Real jobs, filmed on the machines that cut them. Turning, milling, five-axis work, extruder dies and screws, honing and threading — each one a part that went out the door to a customer. There are more than a hundred on our YouTube channel; these are the ones worth starting with.
38 jobs on filmCNC turning & milling5-axis mill-turnExtruder dies & screwsBore honingTrepanning & threading
Newest first. Click a thumbnail to play it here — nothing loads from YouTube until you do.
4-axis milling of a spiral diverter for polymer extrusion
Four-axis spiral milling of a diverter for a polymer extrusion line, cut from solid 4140 HT bar. The video covers the last operation, where the spiral channels that split and route the melt are milled into the body.
A tapered keyway broached on the CNC mill, 7/8 in wide and reaching 9-1/2 in deep. The insert was ground back at the corners to clear the taper and reach full depth.
Hardened titanium sleeve on the Puma and the Mori Seiki
A titanium sleeve roughed first, heat treated, then finished on the Doosan Puma and the Mori Seiki. An aluminum sample part was run first to prove out every operation before the titanium was cut.
Large steel cylindrical mold on the Okuma LB4000EX
CNC turning and deep-hole drilling of a large steel mold, turned on the Okuma LB4000EX and drilled on the Millac 761V. Extended chuck jaws made here hold parts larger than the chuck normally takes.
A bronze casting taken through facing, end milling, drilling, chamfering and tapping on the Mori Seiki NTX2000. The main bore was turned on a lathe first, then the casting was held in a shop-made fixture.
Thin-wall aluminum part, 97.5% of the material removed
A thin-wall aluminum part taken from 23 lb of stock down to a finished 8.8 oz. Thirteen tools and about three hours of cycle time, after a long programming and setup effort to get it running.
Trepanning tool built in the shop for the CNC lathe
A 5-3/8 in trepanning tool made here, about fifteen hours of machining to build. Trepanning saves the core instead of turning it into chips, leaving a usable slug of 4140 for the next job.
Turning and milling a twin-screw extruder adapter for a long-standing plastics customer, and why a part like this has to be balanced before the off-center milling is done.
A repeat job combining trepanning and rope threading on the Okuma. Both the threading and the trepanning tools were developed here to make the job run and to make the inserts last.
Three sizes of trepanning tool designed and built by the shop’s manual machinists. This is the largest of the three, running on the CNC lathe for a high-quantity job.
A breakdown job for a long-standing customer: reverse engineered from the sample part, material pulled from stock, finished and out the door in two days.
Drilling on the Okuma lathe with a 4 in indexable drill. A pilot drill leads it in so the hole stays straight, and the same tool runs in aluminum, steel and stainless.
A customer sent a drawing from 1972 with no casting and no model. We modeled it, programmed the CNC work in Mastercam and did the manual turning on the big Poreba lathe.
Finish milling of a large extruder screw on the Mori Seiki, the second half of the job. The screw was reverse engineered from a worn original with no print and no model.
A spiral die that splits the melt into four channels, part of a large extrusion head. Turned and polished to a 4 RMS finish on the Okuma, then four-axis milled for the spirals.
Extruder screw, roughing from a reverse-engineered model
Roughing a large extruder screw. The customer supplied a worn screw with no print and no model, so step one was reverse engineering it into a usable model.
Second-side turning of an extrusion adapter, start to finish in about six hours including programming and setup. A good look at how a single low-volume part actually gets made.
If one of these looks like your part, email the print to sales@zalamachine.com or send it through the quote form. We review every RFQ within one to two business days.