US993804A - Automatic switch. - Google Patents

Automatic switch. Download PDF

Info

Publication number
US993804A
US993804A US59752310A US1910597523A US993804A US 993804 A US993804 A US 993804A US 59752310 A US59752310 A US 59752310A US 1910597523 A US1910597523 A US 1910597523A US 993804 A US993804 A US 993804A
Authority
US
United States
Prior art keywords
arm
switch
diaphragm
spring
contact
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US59752310A
Inventor
Albert B Strohm
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US59752310A priority Critical patent/US993804A/en
Application granted granted Critical
Publication of US993804A publication Critical patent/US993804A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H13/00Switches having rectilinearly-movable operating part or parts adapted for pushing or pulling in one direction only, e.g. push-button switch
    • H01H13/02Details
    • H01H13/26Snap-action arrangements depending upon deformation of elastic members
    • H01H13/28Snap-action arrangements depending upon deformation of elastic members using compression or extension of coil springs

Definitions

  • the present invention relates to certain novel and useful improvements in automatic switches, and has particular application to a switch adaptedespecially for use in connection with pumping mechanism.
  • Still a further object of my invention is to provide an improved form of switch embodying in its construction the desired teatures of simplicity, economy in cost and in installation and efbciency in operation.
  • the switch is adapted to be connected in circuit with an electric motor, the latter in turn being in driving engagement with the power wheel of the pump. It is my purpose to so construct and arrange the switch relative to the pump and the motor, that when the pressure in the storage tank rises to a predetermined point, such pressure will be exerted upon a diaphragm forming a portion of the switch and therebycause said diaphragm to operate mechanism hereinafter described, whereby the circuit with the motor is broken and the motor stopped and consequently the pumping discontinued. When, however, the pressure. in the tank falls below a predetermined point, the'diaphragm is retracted into position to reestablish the electric circuit of the motor and cause the pumping to be resumed.
  • the letter A designates a base or standard of any suitable character, and which may be mounted at any preferred place, said standard supporting the casing B in which is mounted the switch mechanism.
  • this casing comprises in the present instance a vertical section C and a horizontal section D.
  • the vertical section'C of the casing is formed with a diaphragm cas ing comprising the two plates 5 and 6 between which is held the diaphragm 7 of thin metal or other suitable material, the section 5 having a threaded bore 8 into' which is adapted to be screwed a pipe or the like, which in turn is connected with the storage tank (not shown). It will thus be noted that the tank pressure is transmitted to the diaphragm.
  • the numeral 9 designates a block into which is threaded the end 10 of the rod 11, a sleeve as at 12 being threaded into the vertical section C of the casing, said sleeve hav ing an enlarged or shoulder portion 13 against which bears one end of the spring let, the opposite end of said spring lying within the recessed portion 15 of the block 19.
  • the upper end of the rod 11 is preferably flattened as at 16 and is pivotally connected as at 17 to the end 18 of the yoke lever 19, the latter being fulcrumed as at 19a, and said lever extending lengthwise of the horizontal section of the casing-and is bifurcated or forked as at 20, said forked portion of the lever engaging the stud 21, carried by.' the arm 22 pivoted as at 23 to the casing.
  • the free end of said arm 22,l is provided with a lug 24 with which engages one end of the spring 25, the opposite end of said spring eugaging with the lug 26 carried by the contact armv 27 which is pivoted to a stud 28 projecting from the wall of the casing.
  • the insulated block 29 Carried by the free end of the arm 27 is the insulated block 29, which in turn carries the binding post 30 and contact member 31'.
  • the numeral 32 designates a slot or opening in the top of the casing section, over which is fastenedthe insulated plate 33 carrying the other contact member 39, while 35 designates the binding post for the wire 36, said wire together with the Wire 87 leading to the motor (not shown).
  • a switch operated thereby comprising a rod'connected to the diaphragm, a pivotcd arm connected to said rod, a stationary contact, a swinging contact pivoted within an opening formed in said arm, a bifureated end on said arm, an elbow lever movable vertically upon pivotal movement of said arm through the medium of said bifurcation, and a spring connecting said movable cont-act with said elbow lever and adapted upon movement of said elbow lever past its dead center to move said movable contact into co-action with or awav from said stationary contact.
  • a switch operated thereby coinprising a pivotcd arm enlarged and apertured at a substantially central point, a bitui-cated end on said arm, an elbow lever having one end fitting in said bifurcated end, a contact arm having a pivotal support within the apertured enlargement of said arm, a stationary contact, a tension spring connecting said movable contact and the other end of said elbow lever whereby said contact is moved after saidelbow lever passes a dead center, a rod connected to the shorter end oi said pivotcd arm and to the diaphragm, a compression spring surrounding said rod, and an adjustable collar for regulating the compression power ot said spring.

Description

A. B. STROHM.
AUTOMATIC SWITCH.
APPLIUATION EILED 1320.15. 1910,
vPatented May 30, 1911.
'Iii ssgb l ALBERT B. STROHM, OF COLUMBUS, OHIO.
AUTOMATIC SWITCH.
Specification of Letters Patent.
Patented May 30, 1911.
Application led December 15, 1910. Serial No. 597,523.
.To all 'whom 'it may concern:
Be itknown that I, ALBERT B. S'rRoHM, a citizen of the United States, residing at- Co lumbus, in the county of Franklin and State of Ohio, have invented certain new and useful Improvements in Automatic Switches, of which the following is a specification.
The present invention relates to certain novel and useful improvements in automatic switches, and has particular application to a switch adaptedespecially for use in connection with pumping mechanism.
In carrying out my invention, it is my purpose to provide a pump switch, in circuit with the pump motor and automatically controlled by the pressure in the storage tank or the like, ywhereby the pumping may be started or stopped according as the pressure in the pump reaches or falls below a predetermined amount. i
Still a further object of my invention is to provide an improved form of switch embodying in its construction the desired teatures of simplicity, economy in cost and in installation and efbciency in operation.
With the above recited objects and others of a similar nature in view, my invention consists in the construction, combination and arrangement of parts set forth in and falling within the scope of the appended claims.
1n the accompanying drawings-Figuref1 l is a vertical longitudinal sectional 4view taken through a switch embodying my improvements, F ig. 2 is a top plan view partly in elevation and partly in section of the switch, and, Fig. 3 is a vview in end eleva-- tion of my improved switch.
In the employment of my invention, the switch is adapted to be connected in circuit with an electric motor, the latter in turn being in driving engagement with the power wheel of the pump. It is my purpose to so construct and arrange the switch relative to the pump and the motor, that when the pressure in the storage tank rises to a predetermined point, such pressure will be exerted upon a diaphragm forming a portion of the switch and therebycause said diaphragm to operate mechanism hereinafter described, whereby the circuit with the motor is broken and the motor stopped and consequently the pumping discontinued. When, however, the pressure. in the tank falls below a predetermined point, the'diaphragm is retracted into position to reestablish the electric circuit of the motor and cause the pumping to be resumed.
Referring to the accompanying drawings in detail, the letter A designates a base or standard of any suitable character, and which may be mounted at any preferred place, said standard supporting the casing B in which is mounted the switch mechanism. As will be seen by reference to the drawings, this casing comprises in the present instance a vertical section C and a horizontal section D. The vertical section'C of the casing is formed with a diaphragm cas ing comprising the two plates 5 and 6 between which is held the diaphragm 7 of thin metal or other suitable material, the section 5 having a threaded bore 8 into' which is adapted to be screwed a pipe or the like, which in turn is connected with the storage tank (not shown). It will thus be noted that the tank pressure is transmitted to the diaphragm.
The numeral 9 .designates a block into which is threaded the end 10 of the rod 11, a sleeve as at 12 being threaded into the vertical section C of the casing, said sleeve hav ing an enlarged or shoulder portion 13 against which bears one end of the spring let, the opposite end of said spring lying within the recessed portion 15 of the block 19. The upper end of the rod 11 is preferably flattened as at 16 and is pivotally connected as at 17 to the end 18 of the yoke lever 19, the latter being fulcrumed as at 19a, and said lever extending lengthwise of the horizontal section of the casing-and is bifurcated or forked as at 20, said forked portion of the lever engaging the stud 21, carried by.' the arm 22 pivoted as at 23 to the casing. The free end of said arm 22,l is provided with a lug 24 with which engages one end of the spring 25, the opposite end of said spring eugaging with the lug 26 carried by the contact armv 27 which is pivoted to a stud 28 projecting from the wall of the casing. Carried by the free end of the arm 27 is the insulated block 29, which in turn carries the binding post 30 and contact member 31'. The numeral 32 designates a slot or opening in the top of the casing section, over which is fastenedthe insulated plate 33 carrying the other contact member 39, while 35 designates the binding post for the wire 36, said wire together with the Wire 87 leading to the motor (not shown).
At 38 I have shown a pin carried by the arm 2T, for limiting the upward movement of the movable contact. n
From the above description, taken in connection with the accompanying drawings, the construction and operation of my improved switch will be readily apparent to those skilled in the art to which it appertains. In the position shown in Fig. l, the contact members are in position closing the circuit to the motor, and said motor may be assumed to be running and driving the pumping mechanism. Should the pressure upon the underside of thel diaphragm 7 now exceed a predetermined point, said diaphragm will be raised slightly, thereby pushing up upon the rod ll against the tensi'on of the spring 14, swinging the lever 19 on its fulcrum point 19a, so that 'the yoked endfof said lever engaging the pin 21, pulls down the arm As said arm is connected through the spring 25 with the movable contact arm, as soon as said arm has passed a dead center, the spring which has been pulled downward toward the base of the casing section, will also pull down the contact arm Q7 and consequently bring the contact member 3l away from the member 311-, thereby breaking the circuit and causing the motor to stop. Conversely, as soon as the pressure upon the underside ot the diaphragm falls below a certain point, the action of the spring let, bearing upon the upper side of the diaphragm, will bring the contact members again into operative position, thereby making the circuit, thus starting the motor and the pumping. It it be desired to adjust the tension of the spring 14, so as to make the diaphragm responsive to a selected pressure, it is only necessary to turn the sleeve nut 12, to increase or decrease the tension on the spring let.
It will be seen that I have devised an exceedil'lgly simple, compact and efficient form ol. device, one presenting few delicate parts, thereby obviating the liability of the switch requiring frequentrepairs.
While I have herein shown and described one particular embodiment of my invention, I wish it to be understood that I do not confine myself to all the precise details of construction which I have herein shown by way of illustration, as. modification and variation may be made without departing from the spirit of the invention or exceeding the scope of the claims.
1. In combination with a fluid controlled diaphragm, a switch operated thereby comprising a rod'connected to the diaphragm, a pivotcd arm connected to said rod, a stationary contact, a swinging contact pivoted within an opening formed in said arm, a bifureated end on said arm, an elbow lever movable vertically upon pivotal movement of said arm through the medium of said bifurcation, and a spring connecting said movable cont-act with said elbow lever and adapted upon movement of said elbow lever past its dead center to move said movable contact into co-action with or awav from said stationary contact.
2. In combination with a fluid controlled diapl'iragm, a switch operated thereby coinprising a pivotcd arm enlarged and apertured at a substantially central point, a bitui-cated end on said arm, an elbow lever having one end fitting in said bifurcated end, a contact arm having a pivotal support within the apertured enlargement of said arm, a stationary contact, a tension spring connecting said movable contact and the other end of said elbow lever whereby said contact is moved after saidelbow lever passes a dead center, a rod connected to the shorter end oi said pivotcd arm and to the diaphragm, a compression spring surrounding said rod, and an adjustable collar for regulating the compression power ot said spring.
In testimony whereof I attix my signature in presence of two witnesses.
ALBERT B. STROHM.
' l/Yitnesses:
Josemi V. Raum-isos', A. L. Iininrs.
US59752310A 1910-12-15 1910-12-15 Automatic switch. Expired - Lifetime US993804A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US59752310A US993804A (en) 1910-12-15 1910-12-15 Automatic switch.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US59752310A US993804A (en) 1910-12-15 1910-12-15 Automatic switch.

Publications (1)

Publication Number Publication Date
US993804A true US993804A (en) 1911-05-30

Family

ID=3062137

Family Applications (1)

Application Number Title Priority Date Filing Date
US59752310A Expired - Lifetime US993804A (en) 1910-12-15 1910-12-15 Automatic switch.

Country Status (1)

Country Link
US (1) US993804A (en)

Similar Documents

Publication Publication Date Title
US2767277A (en) Control system for power operated fluid pumps
US2789176A (en) Pressure switch
US2170341A (en) Switch unit
US993804A (en) Automatic switch.
US2754388A (en) Pressure switch
US2268340A (en) Fluid pressure control device
US2616996A (en) Snap switch
US1394398A (en) Electric-switch mechanism
US2506208A (en) Switch
US1271220A (en) Electric switch.
US2178839A (en) Control device
US974328A (en) Fluid-pressure-controlled switching device.
US1802486A (en) Refrigerating apparatus
US1710859A (en) Switch mechanism
US1227230A (en) Electric pump-governor.
US965689A (en) Pressure-governor for electrically-operated pumps.
US706260A (en) Pressure-regulator.
US2732449A (en) Pressure controlled switch actuating mechanism
US775317A (en) Electric controller.
US1118188A (en) Electric switch.
US1903459A (en) Controlling apparatus
US866643A (en) Pressure-controller.
US1203287A (en) Electrical-switch mechanism.
US1049460A (en) Controller for electric motors.
US2239146A (en) Control device