US216958A - Improvement in peat-machines - Google Patents

Improvement in peat-machines Download PDF

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US216958A
US216958A US216958DA US216958A US 216958 A US216958 A US 216958A US 216958D A US216958D A US 216958DA US 216958 A US216958 A US 216958A
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peat
tube
filtering
receptacle
machines
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C13/00Disintegrating by mills having rotary beater elements ; Hammer mills
    • B02C13/20Disintegrating by mills having rotary beater elements ; Hammer mills with two or more co-operating rotors
    • B02C13/205Disintegrating by mills having rotary beater elements ; Hammer mills with two or more co-operating rotors arranged concentrically

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  • the first, and principal feature of my invention consists in a filtering-tube, through which the pulped ⁇ peat -is forced by pressure, the said tube having its walls so constructed as to allow water expressed from the peat to pass through fine perforations or meshes therein, but iineenough to retain the particles "of peat and cause them to be directed along the tube to its outlet.
  • the tube either has a degree of taper which,
  • this tube A is represented as of uniform size or diameter, since, even when of taper form, the degree of taper may vary according to the quality or condition of the peat to be prepared, or the degree of dryness or compactness desired.
  • the taper form is preferable 5 but for peat comparatively dry the straight or uniform tube is best. I'n order to practically construct this filter-tube so as to allow the water only to filter through its walls, thus retaining the peat, and at the same time to give the tube the requisite p through the tube.
  • the tube of three thicknesses, as shown or indicated in Figs. 3, 4, and 5.
  • the inner thickness, a, Fig. 3, is made preferably of perforated sheet metal, such as sheet-zinc, the perforations being as line and numerous as practicable, and allow the sheet.
  • the real ltering material is the middle thickness, b, Fig. 4, which is made of muslin or very iine-meshed wire-cloth or equivalent material, which will practically filter the water through and retain the peat under the pressure applied to the peat in driving it This thickness fits close around the inner tube, a, of perforated sheet metal.
  • the outer thickness, c, Fig. 5 is or may be made of strong wire-cloth or equivalent ⁇ material of the requisite strength for its use, and it lits closeY around the filtering thickness b, thus holding the latter firmly in its place, retaining its form, and sustaining it against the outward pressure of the water and peat, as well as protecting it against outside vio lence or damage.
  • the diife'rent dischargin g-nozzles which replace one another, as desired, have all the same exterior dimensions, so as to t the same filtering or discharge tube, to which each one is readily attached and as readily removed therefrom.
  • each nozzle B, Fig. 2 is divided by thin metallic partitionsd dacross its longitudinal dimensions or otherwise, as desired, these partitionplates serving as knives to split the web and separate the divisions longitudinally, so as to discharge two, five, ten, twenty, or any number of Webs, of the forms and sizes required, the compression and consistency of the peat being such at its discharge that these severed webs will not reunite in handling or curing.
  • the webs are to be out off, after emerging from the nozzle, by any suitable means and into any desired lengths of peat-blocks for use.
  • the natural peat is first put in a suitable hopper or pug-mill, C, in which knives ff With the forcing-screw, however, since the peat should also be worked in the receptacle, I can conveniently combine knives and working-arms.
  • a central driving shaft, G reaching out through the forward end of the receptacle, where it has a hearing, h, either long enough to sufficiently support and hold the shaft in position, or may be assisted by another bearing outside of the receptacle, as itis best not to impede the movements inside of the receptacle by bearings.
  • I On this shaft, in the forward end of the receptacle, I first locate a forcing-screw, t', directly beneath the hopper D.
  • a conical extension, H forming a part or extension of the saine.
  • the base or large end of this conical extension is secured by suitable flanges to the rear end of the cylindrical receptacle, and to the rear small end of the extension is attached the filtering-tube A, which may properly be oblong in cross-section, corresponding in form and dimensions with the discharging-nozzle at its rear end.
  • This conical extension of the receptacle serves to retain the peat in the receptacleA andv cause its proper compression, and also guides itinto the smaller filtering-tube.
  • the drivin g-shaft G extends, and on this shaft are forcing-screws p p, conforming in sweep to the shape of the conical extension H, and increasing in the angle of their pitch in proportion as they become smaller in diam-- eter, to force the peat along at a more rapid speed as the passage narrows in size.
  • the screws n and p run loosely in but nearly fill the diameters of the receptacle.
  • the form of the filtering-tube A in crosssection may be' rectangular, either square or oblong or round, or any other suitable or desirable shape.
  • a peat-machine having a filtering tube or passage, either of uniform size or tapering, through which the peat is continuously forced, for the purpose of separating water therefrom and compressing it into a coherent rope or web, substantially as herein specified.
  • a peat-machine having a tube or passage through which the peat is continuously driven by pressure, the said tube or passage having its walls finely perforated, so as to allow the passage of water through theperforations, but to retain the peat therein till discharged at the outlet, substantially as and for the pur pose herein specified.
  • a peat-machine having a filtering tube or passage through which the peat is continuously forced under pressure, and which is composed of an inner thickness of perforated sheet metal, a thickness of fine wire gauze or cloth outside of that, and a thickness of strong wire-cloth or its equivalent outside of the other two thicknesses, substantially as and for the purpose herein specified.
  • a peat-machine having a peat working and forcing device, a device for continuously separating water from the peat by filtration, and a web compacting and shaping nozzle or discharge-opening, substantially as and for the purpose herein specified.

Description

E. P. HUDSON. Peat-Machine.
No. 216,958. Patented July 1, |879,
O O00 0 O 00000 00000 l "5l/111111111]l Villa/[IIIA I f la d 0%0000000 0 @goo y 00000000000 O 0 @@Mmm @wmf N-PETERS, PHOTOvLITHOGRAPNER, WASHINGTON. C.
EDWARD P. HUDSON,
\ UNITED STATES PATENTOFFIGE.
OF NEW YORK, N. Y.
IMPROVEMENT IN PEAT-MAHINES.
Specification forming part of Letters Patent No. 216,958, dated July 1, 1879; application filed October 31, 1878.
a full and exact description thereof, reference being had to the accompanying drawings, making part of this specification- Figure l being a longitudinal vertical sec-` tion of the machine; Fig. 2, a cross-section of the discharging-nozzle; Figs. 3, 4, and 5, views in detail of the parts composing the filteringtube, straight or tapering.
Like letters designate corresponding parts in all of the figures.
The first, and principal feature of my invention consists in a filtering-tube, through which the pulped `peat -is forced by pressure, the said tube having its walls so constructed as to allow water expressed from the peat to pass through fine perforations or meshes therein, but iineenough to retain the particles "of peat and cause them to be directed along the tube to its outlet. s
The tube either has a degree of taper which,
Awhile it allows the peat to pass under pressure to its smaller discharging end, at the same time compresses the same in the actof passing sufficiently to express as much of the water contained in the peat as necessary or desirable, thereby reducing it to a degree of compactness and dryness suitable for handling and rapid cur-ing, or it is of uniform size or diameter throughout its length, which is suflicient to produce the necessary friction and retardation of the peat passing through it to reduce it to the same conditionof dryness and compactness as the taper form produces. In the drawings this tube A is represented as of uniform size or diameter, since, even when of taper form, the degree of taper may vary according to the quality or condition of the peat to be prepared, or the degree of dryness or compactness desired.
For very moist peat the taper form is preferable 5 but for peat comparatively dry the straight or uniform tube is best. I'n order to practically construct this filter-tube so as to allow the water only to filter through its walls, thus retaining the peat, and at the same time to give the tube the requisite p through the tube.
strength to resist the pressure required, to force the peat through the tube and reduce it to the desired degree of compactness, as well as to protect the fine filtering-meshes, and to avoid unnecessary friction between the peat and its inner surface, I construct the tube of three thicknesses, as shown or indicated in Figs. 3, 4, and 5.
The inner thickness, a, Fig. 3, is made preferably of perforated sheet metal, such as sheet-zinc, the perforations being as line and numerous as practicable, and allow the sheet.
metal to retain its form and present sufficient smoothness of surface to the passing peat; but the perforations need not be so small as to absolutely exclude particles of peat.
The real ltering material is the middle thickness, b, Fig. 4, which is made of muslin or very iine-meshed wire-cloth or equivalent material, which will practically filter the water through and retain the peat under the pressure applied to the peat in driving it This thickness fits close around the inner tube, a, of perforated sheet metal.
The outer thickness, c, Fig. 5, is or may be made of strong wire-cloth or equivalent `material of the requisite strength for its use, and it lits closeY around the filtering thickness b, thus holding the latter firmly in its place, retaining its form, and sustaining it against the outward pressure of the water and peat, as well as protecting it against outside vio lence or damage.
l employ interchangeable discharging-nozzles attached to or located at the discharge end of the filtering tube or passage, for the purpose of delivering the compressed peat in a web or rope of any desired size without diminishing the production or changing the speed of the machine. The diife'rent dischargin g-nozzles, which replace one another, as desired, have all the same exterior dimensions, so as to t the same filtering or discharge tube, to which each one is readily attached and as readily removed therefrom.
'Io lobtain various sizes of the peat web each nozzle B, Fig. 2, is divided by thin metallic partitionsd dacross its longitudinal dimensions or otherwise, as desired, these partitionplates serving as knives to split the web and separate the divisions longitudinally, so as to discharge two, five, ten, twenty, or any number of Webs, of the forms and sizes required, the compression and consistency of the peat being such at its discharge that these severed webs will not reunite in handling or curing. The webs are to be out off, after emerging from the nozzle, by any suitable means and into any desired lengths of peat-blocks for use.
The natural peat is first put in a suitable hopper or pug-mill, C, in which knives ff With the forcing-screw, however, since the peat should also be worked in the receptacle, I can conveniently combine knives and working-arms. Thus I employ a central driving shaft, G, reaching out through the forward end of the receptacle, where it has a hearing, h, either long enough to sufficiently support and hold the shaft in position, or may be assisted by another bearing outside of the receptacle, as itis best not to impede the movements inside of the receptacle by bearings. On this shaft, in the forward end of the receptacle, I first locate a forcing-screw, t', directly beneath the hopper D. Back of this screw I locate knives l lon the shaft, at small distances apart, along the length of the shaft and spirally around the same. These knives revolve between stationary bars or lingers m m, secured' to the interior surface of the receptacle. Back of these working-knives is another forcing-screw, n.
At the rear end of the cylindrical receptacle E is attached a conical extension, H, forming a part or extension of the saine. The base or large end of this conical extension is secured by suitable flanges to the rear end of the cylindrical receptacle, and to the rear small end of the extension is attached the filtering-tube A, which may properly be oblong in cross-section, corresponding in form and dimensions with the discharging-nozzle at its rear end.
This conical extension of the receptacle serves to retain the peat in the receptacleA andv cause its proper compression, and also guides itinto the smaller filtering-tube. Into this extension, also, the drivin g-shaft G extends, and on this shaft are forcing-screws p p, conforming in sweep to the shape of the conical extension H, and increasing in the angle of their pitch in proportion as they become smaller in diam-- eter, to force the peat along at a more rapid speed as the passage narrows in size. The screws n and p run loosely in but nearly fill the diameters of the receptacle.
The form of the filtering-tube A in crosssection may be' rectangular, either square or oblong or round, or any other suitable or desirable shape.
What I claim as my invention, and desire to secure by Letters Patent, is-
1. A peat-machine having a filtering tube or passage, either of uniform size or tapering, through which the peat is continuously forced, for the purpose of separating water therefrom and compressing it into a coherent rope or web, substantially as herein specified.
2. A peat-machine having a tube or passage through which the peat is continuously driven by pressure, the said tube or passage having its walls finely perforated, so as to allow the passage of water through theperforations, but to retain the peat therein till discharged at the outlet, substantially as and for the pur pose herein specified.
3. A peat-machine having a filtering tube or passage through which the peat is continuously forced under pressure, and which is composed of an inner thickness of perforated sheet metal, a thickness of fine wire gauze or cloth outside of that, and a thickness of strong wire-cloth or its equivalent outside of the other two thicknesses, substantially as and for the purpose herein specified.
4. A peat-machine having a peat working and forcing device, a device for continuously separating water from the peat by filtration, and a web compacting and shaping nozzle or discharge-opening, substantially as and for the purpose herein specified.
The foregoing specification signed by me this 18th day of October, 1878.
EDWARD l?. HUDSON. Witnesses:
GEo. L. HUGGiNs, J. B. MOORE.
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Cited By (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2726814A (en) * 1952-07-12 1955-12-13 Daniel J Winters Spiral separator and breaker
US2898052A (en) * 1955-08-31 1959-08-04 Lauhoff Grain Company Feeder construction
US2904267A (en) * 1957-09-16 1959-09-15 Georgia Kaolin Co Method of treating kaolinitic clay
US3346242A (en) * 1965-08-14 1967-10-10 List Heinz Mixing machine
US3417933A (en) * 1965-07-12 1968-12-24 Black Clawson Co Pulper
US3760717A (en) * 1970-08-18 1973-09-25 Mil Pac Systems Inc Shredder-compactor
US4208188A (en) * 1978-03-22 1980-06-17 Signet Corporation Consolidation of coal slurry
US4406548A (en) * 1982-04-02 1983-09-27 Haws Paul M Mobile concrete mixing apparatus
US4468872A (en) * 1982-03-17 1984-09-04 Kortteen Konepaja G. Korte & Kni Peat machine
US4896968A (en) * 1987-04-15 1990-01-30 Atlantic Richfield Company Cement storage and mixing system
US20060083105A1 (en) * 2004-10-15 2006-04-20 Husky Injection Molding Systems Ltd. Extruder Assembly
US20100232838A1 (en) * 2009-03-12 2010-09-16 Takuya Iwamura Developing device and image forming apparatus
US20120061874A1 (en) * 2009-06-06 2012-03-15 Roesler Tyre Innovators Gmbh & Co. Kg Tire filling compound, method for producing a tire filling, and apparatus for implementing the method
EP3212320A1 (en) * 2014-10-31 2017-09-06 ExxonMobil Chemical Patents Inc. Reactor for multi-phase composition

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2726814A (en) * 1952-07-12 1955-12-13 Daniel J Winters Spiral separator and breaker
US2898052A (en) * 1955-08-31 1959-08-04 Lauhoff Grain Company Feeder construction
US2904267A (en) * 1957-09-16 1959-09-15 Georgia Kaolin Co Method of treating kaolinitic clay
US3417933A (en) * 1965-07-12 1968-12-24 Black Clawson Co Pulper
US3346242A (en) * 1965-08-14 1967-10-10 List Heinz Mixing machine
US3760717A (en) * 1970-08-18 1973-09-25 Mil Pac Systems Inc Shredder-compactor
US4208188A (en) * 1978-03-22 1980-06-17 Signet Corporation Consolidation of coal slurry
US4468872A (en) * 1982-03-17 1984-09-04 Kortteen Konepaja G. Korte & Kni Peat machine
US4406548A (en) * 1982-04-02 1983-09-27 Haws Paul M Mobile concrete mixing apparatus
US4896968A (en) * 1987-04-15 1990-01-30 Atlantic Richfield Company Cement storage and mixing system
US20060083105A1 (en) * 2004-10-15 2006-04-20 Husky Injection Molding Systems Ltd. Extruder Assembly
US7390118B2 (en) * 2004-10-15 2008-06-24 Husky Injection Molding Systems Ltd. Extruder assembly
US20100232838A1 (en) * 2009-03-12 2010-09-16 Takuya Iwamura Developing device and image forming apparatus
US8208837B2 (en) * 2009-03-12 2012-06-26 Fuji Xerox Co., Ltd. Developing device and image forming apparatus
US20120061874A1 (en) * 2009-06-06 2012-03-15 Roesler Tyre Innovators Gmbh & Co. Kg Tire filling compound, method for producing a tire filling, and apparatus for implementing the method
EP3212320A1 (en) * 2014-10-31 2017-09-06 ExxonMobil Chemical Patents Inc. Reactor for multi-phase composition
US20170296998A1 (en) * 2014-10-31 2017-10-19 ExxonMobil Chemical Company - Law Technology Reactor for Multi-Phase Composition
US10807064B2 (en) * 2014-10-31 2020-10-20 Exxonmobil Chemical Patents Inc. Reactor for multi-phase composition

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