US607765A - Ice-making apparatus - Google Patents

Ice-making apparatus Download PDF

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US607765A
US607765A US607765DA US607765A US 607765 A US607765 A US 607765A US 607765D A US607765D A US 607765DA US 607765 A US607765 A US 607765A
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ice
water
chute
cylinder
rolls
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23BPRESERVING, e.g. BY CANNING, MEAT, FISH, EGGS, FRUIT, VEGETABLES, EDIBLE SEEDS; CHEMICAL RIPENING OF FRUIT OR VEGETABLES; THE PRESERVED, RIPENED, OR CANNED PRODUCTS
    • A23B4/00General methods for preserving meat, sausages, fish or fish products
    • A23B4/06Freezing; Subsequent thawing; Cooling
    • A23B4/062Freezing; Subsequent thawing; Cooling the materials being transported through or in the apparatus with or without shaping, e.g. in the form of powder, granules or flakes
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25CPRODUCING, WORKING OR HANDLING ICE
    • F25C1/00Producing ice

Definitions

  • a TTOHNEY m NORRIS PETER! 00.. mcmuma. wasmunmn, n. a
  • the object of my invention is to construct an ice-making apparatus in which the ice as frozen is removed from the freezerand car ried to a molding device and'from thence to a storage-room or delivery-outlet by continuous operation; and the invention consists in the combinations of devices or parts hereinafter described and as pointed out in the claims.
  • Figure l is a front elevation of the ice-making apparatus, showing a freezer, a saw for removing the ice therefrom, a carrier for transporting the same in a loose or slushy condition to a chute or tube provided with a hopper-mouth, and a scraper for taking the ice from the carrier'and conveying the same to a pair of rolls provided on their surfaces with molds for compressing the ice into cakes and delivering the same to a carrier for transporting it to a chute leading to a storageroom or delivery-outlet.
  • This figure also shows various drain connections and a pump for returning the water to a cylindrical jacket surrounding the ice-receiving chute or tube, which also has connections with the trough or tank for supplying water to the freezer.
  • Fig. 2 is a vertical section of a three story refrigerated house provided with an ice-chute and a door opening outward for loading the ice to a delivery cart or wagon shown'in Fig. 3, which also shows an outside view of the door appearing in section in Fig.2.
  • Fig. 4 is a sectional view across the rolls, showing the contour of the depression or concave spaces forming the molds as the two rolls come together; and
  • Fig. 5 is a surface view of a portion of one of the compression-rolls, showing cross-ribs or partitions by which the molds are separated at the ends.
  • Fig. 6 is a detail plan view of a portion of the conveyor E.
  • Fig. 7 is a transverse vertical section on the line 7 7 of Fig. 1.
  • Fig. l shows a device for regulating the distance of the saw from the surface of the cylinder on which the ice is formed.
  • A represents a rotary cylinder having a gas-inlet pipe a and a gas-outlet pipe a.
  • This cylinder receives motion from a gear-wheel B, connecting with a pinion b, operated by a pulley b, and the gear-wheel B is also provided with side cogs for operating the pinion 0, connecting by a crank-rod c and braces '01 d with a saw C.
  • This saw and its operating mechanism are not claimed specifically in this application, but are fully shown and claimed in my pending application, Serial No. 687,197,.filed May 19, 1897.
  • the distance of the saw from the cylinder may be regulated by a screw-bolt d, (shown in Fig.
  • anangular plate or bar 2 arranged parallel with the axis of the freezing-cylinder, and on this plate 2 is carried a bar 3, to which the arms cl, carrying the saw 0, are jointed, substantially as shown in Fig. 7 of the drawings.
  • the sawbar 3 is guided in its seat on the plate 2 by rollers 4: 5, the former of which is mounted on the bar 3 and the latter on the plate 2, and to hold the saw in proper operative contact with the surface of I the freezer springs 6 are connected to the braces or arms d, as inclicated in Fig. 7.
  • the saw is reciprocated by the movements of the bar 3 imparted by the crank connections 0 c.
  • the cylinder A is mounted at its ends on suitable supports D D, provided with beara. comes ings for the hollow shafts 02 d through which the inlet and outlet pipes at a pass for the circulation of ammonia-gas or refrigerating agent on the interior of the rotary freezer.
  • the supports I) D are also provided with bearings for shafts e e, one of which may have one of its ends provided with a pulley (not shown) for imparting motin,a11d these shafts e carry rollers e" 6, preferably of a pentagonal form, as shown.
  • a belt E passes over the rollers e e for the purpose of receiving the ice as it drops from the saw, and this belt is made of open mesh cloth or other suitable material, so as to permit any water that may be in the ice to pass through the same and fall onto a drainer E below such belt.
  • the ice is transported by the belt E toa vertical chute or open-ended tube F, having a hopper-mouth f at its upper end, into which the ice is dumped;
  • This hopper-mouth is provided with a scraper f, which is either weighted or held in nearly a vertical position by a spring, (not shown,) and it is prevented from being pulled too far back by one or more lugs or pins f on the inside of the hopper, as shown.
  • a spring not shown,
  • the rolls G G are mounted on a suitable frame or post G and are driven or rotated by b any suitable power connection. These rolls are provided with concave or hollow peripheral receptacles g g, separated one from an other by longitudinal and transverse ribs g g, as shown in Figs. 4 and 5.
  • ice by this means may be conveyed from the storage-room to a delivery cart or wagon K.
  • the water is forced from this cistern by a pump M, connecting therewith by a pipe Z, and passes from the pump through a pipe m,whioh leads through the rolls G G and empties into a jacket N surrounding the ice chute or tube F.
  • the water-jacket N is entirely closed at top and bottom and is provided at its top with a pipe 42, leading into a receptacle or trough A, which supplies water to the freezer A.
  • the force of the pump M is sufficient to cause an overflow from the tank N through the pipe n to the water-supply receptacle A.
  • Means are also provided for draining off any water which may be sqeezec'l out of the ice by the rolls or come from the ice on the carrier H and for leading the same into the cistern L through a spout Z. dotted lines.
  • the ice when molded is prevented from melting, and the cakes will by reason of the low temperature in the room become harder, so that they maybe conveyed or transported without loss.
  • the low temperature in the room 0 makes the water circulation through the rolls G G and in the water-jacket N highly important for the purpose of keeping the ice sufficiently soft until after it has passed through the rolls and become molded in the manner already described.
  • An ice plant or apparatus comprising the freezing-cylinder within a suitable room, means for removing the ice from the surface of the cylinder, a horizontally-disposed conveyer on which the ice is deposited from the cylinder, a vertical chute at the delivery end of the said conveyor and extending down into a lower refrigerating-chamber, ice-compression rollers mounted at the lower end of the chute, a slide below the said rollers, and an ofitake-conveyer inclined upward from below the ice-compression rollers and at its upper end delivering into the upper portion of a storage-compartment.
  • An ice plant or apparatus comprising, the water-tank, the freezing-cylinder therein,
  • an endless horizontal pervious conveyer to receive theice as removed from the cylinder, a vertical jacketed chute into the upper end of which said conveyer delivers, hollow ice-compression molding-rollers at the lower endof the chute, a slide to receive the ice from the said rollers, an ofitake-conveyer leading from the molding-rollers to a storage-chamber, a reservoir at a lower level than the moldingrollers to receive the drip therefrom, a trough under the said horizontal conveyer and also connected with the said reservoir, a pump to raise the water from said reservoir and discharge it down into the interior of the molding-rollers, a pipe connecting the outlet from said molding-rollers with the lower end of the chute-jacket, and a pipe connecting the up per end of the jacket with the main watertank.

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Wood Science & Technology (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Zoology (AREA)
  • Chemical & Material Sciences (AREA)
  • Food Science & Technology (AREA)
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Description

No. 607,765. Patented July l9, I898.
T. L. RANKIN. ICE MAKING APPARATUS. (Application filed June 1. 1897.)
3 Sheets-Sheet I.
(no Model.)
Fig/T1 I mi c u a t c ,1. mmlll.
IN VE IV TOR win/Es;
A TTOHNEY m: NORRIS PETER! 00.. mcmuma. wasmunmn, n. a
No. 607,765. Patented July 19, I898.-
T. L. RANKIN. ICE MAKING APPARATUS.
(Application filed June 1, 1897.) (No Model.) 3 Sheets$heet 2.
IN VE IV TUB {M 7W I T TOR/{EV msss Patented July 19, I898.
. T. L. RANKIN.
IGE MAKING APPARATUS.
(Application filed June 1, 1897.)
3 Sheets-She d 3.
fiNa Model.)
m: uonms PETERS c0. momu'rnpwyasumomn, n. c.
UNTTED STATE s" PATENT @rricn.
THOMAS L. RANKIN, OF SACKETTS HARBOR, NEW YORK, ASSIGNOR TO THE REGELATION ICE MACHINE COMPANY, OF ALEXANDRIA, VIRGINIA.
ICE-MAKING APPARATUS.
sr'ncrrroe'rron forming part of Letters Patent No. 607,765, dated July 19, 1898.
Application filed June 1, 1897. Serial No. 639,031. (No model.)
To all whom it may concern.-
Be it known that I, THOMAS L. RANKIN, a citizen of the United States,and a resident of Sacketts Harbor, in the county of J efierson and State of New York, have invented certain new and useful Improvements in Ice-Making Apparatus, of which the following is such a full, clear, concise, and exact description as will enable others skilled in the art to which my invention appertains to make and use the same, reference being had to the accompanying drawings, forming part of this specification.
The object of my invention is to construct an ice-making apparatus in which the ice as frozen is removed from the freezerand car ried to a molding device and'from thence to a storage-room or delivery-outlet by continuous operation; and the invention consists in the combinations of devices or parts hereinafter described and as pointed out in the claims.
In the drawings, Figure l is a front elevation of the ice-making apparatus, showing a freezer, a saw for removing the ice therefrom, a carrier for transporting the same in a loose or slushy condition to a chute or tube provided with a hopper-mouth, and a scraper for taking the ice from the carrier'and conveying the same to a pair of rolls provided on their surfaces with molds for compressing the ice into cakes and delivering the same to a carrier for transporting it to a chute leading to a storageroom or delivery-outlet. This figure also shows various drain connections and a pump for returning the water to a cylindrical jacket surrounding the ice-receiving chute or tube, which also has connections with the trough or tank for supplying water to the freezer. Fig. 2 is a vertical section of a three story refrigerated house provided with an ice-chute and a door opening outward for loading the ice to a delivery cart or wagon shown'in Fig. 3, which also shows an outside view of the door appearing in section in Fig.2. Fig. 4 is a sectional view across the rolls, showing the contour of the depression or concave spaces forming the molds as the two rolls come together; and Fig. 5 is a surface view of a portion of one of the compression-rolls, showing cross-ribs or partitions by which the molds are separated at the ends. Fig. 6 is a detail plan view of a portion of the conveyor E. Fig. 7 is a transverse vertical section on the line 7 7 of Fig. 1. Fig. l shows a device for regulating the distance of the saw from the surface of the cylinder on which the ice is formed.
; In the drawings, A represents a rotary cylinder having a gas-inlet pipe a and a gas-outlet pipe a. This cylinder receives motion from a gear-wheel B, connecting with a pinion b, operated by a pulley b, and the gear-wheel B is also provided with side cogs for operating the pinion 0, connecting by a crank-rod c and braces '01 d with a saw C. This saw and its operating mechanism are not claimed specifically in this application, but are fully shown and claimed in my pending application, Serial No. 687,197,.filed May 19, 1897. The distance of the saw from the cylinder may be regulated by a screw-bolt d, (shown in Fig. 1,) which has a rounded head resting against the surface of the cylinder or the iceremaining thereon. This bolt d is threaded all the way to its head and passes through the brace cl, having a threaded opening to receive it, so that the distance at which the bolt-head is regulated by the screw-thread determines the distance of the saw from-the cylinder. Each of the braces 61 is provided with such a regulating-screw, and the saw is held down to the ice-cylinder by means of springs or other suitable devices.
Upon suitable supports, as 1, projecting from and secured to the frame, is anangular plate or bar 2, arranged parallel with the axis of the freezing-cylinder, and on this plate 2 is carried a bar 3, to which the arms cl, carrying the saw 0, are jointed, substantially as shown in Fig. 7 of the drawings. The sawbar 3 is guided in its seat on the plate 2 by rollers 4: 5, the former of which is mounted on the bar 3 and the latter on the plate 2, and to hold the saw in proper operative contact with the surface of I the freezer springs 6 are connected to the braces or arms d, as inclicated in Fig. 7. The saw is reciprocated by the movements of the bar 3 imparted by the crank connections 0 c.
The cylinder A is mounted at its ends on suitable supports D D, provided with beara. comes ings for the hollow shafts 02 d through which the inlet and outlet pipes at a pass for the circulation of ammonia-gas or refrigerating agent on the interior of the rotary freezer. The supports I) D are also provided with bearings for shafts e e, one of which may have one of its ends provided with a pulley (not shown) for imparting motin,a11d these shafts e carry rollers e" 6, preferably of a pentagonal form, as shown. A belt E passes over the rollers e e for the purpose of receiving the ice as it drops from the saw, and this belt is made of open mesh cloth or other suitable material, so as to permit any water that may be in the ice to pass through the same and fall onto a drainer E below such belt.
I The ice is transported by the belt E toa vertical chute or open-ended tube F, having a hopper-mouth f at its upper end, into which the ice is dumped; This hopper-mouth is provided with a scraper f, which is either weighted or held in nearly a vertical position by a spring, (not shown,) and it is prevented from being pulled too far back by one or more lugs or pins f on the inside of the hopper, as shown. By means of the belt and scraper all of the ice will be conveyed to the vertical chute or open-ended tube F and pass through the same to the rolls G G, located below the same.
' The rolls G G are mounted on a suitable frame or post G and are driven or rotated by b any suitable power connection. These rolls are provided with concave or hollow peripheral receptacles g g, separated one from an other by longitudinal and transverse ribs g g, as shown in Figs. 4 and 5. The receptacles shown as oval-sided and square-ended molds, which during the rotation of the rolls grasp the ice as it comes from the bottom of the chute or tube F and compress the same as the respective half-molds are brought to gether during rotation, and,finally,after compressing the ice in this form it is discharged beneath the roll onto a short slide or guide h This as shown in Fig. 2, which is also provided with a slide or chute 1, leading to an outlet double door J J. The door J is arranged to slide on a suitable rod 1), passing through a space Within the outer insulated door J. As shown in Figs. 2 and 3, the ice by this means may be conveyed from the storage-room to a delivery cart or wagon K.
The water caused by melting as the ice drops from the freezer onto the carrier E is caught in a trough or drainer E, set on an in- Cline and leading to a spout j and pipe j,
which empties into a tank or cistern L. The water is forced from this cistern by a pump M, connecting therewith by a pipe Z, and passes from the pump through a pipe m,whioh leads through the rolls G G and empties into a jacket N surrounding the ice chute or tube F. The water-jacket N is entirely closed at top and bottom and is provided at its top with a pipe 42, leading into a receptacle or trough A, which supplies water to the freezer A. The force of the pump M is sufficient to cause an overflow from the tank N through the pipe n to the water-supply receptacle A.
passing the water pumped from the cistern through the rolls G G and Water-jacket N the temperature will be sufiiciently raised to cause the ice to have a watery or slippery.
condition, which will insure its passing from the chute or tube F to the rolls G G and make it sufficiently weighty and compact to permit an easy solidification in the molds of the rolls as well as its dropping therefrom when compressed.
In the Water-tank A is laid a coil of pipe 7, which is fed or supplied with the refrigerating-gas from a return-pipe 8, leading back from the discharge-pipe a and connected to the pipes of the coil in the water-tank, the gas thus lending its welbknown agencies to the reduction of the temperature of the water in the tank.
Means are also provided for draining off any water which may be sqeezec'l out of the ice by the rolls or come from the ice on the carrier H and for leading the same into the cistern L through a spout Z. dotted lines.)
9 g on each roll form one-half of what are (Indicated by It will be observed that the ice chute or tube F and molds are within a room 0, which I is refrigerated or kept at a sufficiently low j temperature by the expansion of aliquefyinggas in pipes 0 0, which may be connected 1 with and form part of the system for supply- 1 ing the refrigerating agent-to the freezer A.
1 In this way the ice when molded is prevented from melting, and the cakes will by reason of the low temperature in the room become harder, so that they maybe conveyed or transported without loss. The low temperature in the room 0 makes the water circulation through the rolls G G and in the water-jacket N highly important for the purpose of keeping the ice sufficiently soft until after it has passed through the rolls and become molded in the manner already described.
Having thus described my invention, what I claim as new, and desire to secure by Letters Patent, is-
1. An ice plant or apparatus, comprising the freezing-cylinder within a suitable room, means for removing the ice from the surface of the cylinder, a horizontally-disposed conveyer on which the ice is deposited from the cylinder, a vertical chute at the delivery end of the said conveyor and extending down into a lower refrigerating-chamber, ice-compression rollers mounted at the lower end of the chute, a slide below the said rollers, and an ofitake-conveyer inclined upward from below the ice-compression rollers and at its upper end delivering into the upper portion of a storage-compartment.
2. An ice plant or apparatus comprising, the water-tank, the freezing-cylinder therein,
means for removing the ice therefrom, an endless horizontal pervious conveyer to receive theice as removed from the cylinder, a vertical jacketed chute into the upper end of which said conveyer delivers, hollow ice-compression molding-rollers at the lower endof the chute, a slide to receive the ice from the said rollers, an ofitake-conveyer leading from the molding-rollers to a storage-chamber, a reservoir at a lower level than the moldingrollers to receive the drip therefrom, a trough under the said horizontal conveyer and also connected with the said reservoir, a pump to raise the water from said reservoir and discharge it down into the interior of the molding-rollers, a pipe connecting the outlet from said molding-rollers with the lower end of the chute-jacket, and a pipe connecting the up per end of the jacket with the main watertank.
3. The combination with the water-tank, the rotating freezing-cylinder therein, and a vertical jacketedchute into which the ice is discharged from the cylinder, the upper end 'of the jacket having a pipe discharging into THOMAS L. RANKIN.
WVitnesses:
HENRY T. BRENNAN, M. A. CASSIDY.
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2449132A (en) * 1944-09-22 1948-09-14 Louis V Lucia Refrigerator for making and using crushed ice
US2499386A (en) * 1945-03-01 1950-03-07 Ernest A Joerren Method and apparatus for making spherical carbon dioxide articles
US2630091A (en) * 1948-05-21 1953-03-03 James A Bonnington Marine ice plant
EP0343138A1 (en) * 1988-05-18 1989-11-23 Frigoscandia Food Process Systems Aktiebolag Pelletiser and method for making frozen pellets

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2449132A (en) * 1944-09-22 1948-09-14 Louis V Lucia Refrigerator for making and using crushed ice
US2499386A (en) * 1945-03-01 1950-03-07 Ernest A Joerren Method and apparatus for making spherical carbon dioxide articles
US2630091A (en) * 1948-05-21 1953-03-03 James A Bonnington Marine ice plant
EP0343138A1 (en) * 1988-05-18 1989-11-23 Frigoscandia Food Process Systems Aktiebolag Pelletiser and method for making frozen pellets
WO1989011228A1 (en) * 1988-05-18 1989-11-30 Frigoscandia Contracting Ab Pelletiser and method for making frozen pellets

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