| Year | Make | Model |
|---|---|---|
| 1995 - 2004 | Toyota | Tacoma |
Skyjacker Leaf Spring 1998-2004 Toyota Tacoma
Skyjacker Leaf Spring 1998-2004 Toyota Tacoma
SKU:TCR25S
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The Skyjacker Leaf Spring for 1998-2004 Toyota Tacoma is a high-performance suspension component designed to enhance ride quality and durability. Constructed with American steel, these Softride springs feature individual leafs that are shot-peened with hard steel pellets at high velocities, increasing tensile strength and load capacity. The tapering over the entire length of the leaf creates more flex at the ends, promoting even load distribution and reducing the risk of leaf binding. The bolt-style spring clips eliminate friction, ensuring smoother operation and longer spring life, making these springs ideal for off-road and heavy-duty applications.
Designed specifically for 1998-2004 Toyota Tacoma models, these springs serve as a direct replacement for stock leaf springs. They are suitable for vehicles used in off-road, towing, or heavy load conditions, providing improved wheel travel and ride comfort. Installation is straightforward as they are bolt-on components, fitting the chassis of Tacoma trucks within this year range. The kit includes the necessary leaf springs and hardware, ensuring a reliable upgrade for enhanced suspension performance and longevity.
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Overview
Overview
Softride(R) springs use only American steel and the individual leafs of each spring are shot-peened with hard steel pellets at very high velocities. This shot-peening compresses the surface of the steel thereby increasing the tensile strength of the spring. Without this shot-peening procedure, the maximum wheel travel and ride quality could not be achieved without sacrificing the life of the spring. Softride(R) springs use bolt style spring clips, eliminating friction. Other spring designs use the c in. style bend clips which bend tightly over the spring leafs causing binding and friction. Skyjacker(R) Softride(R) springs taper over the entire length of the leaf creating more flex at the leaf ends. This tapering distributes loads more evenly over a greater area and reduces the tendency for one leaf to dig into the leaf above it.