|
| |
| Frame
: |
| The frame is of heavy duty design and hot rolled welded steer plate construction. The shearing table is Integral with the basic machine frame to ensure maximum rigidity. |
|
| |
| Ram and Guidance : |
Ram is so designed for minimum deflection, for parallelism of ram travel without servo / Hydro electronic etc. a pair of hydraulic cylinders are synchronized by a heavy duty torsion bar made from heavy walled steel tube. Welded to the levers result absolute parallelism between ram and table. Slide is so design with brass liner fitted inside with ram and runs on saddle perfectly housed with frame. |
|
| |
| Pins, Pivots and Slide : |
All pins and bushes are made from alloy steel material with hardened ground after machining for accurate and long working life. All Pivots, pin, bushes and slides are lubricated by centralized hand operated lubrication systems.
|
|
| |
| Hydraulic Cylinders : |
The Hydraulic Cylinder are made from high resistant steel with chromium plated rod with imported seal kit for perfect and long working life and is so design to change or replace the seal kits without any other dismantling like ram tool etc.
|
|
| |
| Tooling : |
Kawa KBR series Press Brake machine are equipped with punch and die consist with carbon steel material machined and ground but without hardened. Hardened and Ground standard Punch and Die Block or any special tooling can be offer as an optional.
|
|
| |
| Power Pack Unit: : |
The low noise Hydraulic system is designed as per International practices and assembled with internationally reputed make components. The Hydraulic valves are mounted on the especially compact designed manifold block to minimize of piping and to avoid any leakages. The large size oil reservoir is provided for adequate cooling and increase oil life.
|
|
| |
| Operating Mode : |
The Kawa press brake machine is facilitate with 3 working mode Inching, Single Stroke and Continuous operation, consist with electrical hard wiring logic of electrical panel. Electrical panels & components are provided as per international reputed brands.
|
|
| |
| Inching : |
This mode is used for setting blade angle depth stroke. The ram movement (up down) can be controlled at any described Position from foot switches.
|
|
| |
| Auto : |
The cycle (Approach-Pressing-return) is continuously Repeated once this cycle is selected. This mode is useful for Continuous repetitive work where stroke length can be adjusted to suit the job and the operators speed and rhythm.
|
|
| |
| Single : |
This mode is used for single operation.
|
|
| |
| Air Bending : |
In air bending the dies are made at more of an acute angle (85 degrees or less) than angle to be formed. The only contact between the dies and the material occurs at the tip of male punch and the edges of the female die. The material is “air” bent rather than “coined” or “bottom’ bent.
The advisable “Vee” die openings for air bending are:
V = 6 to 8 x material thickness(t), when t < 4
V = 6 to 12 x material thickness(t), when t < 4
|
|
| |
| Bottom Bending (Bottoming): |
In bottom bending the upper and lower dies are usually made with an included angle of 90 degrees to ensure sharp corners on the formed part. In the forming process, the dies strike solidly and squeeze the metal at stroke bottom.
This process requires 3 to 5 times the tonnage needed in air bending. Since more tonnage is required bottoming is seldom performed on steel greater than 12 gauge.
The advisable “Vee” die openings for Bottoming are
V = 5 to 6 x material thickness
Bottoming dies are made in matched pairs, according to the thickness and tensile strength of the stock to be formed and the radius needed. The upper and lower dies may require an included 88 or 89 degrees to overcome the spring back of materials with high tensile strength.
|
|
| |
| Parameters |
Unit |
| Plate Thickness (t) Ultimate Tensile Strength |
mm |
| of Plate (S) |
Kg / mm2 |
| Bending Length (L) |
mm |
| “Vee” Die Opening (V) |
mm |
| Minimum internal Radius (R) |
mm |
| Minimum Flange (H) |
mm |
| Bending Correction Factor (K) |
1.3 |
| Required Tonnage (P) |
M.Tonnes |
|
| |
| Press Brake selection guidelines : |
The basis factors to be considered while selecting a press brake, or calculating the correct setting for operation are The force required for air bending can be calculated. from the following formula : Load, P = K.L.S.t2 / 1000 V Metric Tonnes.
The bending chart given on the next page covers all major bending for plates of 45 Kg/mm2 ultimate tensile strength. The figures given by the chart refer to 1 meter length so they must be multiplied by total plate length to obtain the final required force in Metric Tonnes.
|
|
| |
| KBR 320 |
30 |
2X2000 |
125x2000 |
1700 |
100 |
280 |
180 |
200 |
30 |
7 |
30 |
(2.5)3 |
2200 |
1110 |
1750 |
2500 |
| KBR 425 |
40 |
2X2500 |
125x2000 |
2000 |
100 |
280 |
180 |
200 |
50 |
6 |
50 |
(2.5)5 |
2650 |
1250 |
1800 |
3000 |
| KBR 520 |
50 |
2X2000 |
170x2500 |
1500 |
100 |
280 |
180 |
200 |
48 |
6 |
48 |
(3.75)5 |
2200 |
1300 |
1825 |
3000 |
| KBR 525 |
50 |
2.5X2500
3X2500
(32mm “V”) |
170x2500 |
2000 |
100 |
280 |
180 |
200 |
48 |
6 |
48 |
(3.75)5 |
2700 |
1300 |
1825 |
3500 |
| KBR 625 |
60 |
3.15X2500 |
170x2500 |
2000 |
150 |
330 |
180 |
200 |
36 |
5 |
36 |
(3.75)5 |
2700 |
1400 |
2050 |
3700 |
| KBR 825 |
80 |
4X2500 |
170x3000 |
2000 |
150 |
3500 |
200 |
200 |
30 |
5 |
30 |
(3.75)5 |
2700 |
1550 |
2180 |
4500 |
| KBR 830 |
80 |
3.15X3000
4X2500 |
125x2000 |
2500 |
1500 |
350 |
200 |
200 |
30 |
5 |
30 |
(3.75)5 |
3250 |
1550 |
2180 |
5000 |
| KBR 1025 |
100 |
5X2500 |
220x3000 |
2000 |
150 |
350 |
200 |
200 |
38 |
5 |
38 |
(3.75)5 |
2700 |
1600 |
2180 |
5200 |
| KBR 1030 |
100 |
4X3000
5X2500 |
220x4000 |
2500 |
150 |
350 |
200 |
200 |
38 |
5 |
38 |
(3.75)5 |
2700 |
1600 |
2180 |
6000 |
| KBR 1230 |
125 |
5X3000
6X2500 |
220x3000 |
2500 |
150 |
350 |
200 |
300 |
60 |
5 |
60 |
(7.5)10 |
3250 |
1800 |
2350 |
7000 |
| KBR 1240 |
125 |
6X2500
5X3000
4X4000 |
220x4000 |
3000 |
150 |
350 |
200 |
300 |
60 |
5 |
60 |
(7.5)10 |
4250 |
1800 |
2350 |
8000 |
| KBR 1630 |
160 |
8X2500
6X3000 |
220x3000 |
2500 |
150 |
350 |
200 |
300 |
60 |
5 |
60 |
(11.25)15 |
3250 |
1850 |
2450 |
8800 |
| KBR 1640 |
160 |
8X2500
6X3000
5X4000 |
220x4000 |
3000 |
150 |
350 |
200 |
300 |
60 |
5 |
60 |
(11.25)15 |
4250 |
1850 |
2450 |
9800 |
| KBR 2030 |
200 |
8X3000
10X2500 |
220x3000 |
2500 |
200 |
410 |
210 |
300 |
50 |
5 |
50 |
(15)20 |
3250 |
1900 |
2500 |
9500 |
| KBR 2040 |
200 |
10X4000
8X3000
6X4000 |
220x4000 |
3000 |
200 |
410 |
210 |
300 |
50 |
5 |
50 |
(15)20 |
4250 |
1900 |
2500 |
10500 |
| KBR 3030 |
300 |
12X3000
16X2500 |
300x3000 |
2500 |
200 |
410 |
210 |
300 |
30 |
5 |
30 |
(18.75)25 |
3250 |
2000 |
2800 |
12000 |
| KBR 3040 |
300 |
10X4000
12X3000
16X2500 |
300x4000 |
3000 |
200 |
410 |
210 |
300 |
30 |
5 |
30 |
(18.75)25 |
4250 |
2000 |
2800 |
15000 |
| KBR 4040 |
400 |
12X4000
16X3000
20X2500 |
300x4000 |
3000 |
250 |
500 |
250 |
300 |
40 |
5 |
40 |
(30)40 |
4250 |
2010 |
3700 |
16000 |
| KBR 5040 |
500 |
20X4000 |
300x4000 |
3000 |
250 |
550 |
300 |
300 |
46 |
6 |
46 |
(37.5)50 |
4650 |
2050 |
3150 |
27000 |
|
| |
| STANDARD ACCESSORIES |
 |
Main Drive Motor. |
 |
Electrical Control Panel with Selection of INCHCHING SINGLE CYCLE and AUTOMATIC’ mode of operation |
 |
Pair of Foot Switches |
 |
Pair of Lifting Links. For “V” changing |
 |
Pair of Sheet Supports. |
 |
Fine Stroke Adjustment Rod with Limit Switches |
 |
Manual Back Gauge with Fine Setting. |
 |
One Suitable 5 way Die block and “v’ Punch |
 |
Centralized Lubrication System with Hand Pump. |
|
| |
| OPTIONAL EQUIPMENTS |
 |
NC - Operated stroke (Y-Axis) control. |
 |
NC - Operated Back Gauge and stroke control. |
 |
Swing type Sheet Support , disappearing stops arrangement in Front gauging. |
 |
Hardened and ground tools ft any special tooling. |
 |
hydraulic oil. |
 |
Foundation bolts |
 |
Leveling bolts. |
|
| |
|
| Ask for a Free Quote |
|