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1234 Liste Grille

Aléseuse horizontale

Nom du produit NUMERO D'INVENTAIRE Fabricant Année de production Paramètres  
W 100  A

W 100 A

261133 TOS Varnsdorf 1989 Diametre de travaille de broche: 100 mm
Course X: 1600 mm
Course Y: 1120 mm
Vitesse de broche: 0 - 1120 /min.
Refroidissement par axe: NON
Extension du curseur (W): 900 mm
WH 10 CNC

WH 10 CNC

251738 TOS Varnsdorf 1991 Système de contrôle Heidenhain: TNC 530
Diametre de travaille de broche: 100 mm
Course X: 1250 mm
Course Y: 1120 mm
Vitesse de broche: 10 - 1150 /min.
Refroidissement par axe: NON
HVF 160 D

HVF 160 D

241231 ŠKODA MACHINE TOOL a.s. 1952 Diametre de travaille de broche: 160 mm
Course X: 3000 mm
Course Y: 2000 mm
Vitesse de broche: 2 - 450 /min.
Extension du curseur (W): 1200 mm
Refroidissement par axe: NON
WHN 9 B

WHN 9 B

251752 TOS Varnsdorf 1982 Diametre de travaille de broche: 100 mm
Course X: 1250 mm
Course Y: 900 mm
Vitesse de broche: 0 - 1120 /min.
Refroidissement par axe: NON
Extension du curseur (W): 680 mm
WH 10 NC

WH 10 NC

221109 TOS Varnsdorf 1985 Système de contrôle NCT: 90
Diametre de travaille de broche: 100 mm
Course X: 1250 mm
Course Y: 900 mm
Vitesse de broche: 16 - 1250 /min.
Refroidissement par axe: NON
DEFUM WFC-90

DEFUM WFC-90

261134 DEFUM 1959 Diametre de travaille de broche: 90 mm
Course X: 2000 mm
Course Y: 1000 mm
Vitesse de broche: 11 - 1420 /min.
Refroidissement par axe: NON
Extension du curseur (W): 700 mm
BFT 110/5

BFT 110/5

231231 UNION 1978 Course X: 1985 mm
Course Y: 1270 mm
Course Z: 1270 mm
Poids totale de la machine: 25400 kg
Dimensions de la table: 1400 x 1600 mm
Diametre de travaille de broche: 110 mm
WRF 160 CNC

WRF 160 CNC

251567 Fermat 2014 Système de contrôle Siemens: Sinumerik 840 D
Diametre de travaille de broche: 160 mm
Course X: 14800 mm
Course Y: 6000 mm
Vitesse de broche: 1 - 2500 /min.
Extension du curseur (W): 1000 mm
WHN 13 P CNC

WHN 13 P CNC

251849 Pressl 2022 Système de contrôle Heidenhain: TNC 640
Diametre de travaille de broche: 130 mm
Course X: 3500 mm
Course Y: 2000 mm
Vitesse de broche: 0 - 3000 /min.
Refroidissement par axe: OUI
WH 63

WH 63

251151 TOS Varnsdorf 1980 Diametre de travaille de broche: 63 mm
Course X: 1000 mm
Course Y: 710 mm
Vitesse de broche: 18 - 1800 /min.
Refroidissement par axe: NON
Extension du curseur (W): 560 mm
WH 10 CNC

WH 10 CNC

251926 TOS Varnsdorf 1987 Diametre de travaille de broche: 100 mm
Course X: 1150 mm
Course Y: 1000 mm
Vitesse de broche: 0 - 1200 /min.
Refroidissement par axe: NON
Extension du curseur (W): 630 mm
WH 10 CNC

WH 10 CNC

251896 TOS Varnsdorf 2000 Système de contrôle Heidenhain: TNC 426
Diametre de travaille de broche: 100 mm
Course X: 1250 mm
Course Y: 1120 mm
Vitesse de broche: 0 - 1800 /min.
Refroidissement par axe: NON
WHN 9B

WHN 9B

251006 TOS Varnsdorf 1981 Diametre de travaille de broche: 90 mm
Course X: 1250 mm
Course Y: 900(1120) mm
Vitesse de broche: 0 - 1120 /min.
Refroidissement par axe: NON
Extension du curseur (W): 680 mm
WXH 100

WXH 100

241325 KOVOSVIT MAS, a.s. Diametre de travaille de broche: 100 mm
Course X: 1200 mm
Course Y: 800 mm
Vitesse de broche: 6 - 3000 /min.
Refroidissement par axe: NON
Extension du curseur (W): mm
WI 130 CNC

WI 130 CNC

231050 ŠKODA MACHINE TOOL a.s. Système de contrôle Heidenhain: TNC 426
Diametre de travaille de broche: 130 mm
Course X: 1900 mm
Course Y: 1980 mm
Vitesse de broche: 2 - 900 /min.
Extension du curseur (W): 1590 mm
WHN 13

WHN 13

251947 Fermat Système de contrôle Heidenhain: TNC 530
Diametre de travaille de broche: 130 mm
Course X: 3500 mm
Course Y: 2000 mm
Vitesse de broche: 5 - 1250 /min.
Refroidissement par axe: NON
BFKF 150

BFKF 150

251720 UNION 1979 Système de contrôle Fidia:
Diametre de travaille de broche: 150 mm
Course X: 2000 mm
Course Y: 1500 mm
Vitesse de broche: 1 - 1000 /min.
Refroidissement par axe: NON
W 100 A

W 100 A

261067 TOS Varnsdorf Diametre de travaille de broche: 100 mm
Course X: 1600 mm
Course Y: 1120 mm
Vitesse de broche: 7 - 1120 /min.
Refroidissement par axe: NON
Extension du curseur (W): 900 mm
W 9 A

W 9 A

261015 TOS Varnsdorf 1978 Diametre de travaille de broche: 90 mm
Course X: 1250 mm
Course Y: 1120 mm
Vitesse de broche: 10 - 1400 /min.
Refroidissement par axe: NON
Extension du curseur (W): 710 mm
W 75

W 75

261173 TOS Varnsdorf 1996 Diametre de travaille de broche: 75 mm
Course X: 1250 mm
Course Y: 900 mm
Vitesse de broche: 18 - 1800 /min.
Refroidissement par axe: NON
Extension du curseur (W): 560 mm
H 63 A

H 63 A

261210 TOS Varnsdorf 1963 Diametre de travaille de broche: 63 mm
Course X: 1050 mm
Course Y: 610 mm
Vitesse de broche: 8 - 1400 /min.
Refroidissement par axe: NON
Extension du curseur (W): 560 mm
WH 10 NC

WH 10 NC

251656 TOS Varnsdorf 1991 Système de contrôle Tesla: NS 670
Diametre de travaille de broche: 100 mm
Course X: 1250 mm
Course Y: 900 mm
Vitesse de broche: 16 - 1250 /min.
Refroidissement par axe: NON
WFT 13

WFT 13

261140 Fermat 2015 Système de contrôle Heidenhain: TNC 530
Diametre de travaille de broche: 130 mm
Course X: 3000 mm
Course Y: 2000 mm
Vitesse de broche: 10 - 3000 /min.
Refroidissement par axe: OUI
HWC

HWC

261168 DEFUM 1957 Diametre de travaille de broche: 110 mm
Course X: 1200 mm
Course Y: 1150 mm
Vitesse de broche: 8 - 1250 /min.
Refroidissement par axe: NON
Extension du curseur (W): 850 mm
W 100

W 100

261172 TOS Varnsdorf 1976 Diametre de travaille de broche: 100 mm
Course X: 1000 mm
Course Y: 700 mm
Vitesse de broche: 0 - 1200 /min.
Refroidissement par axe: NON
Extension du curseur (W): 900 mm
1234

Horizontal boring machines are universal machines used for machining of complex products. These borers are mainly used for small batch production. For one workpiece clamping, the operation can be performed from up to five sides, either simultaneously or sequentially. A large number of standard and special accessories are available for horizontal boring machines. This makes boring machines suitable not only for boring, but also for drilling, turning, milling and other operations. 

Horizontal boring machines can be divided into several types, such as:  table, cross, plate, coordinate. Can be divided also according to the type of control - conventional (without system), or CNC controlled.

Table type boring machines

Table boring machines are equipped with a movable table that moves in one or two axes. Depending on this, boring machines are further divided into cross-construction or T-construction. The table is usually rotary (B axis), which allows four sides of the workpiece to be machined in one clamp. However, if the machine is equipped with an angle head (A and C axes) and the workpiece does not exceed the dimensions of the machine, five sides can be machined in one clamp. The boring milling machines differ from the table milling machines in particular by the extendable spindle (W axis).  Higher series often also have a movable headstock (V axis). 

Cross-construction

The cross design is usually used on compact machines with a table capacity up to 5 tonnes, where the table moves in two mutually perpendicular axes (X,Z). These machines are usually lighter and less demanding to build the base, but are limited not only by the travel, but also by the capabilities of the stand and spindle. The diameter of the spindle here is usually between 75 and 125 mm.
 

T-construction

The T-design is a more rigid machine with a table capacity of up to 25 tonnes and longer axis travel, with the table moving only in the transverse axis towards the spindle (X), while the stand moves in the longitudinal axis (Z) towards the table. The diameter of the boring spindle is usually between 100 and 160 mm due to the heavier and bulkier workpieces.
 

Floor type boring machines

These kinds of boring machines are suitable and used for machining of the largest workpieces. Headstock is moving along the vertical guide of the column and column itself is moving along the bed perpendicular to the axis of the spindle. The workpiece is clamped immovably on a cast-iron floor plate equipped with T-slots. If this floor type boring machine is equipped with a rotary table which is movable in the direction of the spindle axis, the number of controlled axes increases. Such boring machines mainly have a boring spindle diameter of 130-315 mm

Coordinate boring machines

So-called coordinate boring machines are used for machining precise holes. Its design is affected by the requirements for very high accuracy of all movements, good dynamics and the best possible temperature stability. There are two types of these machines. One-column borer with horizontal or vertical spindle axis (this is for smaller sizes of workpieces that are clamped on a cross table) and two column borer with one or more vertical spindles. Workpiece is clamped on a longitudinal table, which is in between two columns along which the crosspiece carrying the work headstock moves. An optical system is usually used for measuring. More modern machines are then equipped with a CNC control system.

All types of horizontal boring machines are conventional or CNC controlled. Among the most popular producers of CNC systems are Heidenhain, Siemens, Fanuc, Fagor.

Horizontal boring machines can be also equipped with automatic tool change which is primarily used for storage of tool holders, its manipulation and positioning without participation of human factor. 

Among the main and most popular manufacturers of boring mills we have to mention:  FERMAT, TOS, ŠKODA, PAMA, UNION, JUARISTI, SCHARMANN, KURAKI, WOTAN.