in the Lathe Machines category 244 results found
Name Price Location Date
DMG Gildemeister CTX-510 Eco  C eksen CNC Torna Tezgahı -2009
DMG Gildemeister CTX-510 Eco C eksen CNC Torna Tezgahı -2009
Ad Number: 11017
49.500 € İSTANBUL / ŞİŞLİ 09 Mar 26
Takisawa TMM 250 C-Y Eksen 2 Taret 2 Ayna CNC Torna
Takisawa TMM 250 C-Y Eksen 2 Taret 2 Ayna CNC Torna
Ad Number: 12953
59.000 € İSTANBUL / ŞİŞLİ 04 Mar 26
10 inç Victor Vturn II-26 Hidrolik Arayataklı CNC Torna–2003
10 inç Victor Vturn II-26 Hidrolik Arayataklı CNC Torna–2003
Ad Number: 12951
26.000 € İSTANBUL / ŞİŞLİ 03 Mar 26
10 inç C Eksen Victor Vturn II-26 Hidrolik Arayataklı CNC Torna–
10 inç C Eksen Victor Vturn II-26 Hidrolik Arayataklı CNC Torna–
Ad Number: 12950
28.000 € İSTANBUL / ŞİŞLİ 03 Mar 26
15 inç Doosan Puma 15 Arayataklı CNC Torna Tezgahı-1996
15 inç Doosan Puma 15 Arayataklı CNC Torna Tezgahı-1996
Ad Number: 12949
39.900 € İSTANBUL / ŞİŞLİ 03 Mar 26
Mori Seiki ZL-250MC Çift Taret C Eksen CNC Torna Tezgah-1998
Mori Seiki ZL-250MC Çift Taret C Eksen CNC Torna Tezgah-1998
Ad Number: 12946
29.900 € İSTANBUL / ŞİŞLİ 02 Mar 26
10 inç Doosan GT2600 CNC Torna tezgahı-2019
10 inç Doosan GT2600 CNC Torna tezgahı-2019
Ad Number: 12944
47.000 € İSTANBUL / ŞİŞLİ 02 Mar 26
Mori Seiki SL-25B CNC Torna Tezgahı-1991
Mori Seiki SL-25B CNC Torna Tezgahı-1991
Ad Number: 10218
25.900 € İSTANBUL / ŞİŞLİ 02 Mar 26
Mazak Integrex E-410H 5 Eksen CNC Tornalama Merkezi-2003
Mazak Integrex E-410H 5 Eksen CNC Tornalama Merkezi-2003
Ad Number: 12942
87.500 € İSTANBUL / ŞİŞLİ 27 Feb 26
CNC TORNA.  Z-MAT STL8-11  2021 MODEL
CNC TORNA. Z-MAT STL8-11 2021 MODEL
Ad Number: 12941
36.000 $ ANKARA / YENİMAHALLE 27 Feb 26
PBR Tornio Paralled T500Lx8000 CNC Torna Tezgahı-2008
PBR Tornio Paralled T500Lx8000 CNC Torna Tezgahı-2008
Ad Number: 12930
75.000 € İSTANBUL / ŞİŞLİ 23 Feb 26
12 inç Mazak Integrex 400-II SY Çift Spindle Robotlu-2002
12 inç Mazak Integrex 400-II SY Çift Spindle Robotlu-2002
Ad Number: 10739
85.000 € İSTANBUL / ŞİŞLİ 23 Feb 26
5 Eksen Mazak Integrex i-400 CNC Tornalama Merkezi-2018
5 Eksen Mazak Integrex i-400 CNC Tornalama Merkezi-2018
Ad Number: 12324
185.900 € İSTANBUL / ŞİŞLİ 23 Feb 26
Mazak Integrex J-200 5 Eksen CNC Tornalama Merkezi-2014
Mazak Integrex J-200 5 Eksen CNC Tornalama Merkezi-2014
Ad Number: 12290
115.900 € İSTANBUL / ŞİŞLİ 23 Feb 26
Hyundai Wia LV500LM C Eksen CNC Dik Torna Tezgahı-2019
Hyundai Wia LV500LM C Eksen CNC Dik Torna Tezgahı-2019
Ad Number: 12385
60.900 € İSTANBUL / ŞİŞLİ 23 Feb 26
Doosan Puma MX-2600 5 Eksen CNC Tornalama Merkezi-2011
Doosan Puma MX-2600 5 Eksen CNC Tornalama Merkezi-2011
Ad Number: 12399
83.900 € İSTANBUL / ŞİŞLİ 23 Feb 26
DN Puma DNT 2100 CNC Torna Tezgahı-2023
DN Puma DNT 2100 CNC Torna Tezgahı-2023
Ad Number: 12926
47.000 € İSTANBUL / ŞİŞLİ 20 Feb 26
Mazak QT-EZ 8MY C-Y Eksen CNC Torna Tezgahı-2025
Mazak QT-EZ 8MY C-Y Eksen CNC Torna Tezgahı-2025
Ad Number: 12922
130.000 $ İSTANBUL / ŞİŞLİ 18 Feb 26
Mazak QT Compact 300 MYL – CY Eksen CNC Torna Tezgahı-2017
Mazak QT Compact 300 MYL – CY Eksen CNC Torna Tezgahı-2017
Ad Number: 12921
99.000 € İSTANBUL / ŞİŞLİ 18 Feb 26
HWACHEON Hi-TECH 200A 8 İnç Torna Tezgahı-2015
HWACHEON Hi-TECH 200A 8 İnç Torna Tezgahı-2015
Ad Number: 12901
29.500 € İSTANBUL / ŞİŞLİ 18 Feb 26
Doosan Puma 2600 CNC Torna Tezgahı-2012
Doosan Puma 2600 CNC Torna Tezgahı-2012
Ad Number: 12913
41.600 € İSTANBUL / ŞİŞLİ 17 Feb 26
Mazak Integrex E-410H 5 Eksen CNC Tornalama Merkezi-2008
Mazak Integrex E-410H 5 Eksen CNC Tornalama Merkezi-2008
Ad Number: 12912
142.000 € İSTANBUL / ŞİŞLİ 17 Feb 26
5 Eksen Doosan Puma MX-2000ST Çift Ayna Alt Taretli CNC Torna
5 Eksen Doosan Puma MX-2000ST Çift Ayna Alt Taretli CNC Torna
Ad Number: 12910
49.900 € İSTANBUL / ŞİŞLİ 16 Feb 26
C Eksenli Mori Seiki Duraturn 310 Eco Cnc Torna Tezgahı 2010
C Eksenli Mori Seiki Duraturn 310 Eco Cnc Torna Tezgahı 2010
Ad Number: 10855
39.000 € İSTANBUL / ŞİŞLİ 16 Feb 26
Hoesch MFD Çap 1400 Boy 6500 mm CNC Torna Tezgahı
Hoesch MFD Çap 1400 Boy 6500 mm CNC Torna Tezgahı
Ad Number: 9607
109.000 € İSTANBUL / ŞİŞLİ 14 Feb 26

OVERVIEW OF TURNING: Classified under manufacturing techniques, turning is the most widely used process and holds a vital place among material removal methods in the manufacturing industry. The main principle of the method is the removal of chips from a rotating workpiece through the movement of the body where stationary or rotary (live) tools are mounted. The place where the workpiece is connected or clamped is the collet. This is called the chuck. Lathe chucks can be 3-jaw or 4-jaw, as well as vise-type or faceplate chucks. In the industry, the term "jaw" is commonly used. The part of the lathe where the chuck is mounted is called the spindle. The spindle is rotated at a specific RPM; therefore, the chuck and the connected workpiece rotate with it. The drive for the spindle comes from the gearbox located right behind it. If the cylindrical material to be processed is long, a tailstock, which is a lathe element located directly opposite the spindle, is used. The tailstock serves to stabilize the workpiece between itself and the spindle, preventing oscillation caused by centrifugal force. Cutting tools and inserts are positioned very rigidly in the tool holder (kater) or turret located between the spindle and the tailstock. The chip removal process is performed by moving the tool back and forth toward the chuck, and up and down toward the center of the rotating workpiece.

GENERAL OVERVIEW: Lathe machines are generally machines that remove chips by rotating a horizontal or vertical spindle and its connected workpiece, while the cutting insert in the tool holder or turret approaches the material from the face or surface in the X and Z axis directions. Lathes were first produced as universal models and later began to be manufactured as CNC lathes with the adaptation of CNC control units that enable fully automatic operation. The transition from universal lathes to CNC lathes did not happen instantly. Generally, we can classify lathes as follows:

  • Watchmaker lathes

  • Benchtop lathes (Hobby type lathes)

  • Universal lathe machines

  • Hydraulically controlled lathes

  • Electronically controlled lathes

  • Air lathes

  • Copy lathes

  • Turret lathes

  • Numerical Control or simply NC lathes

  • CNC lathes (Computer Numerical Control)

MAIN OPERATIONS PERFORMED ON LATHES: Different operations can be performed based on the targeted geometry of the workpiece.

  • Facing operation: The process of cutting or chip removal through the movement of the cutting tool perpendicular to the workpiece axis.

  • Longitudinal (cylindrical) turning operation: Removing chips from the surface parallel to the workpiece axis. The tool feed rate is constant.

  • Taper turning operation: Shaping the material by approaching and moving the cutting insert at a specific angle to the workpiece axis.

  • Profile turning operation: Removing excess material by moving a tool prepared in a specific profile perpendicular to the material.

  • Grooving operation: A similar process to facing. The tool advances perpendicularly from the outer surface of the workpiece toward the center, removing a certain amount of material.

  • Threading operation: The process of removing chips with a specific and suitable cutting tool, moving perpendicularly for depth and moving in a parallel feed motion suitable for the lead/pitch.

  • Reaming operation: A precision-enhancing process used to improve the surface roughness of holes previously opened with a drill bit.

  • Drilling operation: Removing chips from the workpiece by mounting a drill bit to the tool holder or turret.

  • Boring operation: A process performed with a tool larger than the diameter of the existing hole to enlarge it.

EFFICIENCY IN TURNING PROCESSES: To achieve the best results from lathe machines, there are certain cutting parameters to consider. These are cutting speed, feed rate, and depth of cut. In addition to these three parameters, selecting the most suitable cutting tools based on the material structure is another important factor affecting surface precision and work efficiency. Besides the choice of cutting inserts, the cutting fluid used to remove chips from between the insert and the surface during cutting is another factor affecting surface quality. Cutting fluid not only removes the chips from the processing area but also helps reduce the heat generated by friction during cutting. It prevents tool wear and extends tool life. Therefore, the properties and selection of the cutting fluid used are extremely important and directly affect efficiency.

On our Karaport machine trading site, under the relevant category, there are listings, descriptions, photos, and prices for pre-owned and new lathes from machinery dealers and pre-owned lathes for sale from direct owners.

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