US598680A - paulitschke - Google Patents

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US598680A
US598680A US598680DA US598680A US 598680 A US598680 A US 598680A US 598680D A US598680D A US 598680DA US 598680 A US598680 A US 598680A
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buckets
inclined plane
snow
elevator
chains
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    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01HSTREET CLEANING; CLEANING OF PERMANENT WAYS; CLEANING BEACHES; DISPERSING OR PREVENTING FOG IN GENERAL CLEANING STREET OR RAILWAY FURNITURE OR TUNNEL WALLS
    • E01H5/00Removing snow or ice from roads or like surfaces; Grading or roughening snow or ice
    • E01H5/04Apparatus propelled by animal or engine power; Apparatus propelled by hand with driven dislodging or conveying levelling elements, conveying pneumatically for the dislodged material
    • E01H5/08Apparatus propelled by animal or engine power; Apparatus propelled by hand with driven dislodging or conveying levelling elements, conveying pneumatically for the dislodged material dislodging essentially by driven elements
    • E01H5/09Apparatus propelled by animal or engine power; Apparatus propelled by hand with driven dislodging or conveying levelling elements, conveying pneumatically for the dislodged material dislodging essentially by driven elements the elements being rotary or moving along a closed circular path, e.g. rotary cutter, digging wheels

Definitions

  • PatentedI-ebV8, 189 8.
  • LWILHELM PAULITSCHKE a subject of the Emperor of Austria, residing at Moedling, in the province of Lower Austria, in the Empire of Austria-Hungary, have invented certain new and useful Improvements in Excavating-Machines, (for which I have received Letters Patent in Austria,dated March 30, 1896, No. 46/1,264; in Hungary, dated September 30, 1896, No. 5,862; in Germany, datedMarch 20, 1896, No. 91,545, and
  • the invention consists of a frame carried by a steam-locomotive or other motor vehicle,
  • guide-rollers mounted on said frame, endless elevator-chains guided over said rollers and provided with a series of buckets, a snowplow arranged in front of said elevator-chains,
  • Figure 1 is a side elevation of a steam-locomotive, showing my improved excavator applied thereto.
  • Fig. 2 is a plan view of the same, parts being removed.
  • Fig. 3 is a front elevation of the same.
  • Fig. 4 is a rear elevation. Figs.
  • Figs. 5, 6, and 7 are respectively a vertical transverse section, a longitudinal section, and a top view, of one of the elevator-buckets.
  • Figs. 8, 9, and 10 are respectively a vertical transverse section, and front and top views, of the cutter which cooperates with each bucket.
  • Figs. 11 and 12 are vertical transverse and horizontal transverse sections of a cooperating bucket and cutter.
  • Figs. 13 and 14 show different forms of a drum or guide casing which is arranged at the front end of the inclined plane.
  • Figs. 15, 16, and 17 are longitudinal and transverse sections of a modified form of elevator mechanism.
  • A indicates the frame of the excavator, which is provided with three pairs of rollers I), over which are trained several endless elevator-chains a, (four being shown in the drawings,) said elevator-chains being arranged in parallel series, so that a number of separate elevating-surfaces are formed.
  • 0 represents the buckets or shovels, which are connected to the links of the elevatorchains, their particular construction being more especially shown in Figs. 5, 6, and 7.
  • the buckets are of a scoop or hood shape and are open at their front and lower sides, while the rear wall 0' is separated from the three adjacent side walls by means of a U-shaped slot a, so that by means of said slot said rear wall 0' is formed into a springy or yielding blade.
  • Extending transversely of theupper or top wall of each of the buckets is a slot a arranged at the mid-length of said top wall.
  • a number of snow-cutters 70 In juxtaposition to the upper guiding-rollers b and at points above 9 are mounted a number of snow-cutters 70, one for each elevator-chain. Said cutters each have such form that they may pass through the said slots a a of. the buckets.
  • the said cutters 7c are formed as particularly shown in Figs. 8, 9, and 10, in which it will be seen that they are of U shape, having at their front edge a beveled or cutting portion, while they are formed intermediately of their lengths with T-shaped shanks k.
  • the U- shaped part of the cutterk passes through the U-shaped slot or, of the bucket 0, while the shank 7e passes through the slot a of the bucket.
  • the specific manner in which the buckets and cutters cooperate and the rela tive sizes and arrangements of the same are more particularly shown in Figs. 11 and 12.
  • dividers or separator-boards d Mounted on the inclined plane e and extending parallel with each other to points in advance of said inclined plane are a series of dividers or separator-boards d, said dividers being arranged between the adjacent elevator-chains.
  • a small snow-plow h Arranged in front of the drum or cylinder f and under the upwardly-projecting ends of the dividers d and terminating coextensively with said dividers is a small snow-plow h, to the rear of which is provided a trough 1', which is filled with any suitable liquid, preferably salt water, into which the forward lower portions of the elevator-chains dip as the same are carried around, so that the ice formed on the same is thawed out or dissolved.
  • any suitable liquid preferably salt water
  • an endless conveyer Z Arranged below the rear opening formed at the upper end of the inclined plane a is an endless conveyer Z,which extends transversely of the excavator the whole breadth of the same and to points slightly beyond each side of the same.
  • the direction of movement of this endless conveyer may be altered through the medium ofbevel gear-wheels r 0", which are arranged on the drive-shaft r of the endless conveyer, said gear-wheels being adapted to be alternately engaged, bymeans of a suitable shifting device T, with the driving gearwheel R, arranged intermediately of said gear-wheels r r.
  • the rotation of the shaft carrying the power-transmitting gear-wheel R is accomplished through the medium of a steam-locomotive m or any other suitable motor vehicle, which is provided with a seat a, on which the engineer sits, so that he may overlook the track in front of the excavator and control the driving mechanism.
  • Figs. 15, l6, and 17 a modification of the elevator mechanism is shown.
  • the walls of the buckets are narrow, forming, as it were, snow-breaking cutters 0, whereas the rear walls of the buckets, so to speak, are formed by means of shovels or blades which, together with the cutters 0, are provided with tailpiecesq for holding the same effectively in operative position by engaging with the inclined plane 8, over which the endless chains a areguided.
  • the side walls of the dividers d are so narrow that they form between them and above the inclined plane e a series of transporting-channels in which the cutters 0 and the shovels p come into full working operation for the purpose of carrying the snow or sand up along said inclined plane.
  • the apparatus is operated as follows WVhen the engineer or driver causes the engine to travel in forward direction along a snow-impeded track, the snow isplowed up by the snow-plow, divided by the dividers d, and deflected upon the endless elevator chains.
  • the buckets cor the cutters 0, in connection with the shovels p, as the case may be, loosen and pick up the snow and lift the same on the inclined plane a.
  • the adherence of the snow, &c., to the inclined plane is prevented by reason of the springy nature of the blades 19 or the rear walls 0 of the buckets c, which rear walls form springy blades.
  • a pressing-roof 5 having for its purpose to press the irregular mass of snow into the buckets or onto the shovels to assist the certain transportation of the snow to the endless conveyer Z, and also to prevent the carrying of the snow beyond the point 9.
  • This pressing-roof extends tangentially or .in an inclined direction from the upper laps of the elevatorchains, as shown, so that thereby the snow is more effectively guided downward.
  • the hereindescribed cutter of U shape provided with an intermediate shank, the forward edge of said U-shaped cutter being formed with a cutting edge, substantially as set forth.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Excavating Of Shafts Or Tunnels (AREA)

Description

3 Sheets-Sheet 1.
(No Model.)
W. PAULITSCHKE. EXGAVATING MACHINE.
Patented Feb. 8, 18981.
'INVENTOR rll lllIlL ATTOR EYS.
(No Model.)
3 SheetsSheet W. PAULITSOHKE.
EXGAVATING MACHINE.
Patented Feb. 8, 1898.
I INVENTOR WITNESSES:
W4 ATTOR N EYS.
ms upnms PETERS co. mom-mm WASHINGYON. 0 cv (No Model.) 3 Sheets--Sheet 3.
W. PAULITSOHKE. EXOAVATING MACHINE.-
No. 598,680. PatentedI-ebV8, 189 8.
A 1 IZ UNITED STATES PATENT OFFICE;
WILHELM PAULITSCHKE, or MOEDLING, AUSTRIA-HUNGARY.
EIXCAVATING-MACHINE.
SPECIFICATION forming art of Letters Patent No. 598,680, dated February 8, 1898.
llpplieation filed May 7,1897. Serial No. 635,478. [No model.) Patented in Germany March 20, 1896, No. 91,545 in Austria M r h 80, 1896, No. 46/1364; in Hungary September 30, 1896,No. 5,862, and in France November 11,1896,No.261,175.
To all whom it may concern:
Be it known that LWILHELM PAULITSCHKE, a subject of the Emperor of Austria, residing at Moedling, in the Province of Lower Austria, in the Empire of Austria-Hungary, have invented certain new and useful Improvements in Excavating-Machines, (for which I have received Letters Patent in Austria,dated March 30, 1896, No. 46/1,264; in Hungary, dated September 30, 1896, No. 5,862; in Germany, datedMarch 20, 1896, No. 91,545, and
The invention consists of a frame carried by a steam-locomotive or other motor vehicle,
. guide-rollers mounted on said frame, endless elevator-chains guided over said rollers and provided with a series of buckets, a snowplow arranged in front of said elevator-chains,
dividers extending, from the plow upwardly along an inclined plane over which the upper portions of the series of chains pass, said dividers extending between the adjacent chains, and a transverse conveyer which is arranged at the upper part of the endless elevatorchains for delivering the snow, sand, &c., to one side of the excavator, as will be hereinafter described, and then particularly pointed out in the claims. In the accompanying drawings, Figure 1 is a side elevation of a steam-locomotive, showing my improved excavator applied thereto. Fig. 2 is a plan view of the same, parts being removed. Fig. 3 is a front elevation of the same. Fig. 4 is a rear elevation. Figs. 5, 6, and 7 are respectively a vertical transverse section, a longitudinal section, and a top view, of one of the elevator-buckets. Figs. 8, 9, and 10 are respectively a vertical transverse section, and front and top views, of the cutter which cooperates with each bucket. Figs. 11 and 12 are vertical transverse and horizontal transverse sections of a cooperating bucket and cutter. Figs. 13 and 14 show different forms of a drum or guide casing which is arranged at the front end of the inclined plane.
Figs. 15, 16, and 17 are longitudinal and transverse sections of a modified form of elevator mechanism.
Similarletters of referenceindicate corresponding parts. 3
A indicates the frame of the excavator, which is provided with three pairs of rollers I), over which are trained several endless elevator-chains a, (four being shown in the drawings,) said elevator-chains being arranged in parallel series, so that a number of separate elevating-surfaces are formed.
0 represents the buckets or shovels, which are connected to the links of the elevatorchains, their particular construction being more especially shown in Figs. 5, 6, and 7. The buckets are of a scoop or hood shape and are open at their front and lower sides, while the rear wall 0' is separated from the three adjacent side walls by means of a U-shaped slot a, so that by means of said slot said rear wall 0' is formed into a springy or yielding blade. Extending transversely of theupper or top wall of each of the buckets is a slot a arranged at the mid-length of said top wall. These buckets are arranged at suitable intervals apart and, together with the chains which carry them, are guided over an inclined plane 6, which is supported on the frame A in any suitable manner, said inclined plane extending from a point quite adjacent to the front guide-rollers, over which the chains pass upwardly to a point g, which is a short distance from the upper series of guideerollers b, so that an opening or space is formed between the inclined plane and the rear guide-rollers.
In juxtaposition to the upper guiding-rollers b and at points above 9 are mounted a number of snow-cutters 70, one for each elevator-chain. Said cutters each have such form that they may pass through the said slots a a of. the buckets. To this end the said cutters 7c are formed as particularly shown in Figs. 8, 9, and 10, in which it will be seen that they are of U shape, having at their front edge a beveled or cutting portion, while they are formed intermediately of their lengths with T-shaped shanks k. The U- shaped part of the cutterk passes through the U-shaped slot or, of the bucket 0, while the shank 7e passes through the slot a of the bucket. The specific manner in which the buckets and cutters cooperate and the rela tive sizes and arrangements of the same are more particularly shown in Figs. 11 and 12.
Mounted on the inclined plane e and extending parallel with each other to points in advance of said inclined plane are a series of dividers or separator-boards d, said dividers being arranged between the adjacent elevator-chains. I
The lower open sides of the buckets 0, when they reach the front part of the excavator, slide over either a rotary drum or a cylinder f, as shown in Fig. 18, or over a fixed drum f, which merges from the inclined plane, as shown in Fig. 14:, said open lower sides of the buckets also sliding over the inclined plane 6 as the same are carried upwardly and to th rear of the excavator.
Arranged in front of the drum or cylinder f and under the upwardly-projecting ends of the dividers d and terminating coextensively with said dividers is a small snow-plow h, to the rear of which is provided a trough 1', which is filled with any suitable liquid, preferably salt water, into which the forward lower portions of the elevator-chains dip as the same are carried around, so that the ice formed on the same is thawed out or dissolved.
Arranged below the rear opening formed at the upper end of the inclined plane a is an endless conveyer Z,which extends transversely of the excavator the whole breadth of the same and to points slightly beyond each side of the same. The direction of movement of this endless conveyer may be altered through the medium ofbevel gear-wheels r 0", which are arranged on the drive-shaft r of the endless conveyer, said gear-wheels being adapted to be alternately engaged, bymeans of a suitable shifting device T, with the driving gearwheel R, arranged intermediately of said gear-wheels r r. The rotation of the shaft carrying the power-transmitting gear-wheel R is accomplished through the medium of a steam-locomotive m or any other suitable motor vehicle, which is provided with a seat a, on which the engineer sits, so that he may overlook the track in front of the excavator and control the driving mechanism.
In Figs. 15, l6, and 17 a modification of the elevator mechanism is shown. Here the walls of the buckets are narrow, forming, as it were, snow-breaking cutters 0, whereas the rear walls of the buckets, so to speak, are formed by means of shovels or blades which, together with the cutters 0, are provided with tailpiecesq for holding the same effectively in operative position by engaging with the inclined plane 8, over which the endless chains a areguided. The side walls of the dividers d are so narrow that they form between them and above the inclined plane e a series of transporting-channels in which the cutters 0 and the shovels p come into full working operation for the purpose of carrying the snow or sand up along said inclined plane.
The apparatus is operated as follows WVhen the engineer or driver causes the engine to travel in forward direction along a snow-impeded track, the snow isplowed up by the snow-plow, divided by the dividers d, and deflected upon the endless elevator chains. The buckets cor the cutters 0, in connection with the shovels p, as the case may be, loosen and pick up the snow and lift the same on the inclined plane a. The adherence of the snow, &c., to the inclined plane is prevented by reason of the springy nature of the blades 19 or the rear walls 0 of the buckets c, which rear walls form springy blades. When the snow arrives at the point cl, they slide one after the other past the snow-cutters 75, whereby the portions of snow in the buckets are cut out in the form of blocks and separated from the lateral and upper walls of the buckets. The springy rear walls or blades 0 of the buckets are somewhat retained or deflected by the action of the cutters a, but as soon as the buckets pass the latter they spring forward and the snow is caused to drop out of the buckets and fall down upon the endless conveyer Z. conveyer the snow is transported to either side of the excavator and falls down at the side of the track or onto tiansportingcars, which are arranged on the adjacent track. At the top of the excavator and across the whole breadth of the same extends a pressing-roof 5, having for its purpose to press the irregular mass of snow into the buckets or onto the shovels to assist the certain transportation of the snow to the endless conveyer Z, and also to prevent the carrying of the snow beyond the point 9. This pressing-roof extends tangentially or .in an inclined direction from the upper laps of the elevatorchains, as shown, so that thereby the snow is more effectively guided downward. For
transporting sand or grain from one point to another the parts of the apparatus operate in a similar manner.
Having thus described myinvention, what I claim is 1. In an excavating-machine, the combination with a frame provided with an inclined plane, and guide-rollers mounted on said frame, the upper rear guide-roller being separated or spaced from the rear upper end of the inclined plane, of a series of endless elevator-chains trained around said guide-rollers and inclined plane and provided with elevator buckets or blades, and a transverse conveyer arranged Within the said chains in front of the rear guide-roller and below the space between the same and the upper end of the inclined plane, substantially as set forth.
2. In an excavating-machine, the combination, with a main frame provided with an inclined plane, and guide-rollers mounted 011 said frame, of endless elevator-chains guided over said rollers and provided with elevator buckets or blades, a plow, a guide cylinder or drum arranged at the forward ends of the By means of the endless elevator-chains and over which the same are guided between the plow and the lower end of the inclined plane, and separator-boards extending along and beyond the inclined plane, and projecting over the said plow, sub stantially as set forth.
3. In an excavating-machine, the combination, with a plow, and a trough arranged to the rear of the plow and containing a melting liquid, of the endless elevator chains provided with buckets and adapted to dip into the liquid in said trough, substantially as set forth.
4:. In an excavating-machine, the hereindescribed buckets, each being of scoop shape and provided with a springy blade portion formed from the rear wall, substantially as set forth.
5. In an excavating-machine, the hereindescribed cutter of U shape, provided with an intermediate shank, the forward edge of said U-shaped cutter being formed with a cutting edge, substantially as set forth.
6. The combination with a bucket, of an elevator-chain, provided with a U-shaped slot in its rear wall and having a transverse slot in its top wall, of a U-shaped cutter adapted to pass through said U-shaped slot and provided with a shank adapted to pass through said transverse slot, substantially as 30 set forth.
7. In an excavating-machine, the combination with an endless elevator-chain, of breaking-cutters pivoted thereto and shovels also pivoted thereto, said cutters and shovels be- 35 ing provided with tailpieces adapted. to engage the inclined plane over which the chain passes, substantially as set forth.
8. In an excavatingmaohine, the combination, with endless elevator-chains, and bucko ets carried thereby, of a pressing-roof arranged between the ends of the elevatorchains across the upper portions thereof, and extending from the path of the buckets in a tangential o'r inclined direction relatively to 45
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2587719A (en) * 1946-06-10 1952-03-04 Fratini Ned Nazzareno Snow removing machine
US10050404B2 (en) 2015-03-26 2018-08-14 Nlight, Inc. Fiber source with cascaded gain stages and/or multimode delivery fiber with low splice loss
US10535973B2 (en) 2015-01-26 2020-01-14 Nlight, Inc. High-power, single-mode fiber sources

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2587719A (en) * 1946-06-10 1952-03-04 Fratini Ned Nazzareno Snow removing machine
US10535973B2 (en) 2015-01-26 2020-01-14 Nlight, Inc. High-power, single-mode fiber sources
US10050404B2 (en) 2015-03-26 2018-08-14 Nlight, Inc. Fiber source with cascaded gain stages and/or multimode delivery fiber with low splice loss

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