アームフィールド 処理容器およびミキサーArmfield
FT 40
アームフィールド 処理容器およびミキサー
Armfield
FT 40
状態
中古
所在地
Derby 

機械に関するデータ
価格と所在地
- 所在地:
- Derby, UK

電話する
オファーの詳細
- 広告ID:
- A21076677
- リファレンス番号:
- 595
- 更新:
- 最終更新日:24.04.2026
説明
General Overview
Pasteurising, cooling, chilling, curing, emulsifying, reconstituting, incubating and mixing are all processes essential in the food processing laboratory. The Armfield Multi-Purpose Processing Vessel is capable of carrying out all of these functions as a self-contained,mobile unit. Its mobility allows it to be positioned in the laboratory adjacent to other equipment that it may be acting as a service to, and also makes it easily stowable. The hygienically designed jacketed vessel has a working capacity of between 10 and 15 litres which allows experimentation and demonstrations without the need for large quantities of raw materials. An electrical heating element positioned at the base of the jacket heats water in the jacket which in turn heats the contents of the vessel. This method gives a gentle
transfer of heat to ingredients that are often heat sensitive and local 'hot spots' are avoided due to the convective distribution of the heat. Cooling is accomplished by simply metering water from a domestic supply through the
jacket. Chilling involves the circulation of chilled water in a closed circuit through an ice bank circulator incorporated in the base of the unit. An emulsifier having a variable speed drive and several options of emulsor head can be
lowered into the process fluid. Hands-on experience can be gained by students and full instrumentation allows a complete record of the process to be compiled. An automatic valve changeover system enables uncomplicated operation requiring the student/trainee to simply select the particular process required rather than have to operate an array of manual valves.
Description
Gjdpfx Aeydh Agehvjuc
Where necessary, refer to the drawings in Equipment Diagrams section 8.
9.1 Overview
The stainless steel jacketed vessel (1) has a polished, hygienic finish and a working capacity of between 10 and 15 litres. Its contents are heated indirectly by cartridge heater (16) in the base of the jacket. The heater is protected from over-temperature by a thermostat (17) adjacent to it. An emulsifier (2) can be lowered into or raised out of the vessel using the locking handle (5). The on/off and variable speed control (14) of this unit are situated on the motor housing and not on the control console. A green running light (7) indicates when the emulsor motor is switched on. The emulsor head (3) can easily be interchanged with any of the alternatives supplied by simply removing the finger-nuts securing the head to the drive shaft. A lid (6) is provided to prevent any airborne contamination during long periods of heat treatment. Chilled water is circulated from an ice bank unit (12) situated beneath the processing vessel. After a period of time required to build up an ice bank, this will provide chilled water to the vessel jacket, cooling the contents to a temperature suitable for storage/curing. The ice bank is usually used after an initial rapid cooling by circulating cold water from a domestic supply. 3-way valves (10) and (11) are used to automatically select either open
circuit domestic supply cooling or closed circuit chilled water cooling. In both cases the water passes through a flowmeter (13) where the flow rate can be adjusted manually by control
valve (14). From the flowmeter, the water enters the base of the vessel jacket after passing through an in-line non-return valve (15). The water leaves the jacket diagonally opposite the inlet, at the top of the vessel. A pressure relief valve is incorpor...
Pasteurising, cooling, chilling, curing, emulsifying, reconstituting, incubating and mixing are all processes essential in the food processing laboratory. The Armfield Multi-Purpose Processing Vessel is capable of carrying out all of these functions as a self-contained,mobile unit. Its mobility allows it to be positioned in the laboratory adjacent to other equipment that it may be acting as a service to, and also makes it easily stowable. The hygienically designed jacketed vessel has a working capacity of between 10 and 15 litres which allows experimentation and demonstrations without the need for large quantities of raw materials. An electrical heating element positioned at the base of the jacket heats water in the jacket which in turn heats the contents of the vessel. This method gives a gentle
transfer of heat to ingredients that are often heat sensitive and local 'hot spots' are avoided due to the convective distribution of the heat. Cooling is accomplished by simply metering water from a domestic supply through the
jacket. Chilling involves the circulation of chilled water in a closed circuit through an ice bank circulator incorporated in the base of the unit. An emulsifier having a variable speed drive and several options of emulsor head can be
lowered into the process fluid. Hands-on experience can be gained by students and full instrumentation allows a complete record of the process to be compiled. An automatic valve changeover system enables uncomplicated operation requiring the student/trainee to simply select the particular process required rather than have to operate an array of manual valves.
Description
Gjdpfx Aeydh Agehvjuc
Where necessary, refer to the drawings in Equipment Diagrams section 8.
9.1 Overview
The stainless steel jacketed vessel (1) has a polished, hygienic finish and a working capacity of between 10 and 15 litres. Its contents are heated indirectly by cartridge heater (16) in the base of the jacket. The heater is protected from over-temperature by a thermostat (17) adjacent to it. An emulsifier (2) can be lowered into or raised out of the vessel using the locking handle (5). The on/off and variable speed control (14) of this unit are situated on the motor housing and not on the control console. A green running light (7) indicates when the emulsor motor is switched on. The emulsor head (3) can easily be interchanged with any of the alternatives supplied by simply removing the finger-nuts securing the head to the drive shaft. A lid (6) is provided to prevent any airborne contamination during long periods of heat treatment. Chilled water is circulated from an ice bank unit (12) situated beneath the processing vessel. After a period of time required to build up an ice bank, this will provide chilled water to the vessel jacket, cooling the contents to a temperature suitable for storage/curing. The ice bank is usually used after an initial rapid cooling by circulating cold water from a domestic supply. 3-way valves (10) and (11) are used to automatically select either open
circuit domestic supply cooling or closed circuit chilled water cooling. In both cases the water passes through a flowmeter (13) where the flow rate can be adjusted manually by control
valve (14). From the flowmeter, the water enters the base of the vessel jacket after passing through an in-line non-return valve (15). The water leaves the jacket diagonally opposite the inlet, at the top of the vessel. A pressure relief valve is incorpor...
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