This machine adopts an electric lifting and pneumatic drop structure. The lifting is accurate and fast, and the drop is realistic and effective. It is equipped with a dedicated pneumatic fixture (adju ...
This machine adopts an electric lifting and pneumatic drop structure. The lifting is accurate and fast, and the drop is realistic and effective. It is equipped with a dedicated pneumatic fixture (adjustable stroke), and the front end of the fixture is fitted with silicone rubber (to avoid damaging the product or the operator). It can be used for electronic cigarette drop tests. The drop height is adjusted up and down by a motor-driven precision screw, which operates smoothly and quietly. There is no need to manually move it up and down, and it is equipped with a scale ruler to accurately determine the drop height of the component. The product can be dropped from different angles.
Core Technologies and Functions Core functions
Precise Drop Control
Adjustable Height: The drop height range is typically 300-2000mm (some models can be customized to higher heights), tracked by a digital height display and encoder, with an error not exceeding ±10mm or 2% of the preset height.
Release Method: Utilizes electromagnetic control or pneumatic drive to achieve instant free fall, ensuring no external force interferes with the test process.
Test Modes: Supports three drop methods: face, edge, and corner. Some models can be customized for rotational drop or combined tests under high and low temperature environments.
Structural Stability
Double Column Guidance and Hydraulic Buffering: Single or double arm structure combined with a high-strength steel frame enhances equipment stability and impact resistance, extending service life.
Intelligent Protection System: Equipped with upper and lower limit displacement protection, overload shutdown, and leakage protection functions to ensure operational safety.
Data Recording and Analysis
Impact Force Monitoring: Records the maximum impact force, waveform characteristics, and duration during the drop using an acceleration sensor, and generates a test report through software.
Typical application scenarios
Application scenarios
Classification by structure
Single-arm drop testing machine: Suitable for small packages (≤65kg), easy to operate, commonly used in quality inspection departments.
Double-arm drop testing machine: With double-column guidance design, it supports larger-sized packages (such as 800×800×800mm), suitable for industrial-level testing.
Zero-drop testing machine: Simulates zero-height drop through a hydraulically-driven "E"-shaped fork, specifically for large packages (such as 227kg) and precision instrument evaluation.
Classification by application scenarios
Package drop testing: Evaluates the cushioning performance of packaging materials such as cartons and foam, in compliance with standards like GB/T4857.5 and ISO2248.
Electronic product testing: Verifies the shock resistance of finished products such as mobile phones, batteries, and household appliances during transportation.
Industrial equipment testing: High-intensity impact tests for automotive parts, aerospace components, etc.
Technical parameters
| Item | Specifications |
|---|---|
| Max Allowable Specimen Weight | 5 kg |
| Drop Height | 40–150 cm |
| Product Diameter Range | 10 mm–120 mm |
| Product Height Range | 5 mm–25 mm |
| Drop Height Scale | Steel, minimum graduation 1 mm |
| Operating Air Supply | ≥ 0.5 MPa |
| Machine Power | AC 220 V, 50 Hz, approx. 200 W |
| Machine Dimensions (LWH) | 900 × 600 × 1820 mm |
| Machine Weight | ≈ 75 kg |
After-sales Service
Turnkey Project: Free customization of track lock fixtures (samples required). Data Service: Optional cloud data platform for remote generation of CNAS-compliant test reports. Training System: Specialized courses on lock mechanics analysis (including FEA simulation basics) provided. Technical Support: Free remote debugging, operation training, and annual equipment calibration services. Spare Parts Supply: Quick replacement service for consumable parts (fixtures, hydraulic seals) provided.
Ordering Process
Requirement Communication: Provide test standards and relevant parameters.
Plan Confirmation: The supplier provides 3D drawings and parameter lists.
Production and Delivery: 15-20 days for standard models, 30-45 days for non-standard custom models.
Acceptance and Training: Engineers will install and debug on-site and provide training.
