🔎 ISO 9001:2015 & CE Certified Lab Equipment Manufacturer — Get CIF Quote in 24 Hours → WhatsApp Now
ISO 9001:2015 Certified CE Marked Equipment Exporting Since 1993 60+ Countries Served Quote in 24 Hours

Deformation of Frame | FortiTestX-42

The Deformation of Frame FortiTestX-42 is a structural mechanics laboratory unit for investigating frame deformation under load using U-shaped and S-shaped steel frames (600 x 600 mm, 20 x 10 mm cross-section). This deformation of frame apparatus supports statically determinate and indeterminate configurations via a roller bearing on the free end, with two dial gauges recording deflection at 0.01 mm resolution across a 0 to 20 mm range. Two weight sets with movable hooks apply loads at adjustable positions, and analytical methods including first-order elasticity theory, superposition, and virtual work are covered in full. Four optional frame variants extend the unit to portal, redundant, and unsymmetrical frame geometries.

Short Introduction

The Deformation of Frame FortiTestX-42 is a structural mechanics laboratory unit for investigating the deformation behaviour of steel frames under load. This deformation of frame apparatus covers both statically determinate and indeterminate conditions using U-shaped and S-shaped steel frames, with two dial gauges recording deflection at 0.01 mm resolution. It supports application of first-order elasticity theory, the principle of superposition, and the principle of virtual work within a single self-contained setup.

Product Overview

The Deformation of Frame FortiTestX-42 provides a comprehensive experimental platform for studying frame deformation, bending moment characteristics, and support reactions under varied loading conditions. The unit includes two steel frames: a U-shaped frame (600 x 600 mm) representing standard portal construction as found in hall structures, and an S-shaped frame (600 x 600 mm) for demonstrating the applicability of analytical methods to non-standard frame geometries. The U-shaped frame is clamped at one end; the opposite end can be left free for statically determinate analysis or fitted with a roller bearing for statically indeterminate investigation. Two sets of weights with movable hooks apply loads at adjustable positions along the frame. Two dial gauges with a 0 to 20 mm measuring range and 0.01 mm graduation record frame deformations under load. Bending moment characteristics are determined using first-order elasticity theory, the principle of superposition, and the principle of virtual work. The differential equation of the bent line is constructed from these characteristic curves and an integrals chart. Displacements and support forces at the movable bearing are calculated from the bent line and its derivatives. This deformation of frame unit stores all components in an organised storage system within a self-contained experimental frame. Optional frame variants FX-42A, FX-42B, FX-42C, and FX-42D extend the apparatus to portal frames with overhanging ends, redundant square frames, unsymmetrical portals, and square portal frames.

Deformation of Frame FortiTestX-42 — Technical Specifications

Parameter Detail
Model Reference FortiTestX-42
Category Strength of Materials and Structures
Frame Material Steel
Frame Edge Length 600 mm
Frame Cross-Section 20 x 10 mm
U-Shaped Frame Dimensions 600 x 600 mm
S-Shaped Frame Dimensions 600 x 600 mm
Frames Included 2 (U-shaped and S-shaped)
Support Configuration Statically determinate (free end) or indeterminate (roller bearing)
Clamping 1 long clamping pillar, 1 short clamping pillar
Load Application 2 sets of weights with movable hooks, adjustable to any load application point
Dial Gauge Measuring Range 0 to 20 mm
Dial Gauge Graduation 0.01 mm
Dial Gauges Included 2
Storage Dedicated component storage system
Instruction Manual Included

Technical Data

Steel Frames

Parameter Value
Material Steel
Edge Length 600 mm
Cross-Section 20 x 10 mm
U-Shaped Frame 600 x 600 mm
S-Shaped Frame 600 x 600 mm

Dial Gauges

Parameter Value
Measuring Range 0 to 20 mm
Graduation 0.01 mm

Weight Sets

Weight Quantity
0.5 N hanger weights 2
1 N weights 8
5 N weights 4

Key Features

  • Frame Geometry: two steel frames, U-shaped and S-shaped, each 600 x 600 mm, 20 x 10 mm cross-section
  • Support Configuration: this deformation of frame apparatus switches between statically determinate and indeterminate by adding a roller bearing to the free end
  • Clamping System: 1 long and 1 short clamping pillar for secure frame mounting
  • Load Application: 2 weight sets with movable hooks, adjustable to any load application point along the frame
  • Deformation Measurement: 2 dial gauges, 0 to 20 mm range, 0.01 mm graduation
  • Weight Set Included: 2x 0.5 N hangers, 8x 1 N, 4x 5 N
  • Analytical Methods Covered: first-order elasticity theory, principle of superposition, principle of virtual work
  • S-Shaped Frame: demonstrates applicability of analytical methods to non-standard frame geometries
  • Storage and Frame: all components organised in dedicated storage system within a self-contained experimental frame
  • Optional Variants: FX-42A portal with overhanging ends, FX-42B redundant square frame, FX-42C unsymmetrical portal, FX-42D square portal frame

Experiments

  • Relationship between load application and deformation on the frame
  • Differences between statically determinate and statically indeterminate frames
  • Familiarisation with first-order elasticity theory for statically determinate and indeterminate systems
  • Application of the principle of superposition
  • Application of the principle of virtual work on statically determinate and statically indeterminate frames
  • Determination of a deformation by the principle of virtual forces
  • Determination of a load by the principle of virtual displacement
  • Comparison of calculated and measured deformations

Construction and Design

The Deformation of Frame FortiTestX-42 is built around two steel frames, each with a 600 x 600 mm plan dimension and a 20 x 10 mm rectangular cross-section. The U-shaped frame replicates standard portal construction geometry as used in hall structures. One end is clamped using a long or short clamping pillar; the opposite end is left free for statically determinate experiments or fitted with a roller bearing for statically indeterminate analysis. The S-shaped frame is included to demonstrate that the same analytical methods apply to non-standard frame geometries. Two sets of weights with movable hooks load the frame at any chosen application point. Two dial gauges with a 0 to 20 mm range and 0.01 mm graduation record the deformations of this deformation of frame unit under load. Bending moment characteristics are derived using first-order elasticity theory, superposition, and virtual work principles. The differential equation of the bent line, constructed from characteristic curves and an integrals chart, yields displacements and support forces at the roller bearing. All components are housed in an integrated storage system within the experimental frame.

Scope of Delivery

  • 1 experimental unit
  • 1 instruction manual
  • 2 sets of weights
  • 2 dial gauges
  • 1 thread
  • 2 frames

Optional Accessories

  • FX-42A: Portal with overhanging ends
  • FX-42B: Redundant square frame
  • FX-42C: Unsymmetrical portal
  • FX-42D: Square portal frame

Q1: Can the Deformation of Frame FortiTestX-42 be configured for both statically determinate and indeterminate conditions?
Yes. The free end of the U-shaped frame can be left unconstrained for statically determinate experiments, or fitted with a roller bearing to create a statically indeterminate condition.

Q2: What frame geometries are included with this deformation of frame apparatus?
Two frames are included: a U-shaped frame (600 x 600 mm) for standard portal frame experiments and an S-shaped frame (600 x 600 mm) for demonstrating method applicability to non-standard geometries.

Q3: What analytical methods does the FortiTestX-42 support?
The unit supports first-order elasticity theory, the principle of superposition, and the principle of virtual work, including determination of deformations by virtual forces and loads by virtual displacement.

Q4: What is the resolution of the dial gauges?
The dial gauges have a graduation of 0.01 mm and a measuring range of 0 to 20 mm.

Q5: Are additional frame configurations available?
Yes. Four optional frame variants are available: FX-42A (portal with overhanging ends), FX-42B (redundant square frame), FX-42C (unsymmetrical portal), and FX-42D (square portal frame).

Explore Related Equipment

Discover more mechanical engineering lab equipment including testing systems, experimental setups, and training models designed for academic and industrial applications.

Testimonials

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

Need Assistance? We're Here to Help!

Connect with our team for product specifications, pricing, and customized solutions for your institution or project.

Make An Enquiry