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Nombre del producto Núm. de inventario Fabricante Año de fabricación Parámetros  
DEC 320/4000

DEC 320/4000

092690 Digep : 320
: 4000
CTO 400/5000

CTO 400/5000

142095 Stroje a zariadenia Piesok s.r.o. : 5000
: 400
: 300 x 5000
: 315
: 37
: 5900 x 2010 x 3600
CNCL-K 120-3100 TSI

CNCL-K 120-3100 TSI

191175 Safan 2002 : 120
: 3100
: 3
: Sí
: Hydraulický
: 180
LE 50/2500

LE 50/2500

201325 Gefi Györ 1981 : 50
: 2500
: Hydraulický
CTO 80/3200

CTO 80/3200

201925 Espe 1986 : 80
: 3200
: Hydraulický
: 250
: 150
: 2050
LE 100/3000

LE 100/3000

211319 Gefi Györ 1976 : 100
: 3000
: Hydraulický
: 17
: 3000 x 1170 x 2410
: 7500
PPI 110/30 MNC 95

PPI 110/30 MNC 95

211546 LVD 1995 : MNC 95/C
: 110
: 3050
:
:
: Hydraulický
APX 100/30

APX 100/30

221464 AMADA 1998 :
: 100
: 3000
: 7
: Sí
: Hydraulický
CTO 80/2500

CTO 80/2500

221579 Stroje a zariadenia Piesok s.r.o. 1992 : 80
: 2500
: Hydraulický
: 2500 x 160
: 2500 x 2385 x 1250
: 6100
CTO 160

CTO 160

221685 Stroje a zariadenia Piesok s.r.o. 1992 : 160
: 4000
: Hydraulický
: 16,50
: 4000 x 1690 x 2630
: 12100
ITPS 8025

ITPS 8025

231041 AMADA 1989 :
: 80
: 2500
: 4
:
: Hydraulický
GEB 100/3000 NC

GEB 100/3000 NC

231042 Györ-Sopron Géfi 2000 : 100
: 3000
: 1
: No
: Hydraulický
: 7,5
PFO/PS/N 400/50

PFO/PS/N 400/50

231152 Farina 2005 : DA - 65
: 400
: 5100
: 3
: Sí
: Hydraulický
CTO 160/3150

CTO 160/3150

231156 Stroje a zariadenia Piesok s.r.o. 1991 : 160
: 3150
: Hydraulický
: 11
: 4000x1540x2960
: 11500
PR 6

PR 6

231192 Beyeler 1997 : 3100
: 100
: DNC 800
: 6
: Hydraulický
: Sí
CPR135 - 4000

CPR135 - 4000

231225 Salvagnini 2003 : 135
: 4000
: 7
: Sí
: Hydraulický
AD-R 25100

AD-R 25100

231424 Durma Turkey 2014 : DNC 880 S
: 100
: 2550
: 4
: Sí
: Hydraulický
Trumabend V 130

Trumabend V 130

231536 Trumpf 1999 : DA - 69 T
: 130
: 3060
: 5
: Sí
: Hydraulický
HFE 100-3

HFE 100-3

231690 AMADA 2006 : Operateur 2000
: 100
: 3000
: 8
: No
: Hydraulický
VIMERCATI 100 x3050

VIMERCATI 100 x3050

231772 Vimercati 2007 :
: 100
: 3050
: 2
: No
: Hydraulický
HFT 130-4

HFT 130-4

231780 AMADA 2005 :
: 130
: 4200
: 4
: Sí
: Hydraulický
PPEB - EQ 80/2000

PPEB - EQ 80/2000

231829 LVD 2008 : 80
: 2000
: 6
: Sí
: Hydraulický
: 12,5
CNCK 225 - 4300

CNCK 225 - 4300

231843 Safan 1981 :
: 4300
: 225
: 225
: 4300 x 250
: 15
PPC 70/25

PPC 70/25

231919 LVD 1983 : 70
: 2500
: Hydraulický
B M 100-3100

B M 100-3100

232004 Hämmerle 1997 : 100
: 3100
: Hydraulický
: 11500
: 15
: 9 500
12

Forming machines used for processing (bending) of sheet metal. These machines are currently replaced by bending machines, because they are hydraulically driven and can work with greater pressures and lengths of bent parts.

During this kind of material processing , there is no waste and semi-finished products are used. It is also possible to bend very small workpieces of very small radius

Different types of punches and dies are used here as tools. These tools can be of different shapes and lengths. To clamp these tools mechanical or hydraulic clamping is used. Laser inspection can be used for maximum tool accuracy. Mechanical systems are used to drive the press, with an electric motor driving a system of pulleys and belts. Or a hydraulic one, which drives the hydraulic unit via an electric motor and the latter moves the ram through the pressure of the cylinders. 

The rear stop is very important for a press brake. It ensures the correct positioning of the workpiece in the machine. Semi finished product is pressed against the thumb, which is on the stop and ensures the correct position with respect to the tool. The rear stop is controlled by a CNC system and it moves to precise positions according to the program. Machine can operate in up to 6 axes. 

There are following axes:

X - along which the stop moves forward and backward

Z - along which the stop moves to the left or to right

R - along which the stop moves up and down

Another important function of press brakes is cambering. It is a process when the the long parts are bended the resistance of the material to the upper tool, elastic deformation of the part of the ram with the punch occurs. This can be prevented by underlying the matrix in the central part, grooves on the edges of the working table or automatic system.

Press brake control

Today, press brakes are controlled by a computer systems. Based on the entered values (material, tools, length, etc…)  calculates the production process, the movement of the stops or the bending force. Afterwards the machine can work in three following modes . 

  • Manual mode
  • Semi-automatic mode
  • Automatic mode

Types of press brakes

Press brakes are designed with different types of drivers such as machines with manual control, mechanical or hydraulic driver.  Each has its advantages and disadvantages. Furthermore, it is possible to divide press brakes according to their construction into segmental, tandem and combined.

Manufacturers of press brakes

Most popular manufacturers are TRUMPF, DURMA, SAFAN DARLEY, BYSTRONIC, GASPARINI, Haco, Beyeler, Promecam, Hämmerle. 

Currently, the most widely used and manufactured are hydraulic press brakes, which are CNC controlled.Top machines are from following manufacturers: Trumpf, Amada, Bystronic. These manufacturers use either their own CNC system for control or universal ones such as Delem, Cybelec, ESA..  These machines achieve a high level of automation of the operating cycles and therefore the maximum use of their capabilities. Of course press brakes from these top manufacturers are very expensive to purchase.