US3823671A - System for transfer of goods on railroad trains when in motion - Google Patents

System for transfer of goods on railroad trains when in motion Download PDF

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US3823671A
US3823671A US00342056A US34205673A US3823671A US 3823671 A US3823671 A US 3823671A US 00342056 A US00342056 A US 00342056A US 34205673 A US34205673 A US 34205673A US 3823671 A US3823671 A US 3823671A
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trains
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main
local
transfer
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61DBODY DETAILS OR KINDS OF RAILWAY VEHICLES
    • B61D39/00Wagon or like covers; Tarpaulins; Movable or foldable roofs
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61KAUXILIARY EQUIPMENT SPECIALLY ADAPTED FOR RAILWAYS, NOT OTHERWISE PROVIDED FOR
    • B61K1/00Transferring passengers, articles, or freight to and from moving trains; Slipping or coupling vehicles from or to moving trains
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B61RAILWAYS
    • B61KAUXILIARY EQUIPMENT SPECIALLY ADAPTED FOR RAILWAYS, NOT OTHERWISE PROVIDED FOR
    • B61K1/00Transferring passengers, articles, or freight to and from moving trains; Slipping or coupling vehicles from or to moving trains
    • B61K1/02Transferring passengers, articles, or freight to and from moving trains; Slipping or coupling vehicles from or to moving trains transferring articles to and from moving trains, e.g. mailbag catchers

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  • the system includes means for interlocking a train travelling on a main line with a train travelling on a local line, and means for providing transfer of passengers and/or goods therebetween while the trains are in motion.
  • Local trains run on local lines spaced at desired locations along the main lines. After the transfer of passengers and/or goods is completed, the trains are decoupled, whereby the main train continues en route and the local train may be unloaded.
  • Wind deflectors are provided to deflect any wind factor which might develop during transfer of passengers and/or goods.
  • Floors are extended laterally from the side of each train to form a passenger bridge to transfer passengers therebetween.
  • the bridges are provided with curtain roofs which are extendable from the top of each train.'Prior to disengagement of the trains, the curtain roof is moved into 7 contact with its respective floor and, as the floor is retracted back into its respective train, the curtain roof moves therewith to assure that no passengers are left on the bridgeas the extendable floors are retracted.
  • the invention relates to railway systems wherein passengers and/or goods may be transferred between interlocked trains. It provides a system wherein a main train may be interlocked with a local train to effect the transfer of passenger and/or goods, while the main train is travelling at a high speed.
  • the prior art also does not disclose the use of wind deflectors operable while the trains are interlocked to prevent the wind factor from adversely influencing the transfer of passengers and/or goods.
  • the railway system according to the invention has particular utility in an environment where a train running on a main track is to be coupled or interlocked with a train running on a local line, while the two trains are in motion.
  • This enables the main train to be run at high speeds, with goods being loadedthereon or dis charged therefrom to the local train without stopping the main train.
  • the local lines may be spaced at desired locations along the main line. The spacing between main and local lines is so close that when trains on both lines are aligned, means on both trains interlock them for synchronized motion.
  • Conveyer means on both trains then cause goods to be transferred along horizontal transverse paths from either the local to the main train or vice versa.
  • the trains are decoupled; the main trains continue on route; and the local trains are either unloaded or reloaded with goods.
  • the main trains run always at high speed with goods being loaded thereon or discharged therefrom without the delays of stops and starts for loading or unloading.
  • each train floors are extended laterally from the side of each train to form a bridge for passengers to cross from one trainto another.
  • the facing sides of each train are provided with a number of folding doors which open after the bridge has been formed by the extendible floors.
  • the bridges also are provided with curtain roofs which extend from each train and prior to disengagement of the trains extend downward to the outer edges of the extendible floors in order to assure that no passengers are left on the bridge prior to retraction of the extendable floors.
  • FIG. I is a perspective'view showing a, main line interlocked with a local line to effect the transfer of goods therebetween;
  • FIGS. 6 and 7 show an interlocking means for the trains.
  • FIG. 1 shows the railway system according to the invention wherein parallel tracks 10 and 11 respectively have trains 12 and 13 travellin'g'thereonFor purposes of explaining the invention, track l0is designated the main line, and track 11 the local line.
  • the main line for exemplary purposes may be used for long distance runs such as coast-to-coast travel, and the local line identifies a particular location along the long distance run.
  • a plurality of local lines are located at spaced locations along the main line.
  • the local tracks may comprise loops 14 as shown in FIG. 2, or may be major lines which intersect each other, or trains on rails in closed loops may shuttle between two railways.
  • train 12 is travelling at a high speed along track 10 and is to be coupled with train 13 which is located on track 11. As the main train 12 travels into adjoining relationship with local train 13, the trains are automatically interv locked as shown in FIGS. 6 and 7.
  • Train 12 includes a mechanism 20 which is ejected when trains l2 and 13 are properly aligned. When mechanism 20 is ejected, wheel 21 is propelled outwardly from 12 towards train 13, as shown in FIG. 3. With reference to FIG. 6, horizontal wheel 21 isprovided with an electrically conductive layer 22 which fits into a track on train 13.
  • horizontal wheel 21 is connected to train 12 with cast steel holders 23 and 24 against plate 26 with spring plates25 against plate 27 against the train bulkhead or chassis, fastened with bolts.
  • layer 22 on horizontal wheel 21 comes in contact with train 13, it pushes in electrically conductive rod 28 contained in bearing 29, forcing spring 30 to close an electrical circuit.
  • a signal is transmitted to the operator of train 12, conductive block 28 being in contact with the conductive layer 22 on the horizontal
  • FIG. 4 shows the manner in which interconnected trains 12 and 13 may be used to transfer passengers therebetween.
  • extendable floors 40 and 41 are automatically extended from trains l2 and 13 respectively to form a passenger bridge therebetween.
  • a curtain roll 42 which is mounted on the roof of train 12 is caused to unroll and is supported by side 43 extending from the floor 41.
  • the other extremity of train 12 and more specifically each car thereof has a complementary wall 43.
  • the roof curtain provides a protective system to protect passengers being transferred from the environment and provide a safety feature as explained hereafter.
  • Train 13 is provided with a similar curtain roof 45 and provides a ceiling between trains 12 and 13 when curtain roofs 42 and 45 are extended.
  • the curtain roofs 42 and 45 are connected by conventional means such as hooks (not shown) to walls 43 and 46 respectively and are extendable therewith.
  • the curtain roofs are locked by conventional means such as hooks (not shown) to their respective extendable floors, and as the floors are retracted back into their respective trains prevent the possibility that passengers might be left on the passenger bridge as the floors are being retracted.
  • the curtain roofs may comprise a metal material and may be rolled on rollers 49 and 50 as shown in FIG. 4.
  • FIG. 1 shows another feature of the invention wherein retractable air direction shifters 50 and 54 may be extended from trains 12 and 13 respectively to function as a wind buffer when the passenger bridge has been extended.
  • the trains l2 and 13 may also be provided with removable front portions 52 and 53 respectively to deflect the wind.
  • front portions 52 and 53- are substantially triangular in shape with their front portions, relative to the direction of travel, forming the hypotenuse of the triangle in order to push oncoming air to the side thereof.
  • FIG. shows a conveyer system which may be utilized to transfer goods between interconnected trains 12 and 13.
  • Both main and local train cars are equipped with horizontal transversely extending endless belts 60 driven by drive wheels 61 powered by motors 62. These belts, wheels and motors form conveyers which are reversible in direction. By selecting the direction of rotation of conveyers on both trains simultaneously, an operator can transfer goods 63 either fromthe main to the local train or vice versa as previously discussed.
  • the conveyer system as described with'respect to FIG. 5 is actuated after interlock to effect the desired transfer.
  • the invention comprises an effective and efficient means oftransferring passengers and- /or goods between a main train and a local train without requiring the main train to stop or'reduce its speed. Further certain safety precautions result from the invention as described herein.
  • curtain roof extendible from the main and local trains co ncomittantly with the floors to provide a ceiling enclosure for the passenger bridge, the curtain roofs being extendible to their respective floors in fixed connection therewithafter transfer is completed,
  • the railway system recited in claim 1 further comprising means connectable to the front of the main and local trains to push air to the sides thereof.
  • retractable means connected to the main and local trains actuable during transfer to be extended to form a buffer to deflect wind.
  • the railway system recited in claim 3 further comprising means connectable to the front of the main and local trains to push air to the sides thereof.
  • conveyer means extendible from the main and local trains after they are interlocked to form a transfer system therebetween, means to retract the conveyer means goods is completed, and retractable means connected to the main and local trains actuable during transfer to be extended to form a buffer to deflect wind. 6.
  • the railway system recited'in claim 5 further comafter transfer of prising means connectable to the front of the main and local trains to push air to the sides thereof.

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Abstract

A system interlocking trains whereby passengers and/or goods may be transferred therebetween while the trains are in motion. The system includes means for interlocking a train travelling on a main line with a train travelling on a local line, and means for providing transfer of passengers and/or goods therebetween while the trains are in motion. Local trains run on local lines spaced at desired locations along the main lines. After the transfer of passengers and/or goods is completed, the trains are decoupled, whereby the main train continues en route and the local train may be unloaded. Wind deflectors are provided to deflect any wind factor which might develop during transfer of passengers and/or goods. Floors are extended laterally from the side of each train to form a passenger bridge to transfer passengers therebetween. The bridges are provided with curtain roofs which are extendable from the top of each train. Prior to disengagement of the trains, the curtain roof is moved into contact with its respective floor and, as the floor is retracted back into its respective train, the curtain roof moves therewith to assure that no passengers are left on the bridge as the extendable floors are retracted.

Description

United States Patent [191 Straumsnes SYSTEM FOR TRANSFER OF GOODS ON RAILROAD TRAINS WHEN IN MOTION [76] Inventor: 0. Robert Straumsnes, 1 Bryant Crescent, White Plains, N.Y. 10605 22 Filed: Mar. 16,1973
2i Appl. No;: 342,056
Primary Examiner-Lloyd L. King Attorney, Agent, or Firm-Irons, Scars & Santorelli ABSTRACT A system interlocking trains whereby passengers and- Seidman 104/18 7 [111 3 ,823,671 July 16, 1974 /or goods may be transferred therebe tween while the trains are in motion. The system includes means for interlocking a train travelling on a main line with a train travelling on a local line, and means for providing transfer of passengers and/or goods therebetween while the trains are in motion. Local trains run on local lines spaced at desired locations along the main lines. After the transfer of passengers and/or goods is completed, the trains are decoupled, whereby the main train continues en route and the local train may be unloaded. Wind deflectors are provided to deflect any wind factor which might develop during transfer of passengers and/or goods. Floors are extended laterally from the side of each train to form a passenger bridge to transfer passengers therebetween. The bridges are provided with curtain roofs which are extendable from the top of each train.'Prior to disengagement of the trains, the curtain roof is moved into 7 contact with its respective floor and, as the floor is retracted back into its respective train, the curtain roof moves therewith to assure that no passengers are left on the bridgeas the extendable floors are retracted.
6" Claims, 7 Drawing Figures I Pmwzwvus 3.823.671
sum 1 or 3 SUPER RAILWAY SUPER RAILWAY IQ I;
LOCAL TRAINS Pmmtnwuswm 3323,67:
. mums TRAIN I3 TRAIN I2 BACKGROUND OF THE INVENTION 1. Field of the Invention The invention relates to railway systems wherein passengers and/or goods may be transferred between interlocked trains. It provides a system wherein a main train may be interlocked with a local train to effect the transfer of passenger and/or goods, while the main train is travelling at a high speed. I
2. Description of the Prior Art It is known in the prior art that goods may be transferred between moving trains which are interlocked. For example note Barry US. Pat. No. 3,483,829. It is also known that passengers may be transferred between moving trains; note Cook US. Pat. No. 881,377.
Means for locking railroad cars .together are also known in the prior art. For example note Kennedy US. Pat. No. 3,489,101. The Baldwin US. Pat. No. 2,467,354 discloses the use of conveyor equipment to transfer logs between a loading station and a pulp mill, wherein a freight car is utilized at the loading station.
SUMMARY OF THE DISCLOSURE The prior art does not disclose however the utilization of curtain roofs to provide a closed passageway for the transfer of passengers between'moving trains, and which further insures the safety of passengers by foreclosing the possibility that passengers might remain on the passenger bridge between trains as the trains are being decoupled. 1
The prior art also does not disclose the use of wind deflectors operable while the trains are interlocked to prevent the wind factor from adversely influencing the transfer of passengers and/or goods.
The railway system according to the invention has particular utility in an environment where a train running on a main track is to be coupled or interlocked with a train running on a local line, while the two trains are in motion. This enables the main train to be run at high speeds, with goods being loadedthereon or dis charged therefrom to the local train without stopping the main train. The local lines may be spaced at desired locations along the main line. The spacing between main and local lines is so close that when trains on both lines are aligned, means on both trains interlock them for synchronized motion. Conveyer means on both trains then cause goods to be transferred along horizontal transverse paths from either the local to the main train or vice versa. After the transfer is completed, the trains are decoupled; the main trains continue on route; and the local trains are either unloaded or reloaded with goods. Thus the main trains run always at high speed with goods being loaded thereon or discharged therefrom without the delays of stops and starts for loading or unloading.
In the case of passenger trains, the use of conveyer is unnecessary. In such instances, when the trains are engaged, floors are extended laterally from the side of each train to form a bridge for passengers to cross from one trainto another. The facing sides of each train are provided with a number of folding doors which open after the bridge has been formed by the extendible floors. The bridges also are provided with curtain roofs which extend from each train and prior to disengagement of the trains extend downward to the outer edges of the extendible floors in order to assure that no passengers are left on the bridge prior to retraction of the extendable floors.
BRIEF DESCRIPTION OF THE DRAWINGS FIG. I is a perspective'view showing a, main line interlocked with a local line to effect the transfer of goods therebetween;
FIGS. 6 and 7 show an interlocking means for the trains.
DETAILED DESCRIPTION OF THE DISCLOSURE FIG. 1 shows the railway system according to the invention wherein parallel tracks 10 and 11 respectively have trains 12 and 13 travellin'g'thereonFor purposes of explaining the invention, track l0is designated the main line, and track 11 the local line. The main line for exemplary purposes may be used for long distance runs such as coast-to-coast travel, and the local line identifies a particular location along the long distance run. A plurality of local lines are located at spaced locations along the main line. The local tracks may comprise loops 14 as shown in FIG. 2, or may be major lines which intersect each other, or trains on rails in closed loops may shuttle between two railways.
With reference to FIG. 1, let it be assumed that train 12 is travelling at a high speed along track 10 and is to be coupled with train 13 which is located on track 11. As the main train 12 travels into adjoining relationship with local train 13, the trains are automatically interv locked as shown in FIGS. 6 and 7. Train 12 includes a mechanism 20 which is ejected when trains l2 and 13 are properly aligned. When mechanism 20 is ejected, wheel 21 is propelled outwardly from 12 towards train 13, as shown in FIG. 3. With reference to FIG. 6, horizontal wheel 21 isprovided with an electrically conductive layer 22 which fits into a track on train 13. More specifically, horizontal wheel 21 is connected to train 12 with cast steel holders 23 and 24 against plate 26 with spring plates25 against plate 27 against the train bulkhead or chassis, fastened with bolts. When layer 22 on horizontal wheel 21 comes in contact with train 13, it pushes in electrically conductive rod 28 contained in bearing 29, forcing spring 30 to close an electrical circuit. At the same time, a signal is transmitted to the operator of train 12, conductive block 28 being in contact with the conductive layer 22 on the horizontal FIG. 4 shows the manner in which interconnected trains 12 and 13 may be used to transfer passengers therebetween. When the trains are in proper alignment and are interlocked extendable floors 40 and 41 are automatically extended from trains l2 and 13 respectively to form a passenger bridge therebetween. Concurrently a curtain roll 42 which is mounted on the roof of train 12 is caused to unroll and is supported by side 43 extending from the floor 41. The other extremity of train 12 and more specifically each car thereof has a complementary wall 43. The roof curtain provides a protective system to protect passengers being transferred from the environment and provide a safety feature as explained hereafter. Train 13 is provided with a similar curtain roof 45 and provides a ceiling between trains 12 and 13 when curtain roofs 42 and 45 are extended. The curtain roofs 42 and 45 are connected by conventional means such as hooks (not shown) to walls 43 and 46 respectively and are extendable therewith. When the transfer of passengers is completed between trains l2 and 13, curtain roofs 42 and 45 respectively are automatically moved to extendable floors 40 and 41. The curtain roofs are locked by conventional means such as hooks (not shown) to their respective extendable floors, and as the floors are retracted back into their respective trains prevent the possibility that passengers might be left on the passenger bridge as the floors are being retracted. When the extendable floors 40 and 41 are completely retracted and the passenger doors 48 of the trains are closed, the curtain roofs are retracted to their'roof positions. The curtain roofs may comprise a metal material and may be rolled on rollers 49 and 50 as shown in FIG. 4.
FIG. 1 shows another feature of the invention wherein retractable air direction shifters 50 and 54 may be extended from trains 12 and 13 respectively to function as a wind buffer when the passenger bridge has been extended. The trains l2 and 13 may also be provided with removable front portions 52 and 53 respectively to deflect the wind. As shown, front portions 52 and 53-are substantially triangular in shape with their front portions, relative to the direction of travel, forming the hypotenuse of the triangle in order to push oncoming air to the side thereof.
FIG. shows a conveyer system which may be utilized to transfer goods between interconnected trains 12 and 13. Both main and local train cars are equipped with horizontal transversely extending endless belts 60 driven by drive wheels 61 powered by motors 62. These belts, wheels and motors form conveyers which are reversible in direction. By selecting the direction of rotation of conveyers on both trains simultaneously, an operator can transfer goods 63 either fromthe main to the local train or vice versa as previously discussed.
The operation of the railway system according to the transfer between the trains. After transfer is completed, the curtain roofs are extended to connect with their respective floors as the latter are retracted. When the retraction is completed, the curtain roofs are retracted to their rolled up position, and the interlock between the trains is broken. The main train then continues on its run.
In the case of transferring goods between trains, the conveyer system as described with'respect to FIG. 5 is actuated after interlock to effect the desired transfer.
It is thus seen that the invention comprises an effective and efficient means oftransferring passengers and- /or goods between a main train and a local train without requiring the main train to stop or'reduce its speed. Further certain safety precautions result from the invention as described herein.
What is claimed is:
1. In a railway system wherein a main train and a local train may be interlocked to, travel in synchronization for transferring passengers therebetweemthe improvement comprising: r
a floor extendible from the main and local trains after they are interlocked to form a passenger bridge therebetween, I
a curtain roof extendible from the main and local trains co ncomittantly with the floors to provide a ceiling enclosure for the passenger bridge, the curtain roofs being extendible to their respective floors in fixed connection therewithafter transfer is completed,
means to retract the floors and their connected curtain roofsafter transfer to within their respective trains, and
means to release the curtain roofs from their respective floors after the latter are fully retracted.
2. The railway system recited in claim 1 further comprising means connectable to the front of the main and local trains to push air to the sides thereof.
3. The railway system recited in claim 1 further comprising:
retractable means connected to the main and local trains actuable during transfer to be extended to form a buffer to deflect wind.
4. The railway system recited in claim 3 further comprising means connectable to the front of the main and local trains to push air to the sides thereof.
5. In a railway system wherein a main train and a local train may be interlocked to travel in synchronization for transferring goods therebetween, the improvement comprising:
conveyer means extendible from the main and local trains after they are interlocked to form a transfer system therebetween, means to retract the conveyer means goods is completed, and retractable means connected to the main and local trains actuable during transfer to be extended to form a buffer to deflect wind. 6. The railway system recited'in claim 5 further comafter transfer of prising means connectable to the front of the main and local trains to push air to the sides thereof.

Claims (6)

1. In a railway system wherein a main train and a local train may be interlocked to travel in synchronization for transferring passengers therebetween, the improvement comprising: a floor extendible from the main and local trains after they are interlocked to form a passenger bridge therebetween, a curtain roof extendible from the main and local trains concomittantly with the floors to provide a ceiling enclosure for the passenger bridge, the curtain roofs being extendible to their respective floors in fixed connection therewith after transfer is completed, means to retract the floors and their connected curtain roofs after transfer to within their respective trains, and means to release the curtain roofs from their respective floors after the latter are fully retracted.
2. The railway system recited in claim 1 further comprising means connectable to the front of the main and local trains to push air to the sides thereof.
3. The railway system recited in claim 1 further comprising: retractable means connected to the main and local trains actuable during transfer to be extended to form a buffer to deflect wind.
4. The railway system recited in claim 3 further comprising means connectable to the front of the main and local trains to push air to the sides thereof.
5. In a railway system wherein a main train and a local train may be interlocked to travel in synchronization for transferring goods therebetween, the improvement comprising: conveyer means extendible from the main and local trains after they are interlocked to form a transfer system therebetween, means to retract the conveyer means after transfer of goods is completed, and retractable means connected to the main and local trains actuable during transfer to be extended to form a buffer to deflect wind.
6. The railway system recited in claim 5 further comprising means connectable to the front of the main and local trains to push air to the sides thereof.
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Cited By (27)

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US3958512A (en) * 1970-12-11 1976-05-25 Stankiewicz Jerzy G Rapid transit system
US3987734A (en) * 1975-02-05 1976-10-26 Horn Clifford V Modular rapid transportation system for passengers and freight
US4122777A (en) * 1976-01-17 1978-10-31 Demag A.G. Railway maintenance car
WO1986002324A1 (en) * 1984-10-09 1986-04-24 Robert Dale Hawkins Mobile depot
FR2690402A1 (en) * 1992-04-27 1993-10-29 Colsenet Patrice Continuous transport system - comprises auxiliary acceleration vehicles moving between station and principal vehicle which runs continuously on main line
FR2708244A1 (en) * 1993-07-27 1995-02-03 Mujal Ferrer Jorge Vehicles, installation and process for the on-board transhipment of persons or goods.
US6038980A (en) * 1998-02-13 2000-03-21 Otis Elevator Transferring freight or passenger cabs between moving bogies
ES2159466A1 (en) * 1999-05-20 2001-10-01 Trans Non Stop S L Installation for the entry and exit of passengers on urban transport.
DE10240229B3 (en) * 2002-08-28 2004-02-05 Müller, Michael, Dipl.-Ing. Transported article distribution process for letters, packets and parcels involves installing identification and sorting system on board train, aircraft or ship
US6763766B1 (en) * 2002-08-23 2004-07-20 Maurice H. Cornellier Elevated transportation system
US20100242782A1 (en) * 2009-03-29 2010-09-30 Pollack Robert W Transportation system
US20100307368A1 (en) * 2009-06-08 2010-12-09 Parsley Joseph L Motion connection parallel transit
CN102114850A (en) * 2011-01-28 2011-07-06 袁国庆 Device and method capable of realizing getting-on and getting-off of passengers without stopping of train when arriving at station
CN102442321A (en) * 2011-03-05 2012-05-09 杜文娟 Rapid passenger train structure combining nonstop train with short-distance train
CN102765392A (en) * 2012-07-23 2012-11-07 宫世斌 Suspension type track train on bottom surface of bridge body
CN102774384A (en) * 2012-07-31 2012-11-14 黄灿军 Twin line parallel operating method for railway train
CN102039899B (en) * 2009-10-12 2013-02-06 梅长江 Continuous conveying type urban track traffic system
CN103273923A (en) * 2013-06-21 2013-09-04 魏宇科 Station system based on synchronous operation of platform train and passenger train
CN104354702A (en) * 2014-10-22 2015-02-18 格力电器(芜湖)有限公司 Railway train getting on and off method and device for getting on and off train
CN104859667A (en) * 2015-05-22 2015-08-26 缪健 No-parking connection system for rail traffic
CN105774817A (en) * 2016-05-03 2016-07-20 王非凡 No-parking passenger getting-on/off system
CN106274912A (en) * 2016-09-15 2017-01-04 马卫华 Passenger train arrives at a station the method that not parking passenger can get on or off the bus
US20180057028A1 (en) * 2016-08-29 2018-03-01 Joseph Parsley High Speed Train System
JP2018094956A (en) * 2016-12-08 2018-06-21 公益財団法人鉄道総合技術研究所 Coupling device of movable body and coupling method for the same
CN109532933A (en) * 2018-11-21 2019-03-29 中车青岛四方机车车辆股份有限公司 A kind of train and traffic system
US20200095075A1 (en) * 2016-04-16 2020-03-26 Mircea Toma System for Loading and Unloading Moving Vehicles
US20200406942A1 (en) * 2019-06-28 2020-12-31 Franz Kerner Rail and Train System

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US1032950A (en) * 1912-01-06 1912-07-16 Andrey Schelest Moving-train transfer device.
US1235377A (en) * 1917-04-30 1917-07-31 Stephen Pokopac Movable railway platform or approach.
US3037462A (en) * 1956-02-09 1962-06-05 Leonard D Barry Railway control system for coincident local and express service
US3136266A (en) * 1960-03-07 1964-06-09 Sol H Seidman Load transfer system

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US469882A (en) * 1892-03-01 Railway-station
US938980A (en) * 1909-05-11 1909-11-02 John Cooperstock Train interlocker and cross-bridge.
US1032950A (en) * 1912-01-06 1912-07-16 Andrey Schelest Moving-train transfer device.
US1235377A (en) * 1917-04-30 1917-07-31 Stephen Pokopac Movable railway platform or approach.
US3037462A (en) * 1956-02-09 1962-06-05 Leonard D Barry Railway control system for coincident local and express service
US3136266A (en) * 1960-03-07 1964-06-09 Sol H Seidman Load transfer system

Cited By (33)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3958512A (en) * 1970-12-11 1976-05-25 Stankiewicz Jerzy G Rapid transit system
US3987734A (en) * 1975-02-05 1976-10-26 Horn Clifford V Modular rapid transportation system for passengers and freight
US4122777A (en) * 1976-01-17 1978-10-31 Demag A.G. Railway maintenance car
WO1986002324A1 (en) * 1984-10-09 1986-04-24 Robert Dale Hawkins Mobile depot
FR2690402A1 (en) * 1992-04-27 1993-10-29 Colsenet Patrice Continuous transport system - comprises auxiliary acceleration vehicles moving between station and principal vehicle which runs continuously on main line
FR2708244A1 (en) * 1993-07-27 1995-02-03 Mujal Ferrer Jorge Vehicles, installation and process for the on-board transhipment of persons or goods.
WO1995003968A1 (en) * 1993-07-27 1995-02-09 Jorge Mujal Ferrer Vehicles and arrangement for transferring passengers or goods between moving vehicles
US6038980A (en) * 1998-02-13 2000-03-21 Otis Elevator Transferring freight or passenger cabs between moving bogies
ES2159466A1 (en) * 1999-05-20 2001-10-01 Trans Non Stop S L Installation for the entry and exit of passengers on urban transport.
US6763766B1 (en) * 2002-08-23 2004-07-20 Maurice H. Cornellier Elevated transportation system
DE10240229B3 (en) * 2002-08-28 2004-02-05 Müller, Michael, Dipl.-Ing. Transported article distribution process for letters, packets and parcels involves installing identification and sorting system on board train, aircraft or ship
US20100242782A1 (en) * 2009-03-29 2010-09-30 Pollack Robert W Transportation system
US20100307368A1 (en) * 2009-06-08 2010-12-09 Parsley Joseph L Motion connection parallel transit
CN102039899B (en) * 2009-10-12 2013-02-06 梅长江 Continuous conveying type urban track traffic system
CN102114850A (en) * 2011-01-28 2011-07-06 袁国庆 Device and method capable of realizing getting-on and getting-off of passengers without stopping of train when arriving at station
CN102442321A (en) * 2011-03-05 2012-05-09 杜文娟 Rapid passenger train structure combining nonstop train with short-distance train
CN102442321B (en) * 2011-03-05 2015-06-17 杜文娟 Rapid passenger train structure combining nonstop train with short-distance train
CN102765392A (en) * 2012-07-23 2012-11-07 宫世斌 Suspension type track train on bottom surface of bridge body
CN102774384A (en) * 2012-07-31 2012-11-14 黄灿军 Twin line parallel operating method for railway train
CN102774384B (en) * 2012-07-31 2016-01-06 黄灿军 The operating method that a kind of track train two-wire is parallel
CN103273923A (en) * 2013-06-21 2013-09-04 魏宇科 Station system based on synchronous operation of platform train and passenger train
CN103273923B (en) * 2013-06-21 2016-03-30 魏宇科 Based on the Station System of platform train and passenger train synchronous motion
CN104354702A (en) * 2014-10-22 2015-02-18 格力电器(芜湖)有限公司 Railway train getting on and off method and device for getting on and off train
CN104859667A (en) * 2015-05-22 2015-08-26 缪健 No-parking connection system for rail traffic
US20200095075A1 (en) * 2016-04-16 2020-03-26 Mircea Toma System for Loading and Unloading Moving Vehicles
US10933894B2 (en) * 2016-04-16 2021-03-02 Mircea Toma System for loading and unloading moving vehicles
CN105774817A (en) * 2016-05-03 2016-07-20 王非凡 No-parking passenger getting-on/off system
US20180057028A1 (en) * 2016-08-29 2018-03-01 Joseph Parsley High Speed Train System
CN106274912A (en) * 2016-09-15 2017-01-04 马卫华 Passenger train arrives at a station the method that not parking passenger can get on or off the bus
JP2018094956A (en) * 2016-12-08 2018-06-21 公益財団法人鉄道総合技術研究所 Coupling device of movable body and coupling method for the same
CN109532933A (en) * 2018-11-21 2019-03-29 中车青岛四方机车车辆股份有限公司 A kind of train and traffic system
US20200406942A1 (en) * 2019-06-28 2020-12-31 Franz Kerner Rail and Train System
US11845481B2 (en) * 2019-06-28 2023-12-19 Franz Kerner Rail and train system

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