EP0112919A1 - Drive motor assembly and turntable utilizing the same - Google Patents

Drive motor assembly and turntable utilizing the same

Info

Publication number
EP0112919A1
EP0112919A1 EP83902592A EP83902592A EP0112919A1 EP 0112919 A1 EP0112919 A1 EP 0112919A1 EP 83902592 A EP83902592 A EP 83902592A EP 83902592 A EP83902592 A EP 83902592A EP 0112919 A1 EP0112919 A1 EP 0112919A1
Authority
EP
European Patent Office
Prior art keywords
spring
platform
gear
motor assembly
drive motor
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.)
Withdrawn
Application number
EP83902592A
Other languages
German (de)
French (fr)
Other versions
EP0112919A4 (en
Inventor
Allen M. Danley
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.)
Plastics Inc
Original Assignee
Plastics Inc
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 Plastics Inc filed Critical Plastics Inc
Publication of EP0112919A1 publication Critical patent/EP0112919A1/en
Publication of EP0112919A4 publication Critical patent/EP0112919A4/en
Withdrawn legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B6/00Heating by electric, magnetic or electromagnetic fields
    • H05B6/64Heating using microwaves
    • H05B6/6408Supports or covers specially adapted for use in microwave heating apparatus
    • H05B6/6411Supports or covers specially adapted for use in microwave heating apparatus the supports being rotated
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K7/00Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
    • H02K7/10Structural association with clutches, brakes, gears, pulleys or mechanical starters

Definitions

  • This invention pertains generally to microwave heating and cooking apparatus, and more particularly to a portable turntable and drive motor assembly for use in a microwave oven.
  • OMP U. S. Patent 4,330,696 describes a portable turntable in which the drive motor is positioned to one side of the platform, thereby avoiding the problems of turntables having the drive motor beneath the platform. With the drive motor positioned to the side of the turntable, however, problems can still arise with certain contain ⁇ ers and certain food products which extend laterally beyond the edge of the platform and strike the motor assembly as they are rotated.
  • Another object of the invention is to provide a turn ⁇ table and drive motor assembly of the above character in which the motor assembly is positioned to one side of the turntable platform and has a height no greater than the height of the platform to provide vertical clearance between the motor assembly and overhanging objects carried by the platform.
  • Another object of the invention is to provide a turn ⁇ table and drive motor assembly of the above character which can be manufactured economically.
  • a portable turntable having a base, a platform rotatively mounted on the base, and a drive motor assembly mounted on the base to one side of the platform for rotatively driving the platform.
  • the drive motor assembly has a height no greater than the height of the platform whereby vertical clearance is provided between the motor assembly and any overhanging object carried by the platform so that the motor assem ⁇ bly will not interfere with the rotation of that object.
  • the drive motor assembly comprises an energy storage spring mounted in spiral fashion in a generally horizontal plane, an output member rotatively driven by the spring for imparting rotation to the platform, and an escapement positioned beside the spring in the horizontal plane for regulating the speed at which the output member is rotated.
  • Fig. 1 is a perspective view of one embodiment of a portable turntable and drive motor assembly according to the invention.
  • Fig. 2 is an enlarged centerline sectional view taken along line 2-2 in Fig. 1.
  • Fig. 3 is a bottom plan view of the drive motor assembly in the embodiment of Fig. 1.
  • Fig. 4 is an enlarged horizontal sectional view of the drive motor assembly in the embodiment of Fig. 1.
  • Fig. 5 is a cross-sectional view taken along line 5-5 in Fig. 4.
  • Fig. 6 is a cross-sectional view taken along line 6-6 in Fig. 4.
  • the turntable comprises a generally planar base 11 adapted to rest on a supporting surface such as the floor of a microwave oven cavity, a food- supporting platform 12 rotatively mounted on the
  • OMPI base OMPI base
  • drive motor assembly 13 removably mounted on the base to one side of the platform for rotatively driving the platform.
  • Base 11 has a generally circular central portion 16 on which the platform is mounted, a flange portion 17 which extends from one side of the central portion for receiv ⁇ ing the drive motor assembly, and a pair of handles 18 which project upwardly and outwardly from opposite sides of the central portion.
  • Flange portion 17 is generally rectangular in plan view, with beveled outer corners 19 to facilitate placement in the corner of the rectangular oven cavity.
  • the flange portion has an upstanding peripheral rim 21 which serves to retain the motor assembly laterally in position on the base.
  • a plurality of mounting feet 22 project from the underside of the base in spaced apart locations and rest upon the oven cavity floor or other supporting surface.
  • Platform 12 comprises a generally planar horizontally extending deck 26 with a depending peripheral skirt 27 of substantially lesser dimension than the diameter of the deck whereby the platform has a low profile.
  • the platform has a height on the order of one inch and a diameter on the order of ten inches.
  • the platform is journalled for rotation about its axis by a depending axle 28 received in a bearing 29 carried by the_ base at center of portion 16.
  • the underside of deck 27 rests upon rollers 31 carried by the base at locations spaced about the axis of rotation, whereby the platform is supported for rolling movement about the axis.
  • a plurality of radially extending ribs 33 and a periph ⁇ eral ' rim 34 project upwardly from the upper surface of
  • the ribs provide means by which the platform can be gripped and turned manually to wind the drive motor spring.
  • the ribs minimize the area of contact between the platform and objects carried by the platform and permit air to circulate between the platform and the objects. This serves to reduce the transfer of heat from the objects to the platform, providing better heating of the objects and reducing the possibility that someone using the turntable will be burned by contact with a hot platform.
  • a peripheral ring of outwardly facing gear teeth 36 is formed in the lower portion of the platform skirt for meshing engagement with the output gear of the drive motor assembly.
  • base 11 and plat ⁇ form 12 are each fabricated as a unitary structure of a plastic material which does not interact with microwave energy.
  • a plastic material which does not interact with microwave energy.
  • One preferred material is a modified thermoset .. plastic as used, in the MICRO ARE cookware of Plastics, Inc., St. Paul, Minnesota.
  • Other suitable materials for a turntable intended for use in a microwave oven include polysulfone, thermoplastic polyesters, polypropylene, polycarbonate, polystyrene, acrylonitrile, butadiene, styrene, polyphenylene oxide, acrylic and polyethylene.
  • Drive motor assembly 13 includes a housing 37 comprising a base member 38 and a cover '39.
  • Base member 38 com ⁇ prises a generally planar plate 41 having the same general contour as the flange portion 17 of turntable base 11, with depending flanges 42 which mate with peripheral rim 21 to retain the motor assembly on the base.
  • Cover 39 includes a generally planar top wall 43 and a depending side wall having a contour corresponding to the periphery of base plate 41.
  • Cover 39 is secured to base plate 41 by studs 40a which extend from the lower portion of the cover through openings 40b in the base plate and are fixed to sonic welding on the under- side of the base plate.
  • the overall height of the motor housing is such that the upper surface of top wall 43 is no higher than the top of platform 12. This relation ⁇ ship is significant because it provides vertical clear ⁇ ance between the motor assembly and overhanging food products or other objects which extend laterally beyond the periphery of the platform, thereby preventing possible interference with the rotation of such objects.
  • An energy storage spring 46 is enclosed within a shield ⁇ ing enclosure 47 fabricated of a material such as metal which is reflective to microwave energy.
  • This enclosure is mounted on the upper side of base plate 41 between the base plate and cover 39 and includes a pair of cup-shaped sections 48, 49 having generally planar top/bottom walls 48a, 49a and generally cylindrical side walls 48b, 49b which are pressed together to form a microwave-tight enclosure.
  • Spring 46 comprises an elongated strip of suitable material such as stainless steel wound in spiral fashion in a generally horizontal plane about a vertically extending arbor 51.
  • the outer end of the spring is affixed to the enclosure, and the inner end is formed with a loop or hook 46a which is received in a notch 51a of generally sector-shaped cross-sectional area in one side of the arbor body.
  • This provides a positive connection both when the arbor is rotated in the proper direction (i.e., counter ⁇ clockwise in Fig. 4) to wind the spring and when the spring is turning the arbor in the opposite direction.
  • the arbor will ' turn freely within the innermost convolution of the spring, whereby the spring is protected from damage due to winding in the wrong direction.
  • the arbor is jour- nalled for rotation in bushings 52, 53 on the upper and lower walls of the enclosure. As best seen in Fig.
  • each of the bushings includes a downwardly extending cylindrical flange formed as a unitary structure with the wall of the enclosure on which it is located.
  • the downwardly extending flange of the upper bushing is received in an annular recess 54 formed in the upper surface of the body portion of arbor 51.
  • the diameters and lengths of the openings in the bushings are selected to form microwave attenuating passageways, whereby microwave energy is prevented from entering enclosure 47.
  • the height of enclosure 47 is substantially equal to the distance between the underside of housing cover 39 and the upper surface of base plate 41, and the enclosure is retained in position in the housing by bosses 50a which project downwardly from the bottom wall 49a of the enclosure and are received in sockets 50b in the upper surface of plate 41.
  • the arbor 51 is positioned eccentrically of enclosure 47, being offset forwardly toward the turntable platform and to one side of the center of the enclosure.
  • motor arbor 51 extends through an opening 56 in base plate 41, and a drive gear or output gear 57 is affixed to the lower end of the arbor below the base plate. This gear projects beyond the platform side of the motor housing and meshes in driving rela- tionship with the gear teeth 36 on the platform.
  • An escapement mechanism 59 is mounted within the motor housing to one side of enclosure 47 for regulating the
  • This mechanism includes upper and lower gear plates 61, 62 which are held in spaced, parallel relationship by posts 63, with a gear train comprising an input gear 66, an intermediate gear 67 and a ratchet gear or star wheel 68 mounted between the plates.
  • Input gear 66 has an axle portion which extends through a downwardly extend ⁇ ing boss 69 in gear plate 62 and an opening 70 in base plate 41.
  • a transfer gear 71 is affixed to the lower portion of the axle portion below the base plate in driving engagement with output gear 57.
  • Ratchet gear 68 drives a governor or pendulum 72 which is typically mounted between gear plates 61, 62.
  • the escapement gear train provides a step up ratio of 144:1, and output gear 57 rotates at a speed of about 1.5 rpm.
  • the gear ratio between the output gear and the turntable platform gear is 3.42:1, and a spring wound around the motor arbor for 45 turns provides 30 minutes of platform rotation at a speed of about 0.43 rpm.
  • the distance between the upper side of gear plate 61 and the lower side of gear plate 62 is approximately equal to the distance between the lower surface of cover 39 and the upper surface of base plate 41, and the escape- ment mechanism is retained in position in the motor housing by boss 69 and opening 70 and by additional bosses and sockets (not shown) on the lower gear plate and the base plate.
  • An ON/OFF switch 73 provides means for preventing spring 46 from rotating output gear 57 when the spring is in its wound or partially wound condition.
  • This switch includes a body having a manually engagable handle 74 which extends outwardly through an opening 76 in the side wall of motor housing 37, and an inwardly extending tang 77 which engages the escapement pendulum to prevent oscillation of the same when the switch is in its OFF position, as shown by solid lines in Fig. 4.
  • the switch body is slidably mounted for movement in a track formed by a pair of generally parallel ribs 78 on the upper side of base plate 41. A corresponding track is formed on the underside of cover 39 by a rib (not shown) and the side wall of the housing.
  • the axis of intermediate gear 67 shifts between two positions in response to rotation of output gear 57 in opposite directions.
  • output gear is driven in the normal direction (clockwise as viewed in Fig. 4) by spring 46
  • input gear 66 rotates in the counterclockwise direction
  • intermediate gear 67 is held in driving engagement with ratchet gear 68, as illustrated by solid lines in Fig. 4.
  • output gear 57 is rotated in the counterclockwise direction (e.g., by turning platform 12 manually in the clockwise direction to wind spring 46)
  • drive gear 66 rotates in the counterclockwise direction, shifting intermediate gear 57 out of engagement with ratchet gear 68, as illustrated by dashed lines in Fig. 4.
  • the motor spring cap be wound with switch 73 in either the ON position or the OFF position.
  • Support for gear 67 in its shifting movement is provided by an arcuate flange 81 which projects upwardly from lower gear plate 62.
  • output gear 57 In one presently preferred embodiment, output gear 57, transfer gear 71, and the entire escapement mechanism
  • OMPI are fabricated of a non-metallic material such as a plastic which does not interact with microwave energy.
  • gears and gear plates are polycarbonate with 10-15% PTFE for lubrication and 10-20% glass fibers for reinforcement.
  • Housing 37 is likewise fabricated of a plastic material such as polycarbonate.
  • the turntable is placed in the cavity of a microwave oven, with the drive motor assembly in a corner of the cavity, the food product or other object to be heated is placed on the platform, and switch 73 is placed in the ON position to permit the drive gear and the platform to be rotated by the motor spring. Rotation of the plat ⁇ form can be stopped at any time by moving the switch to the OFF position.
  • the platform can be rotated to wind the spring when the turntable is inside the oven cavity as well as outside the oven.
  • the turntable and drive motor assembly have a number of important features and advantages. Being positioned to one ' side of the turntable platform and being of relatively low profile, the drive motor assembly will not interfere with the rotation of food products and other objects which extend laterally from the platform. Since the platform and the drive motor are removably mounted on the base, the turntable is readily disassem ⁇ bled for cleaning.
  • the turntable and the motor assembly are rugged and reliable in operation, and they require relatively few parts, most of which can be fabricated of plastic by a relatively inexpensive molding process. Moreover, no screws or other fasteners are required in the assembly of the drive motor unit, and this enables the device to be manufactured even more economically. Additionally, the motor assembly is essentially tamper- proof once it is put together so that it is not likely to be damaged by being taken apart by the user.

Landscapes

  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Electric Ovens (AREA)
  • Rotational Drive Of Disk (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

Plaque tournante portative et unité motrice d'entraînement utilisées dans les fours à micro-ondes. L'unité motrice d'entraînement (13) est disposée sur un côté de la plate-forme (12) de la plaque tournante; son profil est plat pour ne pas gêner la rotation d'objets dépassant de la plate-forme (12). Dans le mode principal de réalisation, le moteur d'entraînement est un moteur à ressort.Portable turntable and drive motor unit used in microwave ovens. The drive motor unit (13) is arranged on one side of the turntable platform (12); its profile is flat so as not to hinder the rotation of objects protruding from the platform (12). In the main embodiment, the drive motor is a spring motor.

Description

DRIVE MOTOR ASSEMBLY AND TURNTABLE UTILIZING THE SAME
This invention pertains generally to microwave heating and cooking apparatus, and more particularly to a portable turntable and drive motor assembly for use in a microwave oven.
In recent years, portable turntables have been provided for use in microwave ovens. Examples of portable turntables utilizing spring operated drive motors are found in U. S. Patents 4,216,727, 4,239,009, 4,254,319 and 4,258,630. In each of these turntables, the drive motor is positioned beneath the rotating platform, and this arrangement has certain limitations and disadvan¬ tages, such as interference with the distribution of microwave energy below the platform, raising the plat- form so that food carried thereby will be out of the region in which some ovens heat most effectively, and limiting the height of food products which can be cooked in some ovens. Other examples of turntables in which the drive motor is positioned below the platform are found in U. S. Patent 4,219,715 and in Japanese Utility Model Application No. 52-92454.
OMP U. S. Patent 4,330,696 describes a portable turntable in which the drive motor is positioned to one side of the platform, thereby avoiding the problems of turntables having the drive motor beneath the platform. With the drive motor positioned to the side of the turntable, however, problems can still arise with certain contain¬ ers and certain food products which extend laterally beyond the edge of the platform and strike the motor assembly as they are rotated.
It is in general an object of the invention to provide a new and improved turntable and drive motor assembly which overcome the foregoing and other disadvantages of turntables and motor assemblies heretofore provided for use in microwave ovens.
Another object of the invention is to provide a turn¬ table and drive motor assembly of the above character in which the motor assembly is positioned to one side of the turntable platform and has a height no greater than the height of the platform to provide vertical clearance between the motor assembly and overhanging objects carried by the platform.
Another object of the invention is to provide a turn¬ table and drive motor assembly of the above character which can be manufactured economically.
These and other objects are achieved in accordance with the invention by providing a portable turntable having a base, a platform rotatively mounted on the base, and a drive motor assembly mounted on the base to one side of the platform for rotatively driving the platform. The drive motor assembly has a height no greater than the height of the platform whereby vertical clearance is provided between the motor assembly and any overhanging object carried by the platform so that the motor assem¬ bly will not interfere with the rotation of that object. In one presently preferred embodiment, the drive motor assembly comprises an energy storage spring mounted in spiral fashion in a generally horizontal plane, an output member rotatively driven by the spring for imparting rotation to the platform, and an escapement positioned beside the spring in the horizontal plane for regulating the speed at which the output member is rotated.
Fig. 1 is a perspective view of one embodiment of a portable turntable and drive motor assembly according to the invention.
Fig. 2 is an enlarged centerline sectional view taken along line 2-2 in Fig. 1.
Fig. 3 is a bottom plan view of the drive motor assembly in the embodiment of Fig. 1.
Fig. 4 is an enlarged horizontal sectional view of the drive motor assembly in the embodiment of Fig. 1.
Fig. 5 is a cross-sectional view taken along line 5-5 in Fig. 4.
Fig. 6 is a cross-sectional view taken along line 6-6 in Fig. 4.
As illustrated in Fig. 1, the turntable comprises a generally planar base 11 adapted to rest on a supporting surface such as the floor of a microwave oven cavity, a food- supporting platform 12 rotatively mounted on the
" l E
OMPI base, and a drive motor assembly 13 removably mounted on the base to one side of the platform for rotatively driving the platform.
Base 11 has a generally circular central portion 16 on which the platform is mounted, a flange portion 17 which extends from one side of the central portion for receiv¬ ing the drive motor assembly, and a pair of handles 18 which project upwardly and outwardly from opposite sides of the central portion. Flange portion 17 is generally rectangular in plan view, with beveled outer corners 19 to facilitate placement in the corner of the rectangular oven cavity. The flange portion has an upstanding peripheral rim 21 which serves to retain the motor assembly laterally in position on the base. A plurality of mounting feet 22 project from the underside of the base in spaced apart locations and rest upon the oven cavity floor or other supporting surface.
Platform 12 comprises a generally planar horizontally extending deck 26 with a depending peripheral skirt 27 of substantially lesser dimension than the diameter of the deck whereby the platform has a low profile. In one present embodiment, for example, the platform has a height on the order of one inch and a diameter on the order of ten inches. The platform is journalled for rotation about its axis by a depending axle 28 received in a bearing 29 carried by the_ base at center of portion 16. The underside of deck 27 rests upon rollers 31 carried by the base at locations spaced about the axis of rotation, whereby the platform is supported for rolling movement about the axis.
A plurality of radially extending ribs 33 and a periph¬ eral' rim 34 project upwardly from the upper surface of
OMP the platform deck. The ribs provide means by which the platform can be gripped and turned manually to wind the drive motor spring. In addition, the ribs minimize the area of contact between the platform and objects carried by the platform and permit air to circulate between the platform and the objects. This serves to reduce the transfer of heat from the objects to the platform, providing better heating of the objects and reducing the possibility that someone using the turntable will be burned by contact with a hot platform.
A peripheral ring of outwardly facing gear teeth 36 is formed in the lower portion of the platform skirt for meshing engagement with the output gear of the drive motor assembly.
In one presently preferred embodiment, base 11 and plat¬ form 12 are each fabricated as a unitary structure of a plastic material which does not interact with microwave energy. One preferred material is a modified thermoset .. plastic as used, in the MICRO ARE cookware of Plastics, Inc., St. Paul, Minnesota. Other suitable materials for a turntable intended for use in a microwave oven include polysulfone, thermoplastic polyesters, polypropylene, polycarbonate, polystyrene, acrylonitrile, butadiene, styrene, polyphenylene oxide, acrylic and polyethylene.
Drive motor assembly 13 includes a housing 37 comprising a base member 38 and a cover '39. Base member 38 com¬ prises a generally planar plate 41 having the same general contour as the flange portion 17 of turntable base 11, with depending flanges 42 which mate with peripheral rim 21 to retain the motor assembly on the base. Cover 39 includes a generally planar top wall 43 and a depending side wall having a contour corresponding to the periphery of base plate 41. Cover 39 is secured to base plate 41 by studs 40a which extend from the lower portion of the cover through openings 40b in the base plate and are fixed to sonic welding on the under- side of the base plate. The overall height of the motor housing is such that the upper surface of top wall 43 is no higher than the top of platform 12. This relation¬ ship is significant because it provides vertical clear¬ ance between the motor assembly and overhanging food products or other objects which extend laterally beyond the periphery of the platform, thereby preventing possible interference with the rotation of such objects.
An energy storage spring 46 is enclosed within a shield¬ ing enclosure 47 fabricated of a material such as metal which is reflective to microwave energy. This enclosure is mounted on the upper side of base plate 41 between the base plate and cover 39 and includes a pair of cup-shaped sections 48, 49 having generally planar top/bottom walls 48a, 49a and generally cylindrical side walls 48b, 49b which are pressed together to form a microwave-tight enclosure. Spring 46 comprises an elongated strip of suitable material such as stainless steel wound in spiral fashion in a generally horizontal plane about a vertically extending arbor 51. The outer end of the spring is affixed to the enclosure, and the inner end is formed with a loop or hook 46a which is received in a notch 51a of generally sector-shaped cross-sectional area in one side of the arbor body. This provides a positive connection both when the arbor is rotated in the proper direction (i.e., counter¬ clockwise in Fig. 4) to wind the spring and when the spring is turning the arbor in the opposite direction. However, when the spring is fully unwound, the arbor will' turn freely within the innermost convolution of the spring, whereby the spring is protected from damage due to winding in the wrong direction. The arbor is jour- nalled for rotation in bushings 52, 53 on the upper and lower walls of the enclosure. As best seen in Fig. 5, each of the bushings includes a downwardly extending cylindrical flange formed as a unitary structure with the wall of the enclosure on which it is located. The downwardly extending flange of the upper bushing is received in an annular recess 54 formed in the upper surface of the body portion of arbor 51. The diameters and lengths of the openings in the bushings are selected to form microwave attenuating passageways, whereby microwave energy is prevented from entering enclosure 47. The height of enclosure 47 is substantially equal to the distance between the underside of housing cover 39 and the upper surface of base plate 41, and the enclosure is retained in position in the housing by bosses 50a which project downwardly from the bottom wall 49a of the enclosure and are received in sockets 50b in the upper surface of plate 41.
As best seen in Fig. 5, the arbor 51 is positioned eccentrically of enclosure 47, being offset forwardly toward the turntable platform and to one side of the center of the enclosure.
The lower portion of motor arbor 51 extends through an opening 56 in base plate 41, and a drive gear or output gear 57 is affixed to the lower end of the arbor below the base plate. This gear projects beyond the platform side of the motor housing and meshes in driving rela- tionship with the gear teeth 36 on the platform.
An escapement mechanism 59 is mounted within the motor housing to one side of enclosure 47 for regulating the
OMPI speed at which output gear 57 is rotated by spring 46.
This mechanism includes upper and lower gear plates 61, 62 which are held in spaced, parallel relationship by posts 63, with a gear train comprising an input gear 66, an intermediate gear 67 and a ratchet gear or star wheel 68 mounted between the plates. Input gear 66 has an axle portion which extends through a downwardly extend¬ ing boss 69 in gear plate 62 and an opening 70 in base plate 41. A transfer gear 71 is affixed to the lower portion of the axle portion below the base plate in driving engagement with output gear 57. Ratchet gear 68 drives a governor or pendulum 72 which is typically mounted between gear plates 61, 62. In one presently preferred embodiment, the escapement gear train provides a step up ratio of 144:1, and output gear 57 rotates at a speed of about 1.5 rpm. The gear ratio between the output gear and the turntable platform gear is 3.42:1, and a spring wound around the motor arbor for 45 turns provides 30 minutes of platform rotation at a speed of about 0.43 rpm.
The distance between the upper side of gear plate 61 and the lower side of gear plate 62 is approximately equal to the distance between the lower surface of cover 39 and the upper surface of base plate 41, and the escape- ment mechanism is retained in position in the motor housing by boss 69 and opening 70 and by additional bosses and sockets (not shown) on the lower gear plate and the base plate.
An ON/OFF switch 73 provides means for preventing spring 46 from rotating output gear 57 when the spring is in its wound or partially wound condition. This switch includes a body having a manually engagable handle 74 which extends outwardly through an opening 76 in the side wall of motor housing 37, and an inwardly extending tang 77 which engages the escapement pendulum to prevent oscillation of the same when the switch is in its OFF position, as shown by solid lines in Fig. 4. The switch body is slidably mounted for movement in a track formed by a pair of generally parallel ribs 78 on the upper side of base plate 41. A corresponding track is formed on the underside of cover 39 by a rib (not shown) and the side wall of the housing. When the switch is in its ON position, as illustrated by dashed lines in Fig. 4, tang 77 is positioned clear of pendulum 72, and the pendulum is freed to oscillate.
As best illustrated in Fig. 4, the axis of intermediate gear 67 shifts between two positions in response to rotation of output gear 57 in opposite directions. When the output gear is driven in the normal direction (clockwise as viewed in Fig. 4) by spring 46, input gear 66 rotates in the counterclockwise direction, and intermediate gear 67 is held in driving engagement with ratchet gear 68, as illustrated by solid lines in Fig. 4. When, however, output gear 57 is rotated in the counterclockwise direction (e.g., by turning platform 12 manually in the clockwise direction to wind spring 46) , drive gear 66 rotates in the counterclockwise direction, shifting intermediate gear 57 out of engagement with ratchet gear 68, as illustrated by dashed lines in Fig. 4. Thus, the motor spring cap be wound with switch 73 in either the ON position or the OFF position. Support for gear 67 in its shifting movement is provided by an arcuate flange 81 which projects upwardly from lower gear plate 62.
In one presently preferred embodiment, output gear 57, transfer gear 71, and the entire escapement mechanism
OMPI are fabricated of a non-metallic material such as a plastic which does not interact with microwave energy.
One suitable material for the gears and gear plates is polycarbonate with 10-15% PTFE for lubrication and 10-20% glass fibers for reinforcement. Housing 37 is likewise fabricated of a plastic material such as polycarbonate.
Operation and use of the turntable and drive motor assembly is as follows. With platform 12 and drive motor assembly 13 mounted on base 11 as illustrated in Fig. 1, motor spring 47 can be wound around arbor 51 by rotating the platform manually in the clockwise direc¬ tion as viewed from above. Of the turntable is turned in the opposite direction, arbor 51 will turn freely within the spring when the spring is in its fully unwound or relaxed condition, so that the spring cannot be damaged by winding in the wrong direction. ON/OFF switch 73 will normally be in the OFF position while the spring is being wound, but it can be in either position.
The turntable is placed in the cavity of a microwave oven, with the drive motor assembly in a corner of the cavity, the food product or other object to be heated is placed on the platform, and switch 73 is placed in the ON position to permit the drive gear and the platform to be rotated by the motor spring. Rotation of the plat¬ form can be stopped at any time by moving the switch to the OFF position. The platform can be rotated to wind the spring when the turntable is inside the oven cavity as well as outside the oven.
The turntable and drive motor assembly have a number of important features and advantages. Being positioned to one ' side of the turntable platform and being of relatively low profile, the drive motor assembly will not interfere with the rotation of food products and other objects which extend laterally from the platform. Since the platform and the drive motor are removably mounted on the base, the turntable is readily disassem¬ bled for cleaning. The turntable and the motor assembly are rugged and reliable in operation, and they require relatively few parts, most of which can be fabricated of plastic by a relatively inexpensive molding process. Moreover, no screws or other fasteners are required in the assembly of the drive motor unit, and this enables the device to be manufactured even more economically. Additionally, the motor assembly is essentially tamper- proof once it is put together so that it is not likely to be damaged by being taken apart by the user.
It is apparent from the foregoing that a new and im¬ proved turntable and drive motor assembly have been provided. While only one presently preferred embodiment has been described in detail, as will be apparent to those familiar with the art, certain changes and modi- fications can be made without departing from the scope of the invention as defined by the following claims.

Claims

What is Claimed is:
1. In a drive motor assembly for rotating the platform of a turntable in a microwave oven: a housing posi¬ tioned to one side of the platform and having a height no greater than the height of the platform so that the housing does not interfere with the rotation of objects which project laterally from the platform, an energy storage spring wound in spiral fashion in a generally horizontal plane within the housing, an output member rotatively driven by the spring for imparting rotation to the platform, and escapement means positioned to one side of the spring within the housing for regulating the speed at which the output member is rotated.
2. The drive motor assembly of Claim 1 wherein the spring is wrapped about a vertically extending arbor, and the output member comprises a drive gear connected to the arbor.
3. The drive motor assembly of Claim 1 wherein the spring is enclosed in a shielding enclosure which is reflective to microwave energy, the output member and the escapement means are positioned outside the shield¬ ing enclosure, and the housing, the output member and the escapement member are fabricated of a material which does not interact with microwave energy.
4. The drive motor assembly of Claim 1 including an ON/OFF switch operable externally of the housing for selectively preventing rotation of the output member by the spring.
5. The drive motor assembly of Claim 1 wherein the housing comprises a base member and a cover, the spring is enclosed in a shielding enclosure positioned between the base member and the cover, the escapement means is mounted between the base member and the cover to one side of the shielding enclosure, the output member is positioned on the under side of the base member and connected to an arbor which extends through the micro¬ wave attenuating passageway in the shielding enclosure, and the escapement means is coupled to the output member by a transfer member positioned on the under side of the base member in driving engagement with the output member.
6. The drive motor assembly of Claim 1 wherein the escapement means comprises a gear train coupled to the output member, a ratchet gear driven by the gear train, and a pendulum driven by the ratchet gear.
7. The drive motor assembly of Claim 6 including an ON/OFF switch engagable with the pendulum to prevent rotation of the output member by the spring.
8. The drive motor assembly of Claim 7 wherein the escapement gear train includes a first gear with an axis which shifts between first and second positions n response to rotation of the output member in opposite directions, said first gear being in meshing engagement with a second gear in the train when the output member is rotated in one direction by the spring and being disengaged from the second gear when the output member is rotated in the opposite direction, whereby the output member is freed to be turned in the opposite direction by the spring when the ON/OFF switch is engaging the pendulum.
OMPI
9. A portable turntable for use in a microwave oven, comprising: a base, a platform rotatably mounted on the base, and a drive motor assembly mounted on the base to one side of the platform for rotatively driving the platform and having a height no greater than the height of the platform whereby vertical clearance is provided between the motor assembly and any overhanging object carried by the platform so that the motor assembly will not interfere with the rotation of said housing.
10. The turntable of Claim 9 wherein the drive motor assembly comprises an energy storage spring wound in spiral fashion in a generally horizontal plane, an output member rotatively driven by the spring for imparting rotation to the platform, and an escapement positioned beside the spring in the horizontal plane for regulating the speed at which the output member is rotated.
11. The turntable of Claim 10 wherein the spring is wrapped about a vertically extending arbor, and the output member comprises a drive gear connected to the arbor.
12. The turntable of Claim 10 wherein the spring is enclosed in a shielding enclosure which is reflective to microwave energy, and the output member and the escape¬ ment are positioned outside the shielding enclosure and fabricated of a material which does not interact with microwave energy.
13. The turntable of Claim 10 wherein the output member is coupled to the platform and the spring in such manner that the spring can be wound by manual rotation of the platform +n a direction opposite to that in which the platfor is driven by the spring.
14. The turntable of
Claim 13 wherein the platform has a generally planar upper surface with a plurality of ribs projecting upwardly therefrom for engagement with that object carried by the platform, said ribs providing means whereby the platform can be gripped to facilitate winding of the spring.
15. The turntable of Claim 14 wherein the ribs extend radially between the central portion of the platform and the periphery of the platform.
16. The turntable of Claim 10 including a manually operable ON/OFF switch for selectively preventing rotation of the output member by the spring.
17. In a drive motor assembly for rotating the platform of a turntable in a microwave oven: a housing compris¬ ing a base member and a cover and having a height no greater than the height of the platform so that the drive motor assembly can be positioned beside the platform and not interfere with the rotation of objects which project laterally from the platform, an energy storage spring wound in spiral fashion in a generally horizontal plane between the base member and the cover, an arbor driven by the spring and extending through an opening in the base member, an output gear affixed to the arbor below the base member, an escapement mounted between the base member and the cover to one side of the spirally wound spring and having an input shaft which extends through an opening n the base member, and a transfer gear affixed to the input shaft below the base member in driving engagement with the output gear whereby the escapement regulates the speed at which the output gear is rotated by the spring.
18. The drive motor assembly of Claim 17 including a shielding enclosure reflective to microwave energy including the spring, the escapement being positioned outside the shielding enclosure and being fabricated of a material which does not interact with microwave energy.
19. The drive motor assembly of Claim 17 wherein the escapement comprises a gear train coupled to the input shaft, a ratchet gear driven by the gear train and a pendulum driven by the ratchet gear.
20. The drive motor assembly of Claim 19 including an ON/OFF switch operable externally of the housing for engagement with the escapement to prevent rotation of the output gear by the spring.
21. The drive motor assembly of Claim 20 wherein the escapement gear train includes a first gear with an axis which shifts between first and second positions in response to rotation of the output gear in opposite directions, said first gear being in meshing engagement with a second gear and the train when the output gear is rotated in one direction by the spring and being disen¬ gaged from the second gear when the output gear is rotated in the opposite direction, whereby the output gear is freed to be turned in the opposite direction to wind the spring when the ON/OFF switch is engaging the escapement.
"&Tf E
OMP yV ._ WIP
EP19830902592 1982-07-12 1983-07-07 Drive motor assembly and turntable utilizing the same. Withdrawn EP0112919A4 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US39732682A 1982-07-12 1982-07-12
US397326 1982-07-12

Publications (2)

Publication Number Publication Date
EP0112919A1 true EP0112919A1 (en) 1984-07-11
EP0112919A4 EP0112919A4 (en) 1984-11-07

Family

ID=23570759

Family Applications (1)

Application Number Title Priority Date Filing Date
EP19830902592 Withdrawn EP0112919A4 (en) 1982-07-12 1983-07-07 Drive motor assembly and turntable utilizing the same.

Country Status (5)

Country Link
EP (1) EP0112919A4 (en)
JP (1) JPS59501386A (en)
AU (1) AU574046B2 (en)
CA (1) CA1210823A (en)
WO (1) WO1984000462A1 (en)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH662407A5 (en) * 1985-01-25 1987-09-30 Nestle Sa PROCESS AND DEVICE FOR HEATING FOOD BY MICROWAVE.
DE3710796A1 (en) * 1987-03-31 1988-10-13 Miele & Cie MICROWAVE OVEN WITH A TURNTABLE

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Publication number Priority date Publication date Assignee Title
US3854021A (en) * 1973-07-18 1974-12-10 Chemetron Corp Electromagnetic heating system which includes an automatic shielding mechanism and method for its operation
CH629055A5 (en) * 1978-04-17 1982-03-31 Plastics Inc METHOD AND APPARATUS FOR COOKING FOOD IN A MICROWAVE OVEN.
US4258630A (en) * 1978-07-25 1981-03-31 Northland Aluminum Products, Inc. Portable turntable for use in microwave ovens
JPS55143380A (en) * 1979-04-21 1980-11-08 Kobe Steel Ltd Microwave batch melting furnace
US4258638A (en) * 1979-05-07 1981-03-31 Riccar Company, Ltd. Electromagnetic control device for sewing machine
US4254319A (en) * 1979-06-25 1981-03-03 Bruce Beh Portable microwave oven-turntable device
US4239009A (en) * 1979-08-29 1980-12-16 Plastics, Inc. Portable turntable for microwave oven
US4434343A (en) * 1982-01-15 1984-02-28 Raytheon Company Turntable for microwave oven

Non-Patent Citations (2)

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Title
No relevant documents have been disclosed. *
See also references of WO8400462A1 *

Also Published As

Publication number Publication date
WO1984000462A1 (en) 1984-02-02
EP0112919A4 (en) 1984-11-07
JPS59501386A (en) 1984-08-02
AU574046B2 (en) 1988-06-30
AU1881283A (en) 1984-02-08
CA1210823A (en) 1986-09-02

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