US1299803A - Mechanism for operating earth-boring tools. - Google Patents

Mechanism for operating earth-boring tools. Download PDF

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Publication number
US1299803A
US1299803A US13083816A US13083816A US1299803A US 1299803 A US1299803 A US 1299803A US 13083816 A US13083816 A US 13083816A US 13083816 A US13083816 A US 13083816A US 1299803 A US1299803 A US 1299803A
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United States
Prior art keywords
boring
tool
sleeve
clutch member
lever
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Expired - Lifetime
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US13083816A
Inventor
Newton H Smith
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WILLIAM C HOWELL
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WILLIAM C HOWELL
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Priority to US13083816A priority Critical patent/US1299803A/en
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    • 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
    • B23Q5/00Driving or feeding mechanisms; Control arrangements therefor
    • B23Q5/22Feeding members carrying tools or work
    • B23Q5/32Feeding working-spindles
    • 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
    • Y10T74/17Rotary driven device adjustable during operation relative to its supporting structure
    • 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
    • Y10T74/19Gearing
    • Y10T74/19642Directly cooperating gears
    • Y10T74/1967Rack and pinion

Definitions

  • iinrrnn snares manna ornicn manna ornicn.
  • PatentedApnS 1919.
  • This'invention relates to mechanism for operating earth boring tools such'as shown, for example, in an application filed by me on' May 20, 1916, Serial No. 98,832.
  • One of the objects of the present invention is to provide a simple and efficient mechanismwhich can be lowered in a pit at the point where the boring is to be started and which constitutes means for rotating the boring tool and also-for feeding it at a desired speed into the soil, said mechanism being so constructed as to multiply the power exerted in the boring operation andthe feedingmeans being adapted, when reversed, to quickly withdraw the auger from the soil in which it is embedded.
  • Figure I is a perspective view of the mechanism constituting the present invention.
  • Fig. 2 -" is a" points the-invention resides in the com central vertical longitudinal I section through the mechanism, parts'being broken away.- F19. dis a section on line 3-3 Fig. 2.
  • reference 1 designates parallel side members connected at one end by ablock'2 which is provided with an upstanding guide 3'in the form of. a yoke'and also with an upstanding stud 4' constitutingan attaching means, this stud being arranged over the space between the side members.
  • the side members are spaced apart at their upper ends by blocks 5 and 6 arranged side by side, all of these parts being held together by a transverse bolt 7.
  • the block 5 has'an upstanding ear 8, while the block 6 extends longitudinally beyond the side members and is provided with a transverse aperture 9. This aperture is adapted to receive the threaded end of a hooked bolt 10 which is designed to straddle a detachable and adjustable leg 11 which can be made of gas pipe or any other like structure.
  • Engaging the hook or stud 4 is the end link of a chain 12, the other end link of this chain engaging a hook 13 provided at one end of a bolt 14. Said boltengages the upstanding lug 8 on the block 5and is held therein adjustably by a nut 15 orin any other manner desired.
  • the side members 1 are connected by bolts or rivets 16 on which are arranged" spacing sleeves 17.
  • a carriage 19 Mounted to travel on the side members 1 are the sides- 18 of a carriage 19, saidcarriage being offset so as to fit snugly about the side members.
  • the upstanding sides are connected by a head 20 in which-is formed a longitudinal bore 21. J ournaled in this bore is a tubular spindle 22 to one end of which is secured a chuck 23 which in the form shown, has a set screw 24. The. other end" of the spindle is engaged by a nut 25.
  • a bevel gear 26 is secured to the spindle between the chuck 23 and the-head 20 and this gear is constantly in mesh with a smaller drive gear 27 mounted for rotation on a laterally extending stud 28 carried by the head 20.
  • the gear 27 has an integral clutch member 29 adapted to be engaged by a clutch member 30 at one end of a sleeve 31 which is mounted on the stud 28.
  • a lever extends diametrically through the sleeve 31 and has a grip 33 at one end.
  • Said lever is roller 34 seated in a recess in the end -portion of the sleeve 31, said recess being indicated at in Fig. 3.
  • a spring 36 is seated in the recess and bears against a block 37 which frictionally engages the roller 34.
  • a transverse shaft 38150 which is secured a sprocket 39 arranged below the head 20 and projecting slightly between the side members 1.
  • Antifriction rollers 40 are supported in the can riage adjacent opposed portions of the sprocket and the chain l2extends over these anti-friction rollers and under the sprocket so as to be crimped where engaged by the sprocket and as shown in Fig. 2'.
  • a clutch member 41 Extending laterally from one side of the carriage and surrounding the shaft 38 is a clutch member 41 and feathered on the adjacent end of the shaft 38 is another clutch member 42.
  • This clutch member 42 can be shifted into engagement with the clutch member 41 to hold the shaft 38 against rotation or it can be shifted out of engagement therewith to allow the shaft 38 to r0 tate.
  • a clutch member 43 Secured to, and revoluble with the other end portion of the shaft 38 is a clutch member 43 andmounted on the extremity of shaft 38 is a sleeve 44.
  • the shaft has an annular groove 45 and a longitudinal groove 46 and a holding screw 47 projects into the groove 46 to hold the sleeve 44 against rotation while the clutch member 43 is en gaged by the inner end of sleeve 44.
  • the inner end of the screw 47 can be brought into the groove 45 and the clutch member 43 can be released from the sleeve so that the sleeve 44 is thus free to rotate on the shaft 38.
  • a lever 48 Extending diametrically through the sleeve 44 is a lever 48 having a grip 49 at each end and engaging the lever at an intermediate point is a spring pressed roller 50 similar to the roller 34 and which serves to hold the lever against accidental longitudinal movement.
  • a ditch is dug at the point from which the pipes are to be laid and the structure is set up in the ditch so as to support a boring tool at the desired face of the ground.
  • clifferent forms of boring tools can be used and in the structure shown an anger 51 is provided back of a bit 52 and a stem 53 extends from the auger and is secured within the chuck 23.
  • the tool is adapted to rest in the yoke 3 and after being fastened in the chuck the point of the tool is placed against the a wall of the ditch and the lever 32 is actuated distance below the surto rotate sleeve 31 andthe parts controlled thereby.
  • the gear 26 will be revolved and a corresponding movement imparted to the boring tool.
  • the lever 48 can be actuated to rotate shaft 38 and cause the sprocket 39 to travel along chain 12. This operation can continue until the entire tool is embedded in the ground whereupon a rod of any suitable form may be coupled to the stem and attached to the chuck, this rod being passed through the tubular spindle In certain kinds of earth the tool once well embedded, will travel forward under the action ofthe auger without having a pushing force applied.
  • the clutch elements 43 and 44 may be disengaged so as to allow the handle 48 to remain stationary.- After the tool has been driven the desired distance into the ground, it canbe pulled back a few inches in order to completely break up that portion of the soil engaged by the auger, this pulling being effected by reversing the movement of the sprocket 39. The apparatus can then be detached from the tool and said tool readily withdrawn by hand from the opening.
  • a chain connection for the sprocket 39 said chain being mounted on the supporting rollers 40 and extending downwardly under the sprocket, a positive gripping of the parts is assured and, should the chain break or become unduly worn, a new one can be readily substituted therefor at slight cost.
  • Importance is attached to the fact that the means employed for moving the carriage forwardly or backwardly operates inde pendently of the mechanism used for driving the boring tool.
  • the operator can put any desired pressure behind the boring tool in order to properly advance it in different kinds of earth encountered. For instance, in a clay soil, more pressure of the left hand lever will be required in order to advance the boring tool while said tool'is beingturned by the right hand lever, than would be necessarv in sandy or loose soil. Should the boring tool encounter shale, still more pressure would be required. With this machine an auger will bore through a brick wall, but, obviously, much greater pressure would be required with the left hand lever than while boring through softer I substances.
  • Vhat is claimed is A mechanism for operating earth boring tools, including a support, a carriage on the support, a spindle rotatable in the carriage, a gear Wheel rigid on the spindle, a stud extending laterally of the carriage, a driving gear rotatable on the stud and meshing with the gear Wheel, there being a clutch member integral with the driving gear, a sleeve 1'0- tatable on the stud and having a clutch member engageable with the clutch member of the driving gear, and a crank extending from the sleeve for operating the same.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Earth Drilling (AREA)

Description

H. SMITH.
MECHANISM FOR OPERATING EARTH BORING TOOLS. APPLICATION FILED NOV. II. I9I6.
Patented Apr. 8, 1919.
Witnesses Attorneys,
, iinrrnn snares manna ornicn.
NEWTON H. SMITH, OF HAMILTON, ILLINOIS, .ASSIGNOR OE ONE-HALF TOWILLIAMC. HOWELL, 0F KEOKUK; IOWA.
MECHANISM FOR OPERATINGEARTH-BORING TOOLS.
Specification of Letters Patent.
PatentedApnS, 1919.
To all whom it may concern Be it known that I, NEWTON H. SMITH, a.
citizen of the United States, residing at Hamilton, in the county of Hancock and State of Illinois, have invented a new and useful Mechanism for Operating Earth- Boring Tools, of which the following is a specification.
This'invention relates to mechanism for operating earth boring tools such'as shown, for example, in an application filed by me on'May 20, 1916, Serial No. 98,832.
As is well known, it is thepractice in some localities to drill or bore holes horizontally in the ground for the reception of small gas or water pipes whichcan-thus be laid without the necessity of digging trenches or ditches. The augersemployed for this purpose have generally been pushed and turned by gripping the end of thestem orshaft carrying theauger or theend of an iron rod orlink. After the auger has been forced into'theground a short distance it is pulled out so'as to remove the loosened soil and is then reinserted; "This operation is exceedingly laborious and slow.
' One of the objects of the present invention is to provide a simple and efficient mechanismwhich can be lowered in a pit at the point where the boring is to be started and which constitutes means for rotating the boring tool and also-for feeding it at a desired speed into the soil, said mechanism being so constructed as to multiply the power exerted in the boring operation andthe feedingmeans being adapted, when reversed, to quickly withdraw the auger from the soil in which it is embedded.
With the-foregoingand other objects in View which will appear as the description proceeds, bination and arrangement of parts and in the details of construction hereinafter described and' claimed, it being understoood that changes in the precise embodiment of the invention'herein disclosed, can be made within the'scope'of what is claimed, without departing from the spirit of the invention.
In the accompanying drawings the preferred form of the invention has been shown.
In said drawings-:-
Figure I is a perspective view of the mechanism constituting the present invention; Fig. 2 -"is a" points the-invention resides in the com central vertical longitudinal I section through the mechanism, parts'being broken away.- F19. dis a section on line 3-3 Fig. 2.
Referring to thefi gures by'charactersof.
reference 1 designates parallel side members connected at one end by ablock'2 which is provided with an upstanding guide 3'in the form of. a yoke'and also with an upstanding stud 4' constitutingan attaching means, this stud being arranged over the space between the side members. The side members are spaced apart at their upper ends by blocks 5 and 6 arranged side by side, all of these parts being held together by a transverse bolt 7. The block 5 has'an upstanding ear 8, while the block 6 extends longitudinally beyond the side members and is provided with a transverse aperture 9. This aperture is adapted to receive the threaded end of a hooked bolt 10 which is designed to straddle a detachable and adjustable leg 11 which can be made of gas pipe or any other like structure. Engaging the hook or stud 4 is the end link of a chain 12, the other end link of this chain engaging a hook 13 provided at one end of a bolt 14. Said boltengages the upstanding lug 8 on the block 5and is held therein adjustably by a nut 15 orin any other manner desired. At intermediate the side members 1 are connected by bolts or rivets 16 on which are arranged" spacing sleeves 17.
Mounted to travel on the side members 1 are the sides- 18 of a carriage 19, saidcarriage being offset so as to fit snugly about the side members. The upstanding sides are connected by a head 20 in which-is formed a longitudinal bore 21. J ournaled in this bore is a tubular spindle 22 to one end of which is secured a chuck 23 which in the form shown, has a set screw 24. The. other end" of the spindle is engaged by a nut 25. A bevel gear 26 is secured to the spindle between the chuck 23 and the-head 20 and this gear is constantly in mesh with a smaller drive gear 27 mounted for rotation on a laterally extending stud 28 carried by the head 20. The gear 27 has an integral clutch member 29 adapted to be engaged by a clutch member 30 at one end of a sleeve 31 which is mounted on the stud 28. A lever extends diametrically through the sleeve 31 and has a grip 33 at one end. Said lever is roller 34 seated in a recess in the end -portion of the sleeve 31, said recess being indicated at in Fig. 3. A spring 36 is seated in the recess and bears against a block 37 which frictionally engages the roller 34. Thus while the lever 32 is held against longitudinal movement under ordinary conditions, it can be easily pulled longitudinally when it isfdesired to increase or reduce the leverage.
J ournaled within the carriage close to but above the side members 1 is a transverse shaft 38150 which is secured a sprocket 39 arranged below the head 20 and projecting slightly between the side members 1. Antifriction rollers 40 are supported in the can riage adjacent opposed portions of the sprocket and the chain l2extends over these anti-friction rollers and under the sprocket so as to be crimped where engaged by the sprocket and as shown in Fig. 2'.
Extending laterally from one side of the carriage and surrounding the shaft 38 is a clutch member 41 and feathered on the adjacent end of the shaft 38 is another clutch member 42. This clutch member 42 can be shifted into engagement with the clutch member 41 to hold the shaft 38 against rotation or it can be shifted out of engagement therewith to allow the shaft 38 to r0 tate.
Secured to, and revoluble with the other end portion of the shaft 38 is a clutch member 43 andmounted on the extremity of shaft 38 is a sleeve 44. The shaft has an annular groove 45 and a longitudinal groove 46 and a holding screw 47 projects into the groove 46 to hold the sleeve 44 against rotation while the clutch member 43 is en gaged by the inner end of sleeve 44. By pulling the sleeve 44 outwardly, the inner end of the screw 47 can be brought into the groove 45 and the clutch member 43 can be released from the sleeve so that the sleeve 44 is thus free to rotate on the shaft 38.
Extending diametrically through the sleeve 44 is a lever 48 having a grip 49 at each end and engaging the lever at an intermediate point is a spring pressed roller 50 similar to the roller 34 and which serves to hold the lever against accidental longitudinal movement.
- In using the apparatus herein described a ditch is dug at the point from which the pipes are to be laid and the structure is set up in the ditch so as to support a boring tool at the desired face of the ground. As before stated, clifferent forms of boring toolscan be used and in the structure shown an anger 51 is provided back of a bit 52 and a stem 53 extends from the auger and is secured within the chuck 23. The tool is adapted to rest in the yoke 3 and after being fastened in the chuck the point of the tool is placed against the a wall of the ditch and the lever 32 is actuated distance below the surto rotate sleeve 31 andthe parts controlled thereby. Thus the gear 26 will be revolved and a corresponding movement imparted to the boring tool. During this revolution of the tool, the lever 48 can be actuated to rotate shaft 38 and cause the sprocket 39 to travel along chain 12. This operation can continue until the entire tool is embedded in the ground whereupon a rod of any suitable form may be coupled to the stem and attached to the chuck, this rod being passed through the tubular spindle In certain kinds of earth the tool once well embedded, will travel forward under the action ofthe auger without having a pushing force applied. Under these circumstances the clutch elements 43 and 44 may be disengaged so as to allow the handle 48 to remain stationary.- After the tool has been driven the desired distance into the ground, it canbe pulled back a few inches in order to completely break up that portion of the soil engaged by the auger, this pulling being effected by reversing the movement of the sprocket 39. The apparatus can then be detached from the tool and said tool readily withdrawn by hand from the opening. By providing a chain connection for the sprocket 39, said chain being mounted on the supporting rollers 40 and extending downwardly under the sprocket, a positive gripping of the parts is assured and, should the chain break or become unduly worn, a new one can be readily substituted therefor at slight cost. Likewise if the sprocket becomes worn a, new one can be substituted. Such a structure is advantageous as compared with one in which a rack might be used. An apparatusof this character is continually being used in damp, moist soil which would soonbecome packed between the teeth of a rack or its pinion and seriously interfere with their operation. This is entirely avoided by a chain and sprocket in which no pockets are formed to catch earth.
Importance is attached to the fact that the means employed for moving the carriage forwardly or backwardly operates inde pendently of the mechanism used for driving the boring tool. Thus the operator can put any desired pressure behind the boring tool in order to properly advance it in different kinds of earth encountered. For instance, in a clay soil, more pressure of the left hand lever will be required in order to advance the boring tool while said tool'is beingturned by the right hand lever, than would be necessarv in sandy or loose soil. Should the boring tool encounter shale, still more pressure would be required. With this machine an auger will bore through a brick wall, but, obviously, much greater pressure would be required with the left hand lever than while boring through softer I substances. The independent operation of feeding the carriage forward and turning the auger enables the operator to maintain v this independent operation enables more rapid boring to-be efiectedin loose soil than can be accomplishedwhere the advancing of the carriage and the turning of the auger are produced by the operation of one lever.
Vhat is claimed is A mechanism for operating earth boring tools, including a support, a carriage on the support, a spindle rotatable in the carriage, a gear Wheel rigid on the spindle, a stud extending laterally of the carriage, a driving gear rotatable on the stud and meshing with the gear Wheel, there being a clutch member integral with the driving gear, a sleeve 1'0- tatable on the stud and having a clutch member engageable with the clutch member of the driving gear, and a crank extending from the sleeve for operating the same.
In testimony that I claim the foregoing as my oWn,'I have hereto affixed my signature in the presence of tWo Witnesses.
NEVTGN H. SMITH. Witnesses:
WILLIAM C. HOWELL,
N. M. HILL.
Copies of this patent may be obtained for five cents each, by addressing the Commissioner of Patents.
Washington, D. G.
US13083816A 1916-11-11 1916-11-11 Mechanism for operating earth-boring tools. Expired - Lifetime US1299803A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3704571A (en) * 1970-05-27 1972-12-05 Westinghouse Electric Corp Washer mechanism for electrostatic precipitator

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3704571A (en) * 1970-05-27 1972-12-05 Westinghouse Electric Corp Washer mechanism for electrostatic precipitator

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