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Impulse and Load Test Rig

About

Dynamic Shear and Pressure Impulse Test Equipment (DSPITE) is rig developed by Neometrix to test units with special modular joints made by Eaton. These units are hand-assembled and have multiple joints in each unit. DSPITE is a Hydraulic System based Servo controlled Actuator system to build required Pressure Impulse (Pressure) and Dynamic Shear (Pressure and Load) test profiles. Test Units are filled with Water-Glycol solution and are connected to Servo-actuators. These actuators take controlled precise strokes to create required Pressure Impulse graphs. The rig is capable to generate continuous Pressure and load graphs for upto 300,000 cycles. It is an Endurance Testing Machine.
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Technical Details

  • Overall Dimensions : 2200x1500x1530mm
  • Unit Weight : 1500 Kg (Dry Weight) , 1700 Kg (With Oil and Water-Glycol filled)
  • Max Power Consumption : 5 kW
  • Main Power Supply : 3 Phase, 440 VAC
  • DAQ Power Supply : Single Phase, 220 VAC
  • Operating Fluid : Hydraulic Mineral Oil VG-32
  • Operating Temperature : 20 C to 50 C
  • Reservoir Capacity : 100 Liters
  • Operating Fluid : Water-Glycol (Propylene Glycol 65% and Deionized Water 35%)
  • Operating Temperature : 20 C to 30 C

Neometrix is very much focused on Aviation, Research Labs, Defense and Railway industries and offers complete range of systems & services which can be of immense use to you. We specialize in Hydraulic/ Servo Hydraulic Test Rigs, Fuel System Test Rigs, Pneumatic System Test Rigs, Oxygen/ Special Gases system Test Rigs, Very High Pressure Systems, Electronic & Electrical Test Rigs.

  • Q. What is an impulse testing machine used for?
  • Ans- It is used to evaluate the durability and performance of components like hydraulic hoses, pipes, and fittings under pulsating pressure conditions, simulating real-world operating environments.
  • Q. Which industries use impulse testing machines?
  • Ans- Automotive, aerospace, hydraulic system manufacturing, construction, and oil & gas industries
  • Q. What is the typical pressure range?
  • Ans- Most machines support pressures from 0 to 50 MPa (500 bar), with some models going higher depending on application needs.
  • Q. What fluid types can the machine handle?
  • Ans- ypically compatible with hydraulic oils, water-glycol mixtures, or other specified test fluids.
  • Q. What is the impulse frequency range?
  • Ans- Adjustable from 0.2 Hz to 3 Hz or higher, depending on the test requirements.
  • Q. What temperature range can it simulate?
  • Ans- Fluid temperature control systems typically range from -40°C to +150°C.
  • Q. What cycle capacity is standard?
  • Ans- Machines are designed to perform millions of cycles to test fatigue and durability.
  • Q. How many components can be tested simultaneously?
  • o Single and multi-station configurations are available, with machines capable of testing multiple hoses or components in parallel.
  • Q. What type of control system is used?
  • o Most machines utilize a PLC-based control system with a user-friendly touchscreen interface for programming test parameters.
  • Q. Does the machine support automated testing?
  • o Yes, it typically offers fully automated operation for efficiency and accuracy.
  • Q. Can test results be logged?
  • o Machines usually include data acquisition systems to log real-time data like pressure, temperature, and cycle counts for reporting.
  • Q. What safety features are included?
  • Ans- Features often include:  Emergency stop buttons  Pressure relief valves  Safety shields or protective barriers
  • Q. How often should the machine be calibrated?
  • Ans- Calibration is recommended every 6-12 months, or as specified by the manufacturer.
  • Q. What is the expected lifespan of the machine?
  • Ans- With proper maintenance, impulse testing machines can last 10-15 years or longer.
  • Q. Can the machine be customized for specific components?
  • Ans- Yes, most manufacturers offer options for modular designs or bespoke configurations tailored to unique testing needs.
  • Q. Does it support remote monitoring?
  • Ans- Some advanced machines are IoT-enabled, allowing for remote diagnostics and monitoring.
  • Q. What testing standards does the machine adhere to?
  • Ans- Common standards include ISO 6803, SAE J343, and DIN EN 857 for hose impulse testing.
  • Q. Are test protocols pre-configured?
  • Ans- Many machines come with pre-configured protocols compliant with industry standards but allow user customization.

Key Features

  • Continuous Pressure and Load graphs generation for Lakhs of cycles.
  • Pressure Rise rate upto 100 bar/sec.
  • Load Rise rate upto 2300 lb/sec.
  • Automatic Control to correct generated graphs.
  • Peak Pressure control under 8 psi band for continuous cycles.
  • Peak Load Control under 5 lbs. band for continuous cycles.
  • Multiple Unit Testing at same time.
  • Simultaneous Pressure Impulse and Dynamic Shear Testing.
  • Hydraulic Oil temperature control with minimum water consumption.

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Dynamic Snubber and Shock Arrestor Test Facilities for Industrial and Seismic Applications High-performance snubbers and shock arrestors are critical for protecting structures and equipment from dynamic and seismic forces. Dynamic Snubber Shock Arrestor Test Facilities and snubber testing systems provide controlled environments for shock arrestor test benches and dynamic load testing of snubbers, ensuring accurate evaluation of energy absorption and performance under operational conditions. Advanced solutions include hydraulic snubber test machines, vibration shock absorber test facilities, and high-force dynamic test stands for precise simulation of load and vibration scenarios. Seismic snubber qualification test rigs and snubber performance evaluation systems allow for rigorous assessment, while dynamic arrestor validation equipment supports certification, quality assurance, and design optimization. These specialized test facilities are essential for industrial, aerospace, and seismic engineering applications, providing reliable, repeatable, and high-precision testing to validate snubber and shock arrestor performance under real-world dynamic conditions.

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