US527039A - And boston - Google Patents

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US527039A
US527039A US527039DA US527039A US 527039 A US527039 A US 527039A US 527039D A US527039D A US 527039DA US 527039 A US527039 A US 527039A
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terminal
carrier
openings
air current
cylinder
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G51/00Conveying articles through pipes or tubes by fluid flow or pressure; Conveying articles over a flat surface, e.g. the base of a trough, by jets located in the surface
    • B65G51/02Directly conveying the articles, e.g. slips, sheets, stockings, containers or workpieces, by flowing gases
    • B65G51/03Directly conveying the articles, e.g. slips, sheets, stockings, containers or workpieces, by flowing gases over a flat surface or in troughs

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  • the object of my invention is to provide means for retarding the velocity of the carrier prior to its discharge from the pneumatic system at either the salesmans or the cashiers end, and it consists particularly in providing mechanism for controlling the direction of the air current at the terminal so as to oppose the carrier with a pressure which materially reduces its velocity when the carrier reaches said terminal, and it further consists of certain novel features, arrangements and combinations hereinafter described and particularly pointed out in the claims.
  • FIG. 1 is a side view of the terminal partly in section.
  • Fig. 2 is an end view looking from the right hand end.
  • Fig. 3 is a transverse section on the line 2, 2 of Fig. 1.
  • Fig. at is an enlarged detail perspective view of the inner cylinder of the terminaf
  • Fig. 5 is a detail view of the inner cylinder looking from the left hand, showing the upper. and the lower air exit openings.
  • Fig. 6 is a plan view of the top of the terminal.
  • Fig. 7 is a detail view in section of the top casting of the terminal.
  • Fig. 8 is a plan view of the bottom plate of the top casting.
  • Fig. 9 is a detail view in section of the top casting of the terminal taken on a line at right angles to the view shown in Fig. 7.
  • Figs. 10, 11, 12 and 13 represent respectively end, side, transverse Section and perspective views of the valve.
  • the terminal A which is especially adapted for downwardly discharging carriers, is supported by the hollow standard B, and it consistsof an outer cylinder C secured in the top of the standard B, and resting upon it is a casting D having a circular extension E provided with a groove F, into which the top of openings K in the casting D.
  • the valves H are held closed, as shown in Fig. 1, by the suction of the air current passing out through the four openings in the top casting, and assisted by the springs H.
  • the openings J are of a shape as shown in 9.
  • the air current after passing through the openings J and K is directed by the bottom plate D of casting D to the passage M on the right hand side of the terminal between the outer and inner shells C, C.
  • This passage M is separated from the opposite side of the terminal by the two vertical strips N on each side between the outer and inner cylinders C, C, so that the air is compelled to pass through the openings O in the bottom of the inner cylinder C and up through the interior of said cylinder to the openings P, thence in to the passage M and down into the hollow casting Band out through the main air tube L.
  • the bottom plate D of the top casting D together with the vertical strips N, prevent the air, after it has passed through the openings J and K, from entering the passageM, and direct it into the passage M and thence the air current passes through the interior of the cylinder C to the passage M.
  • the area of the four openings J and K in the top casting D, as'well as the passages M and M, are preferably of greater area thanv the main tube so as to afiord sufficient area to prevent choking of the current.
  • a sliding cylinder C adapted to move vertically within the inner cylinder C by op erating the pin Q, which pin slides up and down in the slot N in one of the vertical strips N, and said'inner cylinder C is secured in its adjusted position by'means of thumb screw Q.
  • This sliding cylinder 0 is provided for the purpose of directing the current either through the top openings Por the lower openings P on the left hand side of the inner cylinder 0.
  • the inner cylinder C can be raised up so as to entirely close the upper openings P and thus compel all the air current to pass across the cylinder and out through the lower openings P to the passage M.
  • the pressure is not led up to meet the head of the carrier coming through the terminal, nevertheless itopposes the passage of the carrier and retards its velocity, as its velocity is necessarily diminished in passing through the current crossing the interior of the cylinder through which the carrier is moving, so that while the current is not led up to meet the head of the carrier it is still in opposition to the travel of the carrier passing through the terminal, and thereby retards its velocity.
  • the carrier enters the terminal from the main tube L it first impacts and opens the valves H, then enters the interior of the inner'cylinder G where it meets the main current, as above described, and is retarded to such a de gree that it opens the valve R, and then passes into the receiving chute S at a minimum velocity, and rolls on to the table from the chute.
  • the terminal can be used at either the cashiers or the salesmans end.
  • the impact valve R at the bottom of the terminal, is kept closed by the suction of the air current.
  • a terminal consisting of an inner cylinder through which the carrier passes from the main tube and an outer cylinder, valves closing the passage between the main air tube and the inner cylinder and diverting the air current into the outer cylinder, and means for directing the air current into the inner cylinder below the valves in a direction opposite to the travel of the carrier, whereby the velocity of the carrier is reduced in passing through said terminal, substantially as set forth.

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  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Fluid Mechanics (AREA)
  • Mechanical Engineering (AREA)
  • Quick-Acting Or Multi-Walled Pipe Joints (AREA)
  • Sewing Machines And Sewing (AREA)
  • Respiratory Apparatuses And Protective Means (AREA)

Description

" "2 Shets-Sheet 1,
(No Model.)
0'. AMES. I TERMINAL FOR PNEUMATIC DISPATCH TUBES.
-No. 527,039. Patented Oct. 9, 1894.
THE nuRms mas ed. nucrouma. wAsl-uumou, 9.12.
(No Model.) z s ii-eets-sneet 2.
0. AMES. TERMINAL FOR PNBUMATIGDISPATCH TUBES.
No. 527,039; Patented Oct. 9, 1894.
UNITED STATES PAT NT- OFFICE.
OAKES'AMES, OF CANTON, MASSACHUSETTS, ASSIGNOR TO THE METEOR DESPATC'H COMPANY, OF PORTLAND, MAINE, AND BOSTON, MASSA- CHUSETTS.
SPECIFICATION forming part of Letters Patent No. 527,039, dated October 9, 1894. I
' A plication filed November 1, 1893. Serial No. 489,772. (No model.)
To all whom it may concern.-
-Be it known that I, OAKES AMES, of Canton, county of Norfolk, and Commonwealth of Massachusetts, have invented certain new and useful Improvements in Terminals for Pneumatic DispatchTuloes; and I do hereby declare that the following is a full, clear, and exact description of the invention,which will enable others skilled in the art to which it appertains to make and use the same.
The object of my invention is to provide means for retarding the velocity of the carrier prior to its discharge from the pneumatic system at either the salesmans or the cashiers end, and it consists particularly in providing mechanism for controlling the direction of the air current at the terminal so as to oppose the carrier with a pressure which materially reduces its velocity when the carrier reaches said terminal, and it further consists of certain novel features, arrangements and combinations hereinafter described and particularly pointed out in the claims.
In the accompanying drawings Figure 1 is a side view of the terminal partly in section. Fig. 2 is an end view looking from the right hand end. Fig. 3 is a transverse section on the line 2, 2 of Fig. 1. Fig. at is an enlarged detail perspective view of the inner cylinder of the terminaf Fig. 5 is a detail view of the inner cylinder looking from the left hand, showing the upper. and the lower air exit openings. Fig. 6 is a plan view of the top of the terminal. Fig. 7 is a detail view in section of the top casting of the terminal. Fig. 8 is a plan view of the bottom plate of the top casting. Fig. 9 is a detail view in section of the top casting of the terminal taken on a line at right angles to the view shown in Fig. 7. Figs. 10, 11, 12 and 13 represent respectively end, side, transverse Section and perspective views of the valve.
Like letters of reference refer to like parts throughout the several views.
The terminal A, which is especially adapted for downwardly discharging carriers, is supported by the hollow standard B, and it consistsof an outer cylinder C secured in the top of the standard B, and resting upon it is a casting D having a circular extension E provided with a groove F, into which the top of openings K in the casting D. The valves H are held closed, as shown in Fig. 1, by the suction of the air current passing out through the four openings in the top casting, and assisted by the springs H. The openings J are of a shape as shown in 9. The air current after passing through the openings J and K is directed by the bottom plate D of casting D to the passage M on the right hand side of the terminal between the outer and inner shells C, C. This passage M is separated from the opposite side of the terminal by the two vertical strips N on each side between the outer and inner cylinders C, C, so that the air is compelled to pass through the openings O in the bottom of the inner cylinder C and up through the interior of said cylinder to the openings P, thence in to the passage M and down into the hollow casting Band out through the main air tube L.
The bottom plate D of the top casting D, together with the vertical strips N, prevent the air, after it has passed through the openings J and K, from entering the passageM, and direct it into the passage M and thence the air current passes through the interior of the cylinder C to the passage M.
The area of the four openings J and K in the top casting D, as'well as the passages M and M, are preferably of greater area thanv the main tube so as to afiord sufficient area to prevent choking of the current.
Within the inner cylinder C there is arranged a sliding cylinder C adapted to move vertically within the inner cylinder C by op erating the pin Q, which pin slides up and down in the slot N in one of the vertical strips N, and said'inner cylinder C is secured in its adjusted position by'means of thumb screw Q. This sliding cylinder 0 is provided for the purpose of directing the current either through the top openings Por the lower openings P on the left hand side of the inner cylinder 0.
When in the position shown in dottedlines, Figs. 1 and 4, the-entire current passes up the interior of theinnercylinder O'and meets the carrier after it has passed through the valves II, and the air then passes out through the openings P into the passage M and then on to the main tube L, but if this pressure is found too strong and retards the carrier too much the sliding cylinder G can be raised so as to allow a portion of the current to pass directly through the interior of the inner cylinder C and out through the lower openings P to the passage M, and thereby not oppose to the head of carrier the entire pressure of the air current. It the pressure of the air current is still found to be too strong and retards the carrier too much, the inner cylinder C can be raised up so as to entirely close the upper openings P and thus compel all the air current to pass across the cylinder and out through the lower openings P to the passage M. In this arrangement while the pressure is not led up to meet the head of the carrier coming through the terminal, nevertheless itopposes the passage of the carrier and retards its velocity, as its velocity is necessarily diminished in passing through the current crossing the interior of the cylinder through which the carrier is moving, so that while the current is not led up to meet the head of the carrier it is still in opposition to the travel of the carrier passing through the terminal, and thereby retards its velocity.
From the above it will be seen that as the carrier enters the terminal from the main tube L it first impacts and opens the valves H, then enters the interior of the inner'cylinder G where it meets the main current, as above described, and is retarded to such a de gree that it opens the valve R, and then passes into the receiving chute S at a minimum velocity, and rolls on to the table from the chute. .The terminal can be used at either the cashiers or the salesmans end.
If from any cause the carrier should stop in the terminal the air current can be shut 01f by closing the valve T, whereupon the carrier would immediately drop from the terminal by its own weight, open the Valve R and pass on into the chute S.
The screws to pass up through the bottom of the standard B and are screwed into the bottom plate D of the top casting D, and thereby secure firmly together in their proper positions all the parts of the terminal.
As is well known in pneumatic systems the impact valve R, at the bottom of the terminal, is kept closed by the suction of the air current.
I do not limit myself to the exact arrangements and descriptions shown as the same may be varied without departing from the spirit of my invention.
Having thus ascertain ed the nature and set forth the construction of my invention, what I claim as new, and desire to secure by Letters Patent of the United States, is-
l. The combination, with a pneumatic dispatch tube system, of aterminal and means for directing the propelling air current through said terminal in opposition to the travelot the carrier.
2. The combination, with a pneumatic dispatch tube system, of a terminal, means for directing the propelling air current through said terminal in opposition to the travel of the carrier, and means for varying the pressure of the air current moving in opposition to the travel of the carrier.
3. In a pneumatic dispatch tube system, a terminal consisting of an inner cylinder through which the carrier passes from the main tube and an outer cylinder, valves closing the passage between the main air tube and the inner cylinder and diverting the air current into the outer cylinder, and means for directing the air current into the inner cylinder below the valves in a direction opposite to the travel of the carrier, whereby the velocity of the carrier is reduced in passing through said terminal, substantially as set forth.
4. The combination, with a pneumatic dispatch tube system, of a terminal and means for directing the propelling air current through said terminal across the line of travel of the carrier whereby the travel of the carrier is opposed and its velocity is retarded.
In testimony whereof I have signed my name to this specification, in the presence of two subscribing witnesses, on this 7th day of October, 1893.
OAKES AMES. Witnesses: A. S. TEMPLE,
F. A. SPEAR.
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