US1055439A - Thermal motor. - Google Patents

Thermal motor. Download PDF

Info

Publication number
US1055439A
US1055439A US70255412A US1912702554A US1055439A US 1055439 A US1055439 A US 1055439A US 70255412 A US70255412 A US 70255412A US 1912702554 A US1912702554 A US 1912702554A US 1055439 A US1055439 A US 1055439A
Authority
US
United States
Prior art keywords
balance
bar
loops
thermal motor
temperature
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
US70255412A
Inventor
Charles A Anderson
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 US70255412A priority Critical patent/US1055439A/en
Application granted granted Critical
Publication of US1055439A publication Critical patent/US1055439A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • A—HUMAN NECESSITIES
    • A63—SPORTS; GAMES; AMUSEMENTS
    • A63H—TOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00—Other toys
    • A63H33/22—Optical, colour, or shadow toys

Definitions

  • My invention relates to motors of that general type wherein the motive effect is proucked through the agency of successive variations in temperature imparted to a metal member to cause alternate expanding and contracting or contracting and expanding movements of the latter.
  • Figure 1 is a side elevational view and Fig. 2 is a front elevational view of the form of the invention designed to operate through the application of heat, or a rise above normal temperature, in the local region.
  • Fig. 3 is a side-elevational view of a form of the invention designed to operate through the application of cold, or a fall below normal temperature in the local region.
  • Fig. 4 is an enlarged fragmentary detail of the laminated balance-bar used in the embodiment of the invention illustrated in Figs. 1 and 2.
  • Fig. 5 is a view similar to Fig. 4 of a fragment of the laminated balance-bar used in the embodiment of the invention shown in Fig. 3.
  • Fig.6 is an enlarged de-.
  • This balance-bar is formed with a pair of integral 100 s 17 approximately centrally thereof and coated on opposite sides of the pendulum rod 14.
  • On the outer ends of the balance-bar are preferably mounted equal balanced weights, herein shown as dummy" figures 18.
  • Supported near the base of the upright 11 is a shallow pan or holder 19 containing a concave mirror 20, the focal point of which lies mid-way between the loops 17 of the balance-bar when the latter is in neutral or balanced position.
  • the device is so positioned with reference to the suns rays, or the rays from any other source of heat, that the latter are caught by the mirror 20 and focused at a point, as stated, mid-way between the loops 17 of the balance-bar.
  • the lower metal strip 16 is the more sensitive, or possessed of the higher coeflicient of linear expansion.
  • the loops 17 are alternately brought into the focus of the heat rays from the mirror 20, thereby suddenly expanding the two metal layers of the balance-bar unequally, the inner layer of the coil being expanded more than the outer layer. and thereby throws the weight 18 at the end of the arm containing the loop thus afi'ectecl upwardly or toward the center and destroys the previously balanced condition of the two weights, thus causing the pendulum, balancebar and weights to begin a swinging motion. In this way the pendulum and the suspended balance-bar and weights are caused to swing back and forth continuously so long as the action of the heat-ray on the loops 17 is maintained.
  • the more sensitive metal '16 or that having the higher .coeflicient. of expansion. constitutes the upper layer of the balancebar and the outer layer of the loops17' since the disturbance of the balance is, 'in this.
  • the cylinder coat-' ing need be moistened only at very considerable intervals to keep the device continu- 'ously running.
  • the principle of the invention comprehends the j creation of a' local region of abnormal temperature (and bythe expression"? abnormal temperature Imean 'a temperature either above or below the mean ,or' normal temperature prevailing in the locality where the device hapgens to be) in association with a suspende' balance in which is formed a readily expansible orcontractible part that, under the swinging or rocking movement of the balance moves into or across such local region of abnormal temperature and by-its distortion destroys the equilibrium of the balance.
  • the principle of my invention is designed to be lemgloyed as an advertising novelty for window isplay to, attract attention, owing to the apparent mystery involved in the cause of sustained 'movement'of the balanced figures;
  • a thermostatic member comprising two parts having difierent coeflicients of expansion and united to. warp the member on change of temperature, a pivotal support, weights shift-able toward and from said pivotal support by warping of said thermostatic member, and means for producingya localized change in temperature in the vicinity of. said thermostatic member.
  • a balance-bar having formed therein between its ends an expansible, or contractible loop, means for pivotally supporting said balance-bar between its ends, and means for creating a local region of abnormal temperature into and out of which the loop ofsaid balance-bar passes as the latter oscillates.
  • a balance-bar having formed therein between its ends an cxpansible or contractible loop, means for pivotally supporting said balance-bar between its ends, balanced weights; on the opposite ends of said balance-bar, and means for creating a local region of abnormal temperature into and out of which the loop of said balance-bar passes as the latter oscillates.
  • the combination having unequal coeflicients 'of expansion formed with a loop intermediate its ends, means for pivotally supporting said balancebar between its ends, balanced weights on the opposite ends of said balance-bar, and means for creating a local region of abnormal temperature into and out of which the loop of said balance-bar passes as the latter oscillates.
  • a balance-bar made of two strips of metal having unequal coefficients of expansion formedwith a pair of loops intermediate its ends, means forpivotall supportin said balance-bar between sai loops, ba anced weights on the ends of said balance-bar, and means for creatingga local region of abnor-' mal temperature into and'out of which the loops of said balance-bar alternately passes the latter oscillates.

Landscapes

  • Toys (AREA)

Description

G. A. ANDERSON.
THERMAL MOTOR.
APPLICATION FILED JUNE 8, 1912.
1,055,439. Patented Mar. 11 1913.
CHARLES A. ANDERSON, OF CHICAGO, ILLINOIS.
THERMAL MOTOR.
Specification of Letters Patent.
Patented Mar.11,1913.
Application flled June 8, 1912. Serial No. 702,554.
To all whom it may concern:
Be it known that I, CHARLES A. ANDER- son, a citizen of the United States, residing at Chicago, in the county of Cook and State of Illinois, have invented certain new and useful Improvements in Thermal Motors, of which the following is a specification.
My invention relates to motors of that general type wherein the motive effect is pro duced through the agency of successive variations in temperature imparted to a metal member to cause alternate expanding and contracting or contracting and expanding movements of the latter.
The principle of my invention can be carried out through the creation in a local region of variations either above or below,
, surrounding temperature.
I have herein illustrated my invention as taking the form of a toy balance; but the princlple is capable of embodiment in a great variety of different forms as well as application to a considerable variety of dif-. ferent uses.
Referring to the accompanying drawings, Figure 1 is a side elevational view and Fig. 2 is a front elevational view of the form of the invention designed to operate through the application of heat, or a rise above normal temperature, in the local region. Fig. 3 is a side-elevational view of a form of the invention designed to operate through the application of cold, or a fall below normal temperature in the local region. Fig. 4 is an enlarged fragmentary detail of the laminated balance-bar used in the embodiment of the invention illustrated in Figs. 1 and 2. Fig. 5 is a view similar to Fig. 4 of a fragment of the laminated balance-bar used in the embodiment of the invention shown in Fig. 3. Fig.6 is an enlarged de-.
tail view in cross section through one of the bearings of the balance-bar.
.On knife-edge bearings 14" a pendulum rod by hangers 12 a pair of bear- 14. Secured to the lower end of said pendulum rod, as by soldering or otherwise, is the balance-bar which, as shown in Fig. 4, is a laminated structure comprisin two metal strips of unequal coefficients of inear expansion soldered together, one of said strips being designated by 15 and the other by 16.
This balance-bar is formed with a pair of integral 100 s 17 approximately centrally thereof and coated on opposite sides of the pendulum rod 14. On the outer ends of the balance-bar are preferably mounted equal balanced weights, herein shown as dummy" figures 18. Supported near the base of the upright 11 is a shallow pan or holder 19 containing a concave mirror 20, the focal point of which lies mid-way between the loops 17 of the balance-bar when the latter is in neutral or balanced position. In the operation of this form of the invention, the device is so positioned with reference to the suns rays, or the rays from any other source of heat, that the latter are caught by the mirror 20 and focused at a point, as stated, mid-way between the loops 17 of the balance-bar. In the balance-bar shown in Figs. 1, 2 and 4 the lower metal strip 16 is the more sensitive, or possessed of the higher coeflicient of linear expansion. By starting the figures 18 and the balance-bar in a rocking or see-saw motion by the finger, the loops 17 are alternately brought into the focus of the heat rays from the mirror 20, thereby suddenly expanding the two metal layers of the balance-bar unequally, the inner layer of the coil being expanded more than the outer layer. and thereby throws the weight 18 at the end of the arm containing the loop thus afi'ectecl upwardly or toward the center and destroys the previously balanced condition of the two weights, thus causing the pendulum, balancebar and weights to begin a swinging motion. In this way the pendulum and the suspended balance-bar and weights are caused to swing back and forth continuously so long as the action of the heat-ray on the loops 17 is maintained.
In the form of the invention illustrated in Figs. 3 and 5, I produce the same effect by causing the loops 17' to be alternately This expands the coil affected by decreases in the normal tempera- Q I 17 1,oss,4so, 1 1
of upstanding metal lugs'22' sopositioned that the loops 17- of thebalanoe-bar, as the latter swings, alternately move to positions between them. vThe major-portion of the cylinder 21 is wrapped with a moisturebsorbent material, such as any suitable cloth 23, which is saturated by water, alcohol,
'gasolene, or anymore or less volatile liquid.
The evaporation of this moisture is, of course,-attended by a lowering of the-temperature of the cylinder 21 andits lugs 22 below the normal temperature obtaining in the room or other place where the device happens to be. In this form .of the, invention the more sensitive metal '16 or that having the higher .coeflicient. of expansion. constitutes the upper layer of the balancebar and the outer layer of the loops17' since the disturbance of the balance is, 'in this.
case, produced by the 1 greater contracting movement of the more sensitive metal 16, as the coil swings into or across the region of abnormal cold between the two lugs 22. In this form of the invention, the cylinder coat-' ing need be moistened only at very considerable intervals to keep the device continu- 'ously running.
twov arms of zontallyor do nwardly from the loops, instead of v upwardly, as shown, the described It will be olgious' that, in where the relative? arrangement of thestrips of the balance-bar would be simply reversed, since in suchc'ases the contracting'action of the loops 17 and 17 would alternately disturb the balanced condition of the weights by throwingthe latter inwardly orrtoward the axis f suspension, precisely asoccurs in the device shown and described under the expanding-action of the loops. f
From the foregoing it will be seen that the principle of the invention comprehends the j creation of a' local region of abnormal temperature (and bythe expression"? abnormal temperature Imean 'a temperature either above or below the mean ,or' normal temperature prevailing in the locality where the device hapgens to be) in association with a suspende' balance in which is formed a readily expansible orcontractible part that, under the swinging or rocking movement of the balance moves into or across such local region of abnormal temperature and by-its distortion destroys the equilibrium of the balance. i In its chief intended application, the principle of my invention is designed to be lemgloyed as an advertising novelty for window isplay to, attract attention, owing to the apparent mystery involved in the cause of sustained 'movement'of the balanced figures;
, although the device-constitutes also a clever means for changing the temperature locally the balance-bar extend horiof a balance-barmade, of two strips of metal and attractive toy to interest and amuse l, children.
I. claim- 1. In a thermal motor, members .movably mounted in approximate equilibrium, a thermostatic member opera ively associated with said movably .mounte ,members, and
in the vicinity of said thermostatic member. 2. In a .thermal motor, a thermostatic member comprising two parts having difierent coeflicients of expansion and united to. warp the member on change of temperature, a pivotal support, weights shift-able toward and from said pivotal support by warping of said thermostatic member, and means for producingya localized change in temperature in the vicinity of. said thermostatic member. 1 3. In a thermal motor,the combination of a balance-bar having formed therein between its ends an expansible, or contractible loop, means for pivotally supporting said balance-bar between its ends, and means for creating a local region of abnormal temperature into and out of which the loop ofsaid balance-bar passes as the latter oscillates. I 4. In a thermal motor, the combination of a balance-bar having formed therein between its ends an cxpansible or contractible loop, means for pivotally supporting said balance-bar between its ends, balanced weights; on the opposite ends of said balance-bar, and means for creating a local region of abnormal temperature into and out of which the loop of said balance-bar passes as the latter oscillates.
5. In a thermal motor, the combination having unequal coeflicients 'of expansion formed with a loop intermediate its ends, means for pivotally supporting said balancebar between its ends, balanced weights on the opposite ends of said balance-bar, and means for creating a local region of abnormal temperature into and out of which the loop of said balance-bar passes as the latter oscillates. i
6. In a thermal motor, the combination of a balance-bar made of two strips of metal having unequal coefficients of expansion formedwith a pair of loops intermediate its ends, means forpivotall supportin said balance-bar between sai loops, ba anced weights on the ends of said balance-bar, and means for creatingga local region of abnor-' mal temperature into and'out of which the loops of said balance-bar alternately passes the latter oscillates. I CHARLES A. ANDERSON. Witnesses:
SAMUEL N. Pom), -EDMUND G. INGERSOLL.
US70255412A 1912-06-08 1912-06-08 Thermal motor. Expired - Lifetime US1055439A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US70255412A US1055439A (en) 1912-06-08 1912-06-08 Thermal motor.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US70255412A US1055439A (en) 1912-06-08 1912-06-08 Thermal motor.

Publications (1)

Publication Number Publication Date
US1055439A true US1055439A (en) 1913-03-11

Family

ID=3123697

Family Applications (1)

Application Number Title Priority Date Filing Date
US70255412A Expired - Lifetime US1055439A (en) 1912-06-08 1912-06-08 Thermal motor.

Country Status (1)

Country Link
US (1) US1055439A (en)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2687005A (en) * 1950-12-13 1954-08-24 Meyercord Co Heat-actuated device for imparting oscillating motion
US2999943A (en) * 1959-12-08 1961-09-12 Hoffman Electronics Corp Self-orienting heliotropic device
US4307571A (en) * 1979-07-27 1981-12-29 Jackson Robert E Device driven by heat energy

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2687005A (en) * 1950-12-13 1954-08-24 Meyercord Co Heat-actuated device for imparting oscillating motion
US2999943A (en) * 1959-12-08 1961-09-12 Hoffman Electronics Corp Self-orienting heliotropic device
US4307571A (en) * 1979-07-27 1981-12-29 Jackson Robert E Device driven by heat energy

Similar Documents

Publication Publication Date Title
USRE22900E (en) Power unit fob amusement devices
US2078729A (en) Structural gyroscopic phenomena
US2398471A (en) Power unit for amusement devices and the like
US1005963A (en) Centrifugal machine.
US2890536A (en) Mobile
US1537484A (en) Dancing doll
US2382928A (en) Thermal motor
JPS6053677A (en) Seesaw type centroid-shiftable thermal engine
US2687005A (en) Heat-actuated device for imparting oscillating motion
US646314A (en) Governor.
US2178351A (en) Gyroscopic stabilizer
US916105A (en) Automaton.
US2687007A (en) Oscillating device activated by blmetallic element and provided with automatic ambient temperature compensating means
US2611973A (en) Gyrocompass
US2382182A (en) Bimetallic actuator
US1290866A (en) Thermostatic circuit-closer.
US1319379A (en) d eemer
US1136911A (en) Mechanical movement.
US2300548A (en) Erecting means for gyroscopes
US2161871A (en) Automatic means for varying compass card oscillation
US6012959A (en) Thermal- powered rocking device
US1022385A (en) Apparatus for measuring the velocity and direction of the marine undercurrents.
US163851A (en) Improvement in cartesian toys
US1523505A (en) Thermostat
GB307596A (en) Improvements in or relating to means for converting radiant heat energy into mechanical energy