MST19-Experimental device for cable force testing of suspension structures
MST19-Experimental device for cable force testing of suspension structures
MST19-Experimental device for cable force testing of suspension structures
MST19-Experimental device for cable force testing of suspension structures
MST19-Experimental device for cable force testing of suspension structures
MST19-Experimental device for cable force testing of suspension structures

MST19-Experimental device for cable force testing of suspension structures

The MST19 suspension structure cable force testing experimental device is a specialized experimental platform in the teaching and research of structural mechanics and bridge engineering, designed specifically for teaching the force mechanism and cable force measurement technology of flexible cable structures.

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Product Introduction

The MST19 suspension structure cable force testing experimental device is a specialized experimental platform in the teaching and research of structural mechanics and bridge engineering, designed specifically for teaching the force mechanism and cable force measurement technology of flexible cable structures. This device can accurately measure the changes in cable force of suspension structures under vertical loads by simulating real suspension structure systems, and visually display the deformation coordination process of flexible structures. The focus of the experiment is to explore the influence of different load sizes, application positions, and load types on cable forces, verify the complex nonlinear functional relationship between cable forces and load application points, help students and researchers deeply understand the stress characteristics and deformation mechanisms of suspension structures, and provide theoretical basis and practical support for cable force monitoring and control of bridges and large-span spatialstructures.

Experimental feature

1

Apply concentrated loads of different sizes or locations to suspension structures with the same geometric parameters, and record the variation curve of cable force with load size and location. Through comparative analysis, verify the nonlinear relationship between load and cable force of suspension structures under concentrated loads

2

Apply uniformly distributed loads of different sizes and positions to suspension structures with the same geometric parameters, and record the variation curve of cable force with load size and application position

3

Comparative analysis of concentrated load cable force and uniformly distributed load cable force

4

4.Systematically study the influence of geometric parameters on cable force measurement by adjusting the spacing between supports, changing the initial sag, or replacing cables with different cross-sectional characteristics. A quantitative relationship model between geometric parameters and cable force response can be established, while verifying the correction factors of geometric parameters in theoretical formulas for cable force calculation

Product Attributes

Product Model

MST19

Product Name

Experimental device for cable force testing of

suspension structures

Main Materials

Aluminum alloy,

stainless steel

Specifications

≤1000×400×1000mm

Product Weight

≤30kg

Operating Environment

Room temperature, relative

humidity  85%

Input Power Supply

Single phase three wire, 220V ± 5%, 50Hz/60Hz

Required Modules

None

Optional Modules

None

FAQ

Is your company a manufacturer or a trading company?

We are a direct source manufacturer with independent R&D, production and quality inspection workshops, and have years of expertise in the university laboratory equipment sector.

What payment methods are supported for overseas orders?

We accept T/T (Telegraphic Transfer) and irrevocable sight L/C (Letter of Credit). Formal commercial or proforma invoices are issued for all orders, with a transparent and traceable process.

What is the production and delivery cycle for the equipment?

Standard models: 45-60 days. Expedited production is available for urgent orders with priority scheduling, and the exact lead time is negotiable.

Do you support product customization?

Customization, OEM and ODM services are available. We can adjust parameters, structure, size and functions as required, and accept private labeling production.

How do you ensure the safe transport of the equipment?

Export-grade triple shockproof and moisture-proof packaging (shockproof foam + thickened carton + plywood wooden case) with warning labels attached. 

Does the product come with a warranty? Are spare parts included?

All products come with a 2-year free original factory warranty, and common wearing parts are provided free of charge during the warranty period.
Overseas After-Sales Support:
• 7×24h remote technical support and free operation training with one-on-one engineer guidance;
• Free urgent air shipment of replacement parts for non-human-induced quality defects within the warranty period;
• Lifetime technical consultation and cost-price spare parts supply after warranty;
• Bilingual manuals, operation videos and experiment guides are included for easy use by beginners.

How do you control product quality before shipment?

Strict three-level quality inspection is carried out before delivery:
1. Raw Material Inspection: Full inspection of core components to control precision;
2. In-Process Inspection: Special personnel monitor each process to avoid defects;
3. Final Shipment Inspection: Power-on testing and precision calibration, with official inspection reports issued; factory inspection and remote inspection are both supported.

Case Studies

In 2026, a new batch of compressed air energy storage teaching experimental equipment was successfully delivered, empowering universities with micro-newton technology for new energy teaching

In 2026, a new batch of compressed air energy storage teaching experimental equipment was successfully delivered, empowering universities with micro-newton technology for new energy teaching

01

In 2026, a new batch of compressed air energy storage teaching experimental equipment was successfully delivered, empowering universities with micro-newton technology for new energy teaching

Micro Newton (Shandong) Technology Development Co., Ltd. successfully completed the delivery of the first batch of new energy teaching experimental equipment in 2026.

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