anti-friction bearings for smooth rotation. Each shaft has at least one gear mounted on it and the gear(s) on the second shaft engage the gear(s) on the first shaft. A drive handle assembly connects to an end of the first shaft. A blind holder is mounted to an end of the second shaft. The blind holder is arranged and designed to secure the spectacle blind to the swinging device. When the drive handle assembly is rotated, the first shaft rotates and the engaged gears cause the second shaft to rotate, which results in rotation of the blind holder.
The preferred embodiment of the swinging device also includes a base assembly comprising a bolted clamp for mounting the swinging device to the pipe on one side of the spectacle blind. An upper portion of the base assembly is connected to the case. In operation, with the flange bolts removed from the flanges, the drive handle assembly is manually turned to swing the spectacle blind from a first position to a second position (open to closed or vice versa). Even for 10-inch diameter pipe sizes and larger, the swinging device is relatively small and can be lifted and mounted, even at high elevations, without using a crane. The swinging device can swing spectacle blinds of size 10″ and above without the need of a crane.
So that the manner in which the recited features, advantages and aspects of the embodiments of the present invention are attained and can be understood in detail, a more particular description of the invention may be had by reference to the preferred embodiments thereof which are illustrated in the appended drawings, which drawings are incorporated as a part hereof. It is noted however, that the appended drawings illustrate only typical embodiments of this invention and are therefore not to be considered limiting of its scope, for the invention may admit to other equally effective embodiments.
While this invention is susceptible of embodiments of many different forms, there is shown in the drawings and will herein be described in detail preferred embodiments of the invention with the understanding that the present disclosure is to be considered as an exemplification of the principles of the invention and is not intended to limit the broad aspect of the invention to the embodiments illustrated.
A swinging device 30 according to a preferred embodiment of the invention is shown in
Referring to
A first shaft 40 and a second shaft 50 extend transversely relative to the front and back side members 34A and 34B, respectively, and both are rotatably mounted to the pair of side members 34A and 34B, preferably via bearings 38. Preferably, the bearings 38 are anti-friction bearings 38 allowing for smooth rotation of the shafts 40 and 50. In the preferred embodiment, the shafts 40 and 50 are mounted to the case 32 parallel with one another.
At least one first gear 42 is mounted on the first shaft 40 and at least one second gear 52 is mounted on the second shaft 50. In the preferred embodiment shown in
A drive handle assembly 60 is connected, preferably releasably connected, to the first shaft 40 to impart rotation to the first shaft 40. The drive handle assembly 60 is located outside of the case 32 adjacent the back side member 34B. In the preferred embodiment, the drive handle assembly 60 is similar to an old fashioned carpenter's brace used to drill holes in wood. The drive handle assembly 60 includes a generally U-shaped handle 62, a front portion 64 arranged and designed to connect to an end of the first shaft 40, and a rear knob 66. The U-shaped handle 62 is a kind of crank and gives the drive handle assembly 60 a great amount of torque and a low rotational speed. Elevating the mounting of the first shaft 40 to the case 32 provides additional height between the first shaft 40 and the pipe 22. The additional height provides clearance for the height of the U-shaped handle 62 and a worker's hand to pass by the pipe 22 when rotating the spectacle blind 10.
Although not shown, it may be desirable that the drive handle assembly 60 includes a three position ratcheting mechanism which allows ratcheting of the U-shaped handle 62 when in tight spots. A first position allows ratcheting in a clockwise direction, a second position allows ratcheting in a counter-clockwise direction, and a third position prohibits any ratcheting effect. Such ratcheting mechanisms are commonly known and understood to those skilled in the art.
A spectacle blind holder 70 is mounted on an end of the second shaft 50. The spectacle blind holder 70 is located outside of the case 32 adjacent the front side member 34A, oppositely of the drive handle assembly 60. The spectacle blind holder 70 is arranged and designed to secure the spectacle blind 10 to the swinging device 30 at the web 20. As shown in
As shown in
With a spectacle blind 10 installed between two flanges 24 as shown in
In operation, with the flange bolts 26 removed from the flanges 24 and the spectacle blind 10 connected to the swinging device 30 mounted securely to the pipe 22 on one side of the spectacle blind 10, the drive handle assembly 60 is connected to the first shaft 40 and manually turned to swing the spectacle blind 10 from a first position to a second position (open to closed or vice versa). Upon reaching the desired positioning of the spectacle blind 10 between the flanges 24, the stud bolts and nuts 26 may be re-installed in the flanges 24 and tightened.
It is to be understood that the swinging device 30 is mounted to the pipe 22 on only one side of the spectacle blind 10. The swinging device 30 is compact and removable, if desired. Even for 10-inch diameter pipe sizes and larger, the swinging device 30 is relatively small and can be lifted and mounted, even at high elevations, without using a crane. The swinging device can swing spectacle blinds of size 10″ and above without the need of a crane.
It is to be understood that the embodiments shown and described are preferred embodiments and the invention is not limited to these disclosed embodiments. It is to be further understood that the invention is not limited to the exact details of construction, operation, exact materials or embodiments shown and described, as obvious modifications and equivalents will be apparent to one skilled in the art. Accordingly, the invention is therefore to be limited only by the scope of the appended claims. While the specific embodiments have been illustrated and described, numerous modification come to mind without significantly departing from the spirit of the invention, and the scope of protection is only limited by the scope of the accompanying claims.
Number | Name | Date | Kind |
---|---|---|---|
1633161 | Cavenagh | Jun 1927 | A |
1998081 | Gerlich | Apr 1935 | A |
2011767 | Juengling | Aug 1935 | A |
2271282 | Young | Jan 1942 | A |
2339970 | Young | Jan 1944 | A |
2462493 | Hamer | Feb 1949 | A |
2462494 | Hamer | Feb 1949 | A |
2635643 | Hamer | Apr 1953 | A |
2789582 | Dunham | Apr 1957 | A |
2861599 | Hamer | Nov 1958 | A |
3165124 | Ausburn | Jan 1965 | A |
RE26238 | Snell | Jul 1967 | E |
3351099 | Shindler | Nov 1967 | A |
4178836 | Maisonneuve | Dec 1979 | A |
4343332 | Williams | Aug 1982 | A |
4452278 | Quinn | Jun 1984 | A |
4671324 | Neill | Jun 1987 | A |
5303742 | Junier | Apr 1994 | A |
5582211 | Monson | Dec 1996 | A |
20170030470 | Al-Amri | Feb 2017 | A1 |
Entry |
---|
International Search Report and Written Opinion for International Application No. PCT/US2018/056368; International Filing Date Oct. 17, 2018: Report dated Dec. 11, 2018; (pp. 1-11). |
Number | Date | Country | |
---|---|---|---|
20190128430 A1 | May 2019 | US |