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Thick Wall Cylinder | FortiTestX-41

The Thick Wall Cylinder FortiTestX-41 is a structural mechanics laboratory unit for investigating the triaxial stress and strain state in a thick-walled cylinder under internal pressure. This thick wall cylinder features a two-part aluminium cylinder (300 mm length, 140 mm diameter, 50 mm wall thickness) with a maximum operating pressure of 7 N/mm² (70 bar). Ten half-bridge strain gauges at 350 Ohm are positioned at multiple radial locations in the eccentric groove and on the cylinder surfaces, covering radial, hoop, and axial strain measurement. A hydraulic cylinder with spindle generates pressure, displayed on a 0 to 100 bar gauge, with optional Windows-based Software FX-41 supporting Mohr’s Circle analysis and principal stress determination.

The Thick Wall Cylinder FortiTestX – 41 is a benchtop apparatus for investigating stress and strain distribution in a thick-walled cylinder under internal pressure. This thick wall cylinder unit captures radial, circumferential, and axial strains simultaneously through ten strain gauges positioned at multiple radial locations within an eccentric groove and on the cylinder surface. It provides a complete experimental platform for studying triaxial stress states as applied to pressure vessel and pipeline design.

Product Overview

The Thick Wall Cylinder FortiTestX-41 addresses the uneven stress distribution across the wall thickness that distinguishes thick-walled pressure vessels from thin-walled ones. Under internal pressure, this thick wall cylinder enters a triaxial stress condition, with radial, circumferential, and axial stresses and strains developing simultaneously. Because internal strains cannot be measured directly, the unit uses surface and groove-mounted strain gauges to estimate the full internal stress and strain state. The apparatus consists of a two-part oil-filled aluminium cylinder sealed hermetically. Internal pressure is generated by a hydraulic cylinder and spindle arrangement, and displayed on a pressure gauge graduated to 100 bar, with a maximum operating pressure of 7 N/mm² (70 bar). An eccentric flat groove is machined between the two cylinder sections, where strain gauges are bonded at various radial positions. Additional strain gauges are placed on both the inner and outer surfaces of the cylinder. Ten strain gauges in total, configured as half-bridges at 350 Ohm with a gauge factor of 2.00 +/- 1%, provide complete documentation of the radial, hoop, and axial strain state. A measuring amplifier with 10 V supply reads the signals directly. Optional Windows-based Software FX-41 loads measured values for visual evaluation and graphical Mohr’s Circle representation of the triaxial stress condition. Elasticity equations are applied to convert measured strains into direct stresses.

Thick Wall Cylinder FortiTestX-41 — Technical Specifications

Parameter Detail
Model Reference FortiTestX-41
Category Strength of Materials and Structures
Cylinder Material Aluminium
Cylinder Length 300 mm
Cylinder Diameter 140 mm
Wall Thickness 50 mm
Maximum Internal Pressure 7 N/mm² (70 bar)
Pressure Gauge Range 0 to 100 bar
Pressure Generation Hydraulic cylinder with spindle
Hydraulic System Hermetically sealed, oil-filled, maintenance-free
Cylinder Construction Two-part with eccentric flat groove
Strain Gauge Quantity 10
Strain Gauge Configuration Half-bridges, 350 Ohm
Gauge Factor 2.00 +/- 1%
Strain Gauge Positions Various radial positions in groove, inner and outer cylinder surfaces
Amplifier Supply Voltage 10 V
Optional Software Software FX-41 (Windows-based)

Technical Data

Aluminium Cylinder

Parameter Value
Length 300 mm
Diameter 140 mm
Wall Thickness 50 mm
Maximum Internal Pressure 7 N/mm² (70 bar)

Strain Gauge System

Parameter Value
Number of Strain Gauges 10
Configuration Half-bridges
Resistance 350 Ohm
Gauge Factor 2.00 +/- 1%
Measurement Positions Various radial positions in groove, inner surface, outer surface
Amplifier Supply Voltage 10 V
Measurement Coverage Radial, hoop, and axial strain positions

Pressure System

Parameter Value
Pressure Generation Hydraulic cylinder with spindle
Maximum Internal Pressure 7 N/mm² (70 bar)
Pressure Gauge Range 0 to 100 bar
Hydraulic Fluid Oil
System Type Hermetically sealed, maintenance-free

Key Features

  • Cylinder Dimensions: aluminium, 300 mm length, 140 mm diameter, 50 mm wall thickness
  • Maximum Internal Pressure: 7 N/mm² (70 bar), generated by hydraulic cylinder and spindle
  • Thick Wall Cylinder Construction: two-part sealed cylinder with eccentric flat groove for internal strain gauge access
  • Strain Gauge Quantity: 10 half-bridge gauges at 350 Ohm, gauge factor 2.00 +/- 1%
  • Gauge Positions: various radial locations in the groove plus inner and outer cylinder surfaces
  • Strain Coverage: radial, hoop, and axial strain measurement for complete triaxial state documentation
  • Amplifier Supply Voltage: 10 V, with direct digital strain readout
  • Pressure Gauge Range: 0 to 100 bar
  • Hydraulic System: hermetically sealed, oil-filled, maintenance-free
  • Optional Software: Software FX-29, Windows-based, for data logging, Mohr’s Circle visualisation, and principal stress determination

Experiments

  • Measurement of elongations by strain gauges
  • Application of Mohr’s Circle for the triaxial stress state
  • Determination of the distribution of direct stress in radial, tangential, and axial directions
  • Investigation of correlations between elongation, pressure, and stress in the triaxial stress state

Construction and Design

The Thick Wall Cylinder FortiTestX-41 is built around a two-part aluminium cylinder measuring 300 mm in length, 140 mm in diameter, and 50 mm in wall thickness. An eccentric flat groove is machined at the joint between the two cylinder sections, providing access for strain gauge bonding at multiple radial positions within the wall. Additional strain gauges are mounted on both the inner and outer cylinder surfaces to complete the measurement coverage. Ten strain gauges in total are configured as half-bridges at 350 Ohm with a gauge factor of 2.00 +/- 1%, covering radial, hoop, and axial strain positions. Internal pressure is generated by a hydraulic cylinder and spindle, with a maximum operating pressure of 7 N/mm² (70 bar). A pressure gauge graduated to 100 bar displays the applied pressure. The cylinder is filled with oil and sealed hermetically, requiring no maintenance. The measuring amplifier operating at 10 V supply reads strain signals directly from all gauges. This thick wall cylinder interfaces with optional Windows-based Software FX-29 for data loading, visual evaluation, and Mohr’s Circle analysis of the triaxial stress condition.

Software

Software FX-41 (Optional): Windows-based software with a universal strain gauge amplifier interface for data logging, graphical strain display, and Mohr’s Circle visualisation of the triaxial stress state. Compatible with any Windows operating system.

Scope of Delivery

  • 1 experimental unit
  • 1 instruction manual

Q1: What is the maximum internal pressure the Thick Wall Cylinder FortiTestX-41 can withstand?
The maximum internal pressure is 7 N/mm² (70 bar), generated by the hydraulic cylinder and spindle arrangement.

Q2: How does this thick wall cylinder differ from a thin-walled cylinder apparatus?
In a thick-walled cylinder, stress distribution across the wall thickness is non-uniform and triaxial, involving radial, circumferential, and axial stresses simultaneously. The 50 mm wall thickness and groove-mounted internal strain gauges on this unit allow direct investigation of this stress distribution, which is not possible with thin-wall apparatus.

Q3: How many strain gauges are used and where are they positioned?
Ten strain gauges in half-bridge configuration are bonded at various radial positions within the eccentric groove between the two cylinder sections, as well as on the inner and outer surfaces of the cylinder.

Q4: Is Mohr’s Circle analysis supported?
Yes. Optional Software FX-41 provides graphical Mohr’s Circle representation of the triaxial stress condition for visual evaluation and principal stress determination.

Q5: Does the hydraulic system require maintenance?
No. The hydraulic system is hermetically sealed and oil-filled, requiring no maintenance.

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