US558877A - Well-drilling machine - Google Patents

Well-drilling machine Download PDF

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US558877A
US558877A US558877DA US558877A US 558877 A US558877 A US 558877A US 558877D A US558877D A US 558877DA US 558877 A US558877 A US 558877A
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shaft
rope
drill
well
weight
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25DPERCUSSIVE TOOLS
    • B25D9/00Portable percussive tools with fluid-pressure drive, i.e. driven directly by fluids, e.g. having several percussive tool bits operated simultaneously
    • B25D9/06Means for driving the impulse member
    • B25D9/10Means for driving the impulse member comprising a built-in internal-combustion engine
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q11/00Accessories fitted to machine tools for keeping tools or parts of the machine in good working condition or for cooling work; Safety devices specially combined with or arranged in, or specially adapted for use in connection with, machine tools
    • B23Q11/0042Devices for removing chips
    • B23Q11/0046Devices for removing chips by sucking
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T74/00Machine element or mechanism
    • Y10T74/18Mechanical movements
    • Y10T74/18568Reciprocating or oscillating to or from alternating rotary
    • Y10T74/18832Reciprocating or oscillating to or from alternating rotary including flexible drive connector [e.g., belt, chain, strand, etc.]
    • Y10T74/18848Reciprocating or oscillating to or from alternating rotary including flexible drive connector [e.g., belt, chain, strand, etc.] with pulley

Definitions

  • Said machine comprises a drill and apparatus for operating it, a tube and apparatus for operating it, and a pumping apparatus for forcing water into the aperture being drilled in the ground and, when mixed with the loosened earth, for drawing the mixed water and earth out again.
  • It also comprises a foldable derrick from which the driving-weights are suspended and a running-gear upon which the entire appa ratus is mounted.
  • Figure 1 is a side elevation of a machine with the various devices in position and ready for operation;
  • Fig. 2 a detail sectional view showing the well-tube and drill and driving-weights and fragments of the pump attachments in section;
  • Fig. 3 a detail elevation of the detached derrick-frame Fig. 1-, a detail side elevation, on an enlarged scale, of a portion of the mechanism shown in Fig. 1;
  • Fig. 5, a top or plan view of that portion of the machine illustrated by Fig. 4, and
  • Fig. 6 a transverse vertical sectional view as seen from the dotted line 6 6 in Fig. 4.
  • portions marked A represent the main framework of the machine, which is commonly mounted on the running-gear and remains in position thereon, as shown; B B B the several portions of the derriclcframe; C, the main driving-shaft 1), the pumping-shaft; E, the rope for operating the well-tube-driving weight; F, the rope for operating the drill-driving weight; G, a spool around which one end of the rope F is wound; II, a shaft for operating the spool G; I, a lever for operating the rope F;
  • the framework A is preferably a rigid framework and is mounted on the bolsters of the running-gear, which latter maybe of any usual or suitable wagon construction, being simply for the purpose of carrying the framework and the apparatus and mechanism mounted thereon and transporting the same from place to place.
  • Said framework A contains or carries bearings for the various parts of the mechanism, and also supports for the derrick and braces, both in its extended or erected condition and when folded up for storage or transportation.
  • a usual and preferred construction of this framework is shown in the drawings; but manifestly its construction may be varied as desired without in any wise affecting my invention.
  • the derrick is composed, preferably, of two uprights B and B, hinged together by the pivot-shaft b and braces B attached thereto preferably bythe same pivot-shaft, and to standards A on the frame A by bolts b "Vhen the upper section B is raised, its lower points come in contact with stops 8, as shown most plainly in Fig. 3, by which said upper section is prevented from farther movement in that direction. ⁇ Vhen the derrick structure is taken down for storage or transportation, the upper section B is folded down, turning on the pivot Z), by which it is connected to the frame B, the braces B are entirely removed, the folded structure B B is tilted over on the pivot 79, and the braces laid on top thereof, all as indicated by the dotted lines in Fig. 1.
  • the derrick structure is erected in position for use, its lower end rests on the ground or on a blocking or footing it, as shown, being of sufiicient length below the pivot for the purpose.
  • the main hearing or support for the structure in operative position is shifted from the running-gear to the ground, and said runninggear thus relieved of the greater portion of the weight and strain.
  • the pivot connecting the two parts of the derrick is located at a point above the middle of its length, the top part being nearly half of the whole structure and of considerable weight.
  • a derrick of unusual height maybe raised and lowered with the ease required to handle one of much less height of the ordinary construction, as it is raised first in the folded condition, preferably by connecting the upper ends of the braces and using them as lifts, and then the upper part is easily raised or turned up on the pivot by a rope running from its end over a part on the lower section and to a Windlass.
  • I thus provide a derrick which is of sufficientheight to be most efficient for the purpose, and yet may be easily manipulated with little help and also be compactly packed on the running-gear.
  • the main driving-shaft O is mounted in suitable bearings on the frame A and is driven from some suitable source of power (not shown) by a belt 0, running to the pulley C on said shaft.
  • Said shaft also carries a spool 0 and around this spool the rope E is wound sufficiently so that when the free end is held tight the spool will wind up the rope; but when the free end is left loose the spool will revolve freely and not operate upon the rope.
  • said rope E can be actuated to operate the weight E, which, in turn, acts upon the well-tubethat is, when the free end of the rope E is hold tight, as may readily be done by hand, the main portion of said rope will be wound up, raising said weight E, and when the free end of said rope is released and left slack said weight will fall.
  • This operation is only necessary at comparatively infrequent and somewhat irregular intervals, when it becomes necessary to sink the well tube or casing after the drill proper has penetrated a sufficient depth to render such sinking desirable.
  • the shaft D is driven from the shaft 0 by means of the spur gear-wheel C, which is preferably fixedly mounted on the shaft 0, and the spur gear-wheel D, which is preferably loosely mounted on the shaft D and is enabled to drive said shaft when the clutch D is thrown into engagement therewith, said clutch being of any usual or desired construction which is capable of moving longitudinally of the shaft, but is connected thereto by a spline or otherwise so as to revolve therewith.
  • a pin (1 extends out from the side of this wheel I) and the lever I extends into the path of said pin, so that as said gear-wheel revolves said lever is operated by said pin during a portion of the revolution of said wheel and at a certain point in said revolution escapes therefrom.
  • the lever being normally held upwardly by the pull of the weight F on the rope F, said lever is forced down by the wheel and raised by the weight with a regular motion. hen the clutch D is thrown into engagement, the shaft D is also revolved and the pumps J operated.
  • This mechanism thus, when the clutch is engaged, subserves the double purpose of intermittingly pulling the rope F and regularly operating the pumps J at one and the same time when the clutch is engaged, or, when the clutch is disengaged, the single purpose of intermittingly pulling said rope at pleasure.
  • the rope E as has already been described, at its free end passes with a few turns around the spool C It runs thence first under a sheave e, mounted on a shaft 12 carried by the brace B and thence over a sheave e, mounted on the shaft 1), and thence down to and connects with the weight E.
  • Said weight E as shown most plainly in Fig. 2, is hollow and surrounds the upper end of the well tube or casing L and rests upon a driving clampring 7*, attached to a point near the upper end thereof. The method of operating this rope and weight has already been described.
  • the weight may also be sustained out of contact with the well-tube, when desired, by means of a grip composed of a surface on a projecting part on the frame A and a cam E pivoted to the frame and adapted to force said rope against said surface, as shown most plainly in Fig. t, and as will be readily understood.
  • the rope F passes from the spool G under a sheave f, carried by a stirrup 2', connected to the lover I, thence under a sheave f, carried on the shaft 1), thence over a sheave f on the shaft 1), and thence to the weight F, which operates the drill.
  • This weight F as shown most plainly in Fig. 2, preferably has a longitudinal perforation extending from its lower end up into its structure for a considerable distance, and the upper end of the drill-rod extends into this perforation and is secured therein, preferably, by a screw-thread formation, as shown.
  • the spool G is in itself a plain spool, and what would be otherwise the free end of the rope F is wound thereon to whatever extent may be desired, as is shown most plainly in Fig. 5. It is obviously necessary that as the operation of drilling proceeds this rope should be continuously unwound, so that as the drill sinksinto the earth said supporting-rope may follow it without producing appreciable variation in its slack. It is also desirable to provide a means whereby, when necessary, the weight and drill can be speedily elevated or lowered.
  • the shaft H is therefore provided, and for the last-mentioned purpose is an ordinary crank-shaft, and operates said spool G by means of the spur-gears 7L and g, which may change as the rope F are respectively fixed to said shaft and said spool. It is obvious thatby turning the shaft H by means of its crank-handle H this latter operation is expeditiously performed.
  • I have provided a worm gear-whcel h on the end of the shaft II, and an intermeshing worm w, which ongages therewith.
  • this worm On the shaft of this worm is also a sheave or pulley p, and over this sheave or pulley runs the rope belt R, the upper end of which is carried by a sheave r, suspended from a point near the upper end of the brace 13 or some other convenient point on the derrick.
  • the operator commonly stands on a platform P, attached to the derrick, in convenient reach of this rope .R, and in easily convenient sight of the weight F where it engages with the drill-rod.
  • the lover I is pivoted to the framework A, preferably at a point below the spool G and shaft II, and its otherwise free end extends out into the path of the pin (1, by which itis operated. It is provided with a stirrup t', which carries the sheave f, as has already been described. Said stirrup t' should be a swiveling stirrup, in order that its direction is wound upon or unwound from the spool G.
  • the pumps J are or may be in themselves of any ordinary or desired construction. I prefer, for efficiency, to use two such pumps, one at each end of the shaft D, as shown, by which said shaft they are, as previously stated, operated through the medium of crankarms u on the ends of said shaft, and linkso connecting said crank-arms with the pistons of said pumps, all in an ordinary and wellknown manner.
  • Atank T is provided below the apparatus, into which the suction-pipes of said pumps extend, as shown most plainly in Fig. 1.
  • the suction-pipes of the pumps enterthe tank T onlya slight distance, and thus draw the water from the top, where it is con'lparatively free from dirt, and force it through the pipes J and hose J 2 into the hollow drill-rod, and thence to the bottom of the well, where said water aids in loosening the dirt, and is thence forced up around the open space outside the drill-rod and inside the well tube or casing to the top of said casing, whence it is discharged, carrying the loosened dirt with it back into the tank T through the hose J
  • the water is thus used over and over again, being forced into the wellina comparatively clear condition and forced out of the well, carrying the loosened dirt with it, through the well tube or casing L and hose J back into the tank, whence said dirt can be sh oveled or otherwise removed from time to time, as may be desired.
  • the drill-rod K and well-casing or tube L are or may be each of an y usual or desired c011- struction, except that, of course, for the purpose above described, the drill-rod K must be hollow, which otherwise would not need to be the case.
  • a handle is secured to the drill at about the point where the hose J 2 is attached thereto, to enable the operator to revolve it and thus secure uniform results at the bottom. Said operator, as before described, stands on the platform P in convenient reach of this handle.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Earth Drilling (AREA)

Description

(No Model.)
' 'R.H. KERSBY.
WELL DRILLING MACHINE.
2 SheetsSheet 1.
WITNESSES} INVENTOI? 15rd ,71 1611s AN DREW BGI'IAHAM. PHOTO UTHQWASNINGTON. DC.
(No Model.) 2 sheets-, sneen g.
VR.I-I.KERSEY.
WELL DRILLING MACHINE. N0 558 s77.v Patented Apr. 21, 1896.
W/TNESSES. lNVENTOH AN DREW B GRAHAM. VNOTULITHQWASHINGTDND D.
lhvrrn Sterne ROBERT II. KERSEY, OF LEBANON, INDIANA.
WELL-DRiLLING MACHINE.
SPECIFICATION forming part of Letters Patent No. 558,877, dated April 21, 1896. Application filed July 31,1895. $erial No. 557,736. (No model.)
To all whom it may concern.-
Be it known that I, ROBERT H. KERSEY, a citizen of the United States, residing at Lebanon, in the county of Boone and State of Indiana, have invented certain new and useful Improvements in Tell-Drilling Machines, of which the following is a specification.
Said machine comprises a drill and apparatus for operating it, a tube and apparatus for operating it, and a pumping apparatus for forcing water into the aperture being drilled in the ground and, when mixed with the loosened earth, for drawing the mixed water and earth out again.
It also comprises a foldable derrick from which the driving-weights are suspended and a running-gear upon which the entire appa ratus is mounted.
A machine embodying said invention will be first fully described and the novel features thereof then pointed out in the claims.
Referring to the accompanying drawings, which are made a part hereof and on which similar letters of reference indicate similar parts, Figure 1 is a side elevation of a machine with the various devices in position and ready for operation; Fig. 2, a detail sectional view showing the well-tube and drill and driving-weights and fragments of the pump attachments in section; Fig. 3, a detail elevation of the detached derrick-frame Fig. 1-, a detail side elevation, on an enlarged scale, of a portion of the mechanism shown in Fig. 1; Fig. 5, a top or plan view of that portion of the machine illustrated by Fig. 4, and Fig. 6 a transverse vertical sectional view as seen from the dotted line 6 6 in Fig. 4.
In said drawings the portions marked A represent the main framework of the machine, which is commonly mounted on the running-gear and remains in position thereon, as shown; B B B the several portions of the derriclcframe; C, the main driving-shaft 1), the pumping-shaft; E, the rope for operating the well-tube-driving weight; F, the rope for operating the drill-driving weight; G, a spool around which one end of the rope F is wound; II, a shaft for operating the spool G; I, a lever for operating the rope F;
J, a pump; K, the drillrod, and L the well tube or casing.
The framework A is preferably a rigid framework and is mounted on the bolsters of the running-gear, which latter maybe of any usual or suitable wagon construction, being simply for the purpose of carrying the framework and the apparatus and mechanism mounted thereon and transporting the same from place to place. Said framework A, as will (so far as is necessary) be hereinafter speciiically mentioned, contains or carries bearings for the various parts of the mechanism, and also supports for the derrick and braces, both in its extended or erected condition and when folded up for storage or transportation. A usual and preferred construction of this framework is shown in the drawings; but manifestly its construction may be varied as desired without in any wise affecting my invention.
The derrick is composed, preferably, of two uprights B and B, hinged together by the pivot-shaft b and braces B attached thereto preferably bythe same pivot-shaft, and to standards A on the frame A by bolts b "Vhen the upper section B is raised, its lower points come in contact with stops 8, as shown most plainly in Fig. 3, by which said upper section is prevented from farther movement in that direction. \Vhen the derrick structure is taken down for storage or transportation, the upper section B is folded down, turning on the pivot Z), by which it is connected to the frame B, the braces B are entirely removed, the folded structure B B is tilted over on the pivot 79, and the braces laid on top thereof, all as indicated by the dotted lines in Fig. 1. WV hen the derrick structure is erected in position for use, its lower end rests on the ground or on a blocking or footing it, as shown, being of sufiicient length below the pivot for the purpose. By this arrangement the main hearing or support for the structure in operative position is shifted from the running-gear to the ground, and said runninggear thus relieved of the greater portion of the weight and strain.
As will be noticed, the pivot connecting the two parts of the derrick is located at a point above the middle of its length, the top part being nearly half of the whole structure and of considerable weight. By this construction a derrick of unusual height maybe raised and lowered with the ease required to handle one of much less height of the ordinary construction, as it is raised first in the folded condition, preferably by connecting the upper ends of the braces and using them as lifts, and then the upper part is easily raised or turned up on the pivot by a rope running from its end over a part on the lower section and to a Windlass. I thus provide a derrick which is of sufficientheight to be most efficient for the purpose, and yet may be easily manipulated with little help and also be compactly packed on the running-gear.
The main driving-shaft O is mounted in suitable bearings on the frame A and is driven from some suitable source of power (not shown) by a belt 0, running to the pulley C on said shaft. Said shaft also carries a spool 0 and around this spool the rope E is wound sufficiently so that when the free end is held tight the spool will wind up the rope; but when the free end is left loose the spool will revolve freely and not operate upon the rope. By this means said rope E can be actuated to operate the weight E, which, in turn, acts upon the well-tubethat is, when the free end of the rope E is hold tight, as may readily be done by hand, the main portion of said rope will be wound up, raising said weight E, and when the free end of said rope is released and left slack said weight will fall. This operation is only necessary at comparatively infrequent and somewhat irregular intervals, when it becomes necessary to sink the well tube or casing after the drill proper has penetrated a sufficient depth to render such sinking desirable. The greater portion of the work is, of course, done by the drill, which penetrates more or less rapidly, depending upon the character of the soil, and when by its use a sufficient amount of earth has been loosened and removed it requires but comparatively little time to sink the outer tube or easing into the space thus formed. A means is therefore required for this operation which shall normally remain idle, but may be manipulated at pleasure.
The shaft D is driven from the shaft 0 by means of the spur gear-wheel C, which is preferably fixedly mounted on the shaft 0, and the spur gear-wheel D, which is preferably loosely mounted on the shaft D and is enabled to drive said shaft when the clutch D is thrown into engagement therewith, said clutch being of any usual or desired construction which is capable of moving longitudinally of the shaft, but is connected thereto by a spline or otherwise so as to revolve therewith. A pin (1 extends out from the side of this wheel I) and the lever I extends into the path of said pin, so that as said gear-wheel revolves said lever is operated by said pin during a portion of the revolution of said wheel and at a certain point in said revolution escapes therefrom. The lever being normally held upwardly by the pull of the weight F on the rope F, said lever is forced down by the wheel and raised by the weight with a regular motion. hen the clutch D is thrown into engagement, the shaft D is also revolved and the pumps J operated. This mechanism thus, when the clutch is engaged, subserves the double purpose of intermittingly pulling the rope F and regularly operating the pumps J at one and the same time when the clutch is engaged, or, when the clutch is disengaged, the single purpose of intermittingly pulling said rope at pleasure. It is obvious that the drilling operation in a machine of this character is the primary one, and therefore should be continuous, while the pumping and wellsinking operations must depend upon the rapidity of the work of the drill and may therefore be frequently suspended to advantage, especially when working in earth difficult of penetration.
The rope E, as has already been described, at its free end passes with a few turns around the spool C It runs thence first under a sheave e, mounted on a shaft 12 carried by the brace B and thence over a sheave e, mounted on the shaft 1), and thence down to and connects with the weight E. Said weight E, as shown most plainly in Fig. 2, is hollow and surrounds the upper end of the well tube or casing L and rests upon a driving clampring 7*, attached to a point near the upper end thereof. The method of operating this rope and weight has already been described. The weight may also be sustained out of contact with the well-tube, when desired, by means of a grip composed of a surface on a projecting part on the frame A and a cam E pivoted to the frame and adapted to force said rope against said surface, as shown most plainly in Fig. t, and as will be readily understood.
The rope F passes from the spool G under a sheave f, carried by a stirrup 2', connected to the lover I, thence under a sheave f, carried on the shaft 1), thence over a sheave f on the shaft 1), and thence to the weight F, which operates the drill. This weight F, as shown most plainly in Fig. 2, preferably has a longitudinal perforation extending from its lower end up into its structure for a considerable distance, and the upper end of the drill-rod extends into this perforation and is secured therein, preferably, by a screw-thread formation, as shown.
The spool G is in itself a plain spool, and what would be otherwise the free end of the rope F is wound thereon to whatever extent may be desired, as is shown most plainly in Fig. 5. It is obviously necessary that as the operation of drilling proceeds this rope should be continuously unwound, so that as the drill sinksinto the earth said supporting-rope may follow it without producing appreciable variation in its slack. It is also desirable to provide a means whereby, when necessary, the weight and drill can be speedily elevated or lowered. The shaft H is therefore provided, and for the last-mentioned purpose is an ordinary crank-shaft, and operates said spool G by means of the spur-gears 7L and g, which may change as the rope F are respectively fixed to said shaft and said spool. It is obvious thatby turning the shaft H by means of its crank-handle H this latter operation is expeditiously performed. For the first-named operation I have provided a worm gear-whcel h on the end of the shaft II, and an intermeshing worm w, which ongages therewith. On the shaft of this worm is also a sheave or pulley p, and over this sheave or pulley runs the rope belt R, the upper end of which is carried by a sheave r, suspended from a point near the upper end of the brace 13 or some other convenient point on the derrick. The operator commonly stands on a platform P, attached to the derrick, in convenient reach of this rope .R, and in easily convenient sight of the weight F where it engages with the drill-rod. He is thus enabled to watch the operation of drill ing and note the speed with which it progresses, and by means of this rope belt R can adjust the rope F as may be required, and can let out or slacken said rope with the utmost ease and, if desired, by almost imperceptible degrees.
The lover I is pivoted to the framework A, preferably at a point below the spool G and shaft II, and its otherwise free end extends out into the path of the pin (1, by which itis operated. It is provided with a stirrup t', which carries the sheave f, as has already been described. Said stirrup t' should be a swiveling stirrup, in order that its direction is wound upon or unwound from the spool G.
The pumps J are or may be in themselves of any ordinary or desired construction. I prefer, for efficiency, to use two such pumps, one at each end of the shaft D, as shown, by which said shaft they are, as previously stated, operated through the medium of crankarms u on the ends of said shaft, and linkso connecting said crank-arms with the pistons of said pumps, all in an ordinary and wellknown manner. Atank T is provided below the apparatus, into which the suction-pipes of said pumps extend, as shown most plainly in Fig. 1. The discharge-pipes J of said pumps run up alongside the derrick to a point near where the weight F operates upon the drill-rod K, and a flexible hose J 2 connects the upper end of said discharge-pipe with said drill rod, which is hollow, as shown most plainly in Fig. 2. The suction-pipes of the pumps enterthe tank T onlya slight distance, and thus draw the water from the top, where it is con'lparatively free from dirt, and force it through the pipes J and hose J 2 into the hollow drill-rod, and thence to the bottom of the well, where said water aids in loosening the dirt, and is thence forced up around the open space outside the drill-rod and inside the well tube or casing to the top of said casing, whence it is discharged, carrying the loosened dirt with it back into the tank T through the hose J The water is thus used over and over again, being forced into the wellina comparatively clear condition and forced out of the well, carrying the loosened dirt with it, through the well tube or casing L and hose J back into the tank, whence said dirt can be sh oveled or otherwise removed from time to time, as may be desired.
The drill-rod K and well-casing or tube L are or may be each of an y usual or desired c011- struction, except that, of course, for the purpose above described, the drill-rod K must be hollow, which otherwise would not need to be the case. A handle is secured to the drill at about the point where the hose J 2 is attached thereto, to enable the operator to revolve it and thus secure uniform results at the bottom. Said operator, as before described, stands on the platform P in convenient reach of this handle.
Having thus fully described my said invention, what I claim as new, and desire to secure by Letters Patent, is-
1. The combination, in a well-drilling machine, of a running-gear mounted on wheels, a fixed framework mounted on said runninggear, a derrick mounted on said fixed framework by means of a pivot connection, which derrick is composed of two sections hinged together, the upper section being of less length than the lower section, braces connected at one end to the main, or lower, section of said derrick and at the other end to a portion of said fixed framework, whereby said derrick is supported, the lower or mainpart of said derrick extending beyond the pivot connecting it to the fixed frame a distance sufficient so that it will rest upon the ground when erected, all substantially as set forth.
2. The combination, in a well-drilling machine, of the main driving-shaft, a second or pumping shaft, a loosely-mounted wheel on said second or pumping shaft, means of drivin g said wheel from said drivin '-shaft,a shifting-clutch 011 said second or pumping shaft adapted to be engaged with or disengaged from said wheel, mechanism for operating the drill-weight rope, and a strikeon said looselymounted wheel on said pumping-shaft, which contacts with and operates said mechanism at each revolution thereof whereby the operation of drilling and pumping may be caused to proceed simultaneously or separately, substantially as shown and described.
3. The combination, in a well-drilling machine, of a running-gear, a framework mounted on said running-gear, a foldable derrick pivoted to said fixed framework, a drivingshaft mounted on said framework having a spool on its end, a rope mounted 011 said derrick and carrying the well tubedriving weight at one end, the other end of said rope being wound about the spool on said shaft with a free end extending therefrom, a second or pumping shaft, a loosely-mounted wheel on said second shaft, a shifting-clutchmounted upon and adapted to drive said shaft and also adapted to engage with and be driven by said Wheel, the pumps, pitinen driven by cranks on said shaft and operating said pumps, a pivoted lever carrying a sheave un- 5 der which the drill- Weight earryin g rope passes, and a pin or arm on said Wheel adapted to come into contact with and operate said lever, said shaft being thus adapted to operate the drill-Weight alone, or both the drill weight and the pumps, all substantially as 10 shown and described.
In Witness whereof I have hereunto set my hand and seal, at Indianapolis, Indiana, this 27th day of July, A. D. 1895.
ROBERT l-I. KERSEY. [n s] \Vitnesses:
CHESTER BRADFORD, JAMEs A. WALsH.
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