US2263779A - Mining machine - Google Patents

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Publication number
US2263779A
US2263779A US206448A US20644838A US2263779A US 2263779 A US2263779 A US 2263779A US 206448 A US206448 A US 206448A US 20644838 A US20644838 A US 20644838A US 2263779 A US2263779 A US 2263779A
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Prior art keywords
mining machine
jeffrey
sectional
view
nov
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US206448A
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Robert K Jeffrey
Lewis E Mitchell
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Jeffrey Manufacturing Co
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Jeffrey Manufacturing Co
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Priority to US206448A priority Critical patent/US2263779A/en
Application filed by Jeffrey Manufacturing Co filed Critical Jeffrey Manufacturing Co
Priority to US364322A priority patent/US2285860A/en
Priority to US364327A priority patent/US2285863A/en
Priority to US364324A priority patent/US2340533A/en
Priority to US364326A priority patent/US2285862A/en
Priority to US364325A priority patent/US2263925A/en
Priority to US364328A priority patent/US2285864A/en
Priority to US364323A priority patent/US2285861A/en
Priority to US398788A priority patent/US2334772A/en
Application granted granted Critical
Publication of US2263779A publication Critical patent/US2263779A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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    • EFIXED CONSTRUCTIONS
    • E21EARTH DRILLING; MINING
    • E21CMINING OR QUARRYING
    • E21C31/00Driving means incorporated in machines for slitting or completely freeing the mineral from the seam
    • E21C31/08Driving means incorporated in machines for slitting or completely freeing the mineral from the seam for adjusting parts of the machines
    • 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
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S74/00Machine element or mechanism
    • Y10S74/11Creeper speed
    • 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
    • Y10T74/19019Plural power paths from prime mover

Definitions

  • This invention relates to a mining machine of the universal type and one of the objects of the invention is to provide an improved and eflicient device of the type capable of cutting kerfs in any one of a plurality of intersecting or paral-' lel planes including horizontal planes at any elevation between a relatively high roof and the floor of a mine room and also including vertical or shearing kerfs in any vertical plane between relatively widely spaced apart ribs or side walls of a mine room.
  • Another object of the invention is to provide a mining machine of the universal type which has a'wide range of operation and which can be operated with safety, a high'degree of efliciency and economy in mines where the available space is relatively small or where the available space is relatively large.
  • Another object of the invention is to provide a mining machine of the universal type which can be operated to cut kerfs in any plane between the extreme limits and which can be quickly and easily handled and adjusted with a minimum of manual eilort.
  • Another object of the invention is to provide a mining machine in which cutting mechanism is adapted to be fed in a vertical plane by means of a hydraulic system which includes an equalizing relief valve mechanism which compensates for the unequal displacement in the hydraulic system thereby permitting the cutter bar to float while cutting on a curved portion of the track.
  • Another object of the invention is to provide a mining machine in-which the mining mechanism is fed through the material to be mined at a predetermined maintained speed by means of an hydraulic system which speed can be adjusted to any one of a plurality of values.
  • Another object of the invention is to provide a mining machine in which an adjustable kerf cutter support includes a cylindrical bearing through which the drive for a kerf cutter extends in which the cylindrical bearing has sleeves which'maintain the driv gearing enclosed irrespective of adjustment of the keri cutter.
  • Still another object of the invention is to provide a mining machine with a hydraulic motor in which the flow of hydraulic fluid to the motor is relatively free while the flow of hydraulic fluid from the motor is restricted.
  • Another object of the invention is to provide an improved construction for conduits leading to a pivotally mounted hydraulic piston type motor.
  • Another object of the invention is to provide an improved control mechanism for a hydraulic control system of a mining machine.
  • Another object of the'invention is to provide improved means for effecting continuous hydraulic connections between relatively movable parts of a mining machine.
  • Another object of the invention is to provide -an improved hydraulic control system particularly useful in connection with mining machines.
  • Another object of the invention is to provide an improved construction for effecting the connection of a plurality of flexible hydraulic conduits to a rotating element of a hydraulically controlled mining machine.
  • a furtherobject of the invention is to provide a hydraulic control system with pressure equalizing means whereby the piston of the hydraulic piston type motor will notlock.
  • Fig. 1 is a plan view of .the rear end of the mining machine comprising our invention
  • Fig. 2 is a continuation of Fig. 1 showingthe central portion of the mining machine of our invention
  • Fig. 3 is a continuation of Fig. 2 showing the forward end of the mining machine with the kerf cutting mechanism cut short;
  • Fig. 4 is a side elevational view of the rear portion of our mining machine
  • Fig. 5 is a combined side elevational and sectional view of the central portion of our device
  • Fig. 6 is a longitudinal sectional view oi the forward portion of our device with the kerf cutting mechanism again shown cut short;
  • Fig. 7 is an enlarged sectional, detail taken on the line 1-1 of Fig. 2, looking in the direction of the arrows;
  • Fig. 8 is a combined side and sectional elevational view showing the construction of a hydraulic piston motor
  • Fig. 9 is a transverse sectional view taken on the line 9-9 of Fig. 8; 1
  • Fig. 10 is a transverse sectional and elevational view showing a plurality of control valves and operating means therefor;
  • Fig. 11 is a side view of one of the control devices of Fig. 10; v
  • Fig. 12 is a side view of another of the control devices of Fig. 10;
  • Fig. 13 is an enlarged segmental sectional view of the improved piston construction of a hydraulic piston motor comprising our invention
  • Fig. 14 is an end elevational view of the structure illustrated in Fig. 13;
  • Fig. 15 is a plan view of the truck of the mining machine of our invention showing portions in section;
  • Fig. 16 is an enlarged sectional view of an actuating element of one of the piston motors comprising a feature of our invention
  • Fig. 17 is a transverse sectional elevational view of an eleyating hydraulic piston motor taken on the line of Fig. 2 looking in the direction of the arrows;
  • Fig. 18- is a combined sectional and plan view of a portion of our device
  • Fig. 19 is a transverse sectional view through the head of the mining machine of our invention taken approximately on the line
  • Fig. 20 is a transverse sectional view taken on the line 2020 of Fig. 6, looking in the direction of the arrows;
  • Fig. 21 is a transverse sectional elevational view taken on the line 2
  • Fig. 22 is a sectional elevational view .taken on the line 22-42 of Fig. 1, looking in the direction of the arrows;
  • Fig. 23 is a sectional elevational view of the volume control of our invention.
  • Fig. 24 is a sectional elevational view of B. volume relief pilot valve of our invention.
  • Fig. 25 is a transverse sectional elevatlona view taken on the line 25--25 of Fig. 1, looking in the direction of the arrows;
  • Fig. 26 is a longitudinal sectional elevational view showing the drive for the truck and taken on line 2626 of Fig. 25 looking in the direction of the arrows;
  • Fig. 27 is a transverse sectional view taken on the line 21-21 of Fig. 1, looking in the direction of the arrows;
  • Fig. 28 is a sectional elevational view taken on the line 28-28 of Fig. 27, looking in the direction of the arrows;
  • Figs. 29 and 30 are sectional elevational views taken on the lines 29-49 and 30-30, respectively, of Fig. 27, looking in the direction of the arrows;
  • Fig. 31 is a transverse sectional elevational view taken on the line 3
  • Fig. 32 is a side elevational view of a detail of the apparatus shown in Fig. 31;
  • Fig. 33 is a sectional view showing in detail the rope anchorage and tension means of Fig.
  • Fig. 34 is a longitudinal elevational sectional view taken on the line 34-34 of Fig. 31, looking in the direction of the arrows;
  • Fig. 35 is a transverse sectional view taken on the line 35-35 of Fig. 34, looking in the direction of the arrows;
  • Fig. 36 is a sectional view showing the construction of the control valves for the hydraulic motors
  • Fig. 36 is a sectional view similar to Fig. 36;
  • Fig. 37 is a sectional plan view through the electric motor for driving the kerf-cutting mechanism
  • Fig. 38 is a sectional elevational view of the equalizing relief valve comprising a feature of our invention.
  • Fig. 39 is a diagrammatic illustration of the hydraulic control system
  • Fig. 45 is a diagrammatic plan view showing the range of vertical kerfs which may be cut by our mining machine.
  • Fig. 46 is a sectional view taken on the line 4646 of Fig. 6, looking in the direction of the arrows.
  • the mining machine comprising our invention is mounted upon a truck 45 best seen in Figs. 5 and 15 of the drawings comprising a main frame formed by spaced apart longitudinally extending frame members 46, 46 which are laterally spaced apart and between which extend transversely extending forward plate 41 and transversely extending rearward plate 48 (Fig. 4) and intermediate transversely extending bolster members 49 and 50 (Fig. 5). All of said main frame members 46 to 50, inclusive, are rigidly attached together to form a strong main frame for the truck 45.
  • Said main frame is supported upon a forward axle 5
  • the adjusting screws 54, 54 are connected to rotate together by chain'and sprocket mechanism 55.
  • journal boxes 53, 53 are held in the main frame against longitudinal movement but provide for limited vertical movement thereby to permit the shaft 5
  • the rear end axle 52 is rigidly Journaledto the main frame of the truck 45 by appropriate Journal bearings 56, 56 (Fig. 15).
  • and 52 are provided with appropriate driving and supporting track engaging flanged wheels 51 all of which are keyed to the respective axles 5
  • , 52 are connected to rotate in unison-by chain and sprocket mechanism 59. It is thus evident that any driving force supplied to axle 52, ashereinafter described, will be transmitted to all four of the Wheels 51 thereby insuring a maximum of traction for propelling the mining machine which is particularly desirable during sumping operations. It is, of course, evident that the afore-described adjusting screws 54 (Fig. 5) provide for the tensioning of the chain and sprocket mechanism 59 by the forward and rearward adjustment of the axle 5
  • a brake mechanism (Fig. 5) comprising a brake drum 60 keyed to shaft 52 with which is associated a pair of brake shoes 6

Description

NOV. 25, 1941. J EFFREIY ETAL 2,263,779
MINING MACHINE Filed May e, 1958 18 Sheets-Sheet 1 i 1 y mlzlr gaw [/WE/V 70/25: 120mm KJEFFEEY.
NOV. 25, 1941'. JEFFREY AL 2,263,779
MINING MACHINE Filed May 6. 1938 18 Sheets-Sheet 2 NVENTOQS, [20mm K. JEFFREY.
LEWIS E. MITCHELL. g AA. I
Nov. 25, 1941. R. K. JEFFREY ETAL 2,263,779
MINING MACHINE Filed May 6, 1938 18 Sheets-Sheet 3 owm ATTY
[/VVEA/TOQS. 2055121 KJEFFEEY. LEWIS EMITCHELL, BY M u Non Tu u u am. mm. H r u lllllllllllllllll ll II/ M AS. K K 6 m9 m fi w &3 m 5 3 2 gm a o 3 :0 ma QN a3 5 N m N Nov. 25, 1941.
R. K. JEFFREY ETAL MINING MACHINE Filed May 6, 1958 18 Sheets-Sheet 4 [MAE/V7025: QOBEQT K. JEFFREY. LEWIS E. MITCHELL.
R. K. JEFFREY ETAL 2,263,779
Nov. 25, 1941.
MINING MACHINE Filed May 6, 1938 18 Sheets-Sheet s N -25,1941. R. K. JEFFREY HAL 2,2 3 719 MINING MACHINE Filed May 6, 1938 18 Sheets-Sheet '7 [/Vl/f/VTOESI QOB'EET K. JEFFIZEY,
LEWIS E. MITCHELL,
' YATT'X Nov. 25, 1941. R. K. JEFFREY ETAL.
MINING MACHINE Filed May 6, 1938 18 Sheets-Sheet 8 ATT'Y Nov. 25, 1941.
R. K. JEFFREY ET AL MINING MACHINE Filed May 6, 1938 l8 Sheets-Sheet 9 [/VVE/VTO/ZS;
IQOBEQT K. JEFFREY,
LEWlS E. MxTcHELL,
QZM 777. 771W Nov. 25, 1941. JEFFREY ETAL 2,263,779
MINING MACHINE 18 Sheets-Sheet 10 Filed May 6, 1938 Ne g U Q 5 !i i. 0M 3n W Awm x :0 w I I OFM L n 2m WNW E ma /w Hm g in Nov. 25, 1941., R. K. JEFFREY ETAL I 2,263,779
MINING MACHINE Filed May 6, 1938 18 Sheets-Sheet ll 1205521- K. JEFFQEY. Lawns E. MITCHELL.
Nov 25, 1941. R, K. JEFFREY ET AL 2,263,779
MINING MACHINE Filed May 6, 1938 18 Sheets-Sheet 12 .L Y a fm F l in MJM f m 6, m L Y 5 MMN N9. N G
O a Sr 0:. Fmws 5s 2. 3r 0 Nov. 25, 1941.
R. K. JEFFREY ETAL MINING MACHINE Filed May e, 1938 1a Shee ts-She et 1s A IIIIvIIIO [NI/EN 70/25 120mm K. JEFFQ/EY.
LEWl E. MITCHELL,
) Nov. 25, 1941.
R. K. JEFFREY EI'AL MINING I MACHINE 1 Filed May 6, 1938 1a sheetssheet l l hm "mw U i3 03 2% -fi U IW EL i i E [NVENTO/QS.
QOEEQT K. JEFFREY.
LEWIS E. MITCHELL,
Nov. 25, 1941. R. K. JEFFREY ETAL 2,253,779
MINING MACHINE Filed May 6, 1958 7 l8 Sheets-Sheet 15 [NI/ENTOQS,
' rim K.JEFF2EY,
as E. MITCHELL.
Nov.- 25, 194 1: R. K. JEFFREY ETAL MINING MACHINE Filed May 6, 1938 1a sheds-sheet l6,
\ D0552? K. JEFFEEY. LEWlS iMncHELL.
R. K. JEFFREY ETAL MINING MACHINE Filed May 6, 1958 1a Sheets-Sheet 17 1 H an .n 2E HMA C ET: ul- K T W mm mm% Y B 95 5% Nov. 25, 1941.
Nov. 25, 1941.
R. JEFFREY ET AL MINING MACHINE Filed May 6, 1938 18 Sheets-Sheet l8 lilwl filial f/Vl/ENTOEJ.
DOBEQT K. JEFFQEY.
LEWIS E. M \TCHELL.
Patented Nov. 25, 1941 MINING MACHINE Robert K. Jefirey and Lewis E. Mitchell, Columbus, Ohio, assignors to The Jei'l'rey Manufacturing Company, a corporation of- Ohio Applicatiiln May 6, 1938, Serial No. 206,448
20 Claims.
This invention relates to a mining machine of the universal type and one of the objects of the invention is to provide an improved and eflicient device of the type capable of cutting kerfs in any one of a plurality of intersecting or paral-' lel planes including horizontal planes at any elevation between a relatively high roof and the floor of a mine room and also including vertical or shearing kerfs in any vertical plane between relatively widely spaced apart ribs or side walls of a mine room.
Another object of the invention is to provide a mining machine of the universal type which has a'wide range of operation and which can be operated with safety, a high'degree of efliciency and economy in mines where the available space is relatively small or where the available space is relatively large.
Another object of the invention is to provide a mining machine of the universal type which can be operated to cut kerfs in any plane between the extreme limits and which can be quickly and easily handled and adjusted with a minimum of manual eilort.
Another object of the invention is to provide a mining machine in which cutting mechanism is adapted to be fed in a vertical plane by means of a hydraulic system which includes an equalizing relief valve mechanism which compensates for the unequal displacement in the hydraulic system thereby permitting the cutter bar to float while cutting on a curved portion of the track.
Another object of the invention is to provide a mining machine in-which the mining mechanism is fed through the material to be mined at a predetermined maintained speed by means of an hydraulic system which speed can be adjusted to any one of a plurality of values.
Another object of the invention is to provide a mining machine in which an adjustable kerf cutter support includes a cylindrical bearing through which the drive for a kerf cutter extends in which the cylindrical bearing has sleeves which'maintain the driv gearing enclosed irrespective of adjustment of the keri cutter.
Still another object of the invention is to provide a mining machine with a hydraulic motor in which the flow of hydraulic fluid to the motor is relatively free while the flow of hydraulic fluid from the motor is restricted.
' Another object of the invention is to provide an improved construction for conduits leading to a pivotally mounted hydraulic piston type motor.
Another object of the invention is to provide an improved control mechanism for a hydraulic control system of a mining machine.
Another object of the'invention is to provide improved means for effecting continuous hydraulic connections between relatively movable parts of a mining machine.
Another object of the invention is to provide -an improved hydraulic control system particularly useful in connection with mining machines.
Another object of the invention is to provide an improved construction for effecting the connection of a plurality of flexible hydraulic conduits to a rotating element of a hydraulically controlled mining machine.
A furtherobject of the invention is to provide a hydraulic control system with pressure equalizing means whereby the piston of the hydraulic piston type motor will notlock. Other objects of the invention will appear hereinafter, the novel features and combinations being setforth 'in the appended claims.
In the accompanying drawings:
Fig. 1 is a plan view of .the rear end of the mining machine comprising our invention;
. Fig. 2 is a continuation of Fig. 1 showingthe central portion of the mining machine of our invention;
Fig. 3 is a continuation of Fig. 2 showing the forward end of the mining machine with the kerf cutting mechanism cut short;
Fig. 4 is a side elevational view of the rear portion of our mining machine;
Fig. 5 is a combined side elevational and sectional view of the central portion of our device;
Fig. 6 is a longitudinal sectional view oi the forward portion of our device with the kerf cutting mechanism again shown cut short;
Fig. 7 is an enlarged sectional, detail taken on the line 1-1 of Fig. 2, looking in the direction of the arrows;
Fig. 8 is a combined side and sectional elevational view showing the construction of a hydraulic piston motor;
Fig. 9 is a transverse sectional view taken on the line 9-9 of Fig. 8; 1
Fig. 10 is a transverse sectional and elevational view showing a plurality of control valves and operating means therefor;
Fig. 11 is a side view of one of the control devices of Fig. 10; v
Fig. 12 is a side view of another of the control devices of Fig. 10;
Fig. 13 is an enlarged segmental sectional view of the improved piston construction of a hydraulic piston motor comprising our invention;
Fig. 14 is an end elevational view of the structure illustrated in Fig. 13;
Fig. 15 is a plan view of the truck of the mining machine of our invention showing portions in section;
Fig. 16 is an enlarged sectional view of an actuating element of one of the piston motors comprising a feature of our invention;
Fig. 17 is a transverse sectional elevational view of an eleyating hydraulic piston motor taken on the line of Fig. 2 looking in the direction of the arrows;
Fig. 18- is a combined sectional and plan view of a portion of our device;
Fig. 19 is a transverse sectional view through the head of the mining machine of our invention taken approximately on the line |9--|9 of Fig. 6, looking in th direction of the arrows;
Fig. 20 is a transverse sectional view taken on the line 2020 of Fig. 6, looking in the direction of the arrows;
Fig. 21 is a transverse sectional elevational view taken on the line 2|2| of Fig. 1 of the drawings, looking in the direction of the arrows;
Fig. 22 is a sectional elevational view .taken on the line 22-42 of Fig. 1, looking in the direction of the arrows;
Fig. 23 is a sectional elevational view of the volume control of our invention;
Fig. 24 is a sectional elevational view of B. volume relief pilot valve of our invention;
Fig. 25 is a transverse sectional elevatlona view taken on the line 25--25 of Fig. 1, looking in the direction of the arrows;
Fig. 26 is a longitudinal sectional elevational view showing the drive for the truck and taken on line 2626 of Fig. 25 looking in the direction of the arrows;
Fig. 27 is a transverse sectional view taken on the line 21-21 of Fig. 1, looking in the direction of the arrows;
Fig. 28 is a sectional elevational view taken on the line 28-28 of Fig. 27, looking in the direction of the arrows;
Figs. 29 and 30 are sectional elevational views taken on the lines 29-49 and 30-30, respectively, of Fig. 27, looking in the direction of the arrows;
Fig. 31 is a transverse sectional elevational view taken on the line 3|3| of Fig. 5, looking in the direction of the arrows;
Fig. 32 is a side elevational view of a detail of the apparatus shown in Fig. 31;
Fig. 33 is a sectional view showing in detail the rope anchorage and tension means of Fig.
Fig. 34 is a longitudinal elevational sectional view taken on the line 34-34 of Fig. 31, looking in the direction of the arrows;
Fig. 35 is a transverse sectional view taken on the line 35-35 of Fig. 34, looking in the direction of the arrows;
Fig. 36 is a sectional view showing the construction of the control valves for the hydraulic motors;
Fig. 36 is a sectional view similar to Fig. 36;
Fig. 37 is a sectional plan view through the electric motor for driving the kerf-cutting mechanism;
Fig. 38 is a sectional elevational view of the equalizing relief valve comprising a feature of our invention;
Fig. 39 is a diagrammatic illustration of the hydraulic control system;
- from a straight track;
Fig. 45 is a diagrammatic plan view showing the range of vertical kerfs which may be cut by our mining machine; and
Fig. 46 is a sectional view taken on the line 4646 of Fig. 6, looking in the direction of the arrows.
The mining machine comprising our invention is mounted upon a truck 45 best seen in Figs. 5 and 15 of the drawings comprising a main frame formed by spaced apart longitudinally extending frame members 46, 46 which are laterally spaced apart and between which extend transversely extending forward plate 41 and transversely extending rearward plate 48 (Fig. 4) and intermediate transversely extending bolster members 49 and 50 (Fig. 5). All of said main frame members 46 to 50, inclusive, are rigidly attached together to form a strong main frame for the truck 45. Said main frame is supported upon a forward axle 5| and a rear axle 52 which axle 5| is slidably journaled in adjustable journal boxes 53, 53 which may be longitudinally adjusted by adjusting screws 54, 54 to adjust the tension of the driving chain, as hereinafter described. To assure movement of the axle 5| in parallelism the adjusting screws 54, 54 are connected to rotate together by chain'and sprocket mechanism 55.
The journal boxes 53, 53 are held in the main frame against longitudinal movement but provide for limited vertical movement thereby to permit the shaft 5| to move relative to the longitudinal axis of the truck 45 to provide a modified three point suspension for said truck 45 so it may readily accommodate itself to the unevenness of the mine tracks over which the mining machine travels.
The rear end axle 52 is rigidly Journaledto the main frame of the truck 45 by appropriate Journal bearings 56, 56 (Fig. 15). The axles 5| and 52 are provided with appropriate driving and supporting track engaging flanged wheels 51 all of which are keyed to the respective axles 5| and 52 by keys 58. The axles 5|, 52 are connected to rotate in unison-by chain and sprocket mechanism 59. It is thus evident that any driving force supplied to axle 52, ashereinafter described, will be transmitted to all four of the Wheels 51 thereby insuring a maximum of traction for propelling the mining machine which is particularly desirable during sumping operations. It is, of course, evident that the afore-described adjusting screws 54 (Fig. 5) provide for the tensioning of the chain and sprocket mechanism 59 by the forward and rearward adjustment of the axle 5|.
Associated with the rear axle 52 is a brake mechanism (Fig. 5) comprising a brake drum 60 keyed to shaft 52 with which is associated a pair of brake shoes 6| pivoted to a casting 62 carried by bolster 50, to the rearward free ends of which is associated a clamping mechanism 63 operable by a brake lever 64 (Fig. 4) pivoted adjacent the rear end of the mining machine on pivot. 69 and
US206448A 1938-05-06 1938-05-06 Mining machine Expired - Lifetime US2263779A (en)

Priority Applications (9)

Application Number Priority Date Filing Date Title
US206448A US2263779A (en) 1938-05-06 1938-05-06 Mining machine
US364327A US2285863A (en) 1938-05-06 1940-11-04 Hydraulic piston motor
US364324A US2340533A (en) 1938-05-06 1940-11-04 Mining machine
US364326A US2285862A (en) 1938-05-06 1940-11-04 Mining machine
US364322A US2285860A (en) 1938-05-06 1940-11-04 Electrical cable reel
US364325A US2263925A (en) 1938-05-06 1940-11-04 Mining machine
US364328A US2285864A (en) 1938-05-06 1940-11-04 Mining machine
US364323A US2285861A (en) 1938-05-06 1940-11-04 Mining machine
US398788A US2334772A (en) 1938-05-06 1941-06-19 Mining machine

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Cited By (25)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2441339A (en) * 1945-05-17 1948-05-11 Stone Albert Rivington Hydraulic system
US2452760A (en) * 1943-08-10 1948-11-02 Jeffrey Mfg Co Mining machine
US2483651A (en) * 1945-10-25 1949-10-04 Jeffrey Mfg Co Hydraulic valve
US2552848A (en) * 1946-07-02 1951-05-15 Aro Equipment Corp Hydraulic control valve
US2568528A (en) * 1944-08-05 1951-09-18 Colonial Broach Co Valve and hydraulic circuit therefor
US2570400A (en) * 1946-11-27 1951-10-09 Jeffrey Mfg Co Kerf-cutting mining machine
US2645470A (en) * 1948-04-21 1953-07-14 Jeffrey Mfg Co Kerf cutterhead mechanism for mining machines
US2689719A (en) * 1946-12-20 1954-09-21 Joy Mfg Co Mining apparatus with longitudinally swiveled head
US2708800A (en) * 1949-08-15 1955-05-24 Pettibone Mulliken Corp Loader-crowding drive
US2756039A (en) * 1949-04-08 1956-07-24 Joy Mfg Co Guides for flexible elements of coal mining apparatus
US2783556A (en) * 1951-05-05 1957-03-05 Barber Green Company Hydraulically controlled digger
US2814387A (en) * 1952-04-21 1957-11-26 Railway Maintenance Corp Ballast cleaning machine
US2816747A (en) * 1956-05-18 1957-12-17 Joy Mfg Co Cable pull assist for self-propelled longwall miner
US2829724A (en) * 1954-05-03 1958-04-08 Unit Rig & Equip Vehicle auxiliary drive
US2917282A (en) * 1950-06-22 1959-12-15 Consolidation Coal Co Mining machine
US2941365A (en) * 1957-07-23 1960-06-21 Sundstrand Corp Hydraulic transmission
US3241628A (en) * 1962-08-14 1966-03-22 Waterous Co Vehicle auxiliary hydraulic creeper drive
US3367440A (en) * 1965-06-02 1968-02-06 Shepard Co Lewis Electric and hydrostatic drive system for wheeled vehicle
FR2506385A1 (en) * 1981-05-25 1982-11-26 Rocamat Sa Chain saw mobile excavator - has sliding and pivoting head on vertical support on pivoted arm adjustable in vertical and horizontal planes
US5120433A (en) * 1988-10-11 1992-06-09 Ozzie's Pipeline Padder, Inc. Pipeline padding apparatus
US5195260A (en) * 1988-10-11 1993-03-23 Mark Osadchuk Pipeline padding apparatus
US5261171A (en) * 1990-03-26 1993-11-16 Bishop William B Pipeline padding machine attachment for a vehicle
US5363574A (en) * 1988-10-11 1994-11-15 Mark Osadchuk Pipeline padding apparatus
WO2011148053A1 (en) 2010-05-25 2011-12-01 Sandvik Mining And Construction Oy Rock drilling rig and method for positioning the same
US20140374531A1 (en) * 2013-06-20 2014-12-25 Amx, Llc Retractable cable and cable rewind spool configuration

Cited By (27)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2452760A (en) * 1943-08-10 1948-11-02 Jeffrey Mfg Co Mining machine
US2568528A (en) * 1944-08-05 1951-09-18 Colonial Broach Co Valve and hydraulic circuit therefor
US2441339A (en) * 1945-05-17 1948-05-11 Stone Albert Rivington Hydraulic system
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