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VERICUT Module: AUTO-DIFF™

AUTO-DIFF™ vous permet de comparer le modèle théorique au résultat de l’usinage pour détecter automatiquement les manques et excès de matière.
Il peut être aussi utilisé pour détecter un manque ou une erreur de conception du modèle théorique.AUTO-DIFF™ génère des rapports indiquant la nature de vos différentes erreurs, écarts de tolérance, en spécifiant tous les blocs parcours hors tolérance, ainsi que leur emplacement sur la pièce usinée.
 
 
Pourquoi utiliser AUTO-DIFF™?
Bien souvent, de la conception de la pièce Ă  son usinage, la pièce passe au travers de plusieurs services, dĂ©partements, sociĂ©tĂ©s et systèmes de CAO/CFAO. Il est ainsi difficile de certifier  si la pièce rĂ©alisĂ©e reflète le modèle conçu Ă  l’origine. Si vous n’utilisez pas AUTO-DIFF™ la seule solution laissĂ©e Ă  disposition est d’usiner la pièce puis de procĂ©der Ă  sa mesure avec vos moyens mĂ©trologiques. AUTO-DIFF™ vous permet de comparer le rĂ©sultat au modèle original. Vous aurez ainsi l’assurance que vos parcours outils sont conformes aux impĂ©ratifs de la conception.
 
ContrĂ´le  AUTO-DIFF™ en continu
Il n’est pas nĂ©cessaire de simuler entièrement le programme CN pour vĂ©rifier la prĂ©sence de rentrants dans le modèle. Avec le contrĂ´le AUTO-DIFF™ en continu VERICUT identifie le problème immĂ©diatement. Les opĂ©rations suivantes peuvent ainsi ĂŞtre protĂ©gĂ©es. Toute matière enlevĂ©e d’une aire protĂ©gĂ©e (collision avec le modèle thĂ©orique) est considĂ©rĂ©e comme une erreur. Le modèle thĂ©orique, le brut, les erreurs et les entitĂ©s usinĂ©es sont toutes dĂ©finies dans des couleurs diffĂ©rentes afin d’identifier plus facilement les collisions avec le modèle thĂ©orique ou les excès de matière.
 
Comparaisons de Surface
Une surface, un ensemble de surfaces ou l’enveloppe d’un modèle peuvent ĂŞtre comparĂ©s Ă  la pièce simulĂ©e. La surface est recouverte sur le dessus de la pièce simulĂ©e, et les manques et excès de matière sont affichĂ©s. De grandes quantitĂ©s de donnĂ©es de trajectoires d’outils très complexes peuvent ĂŞtre rapidement comparĂ©es. Le modèle de conception n’a pas besoin d’ĂŞtre fermĂ© et il n’est pas nĂ©cessaire d’inclure toute la pièce.
 
Rapports AUTO-DIFF
AUTO-DIFF™ génère des rapports indiquant la nature de vos différentes erreurs, écarts de tolérance, en spécifiant tous les blocs parcours hors tolérance, ainsi que leur emplacement sur la pièce usinée. Le résultat est interactif avec le rendu graphique. Sélectionnez une erreur dans le fichier rapport, VERICUT vous indique graphiquement ou cette erreur est située sur la pièce. Les rapports peuvent êtres imprimés et enregistrés sous la forme de fichiers texte. Les rapports peuvent êtres générés en mode batch.
 
 
Airbus is selling so well that the demand to increase build rate has never been higher. BAE Systems (Filton, UK) needed a simple way to improve throughput - it found the answer in VERICUT.
With VERICUT, engineers at Stellex Monitor modeled the Sidewinder and Spar Mill machines.
Tell Tool of Westfield, Mass., has integrated VERICUT CNC simulation software into its numerical control program prove-out process.
VERICUT enabled us to start ordinary production after a minimum of time. Since this product is new for Volvo Aero Norge and our company had never before had parts with similar machining complexity, it is difficult to estimate the amount of cost saving.
Before implementing VERICUT, the company experienced the usual time-consuming and expensive manufacturing problems related to NC program prove-outs such as scrap loss, broken tooling, and a danger of occasional machine crash.
Over the last two years, AH has used Machine Simulation to speed the implementation of several new 5-axis machine tools.
VERICUT showed the NC programmers leftover or heavy stock." And the software detected a couple of places where the depth of cut was too large and tools were shanking out," said Collings. They then went back and corrected the errors in the tool path before
Dassault, Seclin initially purchased VERICUT in order to reduce the number of manual prove-outs using polystyrene material, which represented a significant expense in terms of time and money.
VERICUT enabled the designers and programmers see exactly what they were building as and in-process model in different stages of the machining cycle.
We utilized VERICUT to verify the CNC programs for cutting the tooling before they were sent to the machine control,
To protect their investment, they have been using VERICUT since 1996. They have two people to verify the accuracy of their G-code files.
"When we first started using OptiPath we concentrated on the feed rate option; now we use the constant chip thickness capability. With jobs up to 200 hours long, 50% saving is significant – like having another machine tool."
The entire process took less than two hours and no manpower was required, whereas, creating the same pattern manually (the old way), would have taken one of our designers several days.
The verification process stays ahead of the actual machine position in the NC code being verified. Opera-tors can see errors before they occur.
The bottom line? Using VERICUT has made Supreme's existing machine tools more productive. Enthusiasm is up, delivery times have been reduced, and pricing is more competitive.delivery times have been reduced, and pricing is more competitive.
Using VERICUT to compare the electrode burn with the mold cavity ensures that we have all the correct clearances in the electrodes and that we have 100% clean-up." says Allen.
If I was using VERICUT at the time I would've caught the problem, and had a chance to fix it before it damaged the part.
Now I rarely see the potential crashes because the students find and correct them before I review the work. Catching those costly problems is a non-event now!
VERICUT can change speeds and feeds according to cutting conditions including difference in material and tooling. It is done automatically; the programmer does not have to make even one manual insert into the code."
Flying shrapnel from shattered cutting tools and components is avoided by using VERICUT to test student programs before they are run on NC machines.
The NC programmers at Ingersoll also rely on the simulation software to prevent mistakes when programming complex, five-axis parts.
After creating the NC programs in Mastercam, they began simulating the machining process in VERICUT by simulating the G-code data. There often can be a difference between the motion as programmed and the code after it's run through the post processor
After selecting VERICUT for third-party verification, each NC programmer attended two days of basic training where they experienced first-hand the type of results they could expect to achieve.
The program simulates milling, drilling, turning, wire EDM, and mill/turn machining operations using both G-codes and CAM output.
VERICUT provides simulation capabilities for the all the 3-5 axis and wire EDM parts, with focused control over the orientation of our 5-axis machine tool including the cutters used on that machine.
The inspection probe is created as a tool in VERICUT so the complete in- cycle gauging sequence is checked for collisions.
The bottom was machined first. This effort took about 24 hours from start to finish. By using VERICUT software from CGTech, Elliot was able to test the NC program for any problems before it was ever cut on the machine.
Cosworth Racing Integrates Walter TDM Tool Management into Manufacturing Systems
With data exported from NX, Vericut simulates the cutting process on the shop floor utilizing the machine G-code to detect any issues prior to NC Program release.
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