STUDY FOR CASTING BOOTHS HIGH FIRE HAZARD

STUDY FOR CASTING BOOTHS HIGH FIRE HAZARD

This project is done by the need to contain the damage from a possible fire ignition in the phase of casting of aluminium alloys . The presence of Mg , fires that can reach develop a temperature of about 800 ° C. This study was carried out in particular for the area of casting. The factory Agusta Westland site in the province of Benevento (Italy). All the technical evaluation and economic evaluation is based on devising systems to rapid recovery of environments subject to possible fire. Focusing all too an easy supply of materials for the rapid restoration of the environment. To be underlined that the problems due to triggering of fire, to the conditions referred to above, lead to considerable deterioration of the materials, for which it should take to…
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STUDY OF SYSTEM CERAMIC DRYING PRODUCTS.

STUDY OF SYSTEM CERAMIC DRYING PRODUCTS.

STUDY OF SYSTEM CERAMIC DRYING PRODUCTS The study , wants to encourage the ceramics drying industry to invest in reducing energy consumption, through a new drying plant of a different design than the present, which allows for better production performance and the highest quality standards. We will start to briefly describe the process of traditional drying with all the disadvantages that this entails, in order to highlight the innovation of our proposal. The originality of our proposal derives from a new mode of drying the ceramic product, which is based on processes other than the traditional ones which require a reduced energy expenditure, and give rise to a reduced drying time, and then processing in addition to the performance already mentioned. DISADVANTAGES OF TECHNOLOGY AND CURRENT METHODS Drying is one…
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SYNTHESIS STUDY FOR CINEMATIC SCISSOR LIFT TABLE SYSTEM

SYNTHESIS STUDY FOR CINEMATIC SCISSOR LIFT TABLE SYSTEM

THE SYNTHESIS STUDY FOR CINEMATIC SYSTEM SCISSOR LIFT TABLE INTRODUCTION This study derives from some analysis of type technical and commercial, following very request of our clients for project electromechanical scissor lift table alternatively to those which already exist on commercial. The major issue of these systems is that to control the cinematic, which it isn’t of linear, ie the actuators ( motors, pneumatic cylinders, oleodinamic cylinders, etc..) working by linear mode on the contrary the scissors, for geometry they don’t respond with a linear force. The issue don’t engrave only on tricky control position of the lift table, but also for a choice of a size major of the power which it needs. All the systems actual for scissor lift tables use belts or chain, these are all components…
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