Nova Patents
CA1293960C

Railway system and elements thereof

Abstract

ABSTRACT OF THE DISCLOSURE In this railway system , substantially eachpiece of rolling stock, or "car" 14, will be aself-propelled locomotive which can be indepen-dently routed from any station location 10 with-in the system 40 to any other station location 10within the system . The cars may be in a formsimilar to current conventional mass transit orfreight cars, but in preferred embodiments theywill be elevated "carriers" 14 designed to carryself-contained discrete elements which have beendesigned or modified for ease of connection to anddisconnection from such carriers. Such discreteelements will include, but are not limited to,vehicles (such as conventional automobiles 12),crates 220, pallets, similar carriers 14, andso on. System traffic control means for loadingand unloading cars, accelerating and deceleratingcars, and routing cars will be provided. Inpreferred embodiments high speed, uninterrupted,universal routing through intersections andin selected directions at switching points will beaccomplished without moving switches or movingrails by means of movable switching wheels inconjunction with tracks which will be speciallydesigned to accommodate the cars and their movableswitching wheels 90. In preferred embodiments,motive power for the cars will be provided bylinear synchronous motors, with the movablemagnetic portions 142 of the motors carried byeach car and the stationary magnetic portions 152associated with the track 55 or structure alongwhich the car rides. In preferred embodimentsmeans will be provided to control the location,position, and orientation of the magnetic portionof the motor carried by the car, with respect tothe stationary elements associated with the track,regardless of the tilt or angle of the body of thecar. In preferred embodiments, means will beprovided to continuously transfer electricalenergy From stationary power lines associated withthe tracks to the moving cars, even when the carsare moving at high speeds.

CA1293960C, drawing sheet 1
Sheet 1 of 2

Term

Term ended

Expired 7 January 2009, 17.7 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

5 claims: 5 independent, 0 dependent

  1. 1
    The embodiments of the invention in which an exclusive property or privilege is claimed or defined as follows:Claim 1. A passive railway switching system comprising: a pair of substantially parallel incoming main rails;a first pair of substantially parallel outgoing main rails, one of the outgoing main rails being a continuation of one of the incoming main rails;a second pair of substantially parallel outgoing main rails diverging from the first pair of outgoing main rails, one of the second pair of outgoing main rails being a continuation of the other of the incoming main rails;and at least one stationary switching rail parallel to one of the continuing main rails between such continuing rail and at least the other incoming main rail, and having a portion at a higher elevation than the other continuing rail, further comprising a second stationary switching rail parallel to the other of the continuing rails between such continuing rail and at least the one continuing main rail, and having a portion at a high elevation than the one continuing rail, wherein the switching rails each gradually increase in elevation above an adjacent main rail to a maximum elevation and gradually decrease in elevation toward an adjacent main rail so that a wheel rolls smoothly from an adjacent main rail onto the switching rail and back again to an adjacent main rail. Claim
  2. 2
    A passive railway switching system comprising:a pair of substantially parallel incoming main rails which begin to diverge at a switching point;a first pair of substantially parallel main rails outgoing from the switching point, one of the incoming main rails becoming the outside rail of the first pair of outgoing main rails;a second pair of substantially parallel main rails outgoing from the switching point, one of the incoming main rails becoming the outside rail of the second pair of outgoing main rails;-34 a pair of stationary switching rails offset inboard of the main rails by an amount sufficient to allow passage of the flanges of railway wheels of vehicles between the main rail and the switching rail, each switching rail following a path which is substantially parallel to the opposite diverging main rail, each switching rail commencing approximately at the point where the incoming main rails begin to diverge and ending approximately where the other member of its pair of outgoing main rails is available to engage a vehicle wheel, a portion of each switching rail between its ends being at a higher elevation that the adjacent main rails;a vehicle for travelling in the system;and at least one truck on the vehicle, each such truck comprising: at least one pair of running wheels having flanges for engaging the insides of the main rails and running surfaces for engaging the tops of the main rails;at least one pair of flange switching wheels, the switching wheel flanges being spaced apart laterally a distance less than the spacing of the flanges on a pair of running wheels;and means for shifting the switching wheels laterally so that the flange of only one of such a pair of switching wheels engages the side of a switching rail, wherein the main rails and switching rails are aligned such that the switching wheels proceed through the switching point, supported in turn by the main rails, the switching rails, and the new main rails without undergoing any substantial change in rotational velocity. -35 Claim
  3. 3
    A passive railway switching system which allows each railway car traveling on a railway system to turn in either of the two directions provided by each railway switch; allows each railway car to pass through the switch at the same maximum speed with which the car is able to travel on any curved portion of track on the railway system; allows the wheels on the railway car to pass through the switch without undergoing any change in rotational velocity; and allows the railway car to pass through a switch without encountering any greater lateral force between the rails and the wheels of the railway car than would be encountered on any curved portion of track on the railway system, with the switching system comprising:a pair of substantially parallel main rails which begin to diverge at a switching point, with each such main rail becoming the outside rail of a new pair of substantially parallel main rails leading in each of two directions that can be chosen for travel at said switching point;a pair of stationary switching rails, each of which commences approximately at the point where the main rails begin to diverge, adjacent to but offset inboard of one of the main rails by an amount adequate to allow passage of the railway car wheels riding on that main rail, thence follows a path which is substantially parallel to the diverging main rail on the opposite side of the track, and continues to at least a point where space permits the commencement of the other member of the new pair of main rails, the new rail being substantially parallel to and spaced from the original main rail leading in the same direction as the switching rail by the same spacing as that between the two original main rails away from the switching point;and one or more pairs of special laterally movable switching wheels mounted on each vehicle traveling on the railway system, the switching wheels having a lateral spacing which is less than that of the main rails by an amount equal to the original distance between the centers of each switching rail -36 and its adjacent main rail, and the switching wheels having running surfaces which are wide enough that each switching wheel remains in contact with a main rail regardless of the lateral position of the switching wheels;said components being arranged and used in combination in such a way that: the lateral position of the switching wheels determines the direction of travel taken by the vehicle at a switching point by determining which of the stationary switching rails is engaged by the switching wheels;each switching rail is superelevated above its corresponding main rail, with the amount of superelevation gradually increasing from a substantially zero value to a maximum and then decreasing again in such a manner that the banking caused by this superelevation corresponds throughout the switch with the combination of the degree of curvature of the track at any point through the switch and the speed of travel of vehicles using the railway system, thus assuring that the wheels of the vehicles follow a smooth grade throughout the switch and that the lateral forces between the wheels and the rails are minimized;and each new main rail commencing in the switch is located at a level which at all points places it in the same plane as that defined by the parallel switching rail and the continuing main rail, thus assuring that both the switching wheels and the running wheels of the vehicle proceed through the switch without undergoing any substantial change in rotational velocity, with the switching wheels being supported continuously by the main rail, the switching rail, and the new main rail in turn, and the running wheels on the same side of the vehicle as the switching rail being supported at first by the original main rail and later by the new main rail, with the gap between these two rails being so brief that little change in rotational speed of the wheels occurs.
  4. 4
    The passive railway switching system of claim 3, intended for use on a railway system where all vehicles travel -37 at substantially an identical constant speed, and where the degree of superelevation of the switching rails and the new main rails is substantially equal to that single value which minimizes lateral forces between the rails and the vehicle wheels for the specific degree of curvature of the track through the switch and for the specific constant speed of travel.
  5. 5
    The passive railway switching system of claim 3, wherein the geometry of the switch is substantially symmetrical about the longitudinal axis of the track at the point where the switch commences, thus causing the two new main rails to cross at the same elevation and precluding any need for the removal of a portion of one rail to provide clearance for the wheels of vehicles riding on the other rail. -38