GB2081064A - Method and apparatus for producing a cellular food product - Google Patents

Method and apparatus for producing a cellular food product Download PDF

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Publication number
GB2081064A
GB2081064A GB8021491A GB8021491A GB2081064A GB 2081064 A GB2081064 A GB 2081064A GB 8021491 A GB8021491 A GB 8021491A GB 8021491 A GB8021491 A GB 8021491A GB 2081064 A GB2081064 A GB 2081064A
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GB
United Kingdom
Prior art keywords
chocolate
mixing device
product
orifice
molten
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.)
Granted
Application number
GB8021491A
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GB2081064B (en
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Mono Oakes Ltd
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Mono Oakes Ltd
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Publication date
Application filed by Mono Oakes Ltd filed Critical Mono Oakes Ltd
Priority to GB8021491A priority Critical patent/GB2081064B/en
Publication of GB2081064A publication Critical patent/GB2081064A/en
Application granted granted Critical
Publication of GB2081064B publication Critical patent/GB2081064B/en
Expired legal-status Critical Current

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Classifications

    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G1/00Cocoa; Cocoa products, e.g. chocolate; Substitutes therefor
    • A23G1/04Apparatus specially adapted for manufacture or treatment of cocoa or cocoa products
    • A23G1/20Apparatus for moulding, cutting, or dispensing chocolate
    • A23G1/201Apparatus not covered by groups A23G1/21 - A23G1/28
    • A23G1/208Moulding or shaping of cellular or expanded articles
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G3/00Sweetmeats; Confectionery; Marzipan; Coated or filled products
    • A23G3/02Apparatus specially adapted for manufacture or treatment of sweetmeats or confectionery; Accessories therefor
    • A23G3/0236Shaping of liquid, paste, powder; Manufacture of moulded articles, e.g. modelling, moulding, calendering
    • A23G3/0294Moulding or shaping of cellular or expanded articles

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  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Confectionery (AREA)

Abstract

In a method and apparatus for producing a filled cellular chocolate product in which a supply of chocolate is heated to bring it to a molten state, a gas which is largely soluble in the chocolate is introduced into the molten chocolate under pressure, the molten chocolate is fed under pressure into a mixing device having relatively movable parts, the mixing device is operated to disperse the gas uniformly, so that it is dissolved throughout the molten chocolate, the liquid chocolate is passed through a restriction to release the pressure suddenly to atmosphere, so that the dissolved gas forms gaseous bubbles and the liquid chocolate is solidified into a finally resulting deposited chocolate product by cooling, the clearance between at least some of the relatively movable parts of the mixing device is less than half the minimum transverse dimension of the orifice and preferably less than one quarter so that any pieces of cycled filler, such as biscuit, are thoroughly ground within the chocolate so that little or no blockage of the orifice occurs.

Description

SPECIFICATION Method and apparatus for producing a cellular food product The present invention relates to a method and apparatus for producing a cellular food product.
It has been proposed in our copending Application No. 30595/78 to manufacture an aerated food product, such as chocolate, in which the chocolate is mixed with a soluble gas, such as carbon dioxide, under very high pressure, and the pressure is released suddenly, so that the carbon dioxide comes out of solution and forms bubbles in the chocolate product. This is achieved by passing the pressurized chocolate, together with the carbon dioxide mixed therein, through a sharp edged valve, the product then passing to atmospheric pressure. This is very satisfactory for producing a cellular chocolate product continuously. Itwould be useful to be able to use the same method for producing a filled chocolate product, for example a chocolate covered biscuit.
One way of making such a biscuit is to fill the mou Id with tempered chocolate, and to keep the mould and chocolate warm, and then to invert the mould and shake it out partially to empty the mould, and then to turn the mould the right way up to leave the shell of chocolate in the mould. This semi-liquid shell is then filled with the biscuit or other filling and the mould is then overfilled with more chocolate.
The mould is then vibrated to remove the voids and is finally wiped off to give a clean smooth surface, to whatwould be the bottom of the biscuit after cooling and demoulding.
It will be appreciated that during the course of such an operation various faults do occur which result in the product being rejected after removing from the mould. Furthermore, whole or broken pieces of biscuit can get into the chocolate stream after the final wiping off stage.
All the rejected material is valuable, because the chocolate is a very expensive raw material. For economic reasons, therefore, it is advantageous to return the chocolate, together with any biscuit or other filling bits for re-use. The traditional method of doing this, therefore, is to grind up the material which is returned with some fresh chocolate, to create a suitable fluid paste which is then added to the main chocolate stream at a rate of about 5%. This is perfectly satisfactory for conventional chocolate handling apparatus. However, it has been found that when using the above mentioned cellular chocolate making process, problems do occur, because the ground up material is not sufficiently small readily to pass through the orifice in the valve which is necessary to produce the sudden pressure drop.The small lumps which arise will block unacceptably frequently the orifice of the valve and so the operation will have to be stopped. Clearly this is not satisfactory for economic operation.
While it is possible to strain or filter out any such oversized lumps before the gas stream has the gas dissolved in it, or before it is deposited, if this is done, the net amount of scrap return is reduced, affecting the economics of the overail process.
It is now proposed to provide a method of making a filled cellular chocolate product, comprising the steps of heating a supply of chocolate to bring it to a molten state, introducing into the molten chocolate under pressure, a gas which is largely soluble in the chocolate, feeding the molten chocolate under pressure into a mixing device having relatively movable parts, operating the mixing device to disperse the gas uniformly, so that it is dissolved throughout the molten chocolate, passing the liquid chocolate through a restriction to release the pressure sud deny to atmosphere, so that the dissolved gas forms gaseous bubbles and solidifying the liquid chocolate into a finally resulting deposited chocolate product by cooling, the clearance between at least some of the relatively movable parts of the mixing device being less than half of the minimum transverse dimension of the orifice.
If the molten chocolate includes refeed material, including refed pieces of biscuit material, the fact that the clearance between the relatively movable parts of the mixing device is less than half the minimum transverse dimension of the orifice, ensures that a thorough grinding of the sdlid pa rticles within the chocolate is achieved and little or no blockage of the orifice occurs.
Preferably, the clearance between the relatively movable parts of the mixing device is of the order of one on quarter of the minimum transverse dimension of the orifice. It has been found, for example, that an effective clearance of the mixer unit of 0.5 millimetres will prevent blockage of a 2 millimetre diameter orifice used in the nearly open position.
This is rather a surprising result since there is evidence that if the material is more finely ground than at present at an earlier stage in the process, then particle agglomerates can occur which will still occasionally block the orifices. Such a blocking does not occur using the method of the invention, and it of course saves the necessity for a fine grinding apparatus upstream of the mixing device.
The invention also provides apparatus for producing a filled cellular chocolate product, the apparatus comprising a mixing device having relatively movable parts, means for supplying chocolate in the liquid form and introducing it into the mixing device under pressure, means for introducing a gaseous component into the mixing device under pressure, whereby it is uniformly dispersed in the liquid chocolate by the mixing device, an outlet conduit for delivering the mixed product from the mixing device, a sharp restriction in the outlet conduit for releasing the pressure in the mixed product to atmosphere and means to receive the finally deposited product from the restriction and on which the deposited product is solidified by cooling it, the clearances between at least some of the relatively movable parts of the mixing device being less than half the minimum transverse dimension of the sharp restriction in the outlet conduit.
The valving arrangement itself may be as described in our Application 8006248.
In order that the present invention may more readily be understood, the following description is given, merely by way of example, reference being made to the accompanying drawings, in which: Figure lisa schematic view of one embodiment of apparatus according to the invention; Figure 2 is an enlarged fragmentary elevation, partly in section, showing a portion of the mixing device used in the apparatus of Figure 1; Figure 3 is a cross-section through the mixing device of Figure 2; and Figure 4 is a schematic cross-section through a valving arrangement used in the apparatus of Figure 1.
Referring first to Figure 1, a tank 10 having a surrounding water jacket 11 is provided with a stirring device 12. A jacketed outlet pipe 13 passes through a three-way plug cock 14 which has a first connection 15 for returning material to the process to the tank and a second connection 16 leading to a positive displacement pump 17, the outlet 18 of which feeds the product to be treated to a mixer 19 which advantageously is a modified model 4M E.T. Oakes continuous mixer further details of which are described below with reference to Figures 2 and 3.
Fed into the line 18, via a gas outlet 20, is a stream of carbon dioxide, the flow of which is measured by a fluid meter 21. A pressure gauge 22 measures the pressure of the gas and liquid at the inlet to the mixer 19. The outlet 23 of the mixer 19 is connected to a variable orifice valve indicated by the general reference numeral 24to be described in more detail later with reference to Figure 4. The material leaving the valve 24 is, in effect extruded in dosed quantities onto a plate 25 having a mould 26 formed therein.
The whole of the system from the tank 10 to the valve 24 is enclosed in a jacket, only the jacket 11 around the tank 10 being indicated by a reference numeral. The hot water jacket is fed from a supply of hot water 28 and the lines joining this to the various conduits of the sytem are indicated in chain dotted lines. The valve 24 is illustrated in greater detail in Figure 4 and includes a product inlet 60 connected to the outlet 23 of the mixer 19. The inlet 60 extends into a chamber 61 having a lower end wall 63 in which is located a fixed valve plate 62. A second valve plate 64 can be moved by any suitable means (not shown) to effect preadjustment of the flow passage through the orifices of the two valve plates 62 and 64.
Within the chamber 61 is a rod 65 which is axially aligned with the orifice formed through the valve plates, the lower end of the rod 65 being shaped to conform to the shape of the orifice in the upper valve plate 62. A hollow piston 66 is axially slidable so that its internal surface is in sliding contact with the external surface of the rod 65. Similarly, the sleeve 67 is axially slidable with its inner surface in contact with the outer surface of the piston 66.
If reference is now made to Figures 2 and 3, more details of the mixer 19 are illustrated therein. The mixer 19 includes two casing parts 30 and 31 (Figure 3) each having thereon circumferentially spaced arrays of teeth 32 and 34 respectively, there being six arrays 32 and seven arrays 34.
Rotatable about the axis 35 is a shaft (not shown) carrying a rotor 36 having axially extending concen tric arrays of teeth 37 and 38 thereon. The arrays 37 and 38 are located respectively between the arrays 32 and 34 of the housing 30,31. The inlet and the outlet to the mixer are provided adjacent the axis 35, so that material being mixed flows first radially outwardly along one face of the rotor to the periphery and then radially inwardly along the other face, being subjected to a substantial shearing effect by the interaction of the teeth.
The clearance between the teeth 37,38 on the rotor 36 and the teeth 32,34 on the housing 30,31 is very small, preferably being of the orderof0.5 millimetres. The orifice in the valve plates of the valving arrangement illustrated in Figure 4 is preferably adjusted to approximately a 2 millimetre diameter.
In operation, to produce an aerated or cellular chocolate product, chocolate is placed in the tank 10 and is melted by holding the temperature ofthe tank 10 at about 35"C and by operating the anchor shaped stirrer 12. Added to this chocolate is scrap material which may include broken biscuit etc, the scrap material being preground and being added at the rate of approximately 5%.
The molten chocolate is fed from the tank at a metred rate by the pump 17 and is fed into the continuous mixer 19 having a relatively fine clearance mentioned above. Carbon dioxide, at a pressure of about 10.5 kilograms per square centimetre gauge, is metred by the flow meter 14 into the stream of chocolate prior to entering the mixer 19. The carbon dioxide is largely soluble in the chocolate to the extent of being 85% or higher soluble at the rate fed.
In the mixer, the carbon dioxide is dispersed uniformly throughout the chocolate and the pressure, as measured via the gauge 22, is held at about 6 kilograms per square centimetre gauge, with substantially all the carbon dioxide dissolved in the chocolate. The mixer also serves finally to chop up any solids, for example particles of biscuit, which may be in the mix, and make this sufficiently small so that the mixed product can be delivered through the outlet conduit 23 to the valve 24 so that the particle size is smaller than the outlet orifice in the valve.
With regard to the valve, the rod 65 is lowered to close the orifice in the valve plates, and the piston 66 and the sleeve 67 are raised so that a gap 68, 69 is provided below the sleeve and the piston. The sleeve 67 is then lowered, so that it contacts the plate or end wall 63, thus entrapping product, under pressure, below the piston and around the rod 65. The rod 65 is then raised and the piston 66 lowered together, so that the product is forced out, still under pressure through the orifices. As indicated, the particle size of any solids in the chocolate has been rendered suffi cientiy small to pass readily through the orifices. The volume which is discharged at each movement can be determined by suitable previous displacement upwardly of the piston 66. Thus, a measured quantity of chocolate can be discharged at each operation and when the measured quantity has been dis charged, the rod 65 is once again forced into the orifice abruptly to cut off the flow, without disturbing the preadjustment of cross-section of the flow passage through the orifices of the valve.
It will be appreciated that the type of valve illustrated gives a sharp-pressure drop in the product, so thatthe dissolved gas neucleates into bubbles to produce an aerated product which is provided in the moulds 26 formed in the moulding plate 25. As the gas forms into bubbles, the chocolate cools, on reentering the atmosphere, and begins to solidify. A biscuit can be inserted into the mould in the manner described earlier, and any scrap which is removed, can be returned to the tank 10.
By way of comparison, one embodiment of mixer proposed according to the present invention has 124 teeth per side on the rotor and 104 teeth per side on the casing or stator, to give a radial clearance of 0.5 millimetres, whereas, a typical mixer as used in the process of Application 30595/78 has 84 teeth per side on the rotor and 76 teeth per side on the casing or stator, with a radial clearance of 1.6 millimetres.

Claims (8)

1. A method of making a filled cellular chocolate product, comprising the steps of heating a supply of chocolate to bring itto a molten state, introducing into the molten chocolate under pressure a gas which is largely soluble in the chocolate, feeding the molten chocolate under pressure into a mixing device having relatively removable parts, operating the mixing device to disperse the gas uniformly, so that it is dissolved throughout the molten chocolate, passing the liquid chocolate through a restriction to release the pressure suddenly to atmosphere, so that the dissolved gas forms gaseous bubbles and solidifying the liquid chocolate into a finally resulting deposited chocolate product by cooling, the clearance between at least some of the relative movable parts of the mixing device being less than half the minimum transverse dimension of the orifice.
2. A method according to claim 1, wherein the clearance between the relatively movable parts of the mixing device is of the order of one quarter of the minimum transverse dimension of the orifice.
3. A method according to claim 2, wherein the effective clearance of the mixer unit is 0.5 millimetres and the orifice is a 2 millimetre diameter orifice.
4. A method of making a filled cellular chocolate product substantially as hereinbefore described with reference to and as illustrated in the accompanying drawings.
5. Apparatus for producing a filled cellular chocolate product substantially as herein before described with reference to and as illustrated in the accompanying drawings.
6. Apparatus for producing a filled cellular chocolate product, the apparatus comprising a mixing device having relatively movable parts, means for supplying chocolate in the liquid form and introducing it into the mixing device under pressure, means for introducing a gaseous component into the mixing device under pressure, whereby it is uniformly dispersed in the liquid chocolate by the mixing device, an outlet conduit for delivering the mixed product from the mixing device, a sharp restriction in the outlet conduit for releasing the pressure in the mixed product to atmosphere, and means to receive the finally deposited product from the restriction and on which the deposited product is solidified by cooling, the clearance between at least some of the relatively movable parts of the mixing device being less than half the minimum transverse dimension of the sharp restriction in the outlet conduit.
7. Apparatus according to claim 6, wherein the clearance between the relative removable parts of the mixing device is of the order of one quarter of the minimum transverse dimension of the orifice.
8. Apparatus for producing a filled cellular chocolate product, such apparatus being substantially as hereinbefore described, with reference to and as illustrated in the accompanying drawings.
GB8021491A 1980-07-01 1980-07-01 Method and apparatus for producing a cellular food product Expired GB2081064B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
GB8021491A GB2081064B (en) 1980-07-01 1980-07-01 Method and apparatus for producing a cellular food product

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
GB8021491A GB2081064B (en) 1980-07-01 1980-07-01 Method and apparatus for producing a cellular food product

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GB2081064A true GB2081064A (en) 1982-02-17
GB2081064B GB2081064B (en) 1984-03-28

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0106624A2 (en) * 1982-10-13 1984-04-25 Cadbury Limited Method and apparatus for manufacturing a confection.
US5017390A (en) * 1987-12-14 1991-05-21 Conopco, Inc. Confection and method and apparatus for manufacturing it

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0106624A2 (en) * 1982-10-13 1984-04-25 Cadbury Limited Method and apparatus for manufacturing a confection.
EP0106624A3 (en) * 1982-10-13 1985-07-31 Cadbury Limited Method and apparatus for manufacturing a confection, a depositor for use in such a method and depositing apparatus
US4637788A (en) * 1982-10-13 1987-01-20 Cadbury Limited Apparatus for making a confection including a depositing means and conveyor carried molds
US5017390A (en) * 1987-12-14 1991-05-21 Conopco, Inc. Confection and method and apparatus for manufacturing it

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Publication number Publication date
GB2081064B (en) 1984-03-28

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Legal Events

Date Code Title Description
732 Registration of transactions, instruments or events in the register (sect. 32/1977)
PCNP Patent ceased through non-payment of renewal fee