US949555A - Safety device for refrigerating-machines. - Google Patents

Safety device for refrigerating-machines. Download PDF

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US949555A
US949555A US51415809A US1909514158A US949555A US 949555 A US949555 A US 949555A US 51415809 A US51415809 A US 51415809A US 1909514158 A US1909514158 A US 1909514158A US 949555 A US949555 A US 949555A
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valve
cylinder
refrigerating
machines
pipe
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US51415809A
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Emery E Trapp
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    • 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
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B49/00Arrangement or mounting of control or safety devices
    • F25B49/02Arrangement or mounting of control or safety devices for compression type machines, plants or systems
    • F25B49/025Motor control arrangements

Definitions

  • My invention relates to refrigerating machines and the object of the invention is a safety device whereby explosions may be prevented when the pressure upon the machine becomes too great.
  • the invention is especially adapted for ammonia refrigerating systems, and it is well known that the pressure of the ammonia gas in such machines often suddenly rises to a degree resulting in an explosion unless the machine is at once stopped. The machine must, therefore, be constantly watched to avert a danger always present.
  • My device operates to stop the operation of the steam engine by which the system is controlled and also to shut ofl' the supply of ammonia from the condenser coils the instant the pressure of ammonia gas rises to the danger point; -In the accompanying illustration I have shown my device in connection with so much of the machine as may be necessary to a proper understanding of the invention.
  • the invention consists of a cylinder operated by the overpressure of ammonia gas from the condenser coils, and connected with the steam supply of the engine so that the steam is cut off by the movement of the A similar cylinder operates to stop the'supply of ammonia from the condenser to the ex ansion tank.
  • One of the ob ects of the invention is the saving of the overflow of ammonia.
  • FIG. 1 is a view in side elevation of my invention in condenser coils, receiver, expansion tank, governor and .connecting pipes of a refrigerating machine.
  • Fig. 2 is an enlarged view in end elevation of operating cylinder and cam arms supported by a stand.
  • Fig. 3 is a plan view of f cylinder, piston and wrench and valve, and a section of pipe used in connection with the ammonia supply.
  • Fig. 4 is a view in side elevation of cam controlling the steam valve of the engine and part of cam arm.
  • Fig. 5 is an enlarged detail view of cylinder in side elevation.
  • Fig. 6 is a longitudinal section of Fi 5.
  • a 1 s the condenser coils having an inlet pipe 0. and being connected with the receiver 'B by the pipe a through the liquid valve 6.
  • the receiver is connected with expansion tank C by the usual pipe 0 the valve is connected the pipe 0 to whichv are attached by the tee hthe pipes f and g:
  • a branch pi e 2' leads from the pipe g to the ammonia va ve j normally closed which is connected with and similar to the valve d.
  • the cylinder F is supported uprightly on a bracket is secured to a stand H. It is provided with the usual packing and packing gland and a piston 1 having a forked end m, screwed thereon, and a piston head n. Secured in the forked end is a shaft 0 to which is pivoted a piston rod p.
  • the piston rod is secured at its opposite end by a screw bolt 0' to the governor shaft g which is pivotally su ported at one end by the stand and at the ot er end by the governor I.
  • To the end of the shaft 9 are secured the connecting rods J, joined to the cam arms K, K, which are connected with and operate the cam valve L which controls the steam supply of the engme.
  • valve u By opening this-valve and'closing the valve u in the pipe f the ammonia gas Wlll be discharged from the ylinder F and the p15- ton released, permitting the steam to be turned on. Then by closing the valve u and the valve d and opening the valves u" and y' and startin the machine, the gas will be pumped out o the pipes e, f, g and z, the cylinder G and the valve j, into the expanslon tank by the operation of the machine itself and the device restored to normal position. Valves, 7) and w are provided respectively in the pipes 2' and g in order that the pipes may be cut off from the pump if desired. A similar valve :1; is provided at the entrance to the relief valve D.
  • the combi- .nation with means controlling the steam supply of the engine, of a cylinder and piston operated by the overpressure of the condenser coils, a valve in the supply pipe leading from the coils, and means connecting the piston with said valve whereby the supply from the coils is stopped by the closing of the valve, substantially as described.

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Mechanical Engineering (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Organic Low-Molecular-Weight Compounds And Preparation Thereof (AREA)

Description

E. E. TRAPP.
SAFETY DEVICE FOR REFRIGERATING MACHINES.
APPLICATION FILED AUG.23, 1909.
949,555.. Patented Fe15.15,1910. E
2 BHEETS-SHEET 1.
IN VEN TOR [.15. Trap v WITNESSES:
A TTORNE Y E. E. TRAPP.
SAFETY DEVICE FOR RBFRIGERATING MACHINES.
APPLICATION FILED AUG.23, 1909.
Patented Feb. 15, 1910.
2 SHEETS-SHEET 2.
INVENTOR E. E. Trap 0 WITNESSES. 7M I A TTORNE Y cylinder.
Emma! E. rimrr, or sroox crrv, IOWA.
SAFETY DEVICE IQR REFRIGERATING-MACHINES.
To all whom it may concern:
Be it known that I, EMERY E. TRAPP, a citizen of the United States, and a resident of Sioux City, in the county ofWoodbury and State of Iowa, have invented new and useful Improvements in Safety Devices for Refrigerating-Machines, of which the following is a specification.
My invention relates to refrigerating machines and the object of the invention is a safety device whereby explosions may be prevented when the pressure upon the machine becomes too great.
The invention is especially adapted for ammonia refrigerating systems, and it is well known that the pressure of the ammonia gas in such machines often suddenly rises to a degree resulting in an explosion unless the machine is at once stopped. The machine must, therefore, be constantly watched to avert a danger always present. My device operates to stop the operation of the steam engine by which the system is controlled and also to shut ofl' the supply of ammonia from the condenser coils the instant the pressure of ammonia gas rises to the danger point; -In the accompanying illustration I have shown my device in connection with so much of the machine as may be necessary to a proper understanding of the invention.
The invention consists of a cylinder operated by the overpressure of ammonia gas from the condenser coils, and connected with the steam supply of the engine so that the steam is cut off by the movement of the A similar cylinder operates to stop the'supply of ammonia from the condenser to the ex ansion tank.
One of the ob ects of the invention is the saving of the overflow of ammonia.
In the drawing Figure 1 is a view in side elevation of my invention in condenser coils, receiver, expansion tank, governor and .connecting pipes of a refrigerating machine. Fig. 2 is an enlarged view in end elevation of operating cylinder and cam arms supported by a stand. Fig. 3 is a plan view of f cylinder, piston and wrench and valve, and a section of pipe used in connection with the ammonia supply. Fig. 4 is a view in side elevation of cam controlling the steam valve of the engine and part of cam arm. Fig. 5 is an enlarged detail view of cylinder in side elevation. Fig. 6 is a longitudinal section of Fi 5.
Referring to the drawing in which like Specification of Letters Patent. Application filed August 23, 1909. Serial Ho. 514,158.
Patented Feb. 15,1910.-
parts are designated by' similar letters of reference, A 1s the condenser coils having an inlet pipe 0. and being connected with the receiver 'B by the pipe a through the liquid valve 6. The receiver is connected with expansion tank C by the usual pipe 0 the valve is connected the pipe 0 to whichv are attached by the tee hthe pipes f and g:
leading respectivelyto the operating cylinder F and the similar cylinder G. A branch pi e 2' leads from the pipe g to the ammonia va ve j normally closed which is connected with and similar to the valve d. The cylinder F is supported uprightly on a bracket is secured to a stand H. It is provided with the usual packing and packing gland and a piston 1 having a forked end m, screwed thereon, and a piston head n. Secured in the forked end is a shaft 0 to which is pivoted a piston rod p. The piston rod is secured at its opposite end by a screw bolt 0' to the governor shaft g which is pivotally su ported at one end by the stand and at the ot er end by the governor I. To the end of the shaft 9 are secured the connecting rods J, joined to the cam arms K, K, which are connected with and operate the cam valve L which controls the steam supply of the engme.
When the pressure of the ammonia gas overflows the condenser coils and overcomes the pressure of the relief valve, it finds an outlet through the pipes e and f and into the cylinder F. The pressure of the ammonia gas in the cylinder lifts the piston and raises the pivoted end of the piston rod,
which, acting on the shaft g,-turns the shaft, moving the cam arms and cuts off the steam supply in the valve, Fig. 4. At the same time the overflow of ammonia gas finds its way through the-pipe 9 into the cylinder G, which is similar in all respects to the cylinder F. To its similar piston p is pivoted a piston rod or wrench p" whose opposite end is secured to a valve stem 8 which oper-'.
ates a valve .9 in the pipe 0. The pressure of ammonia gas in the pipe operates the piston 12 whlch through the wrench p and valve stem 8' closes the valve .9 in the pipe and shuts ofi the. supply'of ammonia gas from the coils. Before the machine can e again started it is necessary that the ammonia gas bedischarged or umped out from the cylinders and p1 es. standpiipe t, connected to the plpe near the cylm er F, opens into the air and is closed during the operation of the machine by the valve u.
By opening this-valve and'closing the valve u in the pipe f the ammonia gas Wlll be discharged from the ylinder F and the p15- ton released, permitting the steam to be turned on. Then by closing the valve u and the valve d and opening the valves u" and y' and startin the machine, the gas will be pumped out o the pipes e, f, g and z, the cylinder G and the valve j, into the expanslon tank by the operation of the machine itself and the device restored to normal position. Valves, 7) and w are provided respectively in the pipes 2' and g in order that the pipes may be cut off from the pump if desired. A similar valve :1; is provided at the entrance to the relief valve D.
My invention by slight adaptation may be fitted to any kind of engine and by minor changes in structure is readily attached to other systems of refrigeration without departing from the principle or spirit of the invention.
Having described my invention, what I I described.
3. In a refrigerating machine, the combination with the means controlling the steam valve of the en ine, of a cylinder and piston operated by t e overpressure of thecondenser coils wherebythe valve is closed by the operation of the cylinder and piston, and means connected with the supply of the cylinder for the discharge of the same after the engine has been stopped, substantially as described.
4. In a refrigerating machine, the combi- .nation with means controlling the steam supply of the engine, of a cylinder and piston operated by the overpressure of the condenser coils, a valve in the supply pipe leading from the coils, and means connecting the piston with said valve whereby the supply from the coils is stopped by the closing of the valve, substantially as described.
In testimony whereof I have hereunto subscribed my name in the presence of two subscribing witnesses.
EMERY E. TRAPP.
Witnesses:
H. C. GARDINER, J. S. NELSON.
US51415809A 1909-08-23 1909-08-23 Safety device for refrigerating-machines. Expired - Lifetime US949555A (en)

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