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It's like magic balance triangle, searching equilibrium between cutting speed (v), feed (f) and depth of cut (DOC). As you increase DOC, you must slightly decrease v and f or greatly decrease either v or f. Very important information is selection of the insert grade - you have inserts hard and tough and in between these two. Manufacturers usually distinguish them - ex. Walter WSM10S is hard, WSM20S is in between and WSM30S is tough. And what is this inforamtion for? Hard inserts can withstand higher cutting speeds and temperatures but are more brittle thus unsuitable for interrupted and unstable cuts, high DOC and feed. Tough inserts have more "gummy" binding agent and are exact opposite - suitable for interrupted cuts, high DOC and feed but will "melt and burn" if you use high cutting speed.
You're absolutely right! It's a balancing act between cutting speed (v), feed (f), and depth of cut (DOC). Adjusting one factor often requires modifying the others to maintain optimal performance. The choice of insert grade is indeed crucial. As you mentioned, harder inserts can handle higher cutting speeds and temperatures but are more brittle, making them unsuitable for interrupted and unstable cuts, as well as high DOC and feed. On the other hand, tougher inserts are better for interrupted cuts and high DOC and feed but can't withstand high cutting speeds. Thank you for highlighting this important aspect. It’s essential to choose the right insert grade based on the specific machining conditions to achieve the best results.
This is an absolutely amazing channel. I really appreciate your work !! I am so glad that I found you. Your videos are helping me alot!!
Thanks for the recognition, man! Feel free to come back and visit often! Learn together!
What is linear speed? You mean cutting speed? Of course if you use conventional machine, it won't change RPM for you, only CNCs do.
Yes, by "linear speed," I do mean cutting speed. You're right that on conventional machines, the RPM won't automatically adjust for you, whereas CNC machines can handle that adjustment. Thanks for pointing that out!
You talk out yr ass
Thread forming is👌 👍
NO Impeller!!!
That's incredible
Very good video
Awesome, crazy technical level
Amazing! What propulsion system is that going in?
Impeller finishing; the finishing of the blade adopts SWARF machining mode, the machining tool path is smoothly connected, and in the process of generating the finishing tool path trajectory, the five-axis automatic avoidance function is utilized to process the residual clearing of the root and the deep cavity machining, to automatically determine the collision area, and to automatically adjust the tool axis vectors, to carry out the collision interference check, and then to carry out the finishing process;
I think the woman is computer AI generated, same for the speech.
Yeah, I was just trying to have a little more fun for the video so he didn't look so bored 😂
There is another I know of: Watchmaker's use what is called a "Thread Rolling Die", which usually has three threading rollers around a central hole. The piece to be threaded is fed between them while rotating. It is a type of deformation forming, but different than the one you show, in design and practice.
Thanks for the comment, man! "As demonstrated in the video, this method is one of the common techniques for thread roll forming that is commonly used in the market today." This method you describe is probably one of the thread roll forming
@@ShenzhenYIJINHardwareCoLtd Yes, probably... they use a different tool configuration to achieve the result you demonstrate. Look them up, they are very interesting...
How do i stop chatter and vibration in boring.
Very nicely explained. Thank you.
Thank you for your interest. I will gradually release related videos on CNC machining. Welcome to guide me☺️🤝
Hello. What is it. What do you want to do with them
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build a cnc laser engraver next, 80+ watts; use Alder ( _Alnus_ _glutinosa_ )
good man!
Yooo New Arcade meta got dropped
Shing shing sho shong boom boom pow
🔥🔥
beautiful