Tie Rod End Bearing

Loading and unloading: The forces applied by assembly and disassembly cannot be transmitted directly through the spherical sliding surface. In addition, auxiliary loading and unloading tools, such as sleeves, detachers, etc., should be used to directly and uniformly apply the loading and unloading force applied by the outside to the ferrule to be fitted, or to perform load-free loading and unloading by an auxiliary method such as heating.
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Product Details

The tie rod end bearings are an important part of contemporary machinery. Its main function is to support the mechanical rotating body, reduce the friction coefficient during its movement, and ensure its rotation accuracy.

The outer ring of the bearing is hardened bearing steel, the inner ring is medium carbon steel, and the sliding surface is composed of a glass fiber reinforced plastic disc with PTFE as an additive, and is fixed on the inner ring by a fixing device. It can withstand large radial loads.

We use materials science, heat treatment technology, precision machining and measurement technology, numerical control technology and effective numerical methods and powerful computer technology to design the accuracy, performance, life and reliability of the product to achieve the desired state. 

The tie rod end bearings is made by various special processing methods such as surface phosphating, blasting, inserting and spraying.


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AF:(race:Nylon)  (E.g:AF3,AFL3)

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-*Radius R3=Same as 'J' dim &tolerance is ±.010

-R1.R2 &R3 are spherical Radius
-D=Slot Height
-F=Slot's Diameter

-L=SphericalФ @ center of inside housing
E =Ball O.D .;

ă=Ball Min Cone Angle.
Note:
1). Material:
  Housing- 7075-T651 Aluminum.Anodized Red.
  Race-Nylon
  Ball- 52100 Bearing Steel.Heat Treated.
  Hard Chrome Plated. Precision Ground.
2). Breakaway torque for ball must be≤25 oz-in.
3). Unspecified radius for rounded corners= .045±.015

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Loading and unloading:

The forces applied by assembly and disassembly cannot be transmitted directly through the spherical sliding surface. In addition, auxiliary loading and unloading tools, such as sleeves, detachers, etc., should be used to directly and uniformly apply the loading and unloading force applied by the outside to the ferrule to be fitted, or to perform load-free loading and unloading by an auxiliary method such as heating.

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