WO1982000944A1 - Confection distribution vehicle - Google Patents

Confection distribution vehicle Download PDF

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Publication number
WO1982000944A1
WO1982000944A1 PCT/AU1981/000138 AU8100138W WO8200944A1 WO 1982000944 A1 WO1982000944 A1 WO 1982000944A1 AU 8100138 W AU8100138 W AU 8100138W WO 8200944 A1 WO8200944 A1 WO 8200944A1
Authority
WO
WIPO (PCT)
Prior art keywords
confection
distribution vehicle
vehicle according
compressor
beater
Prior art date
Application number
PCT/AU1981/000138
Other languages
French (fr)
Inventor
E Hatziorfanos
Original Assignee
Hatziorfanos P
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 Hatziorfanos P filed Critical Hatziorfanos P
Priority to AU75850/81A priority Critical patent/AU7585081A/en
Publication of WO1982000944A1 publication Critical patent/WO1982000944A1/en

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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25BREFRIGERATION MACHINES, PLANTS OR SYSTEMS; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS
    • F25B27/00Machines, plants or systems, using particular sources of energy
    • 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
    • A23G9/00Frozen sweets, e.g. ice confectionery, ice-cream; Mixtures therefor
    • 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
    • A23G9/00Frozen sweets, e.g. ice confectionery, ice-cream; Mixtures therefor
    • A23G9/04Production of frozen sweets, e.g. ice-cream
    • A23G9/22Details, component parts or accessories of apparatus insofar as not peculiar to a single one of the preceding groups
    • A23G9/28Details, component parts or accessories of apparatus insofar as not peculiar to a single one of the preceding groups for portioning or dispensing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60PVEHICLES ADAPTED FOR LOAD TRANSPORTATION OR TO TRANSPORT, TO CARRY, OR TO COMPRISE SPECIAL LOADS OR OBJECTS
    • B60P3/00Vehicles adapted to transport, to carry or to comprise special loads or objects
    • B60P3/007Vehicles adapted to transport, to carry or to comprise special loads or objects for delivery of small articles, e.g. milk, frozen articles

Definitions

  • the invention relates to a confection distribution vehicle and in particular to a vehicle which is suitable for the transport of frozen confections, such as ice creams and iced drinks, to arbitrary selling points for distribution and sale to members of the public.
  • confection distribution vehicles have been used to patrol streets in search of customers, and are usually provided with some audible signalling device to notify the presence of the vehicle and to attract custom.
  • This mode of use necessitates an internal energy source for the refrigeration and dispensing equipment carried by the vehicle, which source of energy is operable while the vehicle is in motion and which will continue in use during frequent stops of short duration as it is not practicable, even if one were available, to connect the equipment to an external source of energy.
  • Some known confection distribution vehicles have been provided with equipment to store and dispense frozen confection, such as that known as soft ice cream.
  • the frozen confection is stored in a refrigeration chamber and kept at the desired consistency by a rotary beater which also served to force the frozen confection from the refrigeration chamber through a dispensing nozzle on activation thereof.
  • the apparatus has included refrigeration equipment comprising an evaporator located in or around the refrigeration chamber.
  • the source of energy for the refrigeration and dispensing equipment has been an internal combustion engine, which is separate from the engine of the vehicle.
  • the internal combustion engine has been arranged to drive an alternator to provide electric power to operate the equipment.
  • the known arrangement has limitations and normally the known type of vehicle has been restricted to a single confection dispensing device.
  • the known equipment was required to operate under a wide range of conditions entailing the removal of a variable amount of heat from the refrigeration system of the dispensing device. For example, during spells of high temperature or heavy customer traffic, the large amount of heat that had to be removed from the system overtaxed the refrigeration system commonly employed. It often happened that, even after dispensing as few as eight to ten ice creams, the dispensing equipment failed to operate properly and the dispensed confection was not properly prepared, was not properly frozen and, being more milk, than ice cream, was unsuitable for sale.
  • a confection distribution vehicle having at least one frozen confection dispensing device, each said device comprising
  • a refrigeration chamber to store frozen confection
  • a dispensing nozzle from said chamber through which frozen confection may be dispensed
  • a beater in said refrigeration chamber operable to maintain the frozen confection at the desired consistency and to expel frozen confection through the nozzle on activation of the dispensing mechanism therefor
  • a refrigeration system including an evaporator located in or around the refrigeration chamber, a condensor and a compressor, an internal combustion engine for driving the beater (s) and the compressor (s) through a mechanical transmission and means to control the selective operation of the beater(s) and the compressor(s).
  • the mechanical transmission may take the form of belts and pulleys or gears or at least one component may be driven hydraulically by means of a hydraulic motor.
  • Selective operation of the beater (s) and the compressor (s) is achieved by electrically operable clutches regulated by the control means.
  • a confection distribution vehicle may sometimes be used among a crowd of potential customers, such as at a sports meet or at a children's picnic. On such occasions, a confection distribution vehicle may remain stationary for several hours and it would then be desirable to be able to power the dispensing and refrigeration equipment from a convenient external source of energy such as the mains power supply. Furthermore, the prior vehicles were not permitted to operate at food markets due to the emission of fumes from the internal combustion engine.
  • it is an object to provide at least one electric motor as an alternative and additional energy source for the dispensing and refrigeration equipment when the vehicle is stationary for an extended period at a location with accessible electricity.
  • Other preferred objects include the provision of means to supply hot water and the provision of a supplementary heater to warm chocolate or the like.
  • Figure 1 is a schematic plan view of a confection distribution vehicle, with the roof of the rear section omitted to illustrate the general layout of the various components;
  • Figure 2 is a side, partly sectional, view of the vehicle taken along the line 2 - 2 of Figure 1;
  • Figure 3 is a plan view taken along the line 3 - 3 of Figure 2 illustrating the driving components
  • Figure 4 is an end view taken along the line 4 - 4 of Figure 3 illustrating the mechanical transmission
  • Figure 5 illustrates the means for heating the water in the storage tank
  • Figure 6 illustrates the means for supplying heat to a supplementary heater
  • Figure 7 illustrates the refrigeration circuits for the two confection dispensing devices and for an ancillary refrigerator.
  • Figures 1 and 2 illustrate a confection distribution vehicle with an engine housing 1, a driving cabin 2 with access 3 to a rear section 4 having a front wall 5, a rear wall 6 and two side walls 7 and 8.
  • the apparatus is arranged in the rear section 4 so that service may be provided at side 8.
  • the rear section 4 of the vehicle has a bench 9 extending longitudinally of the vehicle along side 8 and a serving hatch 10 which has a closure member (not shown) which can be conveniently positioned away from the hatch opening to provide access for potential customers and allow unimpeded passage for service.
  • a shelf 11 extends transversely of the vehicle adjacent the rear wall 6 and supports two confection dispensing devices 12 and 13, the former being adapted to dispense soft ice cream and the latter a frozen drink confection.
  • an internal combustion engine 14 Positioned in the rear section 4 of the vehicle adjacent the rear wall 6 and beneath the shelf 11 is an internal combustion engine 14 which is connected through mechanical clutch 15 to a mechanical transmission including a number of belts and pulleys from which various components are drawn.
  • the internal combustion engine is started with the mechanical clutch 15 in its disengaged position and clutch 15 is arranged to be operated through rear access doors 16 and 17.
  • the other controls for the internal combustion engine 14 are also located so that they may be conveniently operated through the rear access door 16 and 17.
  • the output from the internal combustion engine is a continuation of the crankshaft of the engine although it may be in driven relation therewith.
  • the internal combustion engine is provided with a governor which operates to maintain optimum engine revolutions as the load varies when the various driven components of the equipment operate.
  • the internal combustion engine could be air cooled, it is preferred that it is water cooled and, as illustrated in Figure 5, the heated water from the cooling system of the internal combustion engine 14 is passed by pipes 18 to a heat exchange coil 19 located in an insulated hot water storage tank 20 of, say, twelve gallon capacity.
  • the circulation of the heated water from the engine cooling system through pipes 18 and coil 19 may be assisted by the inclusion of a water pump (not shown), if desired.
  • waste heat from the internal combustion engine 14 may be used to heat the water in the storage tank 20 to provide a supply of hot water for washing purposes.
  • the outlet from the storage tank is fed by a water pump 21 to tap 22 located above sink 23.
  • the hot water in the storage tank 20 is also used to supply heat to a supplementary heater 24.
  • a supplementary heater 24 This is achieved as shown in Figure 6 by hot water from the storage tank 20 being circulated by water pump 21 through a control tap 25 to a heating coil 26, located in jacket 27 of supplementary heater 24, and thence back to storage tank 20.
  • the supplementary heater 24 is used to heat container 28 of, say, chocolate which is thus maintained in melted condition and which may be used to provide a chocolate coating on an iced confection plunged therein.
  • the amount of hot water passing through the supplementary heater 24 can be controlled by tap 25, the construction of the supplementary heater ensures that the contents of container 28 are kept at an even temperature and do not burn.
  • the internal combustion engine 14 is used to provide the necessary energy to drive the various components whilst the vehicle is in motion and during short selling stops. However, when the vehicle is to remain stationary for an extended length of time, say, several hours and is conveniently positioned in relation to a mains electric supply, it is preferable to use the latter supply. To achieve this, two electric motors 29 and 30 are provided. When the electric motors are operating, the internal combustion engine 14 is isolated by the mechanical clutch 15 so that it is not driven by the electric motors. When the vehicle is connected to the mains electricity supply, the internal combustion engine 14 is not operating and the water in storage tank 20 is then heated by a supplementary electric heater 31 of, say, 2 K.V. loading which is powered from the mains supply. The heater 31 is provided with a thermostat 32 to control the temperature of the water in the storage tank 20. The water pump 21 is connected in the transmission in that it operates continuously while either the internal combustion engine, or the electric motors, is operating.
  • the rear section 4 is provided with a light which may be powered from the vehicle accumulator or the accumulator for internal combustion engine 14. Additionally, switching means may be provided so that light is powered from the mains electric supply via a suitable transformer and rectifier.
  • each device has a mixing chamber into which the product mixture is fed - and which is in communication with a refrigeration chamber into which the product mixture is pumped and is frozen, but which is kept moving by a rotatable beater mounted for movement in the the refrigeration chamber.
  • the beaters are driven by pulleys 33 and 34.
  • the rotating beater also urges the frozen confection towards a dispensing nozzle at one end of the refrigeration chamber, through which nozzle, on activation of the dispensing mechanism therefor, frozen confection is forced to fill a cone, cup or other container.
  • each confection dispensing device has a four position manual function switch to determine the mode of operation of the device. In one position, the confection dispensing device is switched off.
  • the dispensing device In a second position, the dispensing device operates in its conservation mode. Initially, both the beater and the compressor commence operation together. It is important that the refrigeration system does not run for any length of time without the beater operating as hard freezing of confection in the refrigeration chamber is to be avoided.
  • the beater and the compressor operate together and intermittently under the control of a thermostat to keep the confection in the refrigeration chamber at a chill temperature (e.g. 17oF.).
  • the temperature of the evaporator gas is taken as a measure of that of the confection.
  • the dispensing device works in the same way as a domestic refrigerator, serving to preserve the confection. Thus, for example, it may be desired to leave the confection in the dispensing device overnight rather than clean out the device.
  • a pump in the dispensing device feeds a small quantity of the product mix into the refrigeration chamber and it is possible to start dispensing of, say, two or three ice creams almost immediately.
  • the confection dispensing device In a third position of the function switch, the confection dispensing device is in its dispense mode of operation wherein the beater is always r.inning.
  • the chill thermostat is by-passed and the compressor operates intermittently under the control of a second thermostat to keep the refrigeration chamber at a freeze temperature (e.g. - 34°F.).
  • the control means In determining when the compressor operates, the control means has regard for both the temperature and the viscosity of the confection in the refrigeration chamber as well as both the internal and external temperatures of the vehicle.
  • product mix is pumped into the refrigeration chamber gradually until it is filled and as confection is dispensed.
  • the equipment is ready for normal dispensing after approximately two minutes after switching on the device.
  • the confection dispensing device In the fourth position of the function switch, the confection dispensing device is in its cleaning mode wherein the beater runs continuously and the compressor is always inoperative.
  • the dispensing device can be emptied and cleaned with cold water and any ice cream taken from the device stored in a refrigerator.
  • the refrigeration circuits for the confection dispensing devices 12 and 13 each comprises a compressor 36, a pressure line 37, a condensor 38, an expansion valve 39, an evaporator 40 and a suction line 41 which passes through the mixing chamber to provide preliminary cooling for the product mix before returning to the compressor 36.
  • Each refrigeration circuit also includes a filter 42 and an inspection glass 43.
  • the evaporator is formed as a coil and is located within, or maybe passed around, the refrigeration chamber.
  • an additional evaporator 40 1 is connected in parallel with evaporator 40.
  • the evaporator 40 1 serves to cool refrigerator 44, located in the rear section 4 adjacent side 7.
  • Refrigerator 44 can be used to store soft drinks and the like.
  • the two refrigeration circuits with parallel connected evaporators 40 and 40 1 have their own controls so that they can operate independently.
  • the condensor unit 38 is in front of door 17 located at the rear of the vehicle. Air is drawn through the condensors for cooling purposes by at least fan 45 and supplementary condensor fan 46.
  • engine fan 47 In addition to engine fan 47, there is also a supplementary engine fan 48.
  • each door 16 and 17 is provided with a mesh covered duct or aperture of substantial extent so as to provide a free passage for the expulsion of air drawn over the equipment by the fans. Not only does the current of air serve to cool the internal combustion engine 14 and condensor unit 38, it forms an insulating barrier around the confection dispensing devices 12 and 13 which stops penetration of heat and permits the confection dispensing devices 12 and 13 to operate more effectively.
  • fans 45, 46 and 48 are driven by the internal combustion engine 14 through an alternator 49 or from the mains electricity supply.
  • the engine fan 47 operates when the internal combustion engine 14 is operating.
  • Supplementary engine fan 48 is brought into operation by the control means 54 when the engine rises to a predetermined temperature.
  • Condensor fan 45 is caused by the control means 54 to operate whenever a compressor is operating while supplementary condensor fan 46 is brought into operation when the temperature of the condensor unit 38 rises to a predetermined temperature.
  • control means 54 To feed the necessary information to the control means 54, it is provided with a plurality of sensors to measure the temperature of the confection in each refrigeration chamber (taken as the temperature of the evaporator gas), the temperature of the internal combustion engine 14, the temperature of the condensor unit 38, and the external temperature of the vehicle. Even when internal combustion engine 14 is not operating, the engine sensor is still effective to measure the internal temperature of the vehicle. Viscosity switches operated by the respective beaters are used to control the operation of the equipment in accordance with the viscosity of the confection.
  • the mechanical transmission from the internal combustion engine 14 and the electric motors 29 and 30 is illustrated in Figure 4 and comprises a series of belt coupled pulleys.
  • Pulleys 50 and 51 which drive the respective compressors, and pulleys 52 and 53 in the drive to the beater pulleys 33 and 34, respectively, are provided with electrically operated clutches and the control means 54 switch the components into operation according to the functional mode of operation of the confection dispensing devices 12 and 13 and the information fed to it by the various sensors.
  • Beater pulley 33 of device 12 is driven via pulleys and belts. However, for convenience of location, it is preferred that beater pulley 34 of device 13 is driven by hydraulic motor 55.
  • the hydraulic circuit comprises an hydraulic pump 56 driven from pulley 53, regulator 57, motor 55 and oil reservoir (not shown).
  • the pump 56 is adapted to supply fluid at a predetermined pressure, such as 800 p.s.i., to the motor 55.
  • a predetermined pressure such as 800 p.s.i.
  • the line from the pump may be run at approximately twice that pressure and passes from the regulator 57 to motor 55 with any bled fluid returning to the oil reservoir together with the fluid from the outlet of motor 55.
  • the two compressors 36 are also driven via pulleys and belts.
  • the mixing chambers of the confection dispensing devices are charged with the appropriate product mix.
  • the internal combustion engine 14 is started and the mechanical clutch engaged.
  • water from its cooling system begins to circulate through pipes 18 and heat exchange coil 19 to heat water in tank 20.
  • the water pump 21 operates continuously, it pressurises the hot water tap 22 and causes water to circulate to heat the supplementary heater 24.
  • the function switches on the confection dispensing devices 12 and 13 are adjusted, and the vehicle is ready for use.
  • control means 54 When connected to the mains supply, the control means 54 firstly operates to start the two electric motors 29 and 30 sequentially - with an approximate four seconds delay - as the power drain would be excessive if both motors were started at the same time.
  • the control means 54 also serves to connect the other components such as the electric heating element and the fans to the mains supply. The operation of the equipment is much the same as when the internal combustion engine 14 is operating.
  • the control means cause the confection dispensing devices to operate effectively to enable proper dispensing quickly and continually despite large variations in the atmospheric conditions, the internal temperature of the vehicle and customer traffic.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Mechanical Engineering (AREA)
  • Polymers & Plastics (AREA)
  • Food Science & Technology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Thermal Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
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Abstract

The vehicle is provided in its rear section (4) with a serving hatch (10) from which to distribute frozen confections from two refrigerated dispensing devices (12 and 13) and cold drinks from refrigerator (44). The equipment is adapted to be driven through a mechanical transmission by internal combustion engine (14) so that the vehicle may be used to travel to arbitrary selling points. Additionally, electric motors are provided to drive the equipment when the vehicle is at a fixed location with accessible electricity. Control means (54) regulate the selective operation of the beaters in the refrigeration chambers of the dispensing devices, the compressors in their associated refrigeration equipment and a series of fans drawing air around all equipment and through the rear section (4) of the vehicle. Control means (54) is responsive to the temperature and viscosity of the confection in the refrigeration chambers of the confection dispensing devices and the external and internal temperatures of the vehicle, the arrangement being such that the efficiency of the confection dispensing devices is maximized and there is an optimisation of the conditions in which they operate. Fluid from the cooling system of internal combustion engine (14) via a heat exchanger, or an electric heating element, is used to heat water in a water storage tank which is supplied by a continuously operating water pump to tap (22) over sink (23) and is also circulated to supply heat to a food warmer (24).

Description

DESCRIPTION Title :
Confection Distribution Vehicle.
Field of Invention:
The invention relates to a confection distribution vehicle and in particular to a vehicle which is suitable for the transport of frozen confections, such as ice creams and iced drinks, to arbitrary selling points for distribution and sale to members of the public.
Description of Prior Art:
Generally speaking, confection distribution vehicles have been used to patrol streets in search of customers, and are usually provided with some audible signalling device to notify the presence of the vehicle and to attract custom. This mode of use necessitates an internal energy source for the refrigeration and dispensing equipment carried by the vehicle, which source of energy is operable while the vehicle is in motion and which will continue in use during frequent stops of short duration as it is not practicable, even if one were available, to connect the equipment to an external source of energy.
Some known confection distribution vehicles have been provided with equipment to store and dispense frozen confection, such as that known as soft ice cream. In prior apparatus of this type, the frozen confection is stored in a refrigeration chamber and kept at the desired consistency by a rotary beater which also served to force the frozen confection from the refrigeration chamber through a dispensing nozzle on activation thereof. The apparatus has included refrigeration equipment comprising an evaporator located in or around the refrigeration chamber.
Normally, the source of energy for the refrigeration and dispensing equipment has been an internal combustion engine, which is separate from the engine of the vehicle. The internal combustion engine has been arranged to drive an alternator to provide electric power to operate the equipment. The known arrangement has limitations and normally the known type of vehicle has been restricted to a single confection dispensing device.
Additionally, the known equipment was required to operate under a wide range of conditions entailing the removal of a variable amount of heat from the refrigeration system of the dispensing device. For example, during spells of high temperature or heavy customer traffic, the large amount of heat that had to be removed from the system overtaxed the refrigeration system commonly employed. It often happened that, even after dispensing as few as eight to ten ice creams, the dispensing equipment failed to operate properly and the dispensed confection was not properly prepared, was not properly frozen and, being more milk, than ice cream, was unsuitable for sale.
Prior attempts to overcome these problems, involving heavy duty alternators or generators and bigger motors, proved unsatisfactory because the additional heat thereby introduced merely increased the difficulties.
Summary of the Invention: It is an object of the present invention to provide a confection distribution vehicle with at least one confection dispensing device. It is a further object of the present invention to provide a confection distribution vehicle having driving and controlling means for powering the components selectively.
It is a further object of the present invention to minimise the problems caused by varying weather conditions to which a vehicle is subjected.
It is another object of the present invention to improve the environment inside the vehicle to assist each confection dispensing device to operate more effectively.
It is another object of the present invention to operate selectively the beater in the refrigeration chamber of the confection dispensing device, the compressor of the refrigeration circuit for the device and the cooling fans drawing air through the vehicle and around the equipment to optimise the conditions under which each confection dispensing device operates.
In accordance with the present invention, a confection distribution vehicle is provided having at least one frozen confection dispensing device, each said device comprising
: a refrigeration chamber to store frozen confection; : a dispensing nozzle from said chamber through which frozen confection may be dispensed; : a beater in said refrigeration chamber operable to maintain the frozen confection at the desired consistency and to expel frozen confection through the nozzle on activation of the dispensing mechanism therefor; and : a refrigeration system including an evaporator located in or around the refrigeration chamber, a condensor and a compressor, an internal combustion engine for driving the beater (s) and the compressor (s) through a mechanical transmission and means to control the selective operation of the beater(s) and the compressor(s).
The mechanical transmission may take the form of belts and pulleys or gears or at least one component may be driven hydraulically by means of a hydraulic motor. Selective operation of the beater (s) and the compressor (s) is achieved by electrically operable clutches regulated by the control means.
Besides its use to patrol streets in search of customers, a confection distribution vehicle may sometimes be used among a crowd of potential customers, such as at a sports meet or at a children's picnic. On such occasions, a confection distribution vehicle may remain stationary for several hours and it would then be desirable to be able to power the dispensing and refrigeration equipment from a convenient external source of energy such as the mains power supply. Furthermore, the prior vehicles were not permitted to operate at food markets due to the emission of fumes from the internal combustion engine.
In a preferred form of the invention, it is an object to provide at least one electric motor as an alternative and additional energy source for the dispensing and refrigeration equipment when the vehicle is stationary for an extended period at a location with accessible electricity. Other preferred objects include the provision of means to supply hot water and the provision of a supplementary heater to warm chocolate or the like.
Brief Description of Drawings: The invention will be described in relation to a confection distribution vehicle having two confection dispensing devices. In the drawings -
Figure 1 is a schematic plan view of a confection distribution vehicle, with the roof of the rear section omitted to illustrate the general layout of the various components;
Figure 2 is a side, partly sectional, view of the vehicle taken along the line 2 - 2 of Figure 1;
Figure 3 is a plan view taken along the line 3 - 3 of Figure 2 illustrating the driving components;
Figure 4 is an end view taken along the line 4 - 4 of Figure 3 illustrating the mechanical transmission;
Figure 5 illustrates the means for heating the water in the storage tank;
Figure 6 illustrates the means for supplying heat to a supplementary heater; and
Figure 7 illustrates the refrigeration circuits for the two confection dispensing devices and for an ancillary refrigerator.
Description of Preferred Embodiment:
Figures 1 and 2 illustrate a confection distribution vehicle with an engine housing 1, a driving cabin 2 with access 3 to a rear section 4 having a front wall 5, a rear wall 6 and two side walls 7 and 8. The apparatus is arranged in the rear section 4 so that service may be provided at side 8. To that end, the rear section 4 of the vehicle has a bench 9 extending longitudinally of the vehicle along side 8 and a serving hatch 10 which has a closure member (not shown) which can be conveniently positioned away from the hatch opening to provide access for potential customers and allow unimpeded passage for service.
A shelf 11 extends transversely of the vehicle adjacent the rear wall 6 and supports two confection dispensing devices 12 and 13, the former being adapted to dispense soft ice cream and the latter a frozen drink confection.
Positioned in the rear section 4 of the vehicle adjacent the rear wall 6 and beneath the shelf 11 is an internal combustion engine 14 which is connected through mechanical clutch 15 to a mechanical transmission including a number of belts and pulleys from which various components are drawn. The internal combustion engine is started with the mechanical clutch 15 in its disengaged position and clutch 15 is arranged to be operated through rear access doors 16 and 17. The other controls for the internal combustion engine 14 are also located so that they may be conveniently operated through the rear access door 16 and 17. The output from the internal combustion engine is a continuation of the crankshaft of the engine although it may be in driven relation therewith. The internal combustion engine is provided with a governor which operates to maintain optimum engine revolutions as the load varies when the various driven components of the equipment operate. Although the internal combustion engine could be air cooled, it is preferred that it is water cooled and, as illustrated in Figure 5, the heated water from the cooling system of the internal combustion engine 14 is passed by pipes 18 to a heat exchange coil 19 located in an insulated hot water storage tank 20 of, say, twelve gallon capacity. The circulation of the heated water from the engine cooling system through pipes 18 and coil 19 may be assisted by the inclusion of a water pump (not shown), if desired. In this way, waste heat from the internal combustion engine 14 may be used to heat the water in the storage tank 20 to provide a supply of hot water for washing purposes. To this end, the outlet from the storage tank is fed by a water pump 21 to tap 22 located above sink 23.
The hot water in the storage tank 20 is also used to supply heat to a supplementary heater 24. This is achieved as shown in Figure 6 by hot water from the storage tank 20 being circulated by water pump 21 through a control tap 25 to a heating coil 26, located in jacket 27 of supplementary heater 24, and thence back to storage tank 20. The supplementary heater 24 is used to heat container 28 of, say, chocolate which is thus maintained in melted condition and which may be used to provide a chocolate coating on an iced confection plunged therein. As the amount of hot water passing through the supplementary heater 24 can be controlled by tap 25, the construction of the supplementary heater ensures that the contents of container 28 are kept at an even temperature and do not burn.
The internal combustion engine 14 is used to provide the necessary energy to drive the various components whilst the vehicle is in motion and during short selling stops. However, when the vehicle is to remain stationary for an extended length of time, say, several hours and is conveniently positioned in relation to a mains electric supply, it is preferable to use the latter supply. To achieve this, two electric motors 29 and 30 are provided. When the electric motors are operating, the internal combustion engine 14 is isolated by the mechanical clutch 15 so that it is not driven by the electric motors. When the vehicle is connected to the mains electricity supply, the internal combustion engine 14 is not operating and the water in storage tank 20 is then heated by a supplementary electric heater 31 of, say, 2 K.V. loading which is powered from the mains supply. The heater 31 is provided with a thermostat 32 to control the temperature of the water in the storage tank 20. The water pump 21 is connected in the transmission in that it operates continuously while either the internal combustion engine, or the electric motors, is operating.
The rear section 4 is provided with a light which may be powered from the vehicle accumulator or the accumulator for internal combustion engine 14. Additionally, switching means may be provided so that light is powered from the mains electric supply via a suitable transformer and rectifier.
The confection dispensing devices 12 and 13 are basically of the same known construction. Briefly, each device has a mixing chamber into which the product mixture is fed - and which is in communication with a refrigeration chamber into which the product mixture is pumped and is frozen, but which is kept moving by a rotatable beater mounted for movement in the the refrigeration chamber. The beaters are driven by pulleys 33 and 34.
Because the frozen confection is kept in a state of movement within the refrigeration chamber by rotation of the beater, it is maintained at the desired consistency for dispensing. In known manner, the rotating beater also urges the frozen confection towards a dispensing nozzle at one end of the refrigeration chamber, through which nozzle, on activation of the dispensing mechanism therefor, frozen confection is forced to fill a cone, cup or other container.
As is normal, each confection dispensing device has a four position manual function switch to determine the mode of operation of the device. In one position, the confection dispensing device is switched off.
In a second position, the dispensing device operates in its conservation mode. Initially, both the beater and the compressor commence operation together. It is important that the refrigeration system does not run for any length of time without the beater operating as hard freezing of confection in the refrigeration chamber is to be avoided. The beater and the compressor operate together and intermittently under the control of a thermostat to keep the confection in the refrigeration chamber at a chill temperature (e.g. 17ºF.). The temperature of the evaporator gas is taken as a measure of that of the confection. In this mode, the dispensing device works in the same way as a domestic refrigerator, serving to preserve the confection. Thus, for example, it may be desired to leave the confection in the dispensing device overnight rather than clean out the device. At the commencement of the conservation mode, a pump in the dispensing device feeds a small quantity of the product mix into the refrigeration chamber and it is possible to start dispensing of, say, two or three ice creams almost immediately.
In a third position of the function switch, the confection dispensing device is in its dispense mode of operation wherein the beater is always r.inning. The chill thermostat is by-passed and the compressor operates intermittently under the control of a second thermostat to keep the refrigeration chamber at a freeze temperature (e.g. - 34°F.). In determining when the compressor operates, the control means has regard for both the temperature and the viscosity of the confection in the refrigeration chamber as well as both the internal and external temperatures of the vehicle. During this mode, product mix is pumped into the refrigeration chamber gradually until it is filled and as confection is dispensed. The equipment is ready for normal dispensing after approximately two minutes after switching on the device.
In the fourth position of the function switch, the confection dispensing device is in its cleaning mode wherein the beater runs continuously and the compressor is always inoperative. The dispensing device can be emptied and cleaned with cold water and any ice cream taken from the device stored in a refrigerator.
As illustrated in Figure 7, the refrigeration circuits for the confection dispensing devices 12 and 13 each comprises a compressor 36, a pressure line 37, a condensor 38, an expansion valve 39, an evaporator 40 and a suction line 41 which passes through the mixing chamber to provide preliminary cooling for the product mix before returning to the compressor 36. Each refrigeration circuit also includes a filter 42 and an inspection glass 43. The evaporator is formed as a coil and is located within, or maybe passed around, the refrigeration chamber.
In the refrigeration circuit of one of the confection dispensing devices, an additional evaporator 401 is connected in parallel with evaporator 40. The evaporator 401 serves to cool refrigerator 44, located in the rear section 4 adjacent side 7.
Refrigerator 44 can be used to store soft drinks and the like. The two refrigeration circuits with parallel connected evaporators 40 and 401 have their own controls so that they can operate independently. The condensor unit 38 is in front of door 17 located at the rear of the vehicle. Air is drawn through the condensors for cooling purposes by at least fan 45 and supplementary condensor fan 46.
In addition to engine fan 47, there is also a supplementary engine fan 48.
The bottom half of each door 16 and 17 is provided with a mesh covered duct or aperture of substantial extent so as to provide a free passage for the expulsion of air drawn over the equipment by the fans. Not only does the current of air serve to cool the internal combustion engine 14 and condensor unit 38, it forms an insulating barrier around the confection dispensing devices 12 and 13 which stops penetration of heat and permits the confection dispensing devices 12 and 13 to operate more effectively.
Depending upon the source of energy for the equipment, fans 45, 46 and 48 are driven by the internal combustion engine 14 through an alternator 49 or from the mains electricity supply.
The engine fan 47 operates when the internal combustion engine 14 is operating. Supplementary engine fan 48 is brought into operation by the control means 54 when the engine rises to a predetermined temperature. Condensor fan 45 is caused by the control means 54 to operate whenever a compressor is operating while supplementary condensor fan 46 is brought into operation when the temperature of the condensor unit 38 rises to a predetermined temperature.
To feed the necessary information to the control means 54, it is provided with a plurality of sensors to measure the temperature of the confection in each refrigeration chamber (taken as the temperature of the evaporator gas), the temperature of the internal combustion engine 14, the temperature of the condensor unit 38, and the external temperature of the vehicle. Even when internal combustion engine 14 is not operating, the engine sensor is still effective to measure the internal temperature of the vehicle. Viscosity switches operated by the respective beaters are used to control the operation of the equipment in accordance with the viscosity of the confection.
The mechanical transmission from the internal combustion engine 14 and the electric motors 29 and 30 is illustrated in Figure 4 and comprises a series of belt coupled pulleys. Pulleys 50 and 51, which drive the respective compressors, and pulleys 52 and 53 in the drive to the beater pulleys 33 and 34, respectively, are provided with electrically operated clutches and the control means 54 switch the components into operation according to the functional mode of operation of the confection dispensing devices 12 and 13 and the information fed to it by the various sensors. Beater pulley 33 of device 12 is driven via pulleys and belts. However, for convenience of location, it is preferred that beater pulley 34 of device 13 is driven by hydraulic motor 55. The hydraulic circuit comprises an hydraulic pump 56 driven from pulley 53, regulator 57, motor 55 and oil reservoir (not shown). The pump 56 is adapted to supply fluid at a predetermined pressure, such as 800 p.s.i., to the motor 55. In practice, the line from the pump may be run at approximately twice that pressure and passes from the regulator 57 to motor 55 with any bled fluid returning to the oil reservoir together with the fluid from the outlet of motor 55.
The two compressors 36 are also driven via pulleys and belts.
When it is desired to use the confection distribution vehicle, the mixing chambers of the confection dispensing devices are charged with the appropriate product mix. By working through the rear doors, the internal combustion engine 14 is started and the mechanical clutch engaged. As soon as the internal combustion engine 14 has been started, water from its cooling system begins to circulate through pipes 18 and heat exchange coil 19 to heat water in tank 20. As the water pump 21 operates continuously, it pressurises the hot water tap 22 and causes water to circulate to heat the supplementary heater 24. The function switches on the confection dispensing devices 12 and 13 are adjusted, and the vehicle is ready for use. When connected to the mains supply, the control means 54 firstly operates to start the two electric motors 29 and 30 sequentially - with an approximate four seconds delay - as the power drain would be excessive if both motors were started at the same time. The control means 54 also serves to connect the other components such as the electric heating element and the fans to the mains supply. The operation of the equipment is much the same as when the internal combustion engine 14 is operating.
Although the internal temperature of the van may vary over a far wider range than a shop, the confection to be dispensed is readily maintained in the desired condition throughout that range of temperature variation by the use of the equipment described. By taking into account far more variables than is now the case, the control means cause the confection dispensing devices to operate effectively to enable proper dispensing quickly and continually despite large variations in the atmospheric conditions, the internal temperature of the vehicle and customer traffic.
Although the invention has been described in relation to a particular confection distribution vehicle with particular layout and operation of equipment, the description is not to be taken as restricting the broad scope of the invention which is set forth in the appended claims.

Claims

Claims :
1. A confection distribution vehicle having at least one frozen confection dispensing device, each said device comprising -
: a refrigeration chamber to store frozen confection.
: a dispensing nozzle from said chamber through which frozen confection may be dispensed,
: a beater in said refrigeration chamber operable to maintain the frozen confection at the desired consistency and to expel frozen confection through the nozzle on actuation of the dispensing mechanism therefor, and
: a refrigeration system including an evaporator located in or around the refrigeration chamber, a condensor and a compressor, an internal combustion engine for driving the beater (s) and the compressor (s) through a mechanised transmission and means to control the selective operation of the beater (s) and the compressor (s).
2. A confection distribution vehicle according to
Claim 1, including two confection dispensing devices.
3. A confection distribution vehicle according to Claim 1 or 2, including at least one electric motor to provide an alternative means for driving the beater (s) and compressor (s) through said mechanical transmission.
4. A confection distribution vehicle according to Claim 2, wherein there are two electric motors.
5. A confection distribution vehicle according to Claim 3 or 4, including control means operative to start the electric motors sequentially.
6. A confection distribution vehicle according to Claim 3, 4 or 5, including a clutch to connect the mechanical transmission into driven relation with either the internal combustion engine or the electric motor (s).
7. A confection distribution vehicle according to any preceding claim, wherein each confection dispensing device has more than one mode of operation and a function switch operable to determine the mode.
8. A confection distribution vehicle according to
Claim 7, wherein each confection dispensing device has a conservation, a dispense and a cleaning mode of operation.
9. A confection distribution vehicle according to Claim 8, wherein during the conservation mode the control means cause both the beater and the compressor to operate together and intermittently to maintain the confection at a chill temperature.
10. A confection distribution vehicle according to Claim 8 or 9, wherein during the dispense mode the control means cause the beater to operate continuously and the compressor to operate intermittently to maintain the confection at a freeze temperature.
11. A confection distribution vehicle according to Claim 10, wherein during the dispense mode the control means has regard to the temperature and viscosity of the confection in the refrigeration chamber and the internal and external temperatures of the vehicle in determining when the compressor operates.
12. A confection distribution vehicle according to Claim 8, 9, 10 or 11, wherein during the cleaning mode the control means cause the beater to operate continuously and the compressor to be inoperative.
13. A confection distribution vehicle according to any one of Claims 7 to 12, wherein the function switch may be positioned to render the confection dispensing device inoperative.
14. A confection distribution vehicle according to any preceding claim, including at least one fan operative to draw air over the equipment.
15. A confection distribution vehicle according to Claim 14, wherein the internal combustion engine is provided with a fan which operates when the engine is running.
16. A confection distribution vehicle according to Claim 14 or 15, including a supplementary engine fan mounted adjacent the internal combustion engine to draw air there around and wherein the control means cause said supplementary engine fan to operate intermittently depending upon the temperature of the engine.
17. A confection distribution vehicle according to Claim 14, 15 or 16, including a condensor fan mounted adjacent the condensor (s) to draw air thereover.
18. A confection distribution vehicle according to Claim 17, wherein the control means cause the condensor fan to operate when a compressor is operating
19. A confection distribution vehicle according to Claim 17 or 18, including a supplementary condensor fan mounted adjacent the condensor and wherein the control means cause said supplementary condensor fan to operate intermittently depending upon the temperature of the condensor (s).
20. A confection distribution vehicle according to Claim 16 or 19, wherein the control means cause said supplementary fans to operate when the external temperature of the van rises to a predetermined temperature.
21. A confection distribution vehicle according to Claims 16, 17, 18, 19 or 20, including an alternator driven by the internal combustion engine for driving the condensor fan and the supplementary fans.
22. A confection distribution vehicle according to Claims 16, 17, 18, 19 or 20, including means for driving the condensor fan and the supplementary fans from the mains electricity supply when the electric motor (s) is operating.
23. A confection distribution vehicle according to any one of Claims 14 to 22, wherein the fans are located adjacent the rear wall of the vehicle which is provided with ducts of substantial extent to allow expulsion of air from the vehicle.
24. A confection distribution vehicle according to any preceding claim, wherein the mechanical transmission for driving the beater(s) and the compressor (s) includes a series of belt driven pulleys.
25. A confection distribution vehicle as claimed in Claim 24, wherein at least one beater is driven from a hydraulic motor in a hydraulic circuit with a pulley driven hydraulic pump.
26. A confection distribution vehicle as claimed in Claim 24 or 25, the drive to each beater and each compressor includes, for the selective operation thereof, at least one pulley provided with an electronically operated clutch regulated by said control means.
27. A confection distribution vehicle according to any preceding claim, including a water storage tank and means to circulate the cooling fluid of the internal combustion engine through a heat exchange coil in the storage tank to heat the water.
28. A confection distribution vehicle according to Claim 27, including an electric heating element in the storage tank to provide an alternative source for heating the water.
29. A confection distribution vehicle according to Claim 27 or 28, including a water pump continuously driven from said mechanical transmission.
30. A confection distribution vehicle as claimed in Claim 29, wherein said pump is adapted, to supply hot water to a tap in the interior of said vehicle.
31. A confection distribution vehicle as claimed in Claim 29 or 30, wherein said pump is adapted to circulate hot water from the storage tank to heat a supplementary heater.
32. A confection distribution vehicle according to Claim 31, including a control tap in the water circuit to regulate the amount of water supplied to said supplementary heater.
33. A confection distribution vehicle according to any preceding claim, including an additional refrigerator.
34. A confection distribution vehicle according to Claim 33, wherein in evaporator for the additional refrigeration is connected in parallel with the evaporator of the refrigeration system of one of the confection dispensing devices.
35. A confection distribution vehicle according to Claim 34, wherein each of the parallel connected refrigeration circuits has its own controls so that they can operate independently.
PCT/AU1981/000138 1980-09-23 1981-09-21 Confection distribution vehicle WO1982000944A1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AU75850/81A AU7585081A (en) 1980-09-23 1981-09-21 Confection distribution vehicle

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
AUPK570280 1980-09-23
AU5702/80800923 1980-09-23

Publications (1)

Publication Number Publication Date
WO1982000944A1 true WO1982000944A1 (en) 1982-04-01

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ID=3775350

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Application Number Title Priority Date Filing Date
PCT/AU1981/000138 WO1982000944A1 (en) 1980-09-23 1981-09-21 Confection distribution vehicle

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EP (1) EP0060281A1 (en)
IT (1) IT1167985B (en)
WO (1) WO1982000944A1 (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2144944A1 (en) * 1998-02-24 2000-06-16 Perez Diaz Jose Motor vehicle adapted for the itinerant sale of ice- creams, cold drinks, baked flour dough and other foods
WO2001017362A1 (en) * 1999-09-07 2001-03-15 Leonardo C.G. S.R.L. Autonomous unit for the production and storage of ice cream and beverages for street vendors
GB2448679A (en) * 2007-02-06 2008-10-29 Simon Lawrence Alternating Current Powered Vehicle Ice-Cream Apparatus
CN110131911A (en) * 2018-02-02 2019-08-16 艾力集团有限责任公司-卡皮贾尼 For treatment liquid or the machine and method of semi-liquid food products

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU3582958A (en) * 1958-03-06 1958-09-04 Commercial icecream freezer
US3236060A (en) * 1962-07-09 1966-02-22 Sweden Freezer Mfg Co Self-sufficient mobile dispensing freezer
AU543866B2 (en) * 1980-07-30 1985-05-09 Ernst Spirig Electrolysis apparatus

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU3582958A (en) * 1958-03-06 1958-09-04 Commercial icecream freezer
AU268383B2 (en) * 1961-10-27 1964-04-30 Apaws. A Apparatus for automatically controlling the hardness of ice cream in continuous ice cream machines
US3236060A (en) * 1962-07-09 1966-02-22 Sweden Freezer Mfg Co Self-sufficient mobile dispensing freezer
AU543866B2 (en) * 1980-07-30 1985-05-09 Ernst Spirig Electrolysis apparatus

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2144944A1 (en) * 1998-02-24 2000-06-16 Perez Diaz Jose Motor vehicle adapted for the itinerant sale of ice- creams, cold drinks, baked flour dough and other foods
WO2001017362A1 (en) * 1999-09-07 2001-03-15 Leonardo C.G. S.R.L. Autonomous unit for the production and storage of ice cream and beverages for street vendors
GB2448679A (en) * 2007-02-06 2008-10-29 Simon Lawrence Alternating Current Powered Vehicle Ice-Cream Apparatus
GB2448679B (en) * 2007-02-06 2009-08-19 Simon Lawrence Vehicle Comprising Ice Cream Apparatus Powered By Alternating Current
CN110131911A (en) * 2018-02-02 2019-08-16 艾力集团有限责任公司-卡皮贾尼 For treatment liquid or the machine and method of semi-liquid food products
CN110131911B (en) * 2018-02-02 2022-08-05 艾力集团有限责任公司-卡皮贾尼 Machine and method for treating liquid or semi-liquid food products

Also Published As

Publication number Publication date
EP0060281A1 (en) 1982-09-22
IT1167985B (en) 1987-05-20
IT8109522A0 (en) 1981-09-22

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