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 Forces and Friction laboratories in engineering colleges and technical institutions.

| Parameter | Specification |
|---|---|
| Model | FrixoDynamics FX-525 |
| Mounting | Universal Frame and Stand |
| Truss Models | 2 acrylic models, Warren truss, N-truss (engraved) |
| Circular Disc | Perspex, 12 peripheral attachment points |
| Counterbalancing | Each acrylic model fitted with counterbalancing weight |
| Force Application | Nylon cords, dead weights on hangers, double pulleys |
| Force Recording | Cord lines transferred to A1 paper on force board |
| Weight Set | 5 x 0.5 N hangers, 10 x 5 N, 10 x 2 N, 10 x 1 N, 10 x 0.5 N |
| Rings | 2 |
| A1 Paper | Not supplied |
| Scope of Delivery | 1 experimental unit, 5 sets of weights, 2 rings, 1 thread, 1 instructional manual |
Key Features
Applications
Construction and System Design
The FX-525 is mounted in a Universal Frame and Stand that holds the force board in a fixed upright position. The force board provides a flat, stable surface to which A1 paper is clipped for recording cord lines during experiments. The two acrylic models are attached to the force board in turn, with the counterbalancing weights ensuring that each model contributes no net force or moment to the system beyond those intentionally applied through the cords.
Nylon cords are attached to the model's load and reaction points and routed over double pulleys fixed to the frame. The pulleys redirect the cord directions as needed, ensuring that all forces, including upward support reactions, are generated by hanging dead weights rather than by spring or mechanical loading mechanisms. This approach maintains the simplicity and accuracy of the force application, and ensures that every force in the system is precisely known from the hanging weight value.
The circular Perspex disc is fixed to the force board at its centre for the couple experiments. Twelve equally spaced attachment points around the perimeter allow cords to be attached at any combination of positions. Opposing couples are formed by applying equal and opposite forces at symmetrically selected points, and the equilibrium condition is verified by confirming that the net moment about the disc centre is zero. The two rings provided are used for cord attachment at the model's node points and disc periphery attachment positions.
The comprehensive weight set, with 10 pieces each of 5 N, 2 N, 1 N, and 0.5 N across five hangers, provides sufficient range and resolution to construct multiple distinct load configurations on the same model within a single session, supporting both introductory parallel force experiments and more complex multi-load moment verification exercises.
Export and Supply Capability
The SCIENTICO FrixoDynamics FX-525 is available for supply to engineering colleges, technical universities, civil and mechanical engineering departments, research institutions, and industrial training centres. SCIENTICO manufactures and exports laboratory equipment to institutions and distributors across multiple regions. Standard packaging is suitable for international shipment. Bulk orders, customised configurations, and institutional procurement enquiries are welcomed. Please contact SCIENTICO directly for pricing, lead times, and shipping terms.
Q1: What is the equilibrium of parallel forces apparatus used for?
The FX-525 is used to verify the conditions for equilibrium of parallel coplanar forces acting on a rigid body, specifically that the algebraic sum of all vertical forces equals zero (ΣFv = 0) and the algebraic sum of all moments about any point equals zero (ΣM = 0). Students apply controlled loads and reactions to acrylic truss models using cords and hanging weights, record the force lines on paper, and verify equilibrium using both algebraic calculation and graphical link polygon construction.
Q2: What is a couple, and how does the FX-525 demonstrate couple equilibrium?
A couple consists of two equal, opposite, and non-collinear parallel forces acting on a body. The net force of a couple is zero, but the net moment is non-zero and equal to the product of one force and the perpendicular distance between the two force lines. The FX-525 demonstrates couple equilibrium using the 12-point Perspex disc, where opposing couples are applied at different peripheral attachment points. Equilibrium requires the two couple moments to be equal and opposite, verified by confirming ΣM = 0 about the disc centre.
Q3: Why are the acrylic truss models counterbalanced?
The counterbalancing weights render each acrylic model effectively weightless in the experimental setup. Without counterbalancing, the model's own weight would act as an additional downward force in the system, complicating the force balance and introducing an uncontrolled variable. By neutralising the model's self-weight, the counterbalancing ensures that only the deliberately applied cord loads and reactions contribute to the force system, making the experimental conditions consistent with the theoretical parallel force equilibrium problem.
Q4: What is the link polygon method, and how is it verified using the FX-525?
The link polygon is a graphical method for verifying moment equilibrium in a parallel force system. It involves constructing a force polygon from the known vertical forces and then drawing a series of rays from a chosen pole point, generating link lines that form a closed polygon when the system is in moment equilibrium. The FX-525 supports link polygon construction by allowing students to transfer cord lines onto A1 paper on the force board, providing an accurate graphical record of the force positions and magnitudes from which the polygon is constructed and closure verified.
Q5: What is included in the scope of delivery for the FX-525?
The FX-525 is supplied as a complete experimental kit including: one parallel forces experimental unit with Universal Frame and Stand, force board, two counterbalanced acrylic truss models (Warren and N-type), Perspex circular disc with 12 attachment points, double pulleys, and nylon cords; five sets of calibrated weights (5 x 0.5 N hangers, 10 x 5 N, 10 x 2 N, 10 x 1 N, 10 x 0.5 N); two rings; one thread; and one comprehensive instructional manual covering assembly, experimental procedures, example results, and graphical verification methods. A1 paper for the force board is not supplied.