Locomotive sanding system
10907737 ยท 2021-02-02
Inventors
Cpc classification
F16J15/0887
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B61C15/10
PERFORMING OPERATIONS; TRANSPORTING
F16J15/028
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60B39/024
PERFORMING OPERATIONS; TRANSPORTING
B60B39/08
PERFORMING OPERATIONS; TRANSPORTING
B60B39/04
PERFORMING OPERATIONS; TRANSPORTING
F16J15/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60B39/025
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16J15/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60B39/08
PERFORMING OPERATIONS; TRANSPORTING
F16J15/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B61C15/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A locomotive sanding system is described for conveying sand from a sand tower to a sand box mounted on a locomotive. The invention is designed to prevent personnel from being subjected to sand and sand dust during the sand box being filled with sand from the sand tower. The system includes a universal sealing nozzle which may be used with the locomotive sanding system or other devices. The universal sealing nozzle includes an expansion seal extending therearound which may be moved from a retracted position to an expanded position. When the nozzle is inserted into the fill pipe of the sand box, the expansion seal is expanded to sealably engage the inside surface of the fill pipe.
Claims
1. A universal sealing nozzle, comprising: a body portion having a first end, a second end and an outer side; said body portion having a central passageway, having upper and lower ends, extending between said first and second ends of said body portion; a first ring member extending outwardly from said outer side of said body portion below said upper end of said body portion; a tapered nose portion at said second end of said body portion; said tapered nose portion having inner and outer ends; said tapered nose portion including a ring-shaped member at said inner end thereof; said ring-shaped member of said nose portion having a diameter which is the same as the diameter of said first ring member; said ring-shaped member of said nose portion being spaced from said first ring member to define an annular recess between said ring-shaped member of said nose portion and said first ring member; said nose portion including a tapered wall which extends from said ring-shaped member thereof to said second end of said body portion; said ring-shaped member of said nose portion and said tapered wall being integrally formed; said outer side of said body portion having a plurality of radially spaced-apart wrench flats formed therein at said upper end thereof said body portion having an elongated groove formed therein which extends from one of said wrench flats, through said ring and into said recess; an expansion seal positioned in said recess; said expansion seal being selectively movable between retracted and expanded positions; said outer side of said expansion seal, when said expansion seal is in said retracted position, being substantially flush with said outer sides of said upper and lower annular rings; said outer side of said expansion seal, when said expansion seal is in said expanded position, being positioned outwardly of said outer sides of said upper and lower annular rings; and said sealing nozzle being configured to be extended downwardly into a tube, having an inside surface, whereby said expansion seal will move into sealing engagement with the inside surface of the tube, when in said expanded position.
2. The universal sealing nozzle of claim 1 wherein said tube is a fill tube for a locomotive sand box.
3. The universal sealing nozzle of claim 1 wherein said first end of said central passageway has an internally threaded portion formed therein.
4. The universal sealing nozzle of claim 1 wherein said elongated groove of said body portion being configured to receive a tube therein which extends from a source of pressurized air to said expansion seal.
5. The universal sealing nozzle of claim 4 wherein said tube has a control valve imposed therein.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Non-limiting and non-exhaustive embodiments of the present invention are described with reference to the following figures, wherein like reference numerals refer to like parts throughout the various views unless otherwise specified.
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DESCRIPTION OF THE PREFERRED EMBODIMENT
(12) Embodiments are described more fully below with reference to the accompanying figures, which form a part hereof and show, by way of illustration, specific exemplary embodiments. These embodiments are disclosed in sufficient detail to enable those skilled in the art to practice the invention. However, embodiments may be implemented in many different forms and should not be construed as being limited to the embodiments set forth herein. The following detailed description is, therefore, not to be taken in a limiting sense in that the scope of the present invention is defined only by the appended claims.
(13) The numeral 10 refers to the universal sealing nozzle of this invention. The nozzle 10 will be described as being used in a locomotive sanding system with the understanding that the universal sealing nozzle 10 may be used in various other situations. Further, although the nozzle 10 will be described as being vertically disposed with an upper end and a lower end, the nozzle 10 may be horizontally disposed or inclined depending upon the situation in which it is used.
(14) Nozzle 10 includes an upper end 12 and a lower end 14. Nozzle 10 has a bore or passageway 16 formed therein which extends between the upper and lower ends thereof. The upper end of nozzle 10 has an internally threaded portion 18 formed therein. The exterior of the nozzle 10 has a plurality of radially spaced wrench flats 19 formed therein at the upper end to enable a wrench to be applied thereto.
(15) Nozzle 10 includes a ring 20 which extends outwardly therefrom below the wrench flats 19. Ring 20 has a notch 22 formed therein as seen in the drawings. Nozzle 10 also has a ring 24 which extends outwardly therefrom below ring 20. Rings 20 and 24 have the same outer diameters. The rings 20 and 24 define an annular or ring-shaped recess 26 therebetween. Nozzle 10 includes a tapered nose portion 28 which extends downwardly and inwardly from ring 24. Ring 24 and tapered nose portion 28 are integrally formed.
(16) The numeral 30 refers to an elongated groove which is formed in nozzle 10 and which extends downwardly from a flat 19, into nozzle 10 above ring 20, through ring 20 and into recess 26. In most situations, a support collar 32 is positioned on ring 20 and is secured thereto by screws 34 extending through openings 36 in support collar 32 and into the threaded openings 38 in ring 20.
(17) The numeral 40 refers to an expandable ring-shaped expansion seal which is positioned in recess 26. Seal 40 has an end 42 of a hose 44 secured thereto for moving the seal between its retracted position to its expanded position. Hose 44 extends upwardly through groove 30 and notch 22 has a valve 46 secured thereto. When the seal 40 is in its retracted position as seen in
(18) A valve 46 is secured to the hose 44 and is in communication with a source of pressurized gas such as nitrogen or pressurized air. Valve 46 is preferably of the three position type. In a first position, valve 46 prevents pressurized gas from passing therethrough to the expansion seal 40. In a second position, valve 46 permits pressurized gas to pass therethrough to the expansion seal 40 to expand the same. In a third position, the pressurized gas in the expansion seal 40 and the hose 44 between expansion seal 40 and valve 46 is exhausted to the atmosphere.
(19) The universal sealing nozzle 10 will be described in the drawings as being used with a locomotive sanding system 48. As stated above, the universal sealing nozzle may be used with different structures. The numeral 50 refers to a sand tower of conventional design. Sand tower 50 is filled with traction sand and includes a sand discharge outlet 52 which is in communication with the sand inlet end 54 of a valve 56 of conventional design. The valve 56 includes a sand discharge outlet 58. Valve 56 is selectively movable between open and closed positions. An elongated hose 60 has its sand inlet end 62 connected to the sand outlet end 58 of valve 56.
(20) The numeral 64 refers to a valve which is preferably identical to valve 56. The sand inlet end 66 of valve 64 is connected to the sand outlet end 68 of hose 60. Valve 64 is movable between open and closed positions. Valve 64 includes a threaded lower end 68. The nozzle 10 has its upper end threadably secured to the lower end of valve 64.
(21) As stated above, the universal sealing nozzle 10 is well suited for use with a locomotive sanding system 48. The locomotive 71 includes a plurality of sand boxes 70 mounted thereon. Each of the sand boxes 70 have a fill pipe or tube 72 which extends upwardly from the sand box 70. The tube 72 includes an open upper end 74. Tube 72 has an inner surface 76.
(22) As seen, each of the sand boxes 70 have a pipe or hose 78 extending therefrom to deposit traction sand onto a railroad rail 80.
(23) A sand box 70 is filled with traction sand as will now be described. Initially, valves 56 and 64 will be in the closed position. Initially, expansion seal 40 will be in its retracted or deflated condition. The hose 60 and the nozzle 10 will be manipulated so that the nozzle 10 may be inserted downwardly into the fill pipe 72 until support collar 32 rests on the upper end of fill pipe 72 as seen in
(24) Valve 56 will then be opened so that the hose 60 is filled with sand. Valve 46 is then moved to a position wherein pressurized gas may pass therethrough to expand the expansion seal 40 as seen in
(25) The valve 64 is then opened so that the traction sand will flow downwardly through the nozzle 10 into the sand box 70. The expansion seal 40 prevents sand or dust in the sand box 70 from passing outwardly therefrom. When the sand box 70 is filled with sand, the valve 64 is closed. Valve 56 may also be closed if so desired. The valve 46 is then moved to a position whereby the pressurized gas in hose 44 between valve 46 and the expansion seal 40 is exhausted. The expansion seal 40 then moves to its retracted or deflated position to enable the nozzle 10 to be removed from the fill pipe 72. The cover of the fill pipe 72 is then closed.
(26) The nozzle 10 prevents sand and dust from passing outwardly into the atmosphere. The fact that valve 64 is used on the hose 60 eliminates the need to drain the sand in hose 60 between uses.
(27) Thus it can be seen that the invention accomplishes at least all of its stated objectives.
(28) Although the invention has been described in language that is specific to certain structures and methodological steps, it is to be understood that the invention defined in the appended claims is not necessarily limited to the specific structures and/or steps described. Rather, the specific aspects and steps are described as forms of implementing the claimed invention. Since many embodiments of the invention can be practiced without departing from the spirit and scope of the invention, the invention resides in the claims hereinafter appended.