Wet/dry vacuum cleaning systems are commonly used in commercial, industrial, and residential settings for cleaning and purging various types of drains and equipment, including piping, plumbing fittings and fixtures, drain and filter conduits, and many other fluid carrying systems, components and lines. Vacuum (suction) or positive pressure is normally applied by the system through lines. The lines typically are secured to a fitting, which connects the line with the drain or other area to be cleaned or purged.
The fittings now in use, regardless of their shape and irrespective of their means of attachment, each can only accommodate a line of a single diameter. A particular diameter fitting must be used with the same diameter sized line. This, of course, requires that many different fittings be provided with a given cleaning system which uses multiple sized lines. This results in the added expense of purchasing fittings and the inconvenience of transporting multiple fittings to a worksite or discovering that the right sized fitting is missing for the job at hand.
It is thus the object of the present invention to overcome the disadvantages and limitations of prior drain fittings by providing one drain fitting which is adaptable for use with a plurality of lines of varying diameter sizes. A single fitting can now receive and maintain many different sized lines, thus eliminating the need for the purchase of multiple fittings and the inconvenience associated with transporting many different fittings to accommodate different sized lines.
These and other advantages are accomplished by the present invention, a drain fitting which has a unitary body with a lower section and an upper section upstanding from the lower section. The lower section encompasses a space and is open to the drain line to be cleaned. The upper section has a side wall and an inner wall which forms a channel. The inner wall encompasses a through passage which is open to the space encompassed within the lower section. A line of a given diameter can thus be received and maintained around the side walls. Another line of different diameter can be received and maintained within the channel and lines of other different diameters can be maintained within the through passage.
Novel features which are considered as characteristic of the invention are set forth in particular in the appended claims. The invention itself, however, both as to its design, construction and use, together with the additional features and advantages thereof, are best understood upon review of the following detailed description with the reference to the accompanying drawings.
Drain cleaning fitting 1 is an integral, unitary body comprising lower section 2 having outer wall 4. Wall 4 is curvilinear in nature and has its widest diameter at its bottom end. Wall 4 encompasses space 6 which, at its bottom end, comprises opening 8 which is configured to be placed over the area to which vacuum suction or pressure forces are to be applied. Lip 9 surrounds the bottom of lower section 2.
Upper section 10 is upstanding from lower section 2 and comprises vertically extending side wall 12 and vertically extending inner wall 14, both circular in configuration. Circular channel 16 is formed between side wall 12 and inner wall 14. Through passage 20, extending the length of upper section 10, is open at its top end and, at its bottom end, is open to space 6. See
In use, fitting 1 receives and maintains lines, such as lines 30, 32, 34 and 36 in place, as shown in
As a result of fitting 1 of the present invention, vacuum suction and positive pressure lines of varying diameters can be receiving by and maintained on the fitting. For example, the diameter of line 30 shown in
Thus it is seen that drain cleaning fitting 1 is quite versatile. This single fitting can be used in a system which employs a variety of diameter lines or with many systems which have lines of different diameters. One fitting can now be used where, in the past, many were needed.
It is anticipated that standard lines ranging from two and a half inches in diameter to an inch and a quarter in diameter will be used with the fitting of this invention. However, it is specifically stated that the subject invention is not to be considered restricted by size. The fitting can be configured with any desired outside and inside diameter dimensions.
In addition, the scope of the invention is not to be considered restricted by the shape of the fitting. The embodiment disclosed shows a fitting which is circular in nature, since most lines in pressure systems are circular. However, the fitting of this invention can be configured in any geometric shape, so as to conform with the shape of the line being used.
The unitary body of fitting 1 can be fabricated as a single hard plastic mold piece. It can also be made of hard rubber, molded plastic, or similar material.
Attachment of the vacuum/pressure lines to fitting 1 can be accomplished in a number of ways. For instance, for certain applications it will be enough to just insert resilient lines onto or into fitting 1 to form a snug fit over or in the fitting. Where a tighter and more fluid proof connection is required, line or hose clamps may be used. The outside or inside surfaces of side wall 12 and/or internal wall 14 can also be threaded, in order to provide a secure threadable connection between fitting 1 and the line to be attached.
Certain novel features and components of this invention are disclosed in detail in order to make the invention clear in at least one form thereof. However, it is to be clearly understood that the invention is disclosed is not necessarily limited to the exact from and details as disclosed, since it is apparent that various modifications and changes may be made without departing form the spirit of the invention.
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Number | Date | Country | |
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20070013187 A1 | Jan 2007 | US |