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Deformation of Curved Beam | FortiTestX – 13

A CE-certified precision laboratory apparatus for engineering experimentation and technical education, manufactured by Scientico India to ISO 9001:2015 standards. Supplied with calibration certificate, operation manual, and complete export documentation. Designed for Strength of Materials laboratories in engineering colleges and technical institutions.

Deformation of Curved Beam FortiTestX 13 is a dedicated strength of materials lab equipment unit designed to demonstrate and measure the elastic deflection of curved-axis beams under load. This Deformation of Curved Beam apparatus includes five distinct beam geometries, all with identical cross-sections, enabling direct side-by-side comparison of vertical and horizontal deformations across circular, semi-circular, quadrant, curved davit, and right-angled beam configurations. The FortiTestX 13 uses three dial gauges with 0.01 mm graduation to capture deformation with precision, making it a complete deformation of curved beam strength of materials lab equipment unit for undergraduate civil and mechanical engineering programmes.


Product Overview

The Deformation of Curved Beam FortiTestX 13 is a self-contained strength of materials lab equipment unit for the experimental investigation of elastic deformation in curved-axis beams under static loading. Five steel galvanised beams, each with a radius of approximately 150 mm and an identical cross-section of 20 x 5 mm, are supplied: a circular beam, a semi-circular beam, a quadrant beam, a curved davit beam, and a right-angled beam. All five beams share the same second moment of area, allowing test results to be compared directly across geometries. Beams are mounted on statically fixed supports: the circular and semi-circular beams are fastened to a bearing on the pillar, while the quadrant beam is fixed using a bearing block. A set of calibrated weights is applied to load the beam under test, and three dial gauges mounted to the frame capture both vertical and horizontal deformations across a 0 to 20 mm measuring range with 0.01 mm graduation. The apparatus supports application of Castigliano’s first theorem and the unit-load method for theoretical deflection estimation, with direct comparison against measured values forming the core analytical exercise. All components are organised and stored in a dedicated box included with the unit. The FortiTestX 13 covers curved beam behaviour relevant to construction engineering arches, crane hooks, and chain links as practical engineering contexts.

Technical Specifications

Field Details
Product Name Deformation of Curved Beam FortiTestX 13
Model Reference FortiTestX 13
Product Category Strength of Materials Lab Equipment
Apparatus Type Curved-axis beam deformation measurement unit
Number of Beams 5 (circular, semi-circular, quadrant, curved davit, right-angled)
Beam Radius Approximately 150 mm
Beam Cross-Section 20 x 5 mm (identical for all 5 beams)
Beam Material Steel, galvanised
Dial Gauge Measuring Range 0 to 20 mm
Dial Gauge Graduation 0.01 mm
Number of Dial Gauges 3
Support Types Pillar with bearing (circular, semi-circular beams), bearing block (quadrant beam)
Weight Set 1 x 0.5 N hanger, 5 x 2 N, 8 x 1 N
Storage Dedicated component box included
Manufacturer SCIENTICO, Ambala Cantt, India
Certifications ISO 9001:2015, CE Marked

Technical Data — Curved-Axis Beams

Parameter Value
Beam Radius Approximately 150 mm
Cross-Section (w x h) 20 x 5 mm
Material Steel, galvanised
Second Moment of Area Identical for all 5 beams
Beam Types Circular, semi-circular, quadrant, curved davit, right-angled

Technical Data — Weights

Weight Quantity
0.5 N (hanger) 1
2 N 5
1 N 8

Technical Data — Dial Gauges

Parameter Value
Measuring Range 0 to 20 mm
Graduation 0.01 mm
Quantity 3

Key Features

  • Complete deformation of curved beam strength of materials lab equipment unit: five beam geometries, three dial gauges, calibrated weight set, and storage box all supplied as standard
  • Five distinct curved-axis beam types: circular beam, semi-circular beam, quadrant beam, curved davit beam, and right-angled beam
  • Identical cross-section (20 x 5 mm) and second moment of area across all five beams for direct side-by-side comparison of deformation results
  • Beam material: steel, galvanised; beam radius approximately 150 mm for all geometries
  • Three dial gauges with 0 to 20 mm measuring range and 0.01 mm graduation for precise capture of both vertical and horizontal deformations
  • Fixed support configurations: pillar with bearing for circular and semi-circular beams; bearing block for quadrant beam
  • Calibrated weight set included: 1 x 0.5 N hanger, 5 x 2 N weights, 8 x 1 N weights
  • Supports application of Castigliano’s first theorem and the unit-load method for theoretical deflection calculation and comparison with measured values
  • All components organised and stored in a dedicated protective box
  • ISO 9001:2015 certified manufacture; CE marked product

Experiments

  • Bending behaviour of a curved-axis beam across five geometries: circular beam, semi-circular beam, quadrant beam, curved davit beam, and right-angled beam
  • Application of the principle of virtual forces (force method) to calculate deformation
  • Determination of second moment of area
  • Comparison of calculated and measured deformations

Construction and Design

Deformation of Curved Beam FortiTestX 13 is built as a robust strength of materials lab equipment unit centred on a rigid frame that supports the beam mounting hardware, dial gauge fixtures, and weight loading points for all five test beam configurations. Each of the five steel galvanised beams shares an identical 20 x 5 mm cross-section and approximately 150 mm radius, ensuring that differences in measured deformation between geometries are attributable solely to beam shape and not cross-sectional variation. The circular and semi-circular beams are mounted via a bearing on the pillar, while the quadrant beam is secured using a dedicated bearing block, both providing statically fixed support conditions. Three dial gauges are fixed to the frame and positioned to capture vertical and horizontal deformations simultaneously across a 0 to 20 mm range with 0.01 mm precision. The weight loading system uses calibrated hangers and slotted weights applied at defined positions along the beam under test. The deformation of curved beam experimental setup is designed so that every component of the experiment is clearly visible during testing, supporting step-by-step observation of beam behaviour from initial loading through to maximum elastic deflection. All components are housed in a dedicated storage box for organised transport and safe keeping between laboratory sessions. All construction and materials conform to ISO 9001:2015 quality standards and meet CE marking requirements.


Scope of Delivery

  • 1 x Experimental unit (Deformation of Curved Beam FortiTestX 13)
  • 5 x Curved-axis beams (circular, semi-circular, quadrant, curved davit, right-angled)
  • 3 x Dial gauges
  • 1 x Set of weights (1 x 0.5 N hanger, 5 x 2 N, 8 x 1 N)
  • 1 x Instruction manual

Q1: How many beam types are included with the FortiTestX 13?
Five curved-axis beams are supplied: a circular beam, a semi-circular beam, a quadrant beam, a curved davit beam, and a right-angled beam. All five share an identical 20 x 5 mm cross-section and approximately 150 mm radius, enabling direct comparison of deformation behaviour across geometries.

Q2: Why do all five beams have the same cross-section?
The identical cross-section and second moment of area across all five beams ensures that any difference in measured deformation between beam types is due exclusively to the geometry of the curved axis and not to variations in material or section properties. This makes side-by-side experimental comparison valid and meaningful.

Q3: What deformation directions are measured in the FortiTestX 13?
Three dial gauges are mounted to the frame to capture both vertical and horizontal deformations simultaneously. Each gauge has a measuring range of 0 to 20 mm with a graduation of 0.01 mm.

Q4: Which theoretical methods are supported by the FortiTestX 13 experiments?
The apparatus supports the application of Castigliano’s first theorem and the unit-load method (principle of virtual forces) for calculating theoretical deflections in curved bars, with direct experimental comparison against dial gauge measured values forming the core analytical exercise.

Q5: How are the beams supported during testing?
Support conditions vary by beam type. The circular and semi-circular beams are fastened to a bearing mounted on the pillar. The quadrant beam is fixed using a bearing block. All support configurations provide statically fixed conditions consistent with the theoretical models applied in the experiments.

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Testimonials

Scientico India delivered CE-certified laboratory equipment for our engineering programme on schedule. Documentation was complete and instruments were well calibrated.

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