Concrete pipe testing machines (750kN capacity) are designed to test concrete sewer and drain pipes used in drainage works, water supply systems, irrigation systems etc.

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Concrete pipe testing machines (750kN capacity) are designed to test concrete sewer and drain pipes used in drainage works, water supply systems, irrigation systems etc.

The machine is available in two versions:

50-C960x/M conforming to ASTM C497- par. 4
50-C961x/M  conforming to EN 1916:2002 – Annex C, 4.2
The EN version is suitable for testing round shaped pipes, cylindrical barrel shape over the full length without sockets conforming to EN 1916 Annex C, fig. C.2a. Compression tests can also be performed on cylindrical pipes with sockets, provided that you specify, at time of request, the shape and dimensions of above sockets to verify the compatibility with the loading bearers.
The difference between the two models concerns, mainly, the lower supports and the upper bearing beam. The machines do not include the elastomeric bearing strips or similar which have to be provided on site.
FRAME
The frame is made of structural steel and is bolted together with high strength bolts so it can be easily assembled and disassembled either for delivery or for movement from one site to another. The two upper crossbeams are raised and lowered by a motor operated winch. The upper crossbeam is then locked in position by locking pins inserted through the columns.
HYDRAULIC RAM ASSEMBLY
Consists of an alloy steel cylinder, a piston tempered and ground, a hydraulic hoses and spherical seat.
CONTROL UNIT
Provided by Automax Multitest digital/automatic computerized control console, suitable to keep the load constant as required by the Standard and for acquisition of both load and displacement readings. Full PC control with graphical display.
  • Upper crossbeams are raised and lowered by a motor operated winch to adjust the vertical daylight.
  • 2 models with different support and loading elements, according to EN or ASTM specifications.
  • Full PC control.
  • Electro hydraulic loading and control system.
Max. load: 750 or (1000 kN on request)
Max vertical daylight: 3900 mm
Distance between columns: 3250 mm
Max. pipe dimensions: dia. 3700 x 2900 mm long (3700 x 3000 mm for 1000 kN model)
Min. pipe diameter: 200 mm
Ram travel: 110 mm (400 mm for 1000 kN model)
Frame dimensions (750 kN): 6460 x 4150 x 3000 mm (hxlxd)
Frame dimensions (1000 kN): 7000 x 4600 x 3250 mm (hxlxd)
Power rating: 1300 W
Net weight approx.: 4300 kg (750 kN)
Net weight approx.: 4500 kg (1000 kN)
Shipping weight approx.: 5200 kg (750 kN)
Shipping weight approx.: 5500 kg (1000 kN)
Shipping cubage approx.. 11 m3 (750 kN)
Shipping cubage approx.. 12 m3 (1000 kN)
Important note:
The machine is delivered disassembled and have to be mounted on site following the instructions.
Code
Description
50-C9602/M
Pipe testing machine model 750 kN capacity. For compression tests according to ASTM C497. 380 V / 50 Hz / 3 Ph for winch 230V / 50-60 Hz / 1 Ph for control console.
50-C9603/M
Pipe testing machine model 750 kN capacity. For compression tests according to ASTM C497, 220 V / 60 Hz / 3 Ph for winch 220V / 50-60Hz / 1Ph for control console
50-C9604/M
Pipe testing machine model 750 kN capacity. For compression tests according to ASTM C497, 220 V / 60 Hz / 3 Ph for winch 110V / 60 Hz / 1 Ph for control console
50-C9612/M
Pipe testing machine model 750 kN capacity. Conforming and EN 1916:2002 - Annex C.4.2 without option for Annex K. 380 V / 50 Hz / 3 Ph for winch 230 V / 50-60 Hz / 1 Ph for control console
50-C9613/M
Pipe testing machine model 750 kN capacity. Conforming and EN 1916:2002 - Annex C.4.2 without option for Annex K. 220 V / 60Hz / 3 Ph for winch 220 V / 50-60 Hz / 1 Ph for control console
50-C9614/M
Pipe testing machine model 750 kN capacity. Conforming and EN 1916:2002 - Annex C.4.2 without option for Annex K. 380 V / 60 Hz / 3 Ph for winch 110 V / 60 Hz / 1 Ph for control console
  • ASTM C497-par.4
  • EN 1916:2002-Annex C- 4.2

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Concrete pipe testing machines, 750 kN capacity

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Concrete pipe testing machines, 750 kN capacity

Concrete pipe testing machines (750kN capacity) are designed to test concrete sewer and drain pipes used in drainage works, water supply systems, irrigation systems etc.

Features

  • Upper crossbeams are raised and lowered by a motor operated winch to adjust the vertical daylight.
  • 2 models with different support and loading elements, according to EN or ASTM specifications.
  • Full PC control.
  • Electro hydraulic loading and control system.

Specifications

Max. load: 750 or (1000 kN on request)
Max vertical daylight: 3900 mm
Distance between columns: 3250 mm
Max. pipe dimensions: dia. 3700 x 2900 mm long (3700 x 3000 mm for 1000 kN model)
Min. pipe diameter: 200 mm
Ram travel: 110 mm (400 mm for 1000 kN model)
Frame dimensions (750 kN): 6460 x 4150 x 3000 mm (hxlxd)
Frame dimensions (1000 kN): 7000 x 4600 x 3250 mm (hxlxd)
Power rating: 1300 W
Net weight approx.: 4300 kg (750 kN)
Net weight approx.: 4500 kg (1000 kN)
Shipping weight approx.: 5200 kg (750 kN)
Shipping weight approx.: 5500 kg (1000 kN)
Shipping cubage approx.. 11 m3 (750 kN)
Shipping cubage approx.. 12 m3 (1000 kN)
Important note:
The machine is delivered disassembled and have to be mounted on site following the instructions.

Highlights

Concrete pipe testing machines (750kN capacity) are designed to test concrete sewer and drain pipes used in drainage works, water supply systems, irrigation systems etc.

The machine is available in two versions:

50-C960x/M conforming to ASTM C497- par. 4
50-C961x/M  conforming to EN 1916:2002 – Annex C, 4.2
The EN version is suitable for testing round shaped pipes, cylindrical barrel shape over the full length without sockets conforming to EN 1916 Annex C, fig. C.2a. Compression tests can also be performed on cylindrical pipes with sockets, provided that you specify, at time of request, the shape and dimensions of above sockets to verify the compatibility with the loading bearers.
The difference between the two models concerns, mainly, the lower supports and the upper bearing beam. The machines do not include the elastomeric bearing strips or similar which have to be provided on site.
FRAME
The frame is made of structural steel and is bolted together with high strength bolts so it can be easily assembled and disassembled either for delivery or for movement from one site to another. The two upper crossbeams are raised and lowered by a motor operated winch. The upper crossbeam is then locked in position by locking pins inserted through the columns.
HYDRAULIC RAM ASSEMBLY
Consists of an alloy steel cylinder, a piston tempered and ground, a hydraulic hoses and spherical seat.
CONTROL UNIT
Provided by Automax Multitest digital/automatic computerized control console, suitable to keep the load constant as required by the Standard and for acquisition of both load and displacement readings. Full PC control with graphical display.

Models

  • 50-C9602/M/ Pipe testing machine model 750 kN capacity. For compression tests according to ASTM C497. 380 V / 50 Hz / 3 Ph for winch 230V / 50-60 Hz / 1 Ph for control console.
  • 50-C9603/M/ Pipe testing machine model 750 kN capacity. For compression tests according to ASTM C497, 220 V / 60 Hz / 3 Ph for winch 220V / 50-60Hz / 1Ph for control console
  • 50-C9604/M/ Pipe testing machine model 750 kN capacity. For compression tests according to ASTM C497, 220 V / 60 Hz / 3 Ph for winch 110V / 60 Hz / 1 Ph for control console
  • 50-C9612/M/ Pipe testing machine model 750 kN capacity. Conforming and EN 1916:2002 - Annex C.4.2 without option for Annex K. 380 V / 50 Hz / 3 Ph for winch 230 V / 50-60 Hz / 1 Ph for control console
  • 50-C9613/M/ Pipe testing machine model 750 kN capacity. Conforming and EN 1916:2002 - Annex C.4.2 without option for Annex K. 220 V / 60Hz / 3 Ph for winch 220 V / 50-60 Hz / 1 Ph for control console
  • 50-C9614/M/ Pipe testing machine model 750 kN capacity. Conforming and EN 1916:2002 - Annex C.4.2 without option for Annex K. 380 V / 60 Hz / 3 Ph for winch 110 V / 60 Hz / 1 Ph for control console

Standards

  • ASTM C497-par.4
  • EN 1916:2002-Annex C- 4.2

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