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EN
The results of estimation of home scrap addition in charge influence on durability and wear of casting instrumentation life in the high-pressure casting technology using the hot chamber machine of alloy of AZ91 are presented. The wear of the following elements of the casting instrumentation so-called "casting set" as: syphon, plunger, sliding-rings, nozzle and injection moulding nozzle was estimated. A wear was estimated quantitative by registering the number of mould injections for different charges to the moment of element damage supervision. A damage had to be at such level that liquidated an element from further exploitation and necessary was an exchange on new or regeneration. In a final result allowed it the detailed determination of durability of the applied rigging elements in dependence on the type of the applied type of melt. It is noticed, that together with the increase of home-scrap participation in the charge wear of pressure machine instrumentation elements increases.
EN
This article discusses the issue of the preparation of the foundry moulds with the use of an industrial robot. The methodology is presented for the determination of the process capacity index for placing inserts with flat and cylindrical faces. On the basis of the relationships developed, the process capability indices were determined at various points in the workspace, which are characterised by different values of the repeatability positioning error. It was shown that the value of the process capacity index can be increased by the selection of a suitable location for the process of placing the inserts in the workspace. It should also be noted that the value of the process's capability index depends on the selection of the place in the robot workspace where the process is carried out. Implementation of the joining process at an analysed point in the robot workspace leads to an increase of the process capability index MCp for inserts with flat faces up to 1.1 (+4.5%) and for inserts with cylindrical faces up to 1.3. This results in an increase of 13% to a level corresponding to the global standard for process reliability (MCp = 1.33).
3
Content available Programowanie sterowników PLC metodą nauczania
PL
Do automatyzacji procesów odlewniczych powszechnie stosowane są programowalne sterowniki logiczne PLC. Języki oraz znane metody programowania sterowników PLC sprawiają duże trudności przy implementacji rozwiązań dotyczących sterowania procedurami sekwencyjnymi. Dlatego podjęto prace nad opracowaniem metody, która umożliwiłaby łatwe programowanie procedur sekwencyjnych przez użytkowników nie będących automatykami. Efektem tych prac jest aplikacja opracowana dla sterowników Simatic S7-300, która umożliwia ich programowanie metodą stosowaną w robotyce – programowaniem poprzez nauczanie. Przeprowadzone badania wykazały możliwość stosowania tej metody do programowania dowolnych procedur sekwencyjnych o dowolnej liczbie kroków. Jedynym ograniczeniem jest rozmiar pamięci operacyjnej sterownika. Aplikację można też implementować w dowolnym sterowniku PLC, którego języki programowania są zgodne z normą IEC61131. Dalsze badania będą dotyczyły opracowania aplikacji umożliwiającej programowanie procedur sekwencyjnych, w których przejście do następnego kroku jest uzależnione od upływu zadanego czasu.
EN
In automation of foundry processes, commonly used are programmable logic controllers (PLC). Languages and known methods of programming the PLC controllers cause big difficulties at implementing solutions concerning control of sequential procedures. This is why undertaken were the works on developing a method that would facilitate programming sequential procedures by the users not being automatic specialists. These works resulted in an application developed for the controllers Simatic S7-300 written in the STL language that makes possible their programming with the method commonly used in robotics, i.e. by teaching-in. The carried-out examinations showed a possibility to use this method for programming any sequential procedures with any number of steps. The only restriction is size of operational memory of the controller. The application can be also implemented in any PLC controller whose programming language is compliant with the standard IEC 61131. Further research will be aimed at developing an application that would permit programming sequential procedures where transition to the following step is dependent on expiry of the preset time.
EN
Mechanization of the process of core making with the use of inorganic and organic binders is based, almost solely, on core blowing machines. Presently the core blowing machines are equipped with tools and devices that allow for application of different technologies of core making. Cold-box, hot-box and warm-air technologies require that core blowing machines shall be additionally equipped with either core-box pre-heating system or gas purging and neutralization system, or hot air purging systems. Considering the possibility of using varied, the most advantageous technologies of core making, the production of universal core blowing machines equipped with replaceable devices has been undertaken in Poland. The universal core blowing systems allow for mechanization of core making process also with the use of sand, bonded by modern, eco-friendly binder systems. The paper presents selected results-based evaluation of core blowing process showing the scope of conducted design and implementation works.
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