US243520A - Steam grain-drier - Google Patents

Steam grain-drier Download PDF

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US243520A
US243520A US243520DA US243520A US 243520 A US243520 A US 243520A US 243520D A US243520D A US 243520DA US 243520 A US243520 A US 243520A
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steam
pipes
drier
head
shaft
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28HEAT EXCHANGE IN GENERAL
    • F28DHEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
    • F28D11/00Heat-exchange apparatus employing moving conduits
    • F28D11/02Heat-exchange apparatus employing moving conduits the movement being rotary, e.g. performed by a drum or roller
    • 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
    • Y10S165/00Heat exchange
    • Y10S165/135Movable heat exchanger
    • Y10S165/139Fully rotatable
    • Y10S165/14Rotating heat exchanger having rotating flow confining structures or chambers for two separate heat exchange fluids
    • Y10S165/143Discrete tubing having length extending along a longitudinal axis of rotating heat exchanger

Definitions

  • Figure l is a sectional side elevation of the improvement. tion taken through the line as m, Fig. 1.
  • Fig. 3 is a sectional end elevation taken through the line y 3 Fig. 1.
  • Fig. 4 is a longitudinal section of a pair of steam-pipes, showing the return-bend.”
  • Fig. 5 represents the cap-plate.
  • Fig. 6 represents the forward end of the shaft.
  • the object of this invention is to furnish steam grain-driers soconstructed that their capacity can be increased to any desired extent without materially increasing the cost of construction, and which will allow convenient access to be had to any part of the driers for stopping leakage, and other repairing.
  • the invention consists in constructing a steam grain drier of a shaft made hollow at one end to receive the inlet-steam, and with perforations at the other end to discharge the water of condensation, the head cast in one piece with one or more chambers, receiving steam through the conduction-pipes connected with the cavity of the shaft and distributing the steam to the circulation-pipes forming the heating-surfaces, the return-bends connecting the circulation-pipes in pairs to induce circulation, and provided with gudgeons to slide in holes in a supporting spider connected with the shaft to allow free expansion and contraction, the sheet metal forming a backing for the circulation-pipes, the scoops to introduce the grain into the drying cylinders, the exterior casing surrounding the drying-cylinders, and the pipes and cap and its supporting bolts and holding-springs connected with the steamhead, and the perforated forward end of the shaft for controlling the discharge of the water of condensation, all constructed and operating as will be hereinafter fully described.
  • A represents the shaft, which revolves in bearings in a suitable frame-work or support
  • Fig. 2 is a sectional'end elevaand can be driven by gear-wheels or pulleys and belt from any convenient power.
  • a steam-head, B which is cast in one forated longitudinally fromits outer end to.
  • the outer ends of the pipes F are connected in pairs by return-bends G, as shown in Figs. 1 and 4, to induce a circulation of steam through the steam-pipes F. 7
  • gudgeons H Upon the centers of the return-bends G are formed gudgeons H, which enter holes in the ring-bars of the spider. I, and slide in the said holes to allow the pipes'F to expand and contract freely, so that the contraction and expansion of the pipes F cannot strain the joints and cause leakage.
  • the ring-bars of the spider I have perforated lugs or flanges upon the sides of the parts that come in contact, to receive the bolts by which they are fastened together.
  • the ring-bars of the spider I have lugs or tenons upon the parts next the shaft A, to enter Inortises in the shaft, or to enter a groove or fit between and be bolted to flanges upon a hub attached to the said shaft, to keep the said spider in place upon the said shaft.
  • One pipe, F, of each set is set inward, and to the outer sides of the pipes of each set is attached a sheet-metal backing, J, forming a hollow cylinder.
  • the sheet-metal backing J is strengthened and held in place by hoops K passed around it.
  • the inward position of the inner pipe, F, and of the sheet metal J, attached to it forms a shelf to receive and stop the grain, and thus prevent the grain from falling out through the openings in the cylinders while the said openings are downward.
  • each cylinder To the hoops K at the upper end of the opening of each cylinder are attached scoops or shovels L, to take up the grain as the cylinders revolve and discharge it into the cavity of the said cylinder, which grain, as the cylinders revolve or are carried around the shaft A, passes along theinner surfaces of the said cylinders, being all the time in contact with a heated surface, and is discharged at the lower end of the drier at the steam-head B.
  • the sheet metal J does not extend quite to the steam-head B, anopening or space being left all around each cylinder to allow the grain to escape freely.
  • the drier is set in a.
  • the drier is surrounded with a casing, M,.of sheet metal or other suitable material, and the grain is spouted into the said case at the upper end of the drier.
  • the grain passes out at the lower end of the drier through a spout, N.
  • the moisture expelled from the grain passes up through the opening of each cylinder as the said opening comes upward, and escapes through the opening in the top, of the casing.
  • each chamber Upon the inner surface of the outer wall of the steam-head B, in each chamber, is cast a narrow transverse bar or flange, O, in an inclined position, to form a guide to conduct the Water of condensation to a hole in the outer wall of the head B at the inner end of each bar 0, (shown at P, Fig. 2,) through which it flows into a pipe, P, whenever by the revolution of the shaft each cylinder is brought to the top.
  • the pipes P at a little distance from the head B, are bent inward at right angles, and their other ends are connected with perforations Q formed longitudinally in the forward end of the shaft A.
  • the forward end of the shaft A is covered with a cap, R, in the upper part of which are one or more holes, S- preferably three-in such positions that the perforations Q will come opposite the holes S in succession as they pass through the upper part of the revolution of the shaft A, so that the water contained in the pipes P and perforavolves, the perforations Q not being uncovered long enough to allow steam to escape.
  • the cap-plate R is secured in place by bolts T, attached to the framework that supports the drier, and which have spiral springs U placed upon them between their nuts and the plate R. With this construction the cap R will be held against the end of the shaft A by the tension of the springs U, and the wear will be taken up as it occurs.
  • the bearings for the shaft A should be provided with rollers a to lessen the friction, and thus cause the drier to revolve more easily.
  • each chamber of the steam-head B can be provided with two rows of circula tion-pipes, F, one row being set within the other, to increase the amount of heating-surface. i be connected with the corresponding pipe of the other row by a return-bend, or the pipes of each row can be connected in pairs, as hereinbefore described.
  • An improved steam grain-drier construct ed substantially as herein shown and described, consisting of the shaft A, having its outer end perforated to receive the inlet steam-pipe O, the steam-head B, cast with one or more sepa rate chambers to distribute the steam, the conduction-pipes E, to conduct the steam to the chambers of the steam-head, the circulation steam-pipes F, to form the heating-surfaces, the return-bends G, attached to the pipes F, in pairs, to induce a circulation of steam, and pro vided with gudgeons H, to work in holes in the bars of the spider I and allow free expansion and contraction, the sheet-metal backing J, the scoops L, the casing M, and the bars 0, pipes P, perforations Q, and cap R, having perforations S, and its supporting-bolts T, and holding springs U for withdrawing the water of condensation from the steam-head B,
  • the steam-head B having. narrow transverse bars or flanges 0 formed uponthe inner surface of its outer wall,

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Drying Of Solid Materials (AREA)

Description

r m r. D E .m Ta r 0G l m a 6 Lb S a d 0 M o m Patente d June 28,1881.
nw il 2 3 4 2 m N.
INVENTOR WITNESSES: Y
IIIIIIIIIIIIIIII/III/I I I I I a v ATTORNEYS.
N. PETERS. mmlimmwn Wuhinm, ac.
UNITED STATES PATENT OFFICE.
HENRY CUTLER, OF NORTH WILBRAHAM, ASSIGNOR TO HIMSELF AND GEORGE E. CUTLER AND B. T. THOMPSON, BOTH OF SOUTH FRAM- INGHAM, MASSACHUSETTS.
STEAM GRAIN-DRIER.
SPECIFICATION forming part of Letters Patent No. 243,520, dated June 28, 1881.
Application filed October '29, 1880. (No model.)
Toall whom it may concern Be it known that I, HENRY CUTLER, of
' North Wilbraham, in the county of Hampden and State of Massachusetts, have invented a new and useful Improvementin Steam Grain- Driers, of which the followingis a specification.
Figure l is a sectional side elevation of the improvement. tion taken through the line as m, Fig. 1. Fig. 3 is a sectional end elevation taken through the line y 3 Fig. 1. Fig. 4 is a longitudinal section of a pair of steam-pipes, showing the return-bend." Fig. 5 represents the cap-plate. Fig. 6 represents the forward end of the shaft.
The object of this invention is to furnish steam grain-driers soconstructed that their capacity can be increased to any desired extent without materially increasing the cost of construction, and which will allow convenient access to be had to any part of the driers for stopping leakage, and other repairing.
The invention consists in constructing a steam grain drier of a shaft made hollow at one end to receive the inlet-steam, and with perforations at the other end to discharge the water of condensation, the head cast in one piece with one or more chambers, receiving steam through the conduction-pipes connected with the cavity of the shaft and distributing the steam to the circulation-pipes forming the heating-surfaces, the return-bends connecting the circulation-pipes in pairs to induce circulation, and provided with gudgeons to slide in holes in a supporting spider connected with the shaft to allow free expansion and contraction, the sheet metal forming a backing for the circulation-pipes, the scoops to introduce the grain into the drying cylinders, the exterior casing surrounding the drying-cylinders, and the pipes and cap and its supporting bolts and holding-springs connected with the steamhead, and the perforated forward end of the shaft for controlling the discharge of the water of condensation, all constructed and operating as will be hereinafter fully described.
Similar letters of reference indicate correspondin g parts.
A represents the shaft, which revolves in bearings in a suitable frame-work or support,
Fig. 2 is a sectional'end elevaand can be driven by gear-wheels or pulleys and belt from any convenient power.
To the shaft A, near its forward end, is attached a steam-head, B, which is cast in one forated longitudinally fromits outer end to.
receive the inlet steam-pipeG, and is provided with a stuffing-box, D, to prevent any leakage of steam around the said inlet-pipe G. In the shaft A, at or near the inner end of its longitudinal perforation, are formed as many radial perforations as there are separate chambers 1n the steam-head B.
In the radial perforations of the shaft A are secured the ends of pipes E, which project radially to points in line with the centers of the chambers of the head 13, at which points they are bent at right angles, and their ends are secured in holes in the inner wall of the head -B in such positions as to be at the centers of the chambers in the said head. The pipes E thus conduct the steam from the cavity of the shaft A to the chambers of the head B. In the inner wall of the steam-head B are formed rows of holes in such positions as to enter the outer parts of the chambers of the said head, and in which are screwed or otherwise secured the ends of pipes F, so that the said pipes will receive steam from the said chambers. The outer ends of the pipes F are connected in pairs by return-bends G, as shown in Figs. 1 and 4, to induce a circulation of steam through the steam-pipes F. 7 Upon the centers of the return-bends G are formed gudgeons H, which enter holes in the ring-bars of the spider. I, and slide in the said holes to allow the pipes'F to expand and contract freely, so that the contraction and expansion of the pipes F cannot strain the joints and cause leakage. The ring-bars of the spider I have perforated lugs or flanges upon the sides of the parts that come in contact, to receive the bolts by which they are fastened together. The ring-bars of the spider I have lugs or tenons upon the parts next the shaft A, to enter Inortises in the shaft, or to enter a groove or fit between and be bolted to flanges upon a hub attached to the said shaft, to keep the said spider in place upon the said shaft. One pipe, F, of each set is set inward, and to the outer sides of the pipes of each set is attached a sheet-metal backing, J, forming a hollow cylinder. The sheet-metal backing J is strengthened and held in place by hoops K passed around it. The inward position of the inner pipe, F, and of the sheet metal J, attached to it, forms a shelf to receive and stop the grain, and thus prevent the grain from falling out through the openings in the cylinders while the said openings are downward.
To the hoops K at the upper end of the opening of each cylinder are attached scoops or shovels L, to take up the grain as the cylinders revolve and discharge it into the cavity of the said cylinder, which grain, as the cylinders revolve or are carried around the shaft A, passes along theinner surfaces of the said cylinders, being all the time in contact with a heated surface, and is discharged at the lower end of the drier at the steam-head B. The sheet metal J does not extend quite to the steam-head B, anopening or space being left all around each cylinder to allow the grain to escape freely. The drier is set in a. slightlyinclined position, with the steam-head end the lowest so that the grain will gradually pass from the higher to the lower ends of the cylinders as the drier revolves. The drier is surrounded with a casing, M,.of sheet metal or other suitable material, and the grain is spouted into the said case at the upper end of the drier. The grain passes out at the lower end of the drier through a spout, N. The moisture expelled from the grain passes up through the opening of each cylinder as the said opening comes upward, and escapes through the opening in the top, of the casing.
Upon the inner surface of the outer wall of the steam-head B, in each chamber, is cast a narrow transverse bar or flange, O, in an inclined position, to form a guide to conduct the Water of condensation to a hole in the outer wall of the head B at the inner end of each bar 0, (shown at P, Fig. 2,) through which it flows into a pipe, P, whenever by the revolution of the shaft each cylinder is brought to the top. The pipes P, at a little distance from the head B, are bent inward at right angles, and their other ends are connected with perforations Q formed longitudinally in the forward end of the shaft A. The forward end of the shaft A is covered with a cap, R, in the upper part of which are one or more holes, S- preferably three-in such positions that the perforations Q will come opposite the holes S in succession as they pass through the upper part of the revolution of the shaft A, so that the water contained in the pipes P and perforavolves, the perforations Q not being uncovered long enough to allow steam to escape. The cap-plate R is secured in place by bolts T, attached to the framework that supports the drier, and which have spiral springs U placed upon them between their nuts and the plate R. With this construction the cap R will be held against the end of the shaft A by the tension of the springs U, and the wear will be taken up as it occurs. The bearings for the shaft A should be provided with rollers a to lessen the friction, and thus cause the drier to revolve more easily.
If desired, each chamber of the steam-head B can be provided with two rows of circula tion-pipes, F, one row being set within the other, to increase the amount of heating-surface. i be connected with the corresponding pipe of the other row by a return-bend, or the pipes of each row can be connected in pairs, as hereinbefore described.
' Having thus fully described my invcntion,'l claim as new and desire to secure by Letters Patent- 1. An improved steam grain-drier construct ed substantially as herein shown and described, consisting of the shaft A, having its outer end perforated to receive the inlet steam-pipe O, the steam-head B, cast with one or more sepa rate chambers to distribute the steam, the conduction-pipes E, to conduct the steam to the chambers of the steam-head, the circulation steam-pipes F, to form the heating-surfaces, the return-bends G, attached to the pipes F, in pairs, to induce a circulation of steam, and pro vided with gudgeons H, to work in holes in the bars of the spider I and allow free expansion and contraction, the sheet-metal backing J, the scoops L, the casing M, and the bars 0, pipes P, perforations Q, and cap R, having perforations S, and its supporting-bolts T, and holding springs U for withdrawing the water of condensation from the steam-head B, as set forth.
2. In a steam grain-drier, the narrow transverse bars or flanges 0, formed upon the inner surface of the outer wall of the steam-head B, within the steam-chambers, substantiallyas herein shown and described, to receive the water of condensation and conduct it to the water-discharge pipes P, as set forth.
3. In a steam grain-drier, the steam-head B, having. narrow transverse bars or flanges 0 formed uponthe inner surface of its outer wall,
in combination with the bent pipes P, substantially as shown and described, whereby the water of condensationis discharged from. said steam-head.
4. In a steam grain-drier, the combination, with the circulation-pipes F and the cylinder A, of the return'bends G, having gudgeons H, and the spider I, made in sections, substan tially as herein shown and described, whereby In this case each pipe of one row can IIO the circulation-pipes are supported and allowed to expand and contract freely, as set forth.
5. In a steam grain-drier, the combination, with the steam-head B, having one or more steam-chambers, and provided with bars or flanges O, and the shaft A, having longitudinal perforations Q, of the bent pipes P, substantially as herein shown and described, whereby the water of condensation is discharged from the chambers of the steam-head, as set forth.
6. In a steam grain-drier, the combination, with the shaft A, having water-discharge perforations Q, of the cap R, having perforations S in its upper part, and the bolts T and springs U, substantially as herein shown and described,
. wherebythe escape of steam is prevented while discharging the water of condensation, as set forth.
7. In a steam grain-drier, the combination,
pipes F with a single steam-head, B, at one 7 end and a spider at the other, having perforations in which the gudgeons H may slide, whereby the pipes can expand and contract freely without straining the joints, substantially as set forth.
HENRY CUTLER.
Witnesses:
J OHN M. MERRIAM, A. (J. GHILDs.
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