Figure 1 shows the suspension system of a freight truck with a parallel-spring arrangement. Find the equivalent spring constant (one side only. i.e., three springs) of the suspension if each of the three helical springs is made of steel with a shear modulus G = 80×10° N/m² and has five effective turns, mean coil diameter D = 20 cm, and wire diameter d = 2 cm. BUCKEYE XCR T

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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**Figure 1** illustrates the suspension system of a freight truck utilizing a parallel-spring configuration. The task is to determine the equivalent spring constant for one side of the suspension system, which involves three helical springs.

Each helical spring is composed of steel characterized by a shear modulus \( G = 80 \times 10^9 \, \text{N/m}^2 \). The springs feature five effective turns, with a mean coil diameter \( D = 20 \, \text{cm} \) and a wire diameter \( d = 2 \, \text{cm} \).

The image depicts the parallel alignment of springs in the freight truck's assembly, demonstrating how these elements work together to support and stabilize the vehicle.

**Figure 1.** Parallel arrangement of spring in a freight truck.
Transcribed Image Text:**Figure 1** illustrates the suspension system of a freight truck utilizing a parallel-spring configuration. The task is to determine the equivalent spring constant for one side of the suspension system, which involves three helical springs. Each helical spring is composed of steel characterized by a shear modulus \( G = 80 \times 10^9 \, \text{N/m}^2 \). The springs feature five effective turns, with a mean coil diameter \( D = 20 \, \text{cm} \) and a wire diameter \( d = 2 \, \text{cm} \). The image depicts the parallel alignment of springs in the freight truck's assembly, demonstrating how these elements work together to support and stabilize the vehicle. **Figure 1.** Parallel arrangement of spring in a freight truck.
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