EP0932359A1 - Kitchen equipment - Google Patents

Kitchen equipment

Info

Publication number
EP0932359A1
EP0932359A1 EP97933802A EP97933802A EP0932359A1 EP 0932359 A1 EP0932359 A1 EP 0932359A1 EP 97933802 A EP97933802 A EP 97933802A EP 97933802 A EP97933802 A EP 97933802A EP 0932359 A1 EP0932359 A1 EP 0932359A1
Authority
EP
European Patent Office
Prior art keywords
shaft
gear
food processor
tool
processor according
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Withdrawn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
EP97933802A
Other languages
German (de)
French (fr)
Inventor
Sebastian Orby Conran
Joseph Patrick O'connor
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.)
William Levene Ltd
Original Assignee
William Levene Ltd
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 William Levene Ltd filed Critical William Levene Ltd
Publication of EP0932359A1 publication Critical patent/EP0932359A1/en
Withdrawn legal-status Critical Current

Links

Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/10Egg-whisks; Cream-beaters, i.e. hand implements or hand-driven devices
    • A47J43/1006Hand-driven mixing devices with rotating tools, e.g. sticking out from the bottom of the mixing receptacle; with rotating bowls; with an additional function
    • A47J43/1018Hand-driven mixing devices with rotating tools, e.g. sticking out from the bottom of the mixing receptacle; with rotating bowls; with an additional function the mixing device being fitted on the cover of, or directly on, the stationary mixing receptacle
    • A47J43/1025Hand-driven mixing devices with rotating tools, e.g. sticking out from the bottom of the mixing receptacle; with rotating bowls; with an additional function the mixing device being fitted on the cover of, or directly on, the stationary mixing receptacle with gears between the drive axis and the driven axis, e.g. for planetary motion of tools or for coaxial tools
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/10Egg-whisks; Cream-beaters, i.e. hand implements or hand-driven devices
    • A47J43/1006Hand-driven mixing devices with rotating tools, e.g. sticking out from the bottom of the mixing receptacle; with rotating bowls; with an additional function
    • A47J43/1062Hand-driven mixing devices with rotating tools, e.g. sticking out from the bottom of the mixing receptacle; with rotating bowls; with an additional function the mixing devices being provided with an additional liquid receptacle, e.g. for adding oil during mixing

Definitions

  • the invention relates to a manual or hand operated food processor which is a domestic tool used to slice, cut, chop or otherwise treat a variety of foodstuffs.
  • a known food processor comprises a container having a releasable lid, a handle on top of the Md and connected by a gear to a tool within the container. Rotation of the handle is arranged to cause rotary movement of the tool.
  • a hand operated food processor comprising a container for the food to be processed; a plurality of rotary tools each for processing food; each tool being individually releasably engaged with engaging means connected to a gear assembly, the engaging means comprising one end of a first shaft carrying a gear which engages a gear wheel connected to a drive shaft for a rotary handle, by which the processor is hand operated; a third shaft carrying two spaced apart gears of different diameters adjacent the other two, the four gears forming the gear assembly, arranged so that in one condition the first gear engages the drive shaft gear and the gears of the third shaft are idle and the tool connected to the engaging means is rotatable at a relatively slow speed and in a second condition the first shaft gear engages the wider diameter gear on the third shaft and the narrower diameter gear engages the drive shaft gear, whereby the tool connected to the engaging means is rotatable at a relatively faster rate.
  • the food processor includes a range of tools, e.g. to cut, slice, mix, beat, whisk, and the like.
  • each tool is individually releasably engaged with engaging means connected to the gear assembly, the tool being arranged to locate the gear assembly in the operating condition appropriate to that tool in use.
  • the processor includes a lid detachably engagable with the bowl, a generally central hole in the lid, the first shaft extending through the hole into the bowl, the shaft being urged downwardly into the bowl by the spring means , the drive shaft being offset from the central shaft, the gears being inter-engagable to co-operate so that hand rotation of the handle rotates the central shaft, the third rotary shaft being mounted on the lid with the two gears being vertically spaced apart, the upper gear being of a greater diameter than the lower.
  • the food processor includes a set of tools releasably engagable with the lower end of the shaft and which collectively may be stored in the bowl.
  • Figure 1 is a side elevation of one manual food processor of the invention
  • FIG. 2 is a partly cut away perspective view of the food processor of Figure
  • Figure 3 is a vertical section of the food processor of Figure 1.
  • Figure 4 is an elevation showing the gear train in the low speed condition
  • Figure 5 is an elevation showing the gear train in the high speed condition
  • Figure 6 is an underneath plan view of the gear train
  • Figure 7 is an elevation of the third shaft carrying two gear wheels
  • Figure 8 is a side elevation of the drive shaft for the handle carrying one gear wheel
  • Figures 9A,9B and 9C are respectively elevation, top plan and bottom plan views of a stem for use with high speed tools;
  • Figure 10 is a vertical section through the bowl of the processor of Figure 1 showing the stem and blade carrier;
  • Figure 11 A is a plan view of the blade carrier shown in Figure 10 and Figure 11 B the underneath plan thereof;
  • Figure 12A to 12C shows in plan view a selection of blades to be fitted to the carrier namely 12A a sheer, 12B another sheer, 12C a grater;
  • Figures 13A and 13B are a plan and elevational views of a chopper for use with the stem of Figure 9.
  • Figures 14A and 14B are plan and elevational views of a whisk attachment
  • Figure 15A and 15B are plan view and side elevational view of an ice cream beater
  • Figure 16 is a vertical sectional view of the drive handle
  • Figure 17 is a vertical sectional view of the plunger.
  • the apparatus comprises a bowl 1 standing on anti-shp feet 2 and a dome-shaped hd 3 which fits over and engages the bowl 1.
  • the bowl and lid are made of ABS or like material.
  • a handle 4 is present on the hd and has a handle knob 5. The structure and operation of the handle 4 will be described later.
  • the hd 3 is made up a floor 6 and a dome-shaped roof 7.
  • a central gear shaft 8 is present in a hole 9 in the centre of the floor.
  • the shaft 8 is a bar having a polygonal lower end portion 10 above which is a round portion length 11 , a spur gear wheel Gl being present about the mid point.
  • a wall 12 is present about the hole 9 and extends below the floor 6.
  • a ring seal 9 A is present between the shaft round portion 11 and the wall 12.
  • a socket 13 depends from the roof.
  • a compression spring 14 is seated in the socket 13 and ends in a button piston 15 which contacts the upper end of the central gear shaft 8.
  • a drive handle shaft 16 is present to one side of the central gear shaft 8 and sits in a socket 16A standing on the floor and protrudes through a hole 17 in the roof. The upper part of the handle shaft 16 sits in a socket 18.
  • a drive handle gear wheel G2 is present at the lower end of the shaft 16 and contacts the central shaft gear wheel Gl .
  • a dual shaft 19 is mounted adjacent the central shaft
  • the dual gear shaft has two vertically spaced apart gear wheels G3, G4, an upper wider gear wheel G3 and a lower and smaller gear wheel
  • the shafts are moulded of acetyl copolymer or the like.
  • the central shaft gear wheel Gl has 23 teeth
  • the drive handle gear wheel G2 has 41 teeth
  • the upper gear wheel G3 of the dual gear shaft has 42 teeth
  • lower G4 has 17.
  • the drive gear wheel G2 is in mesh with the central shaft gear wheel Gl and the other gear wheels are idle, the central shaft 8 being in its lowermost position with the spring 14 expanded; rotation of the drive handle 16 will cause the central shaft 8 to rotate anticlockwise at a relatively low speed.
  • the ratio is 1 : 1.8.
  • the generally flat floor of the bowl 1 has an upstanding boss 20 at its centre. Internal ribs 20A are spaced about the wall of the bowl.
  • An elongate hollow stem 21 shown in Figure 9 has at its lower end a socket 22 shaped to fit over and receive the boss 20.
  • the stem has lengths of decreasing diameter and the uppermost length portion 23 has a polygonal opening shown in Figure 8B to engage the polygonal end 10 of the central shaft 8.
  • a blade carrier 24 is a generally flat annular body made of say polypropylene and having a hexagon shaped hole 25 at its centre (shown in Figure 10).
  • a wall 25 A is present below the carrier 24 about the hole 25.
  • Annular ribs 26 are present on the top of the blade carrier.
  • An enclosed slot 27 is present in one side of the carrier body and is shaped to receive any one of a number of blade tools B. The wall of the slot 27 is recessed at its outer edge 28 to engage each tool.
  • Each blade comprises a body of generally ellipsoidal form dimensioned to be snap fitted into the enclosed slot 27 and the hole 25 and has a hole 30 at its narrower end. Any blade B is mounted on the carrier 24 and the stem 21 is then received in the hole 25, and then passed upwardly to receive the polygonal end 10 of the central shaft 8, the lower end of the stem then engaging the boss 20 in the floor of the bowl 1.
  • the handle 4 is rotated, to beat, whisk as appropriate. In such a case the gear train is in the condition shown in Figure 5.
  • the handle 4 is an ellipsoidal body having a lower central hole 31 to receive the upper end of the drive shaft 16 and at one end a shank 32 to receive the knob 5.
  • a wall 33 (Figure 1) is present on one side of the hd 3 to define a socket to receive a plunger 34 shown in Figure 17.
  • the wall is set at an angle to the vertical.
  • the plunger has a small hole 35 at its base. The plunger may be used to force foodstuffs, e.g. vegetables into the processor and the hole 35 may be used to add liquids to the contents, e.g. to dribble oil to a mayonnaise.
  • the food processor is simple to operate.
  • the appropriate tool is engaged with the lower end 10 of the shaft 8. Rotation of the handle 4 will cause the tool to rotate at a speed required for its use, depending on the vertical position of the shaft 8. All the tools may be accommodated within the bowl.
  • the invention is not limited to the embodiment shown.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Food Science & Technology (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

A food processor has a handle (4) connected to a gear assembly (G1, G2, G3, G4) by which different rotary tools (B) connected to the end (10) of a central shaft (8) in the processor may be rotated (Figure 3). Different sets of the gears are engaged according to the speed with which the selected tool is to be rotated.

Description

KITCHEN EQUIPMENT
The invention relates to a manual or hand operated food processor which is a domestic tool used to slice, cut, chop or otherwise treat a variety of foodstuffs. A known food processor comprises a container having a releasable lid, a handle on top of the Md and connected by a gear to a tool within the container. Rotation of the handle is arranged to cause rotary movement of the tool.
It is one object of this invention to provide a manually operated food processor which has a particularly efficient mechanical operation and which is versatile.
According to the invention in one aspect there is provided a hand operated food processor comprising a container for the food to be processed; a plurality of rotary tools each for processing food; each tool being individually releasably engaged with engaging means connected to a gear assembly, the engaging means comprising one end of a first shaft carrying a gear which engages a gear wheel connected to a drive shaft for a rotary handle, by which the processor is hand operated; a third shaft carrying two spaced apart gears of different diameters adjacent the other two, the four gears forming the gear assembly, arranged so that in one condition the first gear engages the drive shaft gear and the gears of the third shaft are idle and the tool connected to the engaging means is rotatable at a relatively slow speed and in a second condition the first shaft gear engages the wider diameter gear on the third shaft and the narrower diameter gear engages the drive shaft gear, whereby the tool connected to the engaging means is rotatable at a relatively faster rate.
Preferably the food processor includes a range of tools, e.g. to cut, slice, mix, beat, whisk, and the like. Preferably each tool is individually releasably engaged with engaging means connected to the gear assembly, the tool being arranged to locate the gear assembly in the operating condition appropriate to that tool in use.
Most preferably the processor includes a lid detachably engagable with the bowl, a generally central hole in the lid, the first shaft extending through the hole into the bowl, the shaft being urged downwardly into the bowl by the spring means , the drive shaft being offset from the central shaft, the gears being inter-engagable to co-operate so that hand rotation of the handle rotates the central shaft, the third rotary shaft being mounted on the lid with the two gears being vertically spaced apart, the upper gear being of a greater diameter than the lower.
Preferably the food processor includes a set of tools releasably engagable with the lower end of the shaft and which collectively may be stored in the bowl.
Other features of the invention are set out in the dependant Claims.
In order that the invention may be well understood it will now be described by way of example only with reference to the accompanying diagrammatic drawings in which: Figure 1 is a side elevation of one manual food processor of the invention;
Figure 2 is a partly cut away perspective view of the food processor of Figure
i;
Figure 3 is a vertical section of the food processor of Figure 1.
Figure 4 is an elevation showing the gear train in the low speed condition;
Figure 5 is an elevation showing the gear train in the high speed condition;
Figure 6 is an underneath plan view of the gear train;
Figure 7 is an elevation of the third shaft carrying two gear wheels;
Figure 8 is a side elevation of the drive shaft for the handle carrying one gear wheel;
Figures 9A,9B and 9C are respectively elevation, top plan and bottom plan views of a stem for use with high speed tools;
Figure 10 is a vertical section through the bowl of the processor of Figure 1 showing the stem and blade carrier; Figure 11 A is a plan view of the blade carrier shown in Figure 10 and Figure 11 B the underneath plan thereof;
Figure 12A to 12C shows in plan view a selection of blades to be fitted to the carrier namely 12A a sheer, 12B another sheer, 12C a grater;
Figures 13A and 13B are a plan and elevational views of a chopper for use with the stem of Figure 9.
Figures 14A and 14B are plan and elevational views of a whisk attachment;
Figure 15A and 15B are plan view and side elevational view of an ice cream beater;
Figure 16 is a vertical sectional view of the drive handle; and
Figure 17 is a vertical sectional view of the plunger.
The apparatus comprises a bowl 1 standing on anti-shp feet 2 and a dome-shaped hd 3 which fits over and engages the bowl 1. The bowl and lid are made of ABS or like material. A handle 4 is present on the hd and has a handle knob 5. The structure and operation of the handle 4 will be described later. As shown in Figures 2 and 3, the hd 3 is made up a floor 6 and a dome-shaped roof 7.
A central gear shaft 8 is present in a hole 9 in the centre of the floor. The shaft 8 is a bar having a polygonal lower end portion 10 above which is a round portion length 11 , a spur gear wheel Gl being present about the mid point. A wall 12 is present about the hole 9 and extends below the floor 6. A ring seal 9 A is present between the shaft round portion 11 and the wall 12. A socket 13 depends from the roof. A compression spring 14 is seated in the socket 13 and ends in a button piston 15 which contacts the upper end of the central gear shaft 8. A drive handle shaft 16 is present to one side of the central gear shaft 8 and sits in a socket 16A standing on the floor and protrudes through a hole 17 in the roof. The upper part of the handle shaft 16 sits in a socket 18.
A drive handle gear wheel G2 is present at the lower end of the shaft 16 and contacts the central shaft gear wheel Gl . A dual shaft 19 is mounted adjacent the central shaft
8 and the drive handle shaft 16. The dual gear shaft has two vertically spaced apart gear wheels G3, G4, an upper wider gear wheel G3 and a lower and smaller gear wheel
G4.
The shafts are moulded of acetyl copolymer or the like. The central shaft gear wheel Gl has 23 teeth, the drive handle gear wheel G2 has 41 teeth, the upper gear wheel G3 of the dual gear shaft has 42 teeth and lower G4 has 17. In one condition (shown in Figure 4) the drive gear wheel G2 is in mesh with the central shaft gear wheel Gl and the other gear wheels are idle, the central shaft 8 being in its lowermost position with the spring 14 expanded; rotation of the drive handle 16 will cause the central shaft 8 to rotate anticlockwise at a relatively low speed. In such a case the ratio is 1 : 1.8. In the second condition (shown in Figure 5) the central shaft 8 is urged upwardly compressing the spring 14, the central shaft gear wheel Gl engaging the upper gear wheel G3 of the dual gear shaft 19 and the lower gear wheel G4 of that shaft engaging the drive shaft gear wheel G2. In such a condition rotation of the drive handle 16 causes the central shaft 8 to rotate at relatively high speed in the clockwise direction, and the gear ratio is 1 : 4.4.
As shown in Figures 2, 3 and 9, the generally flat floor of the bowl 1 has an upstanding boss 20 at its centre. Internal ribs 20A are spaced about the wall of the bowl. An elongate hollow stem 21 shown in Figure 9 has at its lower end a socket 22 shaped to fit over and receive the boss 20. The stem has lengths of decreasing diameter and the uppermost length portion 23 has a polygonal opening shown in Figure 8B to engage the polygonal end 10 of the central shaft 8.
A blade carrier 24 is a generally flat annular body made of say polypropylene and having a hexagon shaped hole 25 at its centre (shown in Figure 10). A wall 25 A is present below the carrier 24 about the hole 25. Annular ribs 26 are present on the top of the blade carrier. An enclosed slot 27 is present in one side of the carrier body and is shaped to receive any one of a number of blade tools B. The wall of the slot 27 is recessed at its outer edge 28 to engage each tool.
Representative individual blades B are shown in Figures 12A,12B,12C. Each blade comprises a body of generally ellipsoidal form dimensioned to be snap fitted into the enclosed slot 27 and the hole 25 and has a hole 30 at its narrower end. Any blade B is mounted on the carrier 24 and the stem 21 is then received in the hole 25, and then passed upwardly to receive the polygonal end 10 of the central shaft 8, the lower end of the stem then engaging the boss 20 in the floor of the bowl 1. The handle 4 is rotated, to beat, whisk as appropriate. In such a case the gear train is in the condition shown in Figure 5.
As shown in Figure 16, the handle 4 is an ellipsoidal body having a lower central hole 31 to receive the upper end of the drive shaft 16 and at one end a shank 32 to receive the knob 5.
A wall 33 (Figure 1) is present on one side of the hd 3 to define a socket to receive a plunger 34 shown in Figure 17. The wall is set at an angle to the vertical. The plunger has a small hole 35 at its base. The plunger may be used to force foodstuffs, e.g. vegetables into the processor and the hole 35 may be used to add liquids to the contents, e.g. to dribble oil to a mayonnaise.
The nature of the tool deteπnines whether the gear train will be in the slow speed or high speed condition. For the sheer, chopper or ice cream beater, the low speed use will be appropriate; the whisk will require high speed.
The food processor is simple to operate. The appropriate tool is engaged with the lower end 10 of the shaft 8. Rotation of the handle 4 will cause the tool to rotate at a speed required for its use, depending on the vertical position of the shaft 8. All the tools may be accommodated within the bowl. The invention is not limited to the embodiment shown.

Claims

1. A hand operated food processor comprising a container (1) for the food to be processed; a plurahty of rotary tools (B) each for processing food; each tool (B) being individually releasably engaged with engaging means (10) connected to a gear assembly (Gl , G2, G3 and G4), the engaging means comprising one (10) end of a first shaft (8) carrying a gear (Gl) which engages a gear wheel (G2) connected to a drive shaft (16) for a rotary handle (4), by which the processor is hand operated; a third shaft (19) carrying two spaced apart gears (G3, G4) of different diameters adjacent the other two, the four gears forming the gear assembly, arranged so that in one condition (Figure 4) the first gear (G2) engages the drive shaft gear (Gl) and the gears (G3, G4) of the third shaft (19) are idle and the tool (B) connected to the engaging means (10) is rotatable at a relatively slow speed and in a second condition (Figure 5) the first shaft gear (Gl) engages the wider diameter gear (G3) on the third shaft (19) and the narrower diameter gear (G4) engages the drive shaft gear (G2), whereby the tool (B) connected to the engaging means (10) is rotatable at a relatively faster
rate.
2. A food processor according to Claim 1 , wherein the shaft (8) is normally urged into a seating (13) and is located there in the first condition and in the second condition the tool (B) engaged with the first shaft (8) moves the shaft (8) away from the seating so that the first shaft gear (Gl) can engage the wider diameter gear (G3).
3. A food processor according to Claim 2, wherein a spring (14) biases the shaft (8) downwardly when the tool (B) is in the first condition and is compressed when the tool (B) is in the second condition.
4. A hand operated food processor according to Claim 1, 2 and 3, including a hd (3) detachably engagable with the bowl (1), a generally central hole (9) in the hd (3), the first shaft (8) extending through the hole (9) into the bowl (1), the shaft being urged downwardly into the bowl by the spring means (14), the drive shaft (16) being offset from the central shaft (8), the gears being inter- engagable to co-operate so that hand rotation of the handle (4) rotates the central shaft (8), the third rotary shaft (19) being mounted on the hd with the gears (G3, G4) being vertically spaced apart, the upper gear (G3) being of a greater diameter than the lower.
5. A food processor according to Claim 4, wherein the hd (3) comprises a floor (6) and a dome (7), the centre shaft (8) is generally vertical and the compressible spring (14) is biased between the upper end of the shaft and the overlying ceiling portion of the dome.
6. A food processor according to any preceding Claim, including a set of tools (B) each releasably engagable with the lower end (10) of the shaft (8) and the bowl
(1) is dimensioned so that the tools collectively may be stored in the bowl (1)..
7. A food processor according to Claim 6, including a blade carrier (24) mountable on the lower end (10) of the central shaft (8), the blade carrier (24) having an enclosed radial slot (27) to receive a blade tool (B) for rotation in the second condition.
8. A food processor according to Claim 7, wherein the tool (B) has side fins and is mountable on the lower end of the shaft (10) which is urged upwardly against the downward bias of the spring (14) to move the gear assembly to the second condition.
9. A food processor according to Claim 8, including a central projection (20) in the base of the bowl (1) to engage the lower end of a stem (21) or the tool (B) mounted thereon and to cause compression of the spring (14).
10. A food processor according to any of Claims 4 to 9, wherein a hole (30) is present in the dome (7) of the hd (3), to receive a plunger member (34).
11. A food processor according to Claim 10, wherein a small hole (35) is present in the base of the plunger member (34) whereby small doses of Uquid may be
added to the bowl (1).
EP97933802A 1997-08-01 1997-08-01 Kitchen equipment Withdrawn EP0932359A1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/GB1997/002064 WO1999005946A1 (en) 1997-08-01 1997-08-01 Kitchen equipment

Publications (1)

Publication Number Publication Date
EP0932359A1 true EP0932359A1 (en) 1999-08-04

Family

ID=10806927

Family Applications (1)

Application Number Title Priority Date Filing Date
EP97933802A Withdrawn EP0932359A1 (en) 1997-08-01 1997-08-01 Kitchen equipment

Country Status (6)

Country Link
EP (1) EP0932359A1 (en)
AU (1) AU3703897A (en)
CA (1) CA2267300A1 (en)
GB (1) GB2327864A (en)
WO (1) WO1999005946A1 (en)
ZA (1) ZA986755B (en)

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201182529Y (en) 2008-04-22 2009-01-21 汪恩光 small food chopper
CH706726A2 (en) * 2012-07-12 2014-01-15 Swizzzcut Ag Device for processing foodstuffs.
CH706727A2 (en) * 2012-07-12 2014-01-15 Swizzzcut Ag Device for processing foodstuffs.
GB2553854B (en) * 2016-09-19 2022-03-23 Kenwood Ltd Cutting tool and adaptor
DE102018207506B4 (en) * 2018-05-15 2020-10-15 De'longhi Braun Household Gmbh Household appliance for processing food with a splash guard
LU100934B1 (en) * 2018-09-24 2020-03-24 Genius Gmbh Food processing device

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Publication number Priority date Publication date Assignee Title
GB191225615A (en) * 1912-11-08 1913-05-29 Victor Hellin Improvements in Mixers for Jams, Preserves, Confectionery and the like.
FR830382A (en) * 1937-02-09 1938-07-28 Combined machine for kneading, beating and kneading
GB621635A (en) * 1946-09-02 1949-04-13 Domenico Strino Improvements in or relating to manually operated whisks or beaters
US2658642A (en) * 1949-11-15 1953-11-10 Casella Horacio Rafael Receptacle and support therefor
US3964345A (en) * 1975-03-10 1976-06-22 The Raymond Lee Organization, Inc. Manually operable blender
FR2332730A1 (en) * 1975-11-25 1977-06-24 Seb Sa HOUSEHOLD APPLIANCES FOR THE PACKAGING OF FOODS SUCH AS SALADS
DE9205004U1 (en) * 1992-04-10 1992-07-09 Waying-HHS Taiwan Ltd., Taipeh/T'ai-pei Food processing equipment
GB2314786A (en) * 1996-07-03 1998-01-14 Levene Ltd William A two-speed hand-driven food processor

Non-Patent Citations (1)

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Title
See references of WO9905946A1 *

Also Published As

Publication number Publication date
GB2327864A (en) 1999-02-10
WO1999005946A1 (en) 1999-02-11
ZA986755B (en) 1999-02-02
GB9719355D0 (en) 1997-11-12
AU3703897A (en) 1999-02-22
CA2267300A1 (en) 1999-02-11

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