US1031866A - Terminal for pneumatic-despatch-tube apparatus. - Google Patents
Terminal for pneumatic-despatch-tube apparatus. Download PDFInfo
- Publication number
- US1031866A US1031866A US34565606A US1906345656A US1031866A US 1031866 A US1031866 A US 1031866A US 34565606 A US34565606 A US 34565606A US 1906345656 A US1906345656 A US 1906345656A US 1031866 A US1031866 A US 1031866A
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- United States
- Prior art keywords
- valve
- carrier
- tube
- lever
- terminal
- Prior art date
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- Expired - Lifetime
Links
- 230000005540 biological transmission Effects 0.000 description 18
- 239000000969 carrier Substances 0.000 description 8
- 238000003780 insertion Methods 0.000 description 5
- 230000037431 insertion Effects 0.000 description 5
- VSCWAEJMTAWNJL-UHFFFAOYSA-K aluminium trichloride Chemical compound Cl[Al](Cl)Cl VSCWAEJMTAWNJL-UHFFFAOYSA-K 0.000 description 3
- 238000010276 construction Methods 0.000 description 3
- 239000010985 leather Substances 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 238000007599 discharging Methods 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65G—TRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
- B65G51/00—Conveying 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
- B65G51/04—Conveying the articles in carriers having a cross-section approximating that of the pipe or tube; Tube mail systems
- B65G51/26—Stations
Definitions
- T ALBERT W. PEARsALL, of Lowell, in the county of Middlesex and State of Massachusetts, have invented certain new and useful Improvements in Terminals for Pneumatic-Despatch-Tube Apparatus, of which the following is a speciiication.
- My invention relates to improvements in terminals for pneumatic despatch tube apparatus and is especially adapted for use on single tube systems wherein the terminal is required to be used as a pressure despatching and a vacuum receiving terminal.
- the object of the invention is to simplify the construction and increase the efiiciency and ease of operation of the terminal.
- Figure 1 is a vertical section of the device showing normal or closed position of valve and locking mechanism.
- Fig. 2 is a bottom plan view.
- Fig. 3 is a vertical section showing a carrier operating and releasing the locking mechanism preparatory to opening the valve.
- Fig. 4 shows the valve mechanism in open position and the carrier discharging.
- Fig. 5 is a vertical sectional view showing a modification of the device.
- A represents a transmission tube connected with the terminal C
- B is an air tube connected with a pump or blower and adapted to supply a vacuum or pressure within the transmission tube A through ports C and chambers C for the transmission of carriers.
- a plate D secured to the casing by screws D.
- an opening G for the passage of carriers.
- brackets E and F Pivoted to the bracket E by a pin H is a valve plate H carrying fastened thereto by rivets H the leather strips H and H comprising the valve.
- a lock lever J adapted to normally hold the valve H seated over the opening G by means of a helical spring J secured at one end to a pin F on the bracket F, and at the other end to the lock lever J.
- a lip J On the opposite end of the lever J is a lip J adapted to engage, when the valve H is closed, with a pin K mounted on the lower side of the valve plate H thereby locking the valve H in closed posi tion (see Fig. l).
- Mounted in a bushing L is a shoulder pin M, the lower end of said pin adapted to engage with the upper side of the lock lever J.
- the upward movement of this shoulder pin M is limited by a cotter pin M which permits the upper part of the pin M to project slightly above the valve when the lock lever J is in the locked or closed position as shown in Fig. 1.
- lVhen there is a vacuum in the tube and a carrier (see Fig. 3) is traveling in the direction indicated by the arrow, the valve is held closed by the atmospheric pressure on the outer side thereof.
- the carrier strikes and depresses the pin M pushing the lock lever J and lip J 3 out of engagement with the pin K thereby permitting the valve H to be swung open by the impact of the carrier thereon, allowing the carrier to discharge through the opening G as shown in Fig. 4..
- the valve H is then closed by means of the spring J 2 acting upon the lever J.
- valve H has been prevented from being opened by the high pressure within the tube by means of the lock lever J and any leakage which might be caused by any play in the locking mechanism is prevented by the flexible valve seat P which is mounted between the plate D and the plate P secured to the plate D by screws P and which flexible seat is held tightly against the leather strip H by the pressure within.
- a toggle joint comprised of levers y" and 3' is utilized instead of the lever J, the lever j being piv oted to the pin y at one end and at the opposite end by a pin 7' to the lever j.
- lhe helical spring j is adapted to act upon the lever y" and lever j to hold the valve it normally locked in closed position as shown in full lines.
- the pin j" in this position is slightly below a plane through pins 70 and preventing any but an outward movement of the toggle joint.
- a carrier in delivering strikes the pin m throwing the levers j and y" outward at" j and permitting the valve h to be opened by impact of the carrier thereon to the position shown in dotted lines, allowing the carrier to discharge through the valve opening.
- the valve h is now returned to normal or locked position. If it is desired to despatch a carrier, the handle a is pulled outward opening the valve h the carrier is inserted into the tube A, the handle is released, permitting the valve ]Lf to lock in closed position and the carrier is despatched through the tube A as heretofore described.
- a tube for the transmission of carriers in either direction provided with an opening for the insertion and discharge of carriers, an air-pipe communicating with said tube to supply air thereto or to exhaust air therefrom, a valve to control said opening, a locking lever to engage the valve to lock the same closed, mechanism actuated by an approaching carrier to disengage said lever from said valveto release the latter to permit the discharge of the carrier through the opening, and a spring bearing against the lever to force the latter into locking engagement with the valve, and said spring and said lever automatically operating to close and lock the valve against the opening after the discharge or insertion of a carrier through the opening.
- a tube for the transmission of carriers in either direction provided with an opening for the insertion and discharge of carriers, an air-pipe communicating with said tube to supply air-pressure therein in either direction, a hinged valve to control said opening, a pivoted locking lever operating to engage said valve to lock' the latter closed, a spring pressing said lever into locking engagement with said valve, a pin movably mounted in said valve to be struck by an approaching carrier to disengage the locking lever from the valve to free the latter to permit the discharge of the carrier, and said lever and said spring automatically operating to close and lock the valve after the discharge or insertion of a carrier through said opening.
- a chambered terminal casing , a tube for the transmission of carriers in either direction communicating with the chamber of the terminal casing and provided with a carrier inlet and outlet through said casing, a pipe communicating with the terminal chamber to supply air-pressure in either direction in the transmission tube, a valve hinged to the terminal casing to control the carrier inlet and outlet of the transmission tube, a locking lever pivoted to the terminal casing outside of the hinged valve operating to lock the valve closed, mechanism carried by the valve to be actuated by an approaching carrier in the transmission tube to disengage the locking lever from the valve to release the latter to permit the discharge of the carrier from the transmission tube through the carrier outlet, and a spring bearing against the locking lever to force the latter into loosing engagement with the valve, and said spring and said lever automatically operating to close and lock the valve over the carrier inlet and outlet of the transmission tube after the discharge or insertion of a carrier.
- a chambered terminal casing a tube for the transmission of carriers in either direction communicating with the chamber of the terminal casing and provided with a carrier inlet and outlet through said casing, a pipe communicating with the terminal chamber to supply air-pressure in either direction in the transmission tube, a valve hinged to the terminal casing to control the carrier inlet and outlet of the transmission tube, a projection on the outer side of said valve, a locking lever pivoted to the terminal casing outside of the hinged valve provided with a lip to engage said projection to lock the valve closed, a pin movably mounted in said valve to be struck by an approaching carrier in the transmission tube to move the locking lever to disengage its lip from the projection on the valve to release the latter to permit the discharge of the carrier from the transmission tube through the carrier outlet, and a spring bearing against the locking lever to force the lip of the lever into locking engagement with the projection on the valve, said spring and said lever autotwo subscribing Witnesses, this 28d day of matically operating to close and lock the
- valve oven the carrier inlet and outlet of the ALBERT PEARSALL tlansmlsslon tube after the discharge or 111- Vitnesses sertion of a carrier.
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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)
Description
A. W. PEARSALL. TERMINAL FOB PNEUMATIC DESPATGH TUBE APPARATUS.
' APPLICATION IILED NOV. 30, 1906.
Patented July 9, 1912.
2 SHEET8-SEEET 1.
COLUMBIA PLANOGRAPH co., WASHINGTON. n. c.
A. W. 'PEARSALL; TERMINAL FOR PNEUMATIC DESPATGH TUBE APPARATUS.
APPLIOATION FILED NOV. 30, 1906.
Patented July 9; 1912.
2 SHEETS-SHEET 2.
COLUMBIA PLANMilAPn 120., WASHINGTON, D. c.
UN STATES PATEN T ALBERT VJ. PEAESALL, OF LOWELL, MASSACHUSETTS, ASSIGNOR TO LAIVISON CONSOLI- DATED STORE SERVICE COMPANY, OF NEWARK, NEW JERSEY, A CORPORATION OF NET/V JERSEY.
TERMINAL FOR PNEUMATIC-DESPATCH-TUBE APPARATUS.
Specification of Letters Patent.
Patented Jniy 9, 1912.
Application filed November 30, 1906. Serial No. 345,656.
To all whom it may concern Be it known that T, ALBERT W. PEARsALL, of Lowell, in the county of Middlesex and State of Massachusetts, have invented certain new and useful Improvements in Terminals for Pneumatic-Despatch-Tube Apparatus, of which the following is a speciiication.
My invention relates to improvements in terminals for pneumatic despatch tube apparatus and is especially adapted for use on single tube systems wherein the terminal is required to be used as a pressure despatching and a vacuum receiving terminal.
The object of the invention is to simplify the construction and increase the efiiciency and ease of operation of the terminal.
In the accompanying drawings which illustrate a construction embodying my invention, Figure 1 is a vertical section of the device showing normal or closed position of valve and locking mechanism. Fig. 2 is a bottom plan view. Fig. 3 is a vertical section showing a carrier operating and releasing the locking mechanism preparatory to opening the valve. Fig. 4 shows the valve mechanism in open position and the carrier discharging. Fig. 5 is a vertical sectional view showing a modification of the device.
Like letters of reference refer to like parts throughoutthe several views.
A represents a transmission tube connected with the terminal C, and B is an air tube connected with a pump or blower and adapted to supply a vacuum or pressure within the transmission tube A through ports C and chambers C for the transmission of carriers. In the lower part of the terminal or casing C is a plate D secured to the casing by screws D. Located in said plate and directly opposite the mouth of the transmission tube A is an opening G for the passage of carriers. On the lower side of the plate D are brackets E and F. Pivoted to the bracket E by a pin H is a valve plate H carrying fastened thereto by rivets H the leather strips H and H comprising the valve. Pivoted at one end on the pin J between brackets F is a lock lever J adapted to normally hold the valve H seated over the opening G by means of a helical spring J secured at one end to a pin F on the bracket F, and at the other end to the lock lever J. On the opposite end of the lever J is a lip J adapted to engage, when the valve H is closed, with a pin K mounted on the lower side of the valve plate H thereby locking the valve H in closed posi tion (see Fig. l). Mounted in a bushing L is a shoulder pin M, the lower end of said pin adapted to engage with the upper side of the lock lever J. The upward movement of this shoulder pin M is limited by a cotter pin M which permits the upper part of the pin M to project slightly above the valve when the lock lever J is in the locked or closed position as shown in Fig. 1.
lVhen there is a vacuum in the tube and a carrier (see Fig. 3) is traveling in the direction indicated by the arrow, the valve is held closed by the atmospheric pressure on the outer side thereof. In order to release and open the valve, the carrier strikes and depresses the pin M pushing the lock lever J and lip J 3 out of engagement with the pin K thereby permitting the valve H to be swung open by the impact of the carrier thereon, allowing the carrier to discharge through the opening G as shown in Fig. 4.. The valve H is then closed by means of the spring J 2 acting upon the lever J. If it is desired to despatch a carrier through the tube A in the opposite direction, the operator grasps the curved projecting end N of the lever J, and pulling it downward, throws the lip J out of engagement with the pin K releasing the valve H and permitting it to open. The carrier is now inserted into the tube, the lever J released, and the valve H permitted to close by the action of the spring J The valve is now locked in closed position by the lever J as heretofore described. An air pressure greater than the atmosphere is now admitted through the tube B, chamber C and ports G into the transmission tube A causing the carrier to be driven therethrough to the opposite terminal. in the meantime, the valve H has been prevented from being opened by the high pressure within the tube by means of the lock lever J and any leakage which might be caused by any play in the locking mechanism is prevented by the flexible valve seat P which is mounted between the plate D and the plate P secured to the plate D by screws P and which flexible seat is held tightly against the leather strip H by the pressure within.
In the modification, Fig. 5, a toggle joint comprised of levers y" and 3' is utilized instead of the lever J, the lever j being piv oted to the pin y at one end and at the opposite end by a pin 7' to the lever j. lhe helical spring j is adapted to act upon the lever y" and lever j to hold the valve it normally locked in closed position as shown in full lines. The pin j" in this position is slightly below a plane through pins 70 and preventing any but an outward movement of the toggle joint. A carrier in delivering, strikes the pin m throwing the levers j and y" outward at" j and permitting the valve h to be opened by impact of the carrier thereon to the position shown in dotted lines, allowing the carrier to discharge through the valve opening. The valve h is now returned to normal or locked position. If it is desired to despatch a carrier, the handle a is pulled outward opening the valve h the carrier is inserted into the tube A, the handle is released, permitting the valve ]Lf to lock in closed position and the carrier is despatched through the tube A as heretofore described.
Having thus described the nature of my invention and set forth a construction embodying the same, what I claim as new and desire to secure by Letters Patent of the United States is:
1. In pneumatic despatch tube apparatus, a tube for the transmission of carriers in either direction provided with an opening for the insertion and discharge of carriers, an air-pipe communicating with said tube to supply air thereto or to exhaust air therefrom, a valve to control said opening, a locking lever to engage the valve to lock the same closed, mechanism actuated by an approaching carrier to disengage said lever from said valveto release the latter to permit the discharge of the carrier through the opening, and a spring bearing against the lever to force the latter into locking engagement with the valve, and said spring and said lever automatically operating to close and lock the valve against the opening after the discharge or insertion of a carrier through the opening.
2. In pneumatic despatch tube apparatus, a tube for the transmission of carriers in either direction provided with an opening for the insertion and discharge of carriers, an air-pipe communicating with said tube to supply air-pressure therein in either direction, a hinged valve to control said opening, a pivoted locking lever operating to engage said valve to lock' the latter closed, a spring pressing said lever into locking engagement with said valve, a pin movably mounted in said valve to be struck by an approaching carrier to disengage the locking lever from the valve to free the latter to permit the discharge of the carrier, and said lever and said spring automatically operating to close and lock the valve after the discharge or insertion of a carrier through said opening.
3. In pneumatic despatch tube apparatus, a chambered terminal casing, ,a tube for the transmission of carriers in either direction communicating with the chamber of the terminal casing and provided with a carrier inlet and outlet through said casing, a pipe communicating with the terminal chamber to supply air-pressure in either direction in the transmission tube, a valve hinged to the terminal casing to control the carrier inlet and outlet of the transmission tube, a locking lever pivoted to the terminal casing outside of the hinged valve operating to lock the valve closed, mechanism carried by the valve to be actuated by an approaching carrier in the transmission tube to disengage the locking lever from the valve to release the latter to permit the discharge of the carrier from the transmission tube through the carrier outlet, and a spring bearing against the locking lever to force the latter into loosing engagement with the valve, and said spring and said lever automatically operating to close and lock the valve over the carrier inlet and outlet of the transmission tube after the discharge or insertion of a carrier.
4t. In pneumatic despatch tube apparatus, a chambered terminal casing, a tube for the transmission of carriers in either direction communicating with the chamber of the terminal casing and provided with a carrier inlet and outlet through said casing, a pipe communicating with the terminal chamber to supply air-pressure in either direction in the transmission tube, a valve hinged to the terminal casing to control the carrier inlet and outlet of the transmission tube, a projection on the outer side of said valve, a locking lever pivoted to the terminal casing outside of the hinged valve provided with a lip to engage said projection to lock the valve closed, a pin movably mounted in said valve to be struck by an approaching carrier in the transmission tube to move the locking lever to disengage its lip from the projection on the valve to release the latter to permit the discharge of the carrier from the transmission tube through the carrier outlet, and a spring bearing against the locking lever to force the lip of the lever into locking engagement with the projection on the valve, said spring and said lever autotwo subscribing Witnesses, this 28d day of matically operating to close and lock the November A. D. 1906.
valve oven the carrier inlet and outlet of the ALBERT PEARSALL tlansmlsslon tube after the discharge or 111- Vitnesses sertion of a carrier.
In testlmony whereof, I have slgned my A. L. MEssER, name to thls speelficatlon 1n the presence of A. R. LARRABEE.
Copies of this patent may be obtained for five cents each, by addressing the Commissioner of Patents, Washington, D. C.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US34565606A US1031866A (en) | 1906-11-30 | 1906-11-30 | Terminal for pneumatic-despatch-tube apparatus. |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US34565606A US1031866A (en) | 1906-11-30 | 1906-11-30 | Terminal for pneumatic-despatch-tube apparatus. |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US1031866A true US1031866A (en) | 1912-07-09 |
Family
ID=3100158
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US34565606A Expired - Lifetime US1031866A (en) | 1906-11-30 | 1906-11-30 | Terminal for pneumatic-despatch-tube apparatus. |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US1031866A (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4003530A (en) * | 1975-08-13 | 1977-01-18 | Davis Orin H | Pneumatic courier discharge unit |
| US7686546B1 (en) * | 2005-09-14 | 2010-03-30 | Diebold Incorporated | Pneumatic transport tube system |
-
1906
- 1906-11-30 US US34565606A patent/US1031866A/en not_active Expired - Lifetime
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4003530A (en) * | 1975-08-13 | 1977-01-18 | Davis Orin H | Pneumatic courier discharge unit |
| US7686546B1 (en) * | 2005-09-14 | 2010-03-30 | Diebold Incorporated | Pneumatic transport tube system |
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