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Kern TVM 5000N230NL-LB Practical Set For Force-Displacement-Measurements in Laboratory and Industry

Original price was: $6,107.00.Current price is: $5,907.00.

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The Kern TVM 5000N230NL-LB Force Test Stand is a robust and versatile testing device designed for high-capacity applications, supporting loads up to 5000 N. Ideal for tensile, compression, shear, and peel testing, it accommodates a variety of materials including plastics, metals, and textiles. This stand features a linear guide for smooth and consistent operation, ensuring accurate and repeatable results. Its adjustable height and sturdy construction provide flexibility and stability during testing processes. Suited for quality control, research and development, and educational purposes, the TVM 5000N230NL-LB is an essential tool for professionals requiring precise evaluation of material properties and performance. LEAD TIME 1 to 2 WEEKS TO SHIP.

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Specifications:

  • Generated force [Max]: 5 kN
  • Traverse distance [Max]: 210 mm
  • Type of drive: Electric motor
  • Length measuring device: Length measuring device with display and data interface
  • Input voltage power supply / power [Max]: 220 V AC, 50 Hz
  • Limit switch: Yes
  • Repeat function: Yes
  • Speed display: Yes
  • Material housing: metal, lacquered
  • Dimensions completely mounted (W×D×H): 400×256×1535 mm
  • Transversal movement speed [Min]: 10 mm/min
  • Transversal movement speed [Max]: 230 mm/min
  • Measurement alignment: vertical

Applications:

  • Tensile Testing: Measuring the tensile strength and elongation of materials such as metals, plastics, and textiles to evaluate their performance under tension.
  • Compression Testing: Assessing the compressive strength of materials, particularly useful in construction and manufacturing industries.
  • Peel Testing: Evaluating the adhesion properties of adhesives and coatings by measuring the force required to peel them from substrates.
  • Shear Testing: Determining the shear strength of materials, crucial for applications involving bonding and joint integrity.
  • Quality Control: Implementing testing procedures to ensure that materials meet industry standards and specifications during manufacturing.
  • Research and Development: Supporting R&D efforts by providing precise data on material characteristics for product development and improvement.
  • Material Evaluation: Conducting assessments to compare the mechanical properties of different materials for suitability in specific applications.
  • Educational Use: Serving as a practical tool for educational institutions to demonstrate principles of material science and engineering.

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