Claims
- 1. A tunnel boring machine for controlled boring of an elongated curvilinear tunnel including relatively short radius curved portions in earthen strata, the tunnel having a central longitudinal axis, and having tunnel cross sections perpendicular to the central longitudinal axis, the tunnel cross sections having a lateral axis oriented generally perpendicular to the direction of gravitational force and intersecting the central longitudinal axis and having a transverse axis intersecting the central longitudinal axis and the lateral axis and perpendicular to both, the tunnel having an end face and peripheral side wall, the tunnel boring machine comprising:
- cutting means for engaging the tunnel face and removing material therefrom to elongate the tunnel during a cutting stroke;
- elongated relatively small diameter, relatively short length body means for supporting various machine components having a forward end positioned proximal the tunnel face and a rear end positioned distal the tunnel face and defining a central longitudinal machine axis extending between said forward end and said rear end;
- elongate thrust arm means for urging said cutting means against the tunnel face during a cutting stroke and for advancing said elongated body means forwardly along the tunnel toward said cutting means between cutting strokes, said thrust arm means being extendible and retractable relative to said body means parallel to said longitudinal machine axis;
- forward positioning means operably mounted on a forward portion of said body means for selectively positioning a forward portion of the body means within the tunnel;
- rear positioning means operably mounted on a rear transverse pivot axis fixed to a rear portion of said body means for enabling pivotal movement of said body means relative said rear end positioning means for selectively positioning a rear portion of said body means within the tunnel said rear transverse pivot axis being generally parallel said tunnel transverse axis;
- whereby the longitudinal machine axis of said body means is selectively positionable relative the longitudinal axis of the tunnel through the use of said forward and rear positioning means; and
- tunnel gripping means operably mounted on said rear positioning means for selective anchoringly engaging the peripheral sidewall of said tunnel whereby axial rearward movement of said body relative the tunnel sidewall means during a cutting stroke is prevented;
- annular shield means for shielding at least a portion of said body means from falling debris;
- shield thrust means operably mounted on said shield means for providing an auxiliary thrust source for urging said cutting means against the tunnel face during a cutting stroke.
- 2. The invention of claim 1 wherein said forward positioning means comprises:
- forward lateral positioning means for selectively positioning a forward portion of the body means in a lateral direction; and
- forward transverse positioning means for selectively positioning a forward portion of the body means in a transverse direction; and
- wherein said rear positioning means comprises:
- rear lateral positioning means for selectively positioning a rear portion of said body means in a lateral direction; and
- rear transverse positioning means for selectively positioning a rear portion of said body means in a transverse direction.
- 3. The invention of claim 2 wherein said cutting means comprises:
- rotatable cutting wheel means operably mounted on said thrust arm means, said cutting wheel means having an axis of rotation coaxial with said thrust arm means; and
- cutting wheel drive means operably associated with said cutting wheel means for rotating said cutting wheel means about said axis of rotation.
- 4. The invention of claim 3 wherein said rear lateral positioning means comprises opposite extendible and retractable rear arm means for selective engagement and disengagement with the tunnel sidewall said opposite rear arm means being coaxial with a rear arm axis intersecting said longitudinal machine axis and angularly displaceable about said rear transverse pivot axis, said rear transverse pivot axis, said rear arm axis and said machine longitudinal axis intersecting at and defining a rear machine pivot point.
- 5. The invention of claim 4 further comprising rear arm adjusting means for pivoting said rear arm means about said rear transverse axis for aligning said rear arm means in perpendicular relationship with the tunnel longitudinal axis.
- 6. The invention of claim 5 wherein said tunnel gripping means comprises gripping shoes pivotally mounted on said opposite lateral rear arm means.
- 7. The invention of claim 6 wherein said forward lateral positioning means comprises opposite laterally extendible and retractable forward arm means for selective engagement and disengagement with the tunnel sidewall said opposite front arm means being coaxial with a forward arm axis intersecting said longitudinal machine axis and substantially perpendicular thereto.
- 8. The invention of claim 7 wherein said opposite rear arm means comprise:
- opposed rear lateral cylinder means pivotally mounted on said body means in coaxial relationship with said rear arm axis and pivotal about said rear transverse axis;
- opposed extendible and retractable rear piston means operably mounted in associated rear lateral cylinder means; and
- rear gripping pad means universally swivelly mounted at the ends of associated rear piston means for grippingly engaging the tunnel wall.
- 9. The invention of claim 8 wherein said opposite forward arm means comprise:
- opposed forward lateral cylinder means fixedly mounted on said body means and coaxial with said forward arm axis;
- opposed extendible and retractable forward piston means operably mounted in associated forward lateral cylinder means; and
- forward gripping pad means universally swivelly mounted at the ends of associated forward piston means for grippingly or slidingly engaging the tunnel wall.
- 10. The invention of claim 9 wherein said rear transverse positioning means comprises extendible and retractable support wheel means said support wheel means being extendible and retractable along said transverse rear axis and being capable of rollingly supporting a rear end portion of said body means.
- 11. The invention of claim 10 wherein said forward transverse positioning means comprises:
- a forward transverse cylinder means fixedly attached to said body means and coaxially aligned with a forward transverse axis intersecting said longitudinal axis and perpendicular thereto;
- extendible and retractable forward transverse piston means operably mounted in said forward transverse cylinder means; and
- base plate means for supportingly engaging the tunnel floor, said base plate means being swivelly mounted on said forward transverse piston means for angularly displaceable movement relative thereto and having lateral slide means for allowing laterally shifting movement of said forward transverse piston means relative a floor engaging portion of said base plate means.
- 12. The invention of claim 3 wherein said cutting wheel drive means comprises motor means operably mounted within a forward portion of said elongate thrust arm means.
- 13. The invention of claim 12 wherein said cutting wheel drive means is reversibly rotatable for rotating said cutting wheel means in opposite directions.
- 14. The invention of claim 1 wherein said shield thrust means comprise a plurality of independently extendible cylinder units which are differentially extendible against the associated tunnel lining to rotate said shield means about at least one axis perpendicular to said central longitudinal machine axis whereby an alternate means for steering said machine is provided.
- 15. An elongated tunnel boring machine, having a central longitudinal machine axis, for boring a linear tunnel section in a linear boring mode of operation or a curvilinear tunnel section in a curvilinear boring mode of operation; the tunnel having an end face and a peripheral side wall including a floor portion, a ceiling portion, and opposite side wall portions spaced from a central longitudinal tunnel axis; and the tunnel boring machine comprising:
- rotatable cutting wheel means at the front end of the machine and having a central axis of rotation which is coaxial with the machine axis and adapted to be selectively located at a desired position approximately at the laterally opposite portion of the central longitudinal tunnel axis and held against the tunnel face during rotation for cutting material away from the tunnel face to elongate the tunnel and extend the central longitudinal tunnel axis in a selected direction;
- extendible and retractable thrust means, including a forwardly extending piston-rod means operably connected to said cutting wheel means and a rearwardly extending cylinder means operably supporting said forwardly extending piston-rod means, and a plurality of annular shield thrust devices operatively attached to said piston rod means, by an annular shield device and selectively engageable with an associated tunnel lining for selectively causing forward movement of said cutting wheel means against the tunnel face in the cutting mode of operation during a cutting stroke, said thrust means being selectively operable to cause forward relative axial movement between said piston-rod means and said cylinder means along the machine axis from a retracted position to an extended position to move the cutting wheel means forwardly relative to said thrust means during a cutting stroke in the cutting mode of operation and from the extended position to the retracted position to move said thrust means forwardly relative to said cutting wheel means in the non-cutting mode to prepare the machine for the next cutting stroke;
- motor means operatively connected to said rotatable cutting wheel means and mounted in a forward portion of said piston-rod means for selectively causing rotation thereof in a cutting mode of operation and stopping rotation thereof in a non-cutting mode of operation;
- extendible and retractable rear end clamping and positioning means for fixedly locating and holding the rear end portion of the machine between opposite tunnel side wall portions with the rear end portion of the central longitudinal machine axis located in approximately coaxial relationship with the laterally adjacent portion of the central longitudinal tunnel axis in the linear boring mode and with the rear end portion of the central longitudinal machine axis located in approximately intersecting relationship with the laterally adjacent portion of the central longitudinal tunnel axis in the curvilinear boring mode, and being selectively movable between outwardly extended engaging positions and inwardly retracted non-engaging positions relative to the tunnel wall to facilitate repositioning of the machine between cutting strokes;
- pivotal connecting means between said rear end clamping and positioning means and the rear end portion of the machine to provide at least one pivotal axis which intersects the central longitudinal machine axis for enabling the central longitudinal machine axis to be laterally pivoted displaced relative to the central longitudinal axis about said pivotal axis during a cutting stroke in the curvilinear boring mode of operation; and
- extendible and retractable front end clamping and positioning means for fixedly locating and holding the front end portion of the machine between the opposite tunnel side wall, portions with the central longitudinal machine axis located in approximately coaxial fixed relationship with the central longitudinal tunnel axis in the linear boring mode and for adjustably locating and holding the front end portion of the machine between opposite tunnel side wall portions during a cutting stroke with the central longitudinal machine axis in variably displaced laterally offset relationship with the central longitudinal tunnel axis of the last bored tunnel portion in the curvilinear boring mode by lateral pivotal displacement about said pivotal axis.
- 16. The invention of claim 15 wherein said plurality of annular shield thrust devices are independently operable, at different rates of extension whereby said machine is provided with an alternate means of steering.
- 17. An elongated tunnel boring machine, having a central longitudinal machine axis, for boring a linear tunnel section in a linear boring mode of operation or a curvilinear tunnel section in a curvilinear boring mode of operation; the tunnel having an end face and a peripheral side wall including a floor portion, a ceiling portion, and opposite side wall portions spaced from a central longitudinal tunnel axis; and the tunnel boring machine comprising:
- rotatable cutting wheel means at the front end of the machine and having a central axis of rotation which is coaxial with the machine axis and adapted to be selectivley located at a desired position approximately at the laterally opposite portion of the central longitudinal tunnel axis and held against the tunnel face during rotation 1/2 for cutting material away from the tunnel face during rotation] for cutting material away from the tunnel face to elongate the tunnel and extend the central longitudinal tunnel axis in a selected direction;
- extendible and retractable thrust means, including forwardly extending piston-rod means operably associated with said cutting wheel means and rearwardly extending cylinder means operably supporting said forwardly extending piston-rod means, and a plurality of annular thrust devices operatively attached to an annular device, for selectively causing forward movement of said cutting wheel means against the tunnel face in the cutting mode of operation said piston rod means being selectively extendable to cause forward relative axial movement to move the cutting wheel means forwardly during a cutting stroke and being retractable to move said cylinder means forwardly relative to said cutting wheel means to prepare the piston rod means for the next cutting stroke;
- motor means operatively connected to said rotatable cutting wheel means for selectively causing rotation thereof in a cutting mode of operation and stopping rotation thereof in a non-cutting mode of operation;
- extendible and retractable rear end clamping and positioning means for locating and holding the rear end portion of the machine between opposite tunnel side wall portions with the rear end portion of the central longitudinal machine axis located in approximately coaxial relationship with the laterally adjacent portion of the central longitudinal tunnel axis in the linear boring mode and being selectively movable between outwardly extended engaging positions and inwardly retracted non-engaging positions relative to the tunnel wall to facilitate repositioning of the machine;
- pivotal connecting means between said rear end clamping and positioning means and the rear end portion of the machine to provide at least one pivotal axis which intersects the central longitudinal machine axis for enabling the central longitudinal machine axis to be laterally pivotally displaced relative to the central longitudinal tunnel axis about said pivotal axis during a cutting stroke in the curvilinear boring mode of operation; and
- extendible and retractable from end clamping and positioning means for fixedly locating and holding the front end portion of the machine between the opposite tunnel side wall portions with the central longitudinal machine axis located in approximately coaxial fixed relationship with the central longitudinal tunnel axis in the linear boring mode and for adjustingly locating and holding the front end portion of the machine between opposite tunnel side wall portions during a cutting stroke with the central longitudinal machine axis in variably displaced laterally offset relationship with the central longitudinal tunnel axis of the last bored tunnel portion in the curvilinear boring mode by lateral pivotal displacement about said pivotal axis.
- 18. The invention of claim 17 wherein said plurality of annular shield thrust devices are independently operable, at different rates of extension whereby said machine is provided with an alternate means of steering.
BACKGROUND OF THE INVENTION
The present application is a Continuation-In-Part of U.S. patent application Ser. No. 461,683 filed Jan. 27, 1983, now U.S. Pat. No. 4,527,837.
US Referenced Citations (14)
Foreign Referenced Citations (1)
Number |
Date |
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1534611 |
Aug 1969 |
DEX |
Continuation in Parts (1)
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Number |
Date |
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Parent |
461683 |
Jan 1983 |
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