in the Vertical Machining Centers category 130 results found
Name Price Location Date
Mazak VTC 300 C-II (1740760660) CNC İşleme Merkezi-2008
Mazak VTC 300 C-II (1740760660) CNC İşleme Merkezi-2008
Ad Number: 13221
55.000 € 19 Jun 26
GSM-2000
GSM-2000
Ad Number: 13195
27.000 $ 08 Jun 26
SORALUCE TA-35
SORALUCE TA-35
Ad Number: 13194
92.000 € 08 Jun 26
Hermle C600U 5 Eksen CNC Simultane İşleme Merkezi-2000
Hermle C600U 5 Eksen CNC Simultane İşleme Merkezi-2000
Ad Number: 13189
79.700 € 08 Jun 26
Doosan DNM 6700 Divüzörlü CNC Dik İşleme Merkezi-2024
Doosan DNM 6700 Divüzörlü CNC Dik İşleme Merkezi-2024
Ad Number: 13171
76.000 € 22 May 26
Deckel Maho DMU 200 P 5 Eksen CNC İşleme Merkezi–2001
Deckel Maho DMU 200 P 5 Eksen CNC İşleme Merkezi–2001
Ad Number: 12962
169.900 € İSTANBUL / ŞİŞLİ 16 May 26
Deckel Maho DMU 125P Hi-Dyn 5 Eksen İşleme Merkezi-2000
Deckel Maho DMU 125P Hi-Dyn 5 Eksen İşleme Merkezi-2000
Ad Number: 13144
63.000 € İSTANBUL / ŞİŞLİ 15 May 26
5 Eksen DMG HSC-75 Linear CNC Dik İşleme Merkezi-2010
5 Eksen DMG HSC-75 Linear CNC Dik İşleme Merkezi-2010
Ad Number: 13143
132.900 € İSTANBUL / ŞİŞLİ 15 May 26
5 Eksen Deckel Maho DMU-100T CNC Dik İşleme Merkezi
5 Eksen Deckel Maho DMU-100T CNC Dik İşleme Merkezi
Ad Number: 13141
49.000 € İSTANBUL / ŞİŞLİ 15 May 26
Deckel Maho DMU 200 P 5 Eksen Dik CNC İşleme Merkezi–2002
Deckel Maho DMU 200 P 5 Eksen Dik CNC İşleme Merkezi–2002
Ad Number: 13140
148.000 € İSTANBUL / ŞİŞLİ 15 May 26
DMU 125P HiDynamic Simultane 5 Eksen CNC İşleme Merkezi
DMU 125P HiDynamic Simultane 5 Eksen CNC İşleme Merkezi
Ad Number: 13139
72.000 € İSTANBUL / ŞİŞLİ 15 May 26
DMG DMU 80P 5 Eksen Simültane İşleme Merkezi-1998
DMG DMU 80P 5 Eksen Simültane İşleme Merkezi-1998
Ad Number: 13138
49.000 € İSTANBUL / ŞİŞLİ 15 May 26
Makino V-55-5X 5 Eksen CNC Dik İşleme Merkezi-2001
Makino V-55-5X 5 Eksen CNC Dik İşleme Merkezi-2001
Ad Number: 13137
52.000 € İSTANBUL / ŞİŞLİ 15 May 26
5 Eksen Mazak Variaxis 630-5X CNC Dik İşleme Merkezi-2003
5 Eksen Mazak Variaxis 630-5X CNC Dik İşleme Merkezi-2003
Ad Number: 12526
57.500 € İSTANBUL / ŞİŞLİ 14 May 26
Hermle C30U 5 Eksen CNC İşleme Merkezi ve Yükleme Robotu
Hermle C30U 5 Eksen CNC İşleme Merkezi ve Yükleme Robotu
Ad Number: 13125
124.000 € İSTANBUL / ŞİŞLİ 12 May 26
Hermle C 40U Dynamic 5 Eksen CNC İşleme Merkezi-2006
Hermle C 40U Dynamic 5 Eksen CNC İşleme Merkezi-2006
Ad Number: 13124
176.000 € İSTANBUL / ŞİŞLİ 11 May 26
SPINNER U5-620 5 Eksen CNC İşleme Merkezi–2011
SPINNER U5-620 5 Eksen CNC İşleme Merkezi–2011
Ad Number: 12507
46.999 € İSTANBUL / ŞİŞLİ 11 May 26
Satılık DMG DMC 80 FD DuoBlock 5 Eksen CNC İşleme Merkezi-2009
Satılık DMG DMC 80 FD DuoBlock 5 Eksen CNC İşleme Merkezi-2009
Ad Number: 11599
179.000 € İSTANBUL / ŞİŞLİ 11 May 26
CNC İŞLEME MERKEZİ VMC 650 VMC 750 VMC 1100 FANUC MITSUBISHI GSK
CNC İŞLEME MERKEZİ VMC 650 VMC 750 VMC 1100 FANUC MITSUBISHI GSK
Ad Number: 10232
35.000 $ İSTANBUL / ZEYTİNBURNU 07 May 26
Mazak Variaxis 500 5 Eksen CNC İşleme Merkezi–2002
Mazak Variaxis 500 5 Eksen CNC İşleme Merkezi–2002
Ad Number: 13102
47.000 € İSTANBUL / ŞİŞLİ 05 May 26
Matsuura RA-2F Çift Tabla CNC Dik İşleme Merkezi-1998
Matsuura RA-2F Çift Tabla CNC Dik İşleme Merkezi-1998
Ad Number: 7358
13.500 $ İSTANBUL / ŞİŞLİ 04 May 26
Kent VK-1600MC CNC İşleme Merkezi
Kent VK-1600MC CNC İşleme Merkezi
Ad Number: 10386
61.000 € İSTANBUL / ŞİŞLİ 04 May 26
SORALUCE TA35  3+2 EKSEN   X: 3500 ; Y:1000; Z:1000
SORALUCE TA35 3+2 EKSEN X: 3500 ; Y:1000; Z:1000
Ad Number: 13072
135.000 € DÜZCE / AKÇAKOCA 26 Apr 26
Quaser MV 154 APCE12 Çift Tabla CNC İşleme Merkezi-2008
Quaser MV 154 APCE12 Çift Tabla CNC İşleme Merkezi-2008
Ad Number: 11501
39.500 € İSTANBUL / ŞİŞLİ 24 Apr 26
DN Mynx-5400 CNC Dik İşleme Merkezi-2018
DN Mynx-5400 CNC Dik İşleme Merkezi-2018
Ad Number: 12591
47.900 € İSTANBUL / ŞİŞLİ 20 Apr 26

CNC vertical machining centers are machines examined under the general heading of milling processes performed via a control unit. We can examine the general structure of the machine in the following items:

Body: The body part is the cast structure on which the machining components of the machine are positioned. Cast bodies, which have internal stresses reduced by heat treatments, toughness gained by reducing internal structure grain sizes, and high rigidity, are generally manufactured as standard C-type for workpieces of a certain size. The spindle is fixed on the slide at the upper part of the body, with its tip perpendicular to the ground. In the lower part, there are runner surfaces where 2 or 4 slides are mated with each other for the table to move by sliding. During the assembly of the slides to these surfaces, there should be no gaps and full contact must be ensured. Various methods are used for this. Scraping is the most common of these. The exact contact of the cast surface and the slide contact surface at every point affects the machining quality.

Slides: These are the machine parts seated on the scraped runner surface of the cast body, providing bearing for the sliding movement of the table to the left and right (+X / -X direction) and forward and backward (+Y / -Y direction). Slides are also divided into 2 types. Box way, known as friction slide, and linear way. Box way machines are ideal for heavy-duty, interrupted cuts and mold processes. They are also preferred because potential scratches that may occur on the surfaces of box ways can be removed by grinding. Linear way machines are the type of machining centers preferred for serial operations. Since the friction force is lower during axis movements, their rapid traverse speeds are higher.

Table: It is a hardened planar surface suitable for bearing or threaded puller equipment, on which one or more workpieces to be machined are fixed. It is generally manufactured from cast steel. It moves on the slides. Since the flatness of the table directly affects the flatness of the part, its precision is extremely important. Positioning zeroing is performed by moving the table in both X and Y directions in + and - directions. For this, a dial indicator, micrometer, or laser is used. The lower the positioning accuracy value, the better. This value is generally sought to be around 0.001 mm (1 micron). Apart from the workpiece, thanks to V-bearings and puller bolts, vises can be connected, as well as 4 or 5-axis dividers.

Automatic Tool Changer (ATC): While arm-type and umbrella-type tool changing systems can be used, there are also machining centers without an ATC system. Its purpose of use is simply to carry the tool connected to the holder in the tool magazine to the spindle nose and mount it. There is a misconception that only CNC vertical machining center machines with an arm-type are called machines with ATC. Umbrella-type ones also change the tool automatically. Therefore, these machines also have ATC. In arm-type systems, the tool is carried by means of an auxiliary arm. The carrier arm has 2 opposing holding and carrier grippers. The tools are in a cluster parallel to the ground. When the tool at the called address reaches the mouth of the arm, it comes to a vertical position, and the ATC arm comes down from its locked position. While one gripper takes the called tool, the other gripper grasps the tool released at the spindle nose. These tools are swapped with a rotational movement. The ATC arm returns to its old position and locks automatically. In umbrella-type automatic tool changing systems, instead of an arm, the magazine where the tools are attached rotates as a whole to bring the called tool to the spindle nose and mount it. The tools are already in a vertical position. In both ways, automatic tool changing is performed. In systems without ATC, the tool holder is manually mounted to the spindle. A pneumatic button is used to open the pull stud jaws at the mouth of the spindle taper and grasp the tool holder again.

Spindle: It removes chips from the fixed workpiece by means of the tools attached to the holder, with the rotational movement it receives from the motor. The spindle approaches the part by moving up and down on the Z-axis slide mounted vertically on the body. Rotational movement is received from the spindle motor in different ways. The belt-driven system is the most used and first classic method produced. Built-in, direct-coupled motor and geared spindle systems are other models preferred according to the intended use. They are produced in different diameters and forms according to the way they grasp the tool. Generally, the ISO 40 taper holder in old machines and the BT 40 taper holder in new modern machine tools are commonly used types. Spindle systems suitable for ISO 50 and BT 50 taper holders are preferred for more intensive chip removal. If the amount of chip removal is high, it is wiser to use a direct motor or geared system instead of belt-driven systems for power requirements. Such combinations are parameters that must be known in the world of CNC machines. HSK, Capto, etc. are other taper varieties where modular tool changing type systems are used according to the spindle type. Spindle machines to which HSK-type tools can be connected are preferred for high-speed precise surface finishes. The number and type of pull stud pins inside the spindle vary according to the taper angle of the holder.

CNC control unit: Just like in lathes, it is the screen where the feed rate and speed of the axes, and accordingly the spindle speed and G-codes are managed, sticking to the geometric shape, in order to obtain the workpiece or mold in the most efficient (precise and fast) way. This section is roughly the interface where numerical data is translated into the language that the mechanical parts of the machine will understand via electronic driver cards.

Under the CNC vertical machining center category, there are listings and prices for 2nd hand, pre-owned from owner, for sale CNC vertical machining center from new CNC machine sellers.

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