US190490A - Improvement in hot-air engines - Google Patents

Improvement in hot-air engines Download PDF

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US190490A
US190490A US190490DA US190490A US 190490 A US190490 A US 190490A US 190490D A US190490D A US 190490DA US 190490 A US190490 A US 190490A
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air
valve
furnace
hot
engine
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F23COMBUSTION APPARATUS; COMBUSTION PROCESSES
    • F23RGENERATING COMBUSTION PRODUCTS OF HIGH PRESSURE OR HIGH VELOCITY, e.g. GAS-TURBINE COMBUSTION CHAMBERS
    • F23R3/00Continuous combustion chambers using liquid or gaseous fuel
    • F23R3/02Continuous combustion chambers using liquid or gaseous fuel characterised by the air-flow or gas-flow configuration
    • F23R3/26Controlling the air flow

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  • the invention relates to improvements in' hot-air engines with closed furnaces or motors, in which the atmospheric air is forced, by means of an air-pump, into a hermeticallyclosed furnace, where it is heated, and then conducted into the cylinder for use.
  • the invention consists, mainly, of an improved mechanical distribution of air above and below the grate by means of the governor before the same opens a regulating coldair-discharge valve, and in the details of construction and arrangement hereinafter fully described,'and then pointed out in the claims.
  • Figure 1 represents a vertical longitudinal section of our improved hot-air motor.
  • Fig. 2 is an end elevation, partly in section;
  • Fig. 3 a plan view of the same, and
  • Fig. 4 a detail section of the hot-air valves.
  • A represents the cast-iron furnace, that forms the base-section of our improved hotair engine.
  • the interior of the furnace A is lined with fire-bricks, and both' furnace and ash-box closed by hermetically-sealing doors a.
  • a box or casing Goncentrically above the circular grate is arranged a box or casing, 0, whose contracted throat or discharge-opening is closed by a valve, 12, that is raised or lowered to open or close the communication of easing O and furnace A, for supplying the required quantity of fuel to the furnace during the running of the engine.
  • the fuel is filled into the box through a hermetically-sealing door, d, which is firmly closed by a fastening-screw, after the casing G has been filled with coal, coke, or other fuel.
  • the fuel box or casing C may, by closing the connecting-valve b, be filled, and the fuel then supplied after the door is closed and the valve opened to the grate, without any admission of air through
  • a chest, E At the rear end of the furnace-casing, opposite the fire-door, is arranged a chest, E, with the hot-air valves 6 and e of which the airsupply valve 49 connects by a channel, D, with the cylinder F, while the exhaust-valve 6 forms, by a second channel, D, the communication of the cylinder F to the chimney.
  • the cylinder F is arranged vertically on the furnace-box, between fuel-box U and valvechest E, and is provided at its upper end with four horizontal flanges, F, of which two oppo' site flanges carry the journal-boxes G of the driving shaft, that is placed diametrically across the cylinder, while the other two are extended in upward direction, to support the v air-pump at the upper part of the engine.
  • the piston H of the hot-air cylinder F, and the piston I of the air-pump M, are concentrically connected by a tubular piece, 9, that is broken out to give play to the crank of the driving-shaft.
  • the crank-shaft is connected directly by a crank-rod, L, with the cylinderpiston H, which is provided with a suitable leather or other packing, and .inclosed by a sheet-metal casing, H.
  • the piston I of the air-pump M is also tightly packed with leather, and provided with a central suction-valve, h, in the upper part of the piston.
  • the suctionvalve h is opened during the downward motion of the piston I, to draw in the required quantity of air, which is forced by the upward stroke of the piston through a second valve, 11/, into a casing or dome, N, secured to the top part of the air-pump.
  • the cold air is then conducted from the dome N, and through coldair tube 0 to the air-regulator O, which is arranged at the side of the furnace-box, com municating by a valve, '5, and an upper channel, t' directly with the grate, and by a lower opening, with the heating-chamber P, back of the ash-box, and from the same by side channels 2' to the front part of the furnace back of the fire-door.
  • the partially-heated air is forced through openings 1 back of the fire-door into the furnace, where it is heated to the required degree and conducted to the cylinder, for working the piston of the same.
  • the introduction of the atmospheric air back of the fire-door keeps the same cool, While the side channels protect the furnacewalls against too rapid deterioration.
  • the governor Q is worked'by gear-Wheel connection with the driving crank-shaft
  • the governor-shaft is also connected by a crank pin and rod, m, with a cam-shaft, m, that bears alternately the spring'acted top-plates of the spindles of the air supply and exhaust valves 0 and e.
  • valve z' When the engine is at rest the valve z' is shown in raised position by the weight of the governor-balls, and admits thereby the direct entrance of the cold air from the conductingtube to the grate, until, by the gradual increase in speed, the governor lowers the valve '6, so as to close the upper channel and conduct the air into the heating-chamber P and to the furnace, in the manner described.
  • the governor-rod depresses and opens a regulating exit-valve, 1', below the valve 0, so as to reduce in this manner, by the escape of cold air, the pressure in the lower part of the engine.
  • This mechanical distribution of air below and above the grate by the governor, and before the opening of the exit-valve protects the engine against loss of heat, and allows the dispensing with the continuous supervision required in nearly all caloric-engines.
  • the engine is operated by starting thelfire in the furnace and closing then the doors hermetically, also the hot-air valves 6 6, when, by a few turns of the crank-shaft, a quantity of air is pumped into the heating-chamber and furnace, sufficient to keep the engine in regular motion.

Description

JULIUS HOOK AND LOUIS P. MARTIN, OF VIENNA, AUSTRIA.
IMPROVEMENT IN HOT-AIR ENGINES.
Specification forming part of Letters Patent No. 190,490, dated May 8, 1877; application filed September 9, 1876.
To all whom it may concern:
Be it known that we, JULIUS HOOK and LoUIs P. MARTIN, of Vienna, Austria, have invented a new and Improved Hot-Air Engine, of which the following is a specification:
The invention relates to improvements in' hot-air engines with closed furnaces or motors, in which the atmospheric air is forced, by means of an air-pump, into a hermeticallyclosed furnace, where it is heated, and then conducted into the cylinder for use.
The invention consists, mainly, of an improved mechanical distribution of air above and below the grate by means of the governor before the same opens a regulating coldair-discharge valve, and in the details of construction and arrangement hereinafter fully described,'and then pointed out in the claims.
In the drawing illustrating this invention, and to which reference is made, Figure 1 represents a vertical longitudinal section of our improved hot-air motor. Fig. 2is an end elevation, partly in section; Fig. 3, a plan view of the same, and Fig. 4 a detail section of the hot-air valves.
Similar letters of reference indicate corresponding parts.
A represents the cast-iron furnace, that forms the base-section of our improved hotair engine. The interior of the furnace A is lined with fire-bricks, and both' furnace and ash-box closed by hermetically-sealing doors a. Goncentrically above the circular grate is arranged a box or casing, 0, whose contracted throat or discharge-opening is closed by a valve, 12, that is raised or lowered to open or close the communication of easing O and furnace A, for supplying the required quantity of fuel to the furnace during the running of the engine. The fuel is filled into the box through a hermetically-sealing door, d, which is firmly closed by a fastening-screw, after the casing G has been filled with coal, coke, or other fuel. The fuel box or casing C may, by closing the connecting-valve b, be filled, and the fuel then supplied after the door is closed and the valve opened to the grate, without any admission of air through the fuel-box to the furnace.
At the rear end of the furnace-casing, opposite the fire-door, is arranged a chest, E, with the hot-air valves 6 and e of which the airsupply valve 49 connects by a channel, D, with the cylinder F, while the exhaust-valve 6 forms, by a second channel, D, the communication of the cylinder F to the chimney.
The cylinder F is arranged vertically on the furnace-box, between fuel-box U and valvechest E, and is provided at its upper end with four horizontal flanges, F, of which two oppo' site flanges carry the journal-boxes G of the driving shaft, that is placed diametrically across the cylinder, while the other two are extended in upward direction, to support the v air-pump at the upper part of the engine.
The piston H of the hot-air cylinder F, and the piston I of the air-pump M, are concentrically connected by a tubular piece, 9, that is broken out to give play to the crank of the driving-shaft. The crank-shaft is connected directly by a crank-rod, L, with the cylinderpiston H, which is provided with a suitable leather or other packing, and .inclosed by a sheet-metal casing, H. The piston I of the air-pump M is also tightly packed with leather, and provided with a central suction-valve, h, in the upper part of the piston. The suctionvalve h is opened during the downward motion of the piston I, to draw in the required quantity of air, which is forced by the upward stroke of the piston through a second valve, 11/, into a casing or dome, N, secured to the top part of the air-pump. The cold air is then conducted from the dome N, and through coldair tube 0 to the air-regulator O, which is arranged at the side of the furnace-box, com municating by a valve, '5, and an upper channel, t' directly with the grate, and by a lower opening, with the heating-chamber P, back of the ash-box, and from the same by side channels 2' to the front part of the furnace back of the fire-door. The partially-heated air is forced through openings 1 back of the fire-door into the furnace, where it is heated to the required degree and conducted to the cylinder, for working the piston of the same. The introduction of the atmospheric air back of the fire-door keeps the same cool, While the side channels protect the furnacewalls against too rapid deterioration.
The governor Q is worked'by gear-Wheel connection with the driving crank-shaft, and
arranged to operate by a fulcrumed lever and rod the valve '5 of the air-regulator O. The governor-shaft is also connected by a crank pin and rod, m, with a cam-shaft, m, that bears alternately the spring'acted top-plates of the spindles of the air supply and exhaust valves 0 and e.
When the engine is at rest the valve z' is shown in raised position by the weight of the governor-balls, and admits thereby the direct entrance of the cold air from the conductingtube to the grate, until, by the gradual increase in speed, the governor lowers the valve '6, so as to close the upper channel and conduct the air into the heating-chamber P and to the furnace, in the manner described.
If the speed of the engine, and consequently the pressure of the air within the engine, exceeds a certain limit, the governor-rod depresses and opens a regulating exit-valve, 1', below the valve 0, so as to reduce in this manner, by the escape of cold air, the pressure in the lower part of the engine. This mechanical distribution of air below and above the grate by the governor, and before the opening of the exit-valve, protects the engine against loss of heat, and allows the dispensing with the continuous supervision required in nearly all caloric-engines.
The engine is operated by starting thelfire in the furnace and closing then the doors hermetically, also the hot-air valves 6 6, when, by a few turns of the crank-shaft, a quantity of air is pumped into the heating-chamber and furnace, sufficient to keep the engine in regular motion.
We do not confine ourselves to engines with single cylinders, as they may be also built with several cylinders, and in different positions.
Having thusdescribed our invention, we claim as new and desire to secure by Letters Patent 1. The combination of the governor Q and cold-air regulator 0, having slide-valve 42, with the openings i and i grate and heatingchamber P, and regulating air-discharge valve i substantially as and for the purpose set forth.
2. The combination of the hot-air cylinder F, channels D Dgand alternately-operated hot-air valves 6 6, arranged outside of furnace and cylinder, with the governor-shaft, substantially in the manner and for the purpose set forth.
3. The combination of the governor Q and cold-air regulator 0, having valve 5 and airdischarge valve with the heating-chamber P and furnace A, to regulate pressure of air in furnace, substantially as specified.
JULIUS HOOK. LOUIS P. MARTIN. Witnesses:
CARL DEIGK, FERDINAND BoNm.
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090083328A1 (en) * 2007-02-01 2009-03-26 Lexisnexis Systems and methods for profiled and focused searching of litigation information

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20090083328A1 (en) * 2007-02-01 2009-03-26 Lexisnexis Systems and methods for profiled and focused searching of litigation information
US10467589B2 (en) 2007-02-01 2019-11-05 RELX Inc. Systems and methods for profiled and focused searching of litigation information

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