Blender and food processor combination with safety features
11344157 · 2022-05-31
Assignee
Inventors
Cpc classification
A47J43/085
HUMAN NECESSITIES
A47J43/0766
HUMAN NECESSITIES
A47J43/0761
HUMAN NECESSITIES
A47J43/0777
HUMAN NECESSITIES
International classification
A47J43/00
HUMAN NECESSITIES
Abstract
An appliance operable in a first configuration as a blender and in a second configuration as a food processor, with safety mechanisms that work for both configurations. In the blender configuration, the appliance has safety mechanisms in a blade attachment that function to prevent the motor from operating unless the blade attachment is properly secured to the motor base and a blender container is properly secured to the blade attachment. In the food processor configuration, the appliance has safety mechanisms that function to prevent the motor from operating unless a food processor container is properly secured to the motor base and a lid is properly secured to the food processor container.
Claims
1. An appliance operable in a first configuration and a second configuration, said appliance comprising: a blender assembly for use in said first configuration, said blender assembly comprising: a first container; a blade attachment; said blade attachment attachable to said first container; said blade attachment having a first movable tab; wherein, when said blade attachment is attached to said first container, said first container causes said first movable tab to move from a first tab position to a second tab position; a processor assembly for use in said second configuration, said processor assembly comprising: a second container; said second container having a movable lever; a lid; said lid attachable to said second container; wherein, when said lid is attached to said second container, said lid causes said movable lever to move from a first lever position to a second lever position; a base, said base said base configured to mount said blender assembly in said first configuration or said processor assembly in said second configuration, said base comprising: a motor for operating said appliance; a first safety switch associated with said motor, such that said motor is only operable when said first safety switch is actuated; wherein, in said first configuration, said first safety switch is actuated by said first movable tab when said first movable tab is in said second tab position; in said second configuration, said first safety switch is actuated by said movable lever when said movable lever is in said second lever position.
2. The appliance of claim 1, wherein said base further comprises a second safety switch.
3. The appliance of claim 2 in said first configuration, wherein: said blade attachment further comprises a second movable tab; wherein, when said blade attachment is attached to said container, said container causes: said first movable tab to move from a first tab position to a second tab position; and, said second movable tab to move from a first tab position to a second tab position; wherein: said first movable tab actuates said first safety switch when said first movable tab is in said second tab position; and, said second movable tab actuates said second safety switch when said second movable tab is in said second tab position.
4. The appliance of claim 2 in said second configuration, wherein: said second container further comprises a fixed tab; wherein, when said processor assembly is mounted to said base: said movable lever actuates said first safety switch when said movable lever is in said second lever position; and, said fixed tab actuates said second safety switch.
5. The appliance of claim 4, further comprising: said lid having a protrusion; said protrusion contacts said movable lever when said lid is attached to said second container, causing said movable lever to move from a first lever position to a second lever position to actuate said first safety switch.
6. The appliance of claim 4, further comprising: said second container having a handle; said movable lever is mounted to said handle.
7. The appliance of claim 6, further comprising: said handle having a spring; said movable lever is mounted to said spring; wherein, said movable lever is in said first lever position when spring is uncompressed, and said movable lever is in said second lever position when spring is compressed.
8. The appliance of claim 1, wherein said base further comprises: a first impeller, said first impeller connected to said motor; a second impeller, said second impeller connected to said motor; wherein, said motor operates said first impeller and said second impeller.
9. The appliance of claim 8, wherein said blade assembly further comprises: a blade assembly impeller for coupling with said first impeller on said base; said blade assembly impeller connected to a blade; wherein, when said motor operates said first impeller, said first impeller drives said blade assembly impeller to spin said blade.
10. The appliance of claim 8, wherein said processor assembly further comprises: a processor assembly impeller for coupling with said second impeller on said base; said processor assembly impeller connected to a blade; wherein, when said motor operates said second impeller, said second impeller drives said processor assembly impeller to spin said blade.
11. An appliance comprising: a container; a blade attachment; said blade attachment attachable to said container; said blade attachment having a first movable tab and a second movable tab; wherein, when said blade attachment is attached to container, said container causes: said first movable tab to move from a first tab position to a second tab position; and, said second movable tab to move from a first tab position to a second tab position; a base, said base comprising: a motor for operating said appliance; a first safety switch associated with said motor; a second safety switch associated with said motor; wherein said motor is only operable when both said first safety switch and said second safety switch are actuated; wherein: said first movable tab actuates said first safety switch when said first movable tab is in said second tab position; and, said second movable tab actuates said second safety switch when said second movable tab is in said second tab position.
12. The appliance of claim 11, wherein: said container has an open end and container threads wrapped around said open end; said blade attachment further having: a wall having blade assembly threads corresponding to said container threads; said first movable tab located at a first location in said wall; said second movable tab located at a second location in said wall; wherein, when said blade attachment is attached to said container, said container threads contact said first movable tab to cause said first movable tab to move from said first tab position to said second tab position to actuate said first safety switch; and, said container threads contact said second movable tab to cause said second movable tab to move from said first tab position to said second tab position to actuate said second safety switch; wherein, when either said first safety switch or said second safety switch is not actuated, said motor is not operable.
13. An appliance comprising: a container; said container having a handle; said handle having a movable lever; said movable lever movable between a first lever position and a second lever position; a lid; said lid attachable to said container, said lid having a protrusion; said protrusion contacts said movable lever when said lid is attached to said container, causing said movable lever to move from said first lever position to said second lever position; wherein, when said lid is attached to said container, said protrusion of said lid contacts said movable lever; said lid further having a cover and a side wall, said side wall having at least one indent; a chute located on said cover for inserting comestible matter into said container; said container having at least one locking protrusion, which engages said at least one indent when said lid is assembled to said container; wherein said protrusion of said lid contacts said movable lever simultaneously as said least one locking protrusion engages said at least one indent when said lid is assembled to said container; a base, said base comprising: a motor for operating said appliance; a first safety switch, wherein said motor is only operable when said first safety switch is actuated; wherein said first safety switch is actuated by said movable lever when said movable lever is in said second lever position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(24) The invention now will be described more fully hereinafter with reference to the accompanying drawings, in which embodiments of the invention are shown. This invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and to fully convey the scope of the invention to those skilled in the art.
(25) As shown in
(26) As shown in
(27) The base 20 is identical for both the blender configuration and the food processor configuration.
(28) Referring to
(29) In a preferred embodiment as shown in
(30) The first motor impeller 220 is mounted at the center of the top side 210. The first motor impeller 220 is characterized by a hub 222 with first impeller vanes 224 projecting radially outward as best shown in
(31) The second motor impeller 230 is mounted concentrically with respect to the first motor impeller 220 on the top side 210. The second motor impeller 230 is characterized by a sprocket 232 that encircles the first motor impeller 220 shown in
(32) The base 20 further has a circular retaining wall 240 that encircles the second motor impeller 230 and the first motor impeller 220 as best shown in
(33) The appliance 10 according to an embodiment of the invention in a blender configuration as shown in
(34) The blender assembly 30 is comprised of a blade attachment 40 and a blender container 50 with an open end 502. As shown in
(35) Referring to
(36) Referring to
(37) The blade impeller 420 is mounted on the bottom side of the blade holder 410 as shown in
(38) Referring to
(39) Referring to
(40) To form the blender configuration as shown in
(41) After the blade attachment 40 is assembled to the blender container 50, the blender assembly 30 is mounted on the base 20 by coupling the blade impeller 420 with the first motor impeller 220 on the base 20. As shown in
(42) When the blade impeller 420 is coupled with the first motor impeller 220, the blade attachment 40 is rotated to securely attach it to the base 20 as follows.
(43) The blade attachment 40 has keys 440 as shown in
(44) Referring again to
(45) When the blade attachment 40 is placed on top of the base 20 by coupling the blade impeller 420 with the first motor impeller 220, the vertical annular wall 450 of the blade attachment 40 fits over the circular retaining wall 240 on the top surface 210 of the base 20, such that the keys 440 are substantially aligned with the brackets 242. The blade attachment 40 is rotated to slide each key 440 into each bracket 242. As the blade attachment 40 is rotated, the head end 442 of the key 440 enters the open end 244 of the recess 243 of the bracket 242, until the head end 442 of the key 440 abuts against the closed end 245 of the recess 243. This requires the blade attachment 40 to be rotated only in one direction to attach the blade attachment 40 to the base 20. If the blade attachment 40 is rotated in the reverse direction, the head end 442 of the key 440 cannot slide into the recess 243 of the bracket 242 because the tail end 444 of the key 440 will abut against the closed end 245 of the recess 243. When the blade attachment 40 is properly rotated to slide the head end 442 of the key 440 into the recess 243, the bump 246 will come to rest in the notch 446, to indicate that the blade attachment 40 is securely attached to the base 20.
(46) Referring now to
(47) As shown in
(48) The tab 470 is spring loaded (not shown) such that it is movable between a default first elevation and a second elevation. As shown in
(49) In a preferred embodiment of the invention, the blender attachment 40 has at least two tabs 470, a first tab 470a located at a first circumferential position A and a second tab 470b located at a second circumferential position B as shown in
(50) In another preferred embodiment of the invention, the blender attachment 40 has three tabs 470, located sequentially such that threading the blade attachment 40 with the blender container 50 causes each tab 470 to move to the second elevation in sequence.
(51) The base 20 has a switch mechanism 260 that correlates with the tab 470 on the blender attachment 40. In a preferred embodiment of the invention, the base 20 will have at least two switch mechanisms 260 as shown in
(52) Referring to
(53) The interlock 250 is comprised of walls 252 having a top edge 254. The walls 252 enclose a retractable switch 262. As shown in
(54) The retractable switch 262 is connected to an actuator 270 in the base 20 that enables actuation of the motor. When the retractable switch 262 is in the default extended position as shown in
(55) To actuate the retractable switch 262 in the blender configuration, it is necessary to assemble the blade attachment 40 securely to the blender container 50 to form the blender assembly 30, then mount the blender assembly 30 securely to the base 20. Both steps are required to enable the motor to be turned on.
(56) As shown in
(57) Thus, when the blade assembly 30 is mounted to the base 20 by coupling the blade impeller 420 with the first motor impeller 220 and rotating the blade attachment 40 clockwise to slide the key 440 into the recess 243, the tabs 470 will enter the interlock 250, making engagement with the retractable switches 262. The tabs 470 push the retractable switches 262 into the retracted position as shown in
(58) If during operation of the appliance 10 the blender container 50 should come loose or become detached from the blade attachment 40, the spring-loaded tabs 470 will automatically return to their default first elevation as shown in
(59) Referring to
(60) Referring to
(61) Referring to
(62) The body 510 is defined by a bottom 512, a vertical side 514, and an open top 516 forming a processor cavity. The blade assembly 700 is mounted to the bottom 512 such that it is located in the processor cavity.
(63) Referring to
(64) As shown
(65) The body 510 has a bottom 512 further defined by an interior side as shown
(66) The body 510 has a fin 560 located on the underside between the inner circular wall 530 and the outer circular wall 540 as shown in
(67) The body 510 has a handle backbone 570 that forms part of the handle assembly 800 as further described below.
(68) Referring to
(69) As shown in
(70) In a preferred embodiment, the handle backbone 570 is integrally attached to the outer side of the circular vertical side 514 of the body 510. The handle backbone 570 has a top portion 572 located near the open end 516, and a bottom portion 574 located at the bottom 512 of the body 510. The top portion 572 has a gap 576 and a holder 578 for holding a spring 580.
(71) The handle lever 810 is movably attached to the handle backbone 570. The handle lever 810 has a lever-top-end 812, a lever-spine 814, and a lever-bottom-end 816. The lever-spine 814 has a slot 818. The handle lever 810 can be assembled to the handle backbone 570 by an attachment means, such as a screw, applied through the slot 818.
(72) When the handle lever 810 is assembled to the handle backbone 570, the lever-top-end 812 is located in the top portion 572 and the lever-bottom-end 816 is located in the bottom portion 574. The lever-bottom-end 816 has a tab 824, as shown in
(73) As shown in
(74) Referring to
(75) Referring to
(76) The handle lever 810 also has a pin 822 located at the lever-bottom-end 816. When the handle lever 810 is pushed into the down position by an external force, the pin 822 also extends out of the second bottom opening 828 such that the lever-bottom-end 816 will be more secure and have less freedom of movement.
(77) Referring again to
(78) The lid 610 includes a cover 614 and a side wall 616 that extends down from under the rim 618 of the cover 614. The side wall 616 fits into the body 510 of the processor container 500 as shown in
(79) The lid 610 has an overhang mechanism 630 that is located on the rim 618 of the cover 614. The overhang mechanism 630 has notch 632.
(80) The lid 610 has a chute 640 located on the top surface of the cover 614, which accommodates the pusher (not shown). The comestible material may be placed down the chute 640 and moved with the pusher (not shown) such that users do not have to place their hand inside the processor cavity.
(81) To form the food processor assembly 110, the lid 610 is attached to bowl container 500. The lid 610 is attached to the processor container 500 by assembling the lid 610 to the open top 516 such that the locking protrusions 520 on the body 510 of the processor container 500 are received by the indents 620 on the lid 610. When the locking protrusions 520 are received by the indents 520, the lid 610 can be rotated clockwise until an edge of each locking protrusion 520 abuts against an edge of each indent 520, as shown in
(82) To form the blender configuration as shown in
(83) After the lid 610 is assembled to the processor container 500 to form the food processor assembly 110, the food processor assembly 110 is mounted on the base 20 by coupling the impeller mount 710 on the underside of the body 510 with the second motor impeller 230 on the base.
(84) When the processor container 500 is placed on top of the base 20 by coupling the circular mount 710 with the second motor impeller 230, the inner circular wall 530 of the processor container 500 fits over the circular retaining wall 240 of the base 20, such that the keys 550 are substantially aligned with the brackets 242. The processor container 500 is rotated to slide each key 550 into each bracket 242. When the processor container 500 is properly rotated to slide the keys 550 into the brackets 242, the processor container 500 is securely attached to the base 20.
(85) Referring now to
(86) To actuate the retractable switches 262 in the food processor configuration, it is necessary to assemble the lid 610 securely to the processor container 500 to form the food processor assembly 110, then mount the food processor assembly 110 securely to the base 20. Both steps are required to enable the motor to be turned on.
(87) When the lid 610 is assembled to the processor container 500 and rotated to engage the locking protrusions 520 with the indents 620 as shown in
(88) Referring to
(89) As such, when the processor container 500 is mounted to the base 20 by rotating the processor container 500 to engage the keys 550 with the brackets 242, the tab 824 in its extended position will enter a first interlock 250 on the base 20 to engage a first retractable switch 262. The extended tab 824 pushes the first retractable switch 262 into the retracted position as shown in
(90) As described above, in an embodiment the base 20 has at least two retractable switches 262, both of which must be in the retracted position for the motor to be started by the controls 216. When the processor container 500 is mounted to the base 20 by rotating the processor container 500 to engage the keys 550 with the brackets 242, the fin 560 enter the second interlock 250 to engage the second retractable switch 262.
(91) This ensures that the food processor assembly 110 is securely assembled to the base 20 for the motor to operate. If the processor container 500 is assembled to the base 20 without the lid 610, the fin 560 only depresses one of the two retractable switches 262 and therefore the motor cannot be started. The lid 610 must be securely attached to the processor container 500 to depress both retractable switches 262. Thus, if the lid 610 becomes detached from the processor container 500 while the motor is in operation, the first retractable switch 262 returns to its default position to cut off the motor.
(92) Further, when the processor container 500 is rotated counterclockwise to be dismounted from the base 20, the retractable switches 262 are disengaged, and the motor is shut off.
(93) In this way, the appliance 100 according to an embodiment of the food processor configuration is made safe because it can only be operated when the lid 610 is securely attached to the processor container 500, and the food processor assembly 110 is securely mounted to the base 20.
(94) While illustrative embodiments of the invention have been described in detail above, it is to be understood that the appended claims are intended to be construed to include variations of the present invention.