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(Outer Ring) GROOVE Step Gauge -TJ — TJTENG precision measuring instrument product photo
  • 자동차 조향장치
  • 외륜

(Outer Ring) GROOVE Step Gauge -TJ

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Detailed Description

The TJ Outer Ring Groove Step Difference Measuring Instrument is a dedicated inspection device designed to precisely measure the step difference between the groove section inside the outer ring of a Tripod Joint (TJ) used in Constant Velocity (CV) Joints and a reference surface.

The groove section inside the TJ outer ring is the primary functional part where the tripod rollers operate; the relative height and step difference of each machined surface can affect the product's assembly and operational stability.

This measuring instrument is designed to utilize a dedicated positioning and measurement structure tailored to the internal shape of the TJ outer ring. Once the product is seated in a specific position, the height difference between the groove section and a designated reference surface can be measured via a dial gauge or digital indicator.

By setting reference values using a dedicated master or reference product and comparing them with the measurements of mass-produced items, the machining depth, height, and step difference deviation of the groove section can be quickly verified.

By employing a dedicated structure that maintains a consistent measurement position, measurement deviations caused by the operator are reduced, and the stability of repetitive measurements is enhanced. This allows for effective utilization in machining process inspection and quality control on the production floor. It can be designed and manufactured to custom specifications tailored to customer requirements, depending on the outer ring size, groove shape, measurement position, reference plane, measurement range, and tolerance conditions.

This product applies the latest technology to provide high precision and reliability. It delivers stable performance even under demanding measurement conditions required in industrial environments, and features a user-friendly interface that anyone can easily use.

Key Features

  • 1. Dedicated Measurement of TJ Outer Ring Groove Section
  • Designed with a dedicated structure tailored to the product shape to precisely inspect the step difference within the groove section inside the TJ (Tripod Joint) outer ring.
  • 2. Precise Measurement of Groove Step Difference
  • By measuring the height difference between a designated reference plane and the groove section, the deviation from the design standard can be accurately verified.
  • 3. Verification of Groove Machining Status
  • The machining status can be effectively managed by measuring the relative step difference based on the machining depth and position of the groove section.
  • 4. Application of Comparative Measurement Method
  • Dimensional deviations can be verified by setting reference values using a dedicated master or reference product and comparing them with actual measurements of mass-produced products.
  • 5. Dedicated Positioning Structure
  • A dedicated structure is applied to ensure the TJ outer ring is seated at a consistent reference position, minimizing variations in the measurement location.
  • 6. High Repeatability
  • Stable measurement results can be secured during repeated inspections by maintaining the product's seating position and measurement points consistently. 7. Minimizing Operator Measurement Deviation
  • By establishing measurement standards and locations using a dedicated structure, measurement deviations resulting from operator skill levels can be reduced.
  • 8. Rapid Production Process Inspection
  • Measurement values can be checked immediately via a dial gauge or digital indicator after product mounting, enabling rapid inspection on the production line.
  • 9. TJ Outer Ring Machining Quality Management
  • By managing step differences and machining deviations in the groove section, machining processes and quality control for the outer ring's key functional parts are possible.
  • 10. Custom Design Possible for Specific Products
  • Dedicated measuring instruments can be designed and manufactured according to outer ring size, groove shape, measurement location, reference plane, measurement range, and tolerance conditions.

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