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Incline Impact Tester LIIT-A10

Incline Impact Tester LIIT-A10

Incline Impact Tester LIIT-A10 features an impact speed range of 1.0 to 2.5 m/s, delivering accurate and consistent results. It ensures quick alignment of components for efficient testing. Its design simplifies test preparation and minimizes setup time. The control interface provides real-time operation feedback and adjustments. Our tester simulates packaging impact resistance under real-world conditions like handling, stacking, motor sliding, and transportation.

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Impact Speed Range 1.0 to 2.5 m/s
Speed Error Less than or equal to ±5%
Angle Adjustment Range 0° to 10° (±1°)
Air compressor 6kgf/cm² , more than 60L
Control System LCD Touch Screen
Maximum effective slide length 2000 to 4500 or specify
Power consumption 3KW
Power Supply Three-phase 380V, 50/60Hz
Trolley Table Dimensions 2000 x 2000 mm
Impact plate Dimensions (W x H) 2500 x 2500mm
Allow max sample Dimensions 1400 x 1400 x 1400 mm
Test Sample Dimensions (Max) 2000 × 2000 × 2000 mm
Dimensions (L×W×H) 4500 × 1500 × 2000 mm
Maximum Test Load 200 Kg
  • Adjustable Electric Pulley
  • Low Pulley Height
  • Level-adjustable trolley Table
  • Remote Control Operation
  • Easy Ground Installation

Our Incline Impact Tester is ideal for simulating packaging impact resistance during real-world conditions such as handling, shelf stacking, motor sliding, locomotive loading and unloading, and product transportation.

Incline Impact Tester LIIT-A10 |  Impact Speed Range : 1.0 to 2.5 m/s | Speed Error : Less than or equal to ±5%
Incline Impact Tester LIIT-A10 | Adjustable Electric Pulley | Low Pulley Height

Models of Incline Impact Tester

Labtron Incline Impact Tester is a high-quality machine that assesses packaging resistance during transport, handling, and storage. They feature adjustable angles to simulate real-world inclined collisions. Their touch-screen controls, flexible operation modes, and compliance with international standards ensure reliable performance. These systems improve packaging durability by recreating critical impact conditions. Our testers are ideal for quality control, research labs, and packaging development.

Incline Impact Tester LIIT-A11

Incline Impact Tester LIIT-A11

  • Impact Speed Range : 1.0 to 2.5m/s
  • Speed Error : Less than or equal to ±5%
  • Angle Adjustment Range : 0° to 10° (±1°)
  • Air compressor : 6kgf/cm² , more than 60L
Incline Impact Tester LIIT-A12

Incline Impact Tester LIIT-A12

  • Impact Speed Range : 1.0 to 3.5 m/s
  • Speed Error : Less than or equal to ±5%
  • Angle Adjustment Range : 0° to 20° (±1°)
  • Control System : LCD Touch Screen

Incline Impact Tester LIIT-A10 FAQ's
  • The Incline Impact Tester LIIT-A10 is designed to evaluate the impact resistance of packaging materials and finished goods by simulating real-world conditions such as handling, stacking, motor sliding, and transportation. By recreating these scenarios, the tester helps manufacturers assess the durability and protective performance of their packaging solutions. This is especially important for industries involved in logistics, warehousing, or shipping where products are frequently subjected to mechanical shocks. The device provides consistent and accurate test results, thanks to its speed error margin of less than or equal to ±5%, making it a reliable tool for quality control and packaging design validation.

  • The Incline Impact Tester LIIT-A10 is suitable for testing a wide range of packaged goods, including boxes, cartons, crates, and other containers used in consumer goods, electronics, medical supplies, and industrial equipment. This tester is particularly beneficial for fragile items or those with sensitive components that must remain intact during handling and transportation. By simulating incline impact scenarios such as sliding or sudden stops, the device allows users to observe how packaging holds up under stress, helping to prevent product damage during real-world transit and storage.

  • The Incline Impact Tester LIIT-A10 ensures high testing accuracy through its precise control system and minimal speed error of less than or equal to ±5%. This level of precision enables consistent replication of impact conditions, which is critical for comparing the performance of different packaging materials or designs. The system also features a user-friendly control interface with real-time feedback, allowing operators to monitor and adjust test parameters as needed. Additionally, the tester's structural stability, adjustable components, and efficient alignment features contribute to reliable and repeatable testing outcomes.

  • The Incline Impact Tester LIIT-A10 is engineered for user convenience and operational efficiency, making it highly suitable for industrial environments. It includes a level-adjustable trolley table and flexible component positioning for quick setup, allowing users to align test samples easily. The system is operated via a touchscreen control interface, streamlining the test process and reducing manual errors. Moreover, installation is simple—users only need to fix the machine to the ground without requiring complex assembly or calibration. These user-friendly features minimize downtime and enhance productivity in quality control labs and packaging departments.

  • The Incline Impact Tester LIIT-A10 is widely used across industries where product packaging integrity is critical, including logistics, e-commerce, consumer electronics, pharmaceuticals, food and beverage, and manufacturing. These sectors rely on robust packaging to protect goods from damage during transit and storage. By simulating realistic impact conditions, this tester helps businesses meet regulatory standards, reduce returns due to damaged products, and maintain brand reputation. Its versatility and precision make it a valuable asset for packaging engineers, quality assurance professionals, and R&D teams working to optimize packaging performance.

  • Incline Impact Testers are designed to simulate the mechanical shocks and collisions that packaged products may experience during real-world transport, handling, and storage. By recreating scenarios such as sliding, tilting, or sudden stops on an inclined plane, these testers help evaluate how well packaging protects the contents. This type of testing is essential for identifying weaknesses in packaging design, ensuring compliance with safety standards, and preventing product damage during logistics operations.

  • While both testers assess packaging durability, Incline Impact Testers simulate horizontal impacts caused by sliding or collisions on an incline, which are more representative of damage during transport. In contrast, vertical drop testers simulate free-fall drops from various heights. Incline testing is better suited for evaluating how products behave during truck loading, warehouse handling, or sudden braking events. This distinction makes incline testers a crucial tool for more comprehensive packaging evaluation.

  • Incline Impact Testers are widely used across logistics, packaging manufacturing, consumer electronics, food and beverage, pharmaceuticals, and research institutions. Any industry that ships products in boxes, crates, or containers benefits from understanding how their packaging performs under impact stress. These testers help reduce damage-related costs, improve packaging designs, and ensure compliance with standards such as ASTM, ISTA, and GB/T. They are especially valuable for export-focused industries where transit conditions can vary significantly.

  • Most high-quality Incline Impact Testers comply with international testing standards such as ASTM D880, ISTA 3A, and GB/T 4857. These standards outline procedures for simulating impact during handling and transportation. Compliance ensures that test results are accurate, repeatable, and globally accepted. Manufacturers use these tests to verify packaging performance, meet client specifications, and support regulatory documentation for product safety and shipping reliability.

  • When selecting an Incline Impact Tester, important features to consider include the impact speed range, angle adjustment capability, maximum load capacity, and control system type. A wide speed range allows for versatile testing, while adjustable angles ensure accurate simulation of various transport scenarios. Touch-screen controls offer ease of use and precise parameter setting. Durable construction and remote operation features also enhance safety and reliability during testing, especially in high-volume industrial environments.

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Labtron Equipment Ltd., Quatro House, Lyon Way, Camberley, Surrey GU16 7ER United Kingdom

Email: info@labtron.com Whatsapp: +44 73 4441 2688 Phone: +44 2080 043608

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