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Static HSU N2 Gas Chamber & Nitrogen Bottle Proof Testing / Up to 1000 Bar · LabVIEW DAQ / MIL‑STD · ISO · IS / Noida · India
HPPTB · STATIC PROOF PRESSURE · UP TO 1000 BAR

1000 Bar Hydraulic Proof Pressure Test Bench, proven to 1000 bar.

The 1000 Bar Hydraulic Proof Pressure Test Bench is a static condition testing machine that fills HSU N2 gas chambers and nitrogen bottles with hydraulic oil and subjects them to 1000 bar static pressure. Driven by a Rexroth high-pressure pump and Haskel air booster, with dual automatic and manual test modes and a LabVIEW-based DAQ system, it validates the structural integrity of damper assemblies such as the K9 Vajra HSU unit for defence, aerospace, and industrial gas storage applications.

Neometrix 1000 Bar Hydraulic Proof Pressure Test Bench — industrial hydraulic hose and HSU N2 gas chamber burst pressure validation system
Fig · 01 1000 Bar Hydraulic Proof Pressure Test Bench · as manufactured
Qualification testing supported to:
DEF STAN STANAG MIL-SPEC
Test Pressure
1000BAR
Tank Capacity
100LITRE SS304
Pump Pressure
1034BAR MAX
Drive Motor
1.5KW, 3‑PH
Pressure Acc.
±0.5% FS
01
Overview

Static pressure, proven at 1000 bar.

The proof pressure test bench is a static condition testing machine. The upper part of the HSU assembly — its N2 gas chamber — is partially filled with oil and partially with N2 gas, and must withstand pressure of up to 1000 bar in extreme conditions. This bench delivers that 1000 bar pressure in a static condition and checks for any structural problem before the assembly is released.

1000 Bar Hydraulic Proof Pressure Test Bench product view — high-pressure pump unit, safety chamber and control panel for HSU N2 gas chamber testing by Neometrix
Fig · 02 Pump skid, safety chamber and control panel · Testing & DAQ Lab

The 1000 Bar Hydraulic Proof Pressure Test Bench is a high-precision testing machine designed to assess the structural integrity of nitrogen (N₂) bottles and HSU N2 gas chambers under extreme static pressure conditions. It operates by filling the test bottle with Servo 636 hydraulic oil and pressurizing it up to 1000 bar using a Rexroth high-pressure pump and Haskel air booster, ensuring reliability in high-pressure applications such as aerospace, defence, and industrial gas storage.

The system features automatic and manual testing modes, a Data Acquisition (DAQ) system for real-time pressure monitoring, and LabVIEW interface integration for automated report generation.

The damper assembly's main purpose is creating differential pressure within the HSU unit — absorbing the shock and jerks of the K9 Vajra tank.

With built-in safety mechanisms including secure chamber locking, pressure venting, and emergency shutdown features, this test bench guarantees accurate, safe, and efficient pressure testing for critical industrial applications.

02
Architecture

Six subsystems, one test bench.

From the SS304 oil reservoir to the LabVIEW DAQ layer, every subsystem is engineered, integrated, and operated from a single console around the bench's static 1000 bar proof pressure cycle.

Sub · 01

Tank & Hydraulic Reservoir

100 litre SS304 stainless steel tank holding Servo 636 hydraulic oil, with a 0–90°C temperature gauge, filler breather and level monitoring.

Sub · 02

Pressure Generation

ABB motor coupled with a Rexroth high-pressure pump delivering 6 LPM, a Haskel air booster, and a 4 cc gear pump handle bulk fill and final pressurization.

Sub · 03

Valve & Flow Control

BUTECH needle valves isolate and vent pressure, a 1000 Bar high-pressure ball valve and check valve (1.5 Bar set) manage flow, and FESTO regulators control airflow.

Sub · 04

Instrumentation

0–1000 Bar pressure transmitter (±0.5% accuracy, 4–20mA), digital indicator, and a 0–1400 kg/cm² panel-mounted gauge with 20-micron clogging-indicator filters.

Sub · 05

Automation & DAQ

LabVIEW interface on an industrial computer drives automatic and manual test modes, real-time pressure graphing, and automated test report generation and storage.

Sub · 06

Safety & Chamber

Bulletproof glass safety chamber with secure locking, pressure venting and emergency shutdown, solenoid-automated air booster control, and a VFD panel for smooth motor operation.

03
Pressure Generation

Three pumps, one pressure circuit.

A hydraulic pump handles bulk fill, an air-driven booster drives final pressurization to 1000 bar, and a gear pump supports circuit priming — the core of the bench's pressure-generation architecture.

PUMP · 01

Rexroth High-Pressure Pump

ABB motor coupled with a Rexroth high-pressure pump delivering 6 LPM flow to fill the test bottle efficiently ahead of final pressurization.

Bulk Fill · 6 LPM
PUMP · 02

Haskel Air Booster

Air-driven booster increases pressure inside the test chamber up to 1000 bar, regulated via FESTO drive valves and solenoid ON/OFF automation.

Final Pressurization · 1000 Bar
PUMP · 03

Gear Pump (4cc)

4 cc gear pump rated to 2 Bar supports circuit priming and low-pressure fluid transfer within the hydraulic supply line.

Circuit Priming

Air-driven pressurization circuit

The air-driven Haskel booster is fed through an air supply line with FESTO pressure regulators and drive valves, allowing precise control over airflow during manual operation. In automatic mode, a solenoid valve regulates the ON/OFF condition of the booster for seamless, repeatable pressurization.

Isolation, venting and safety relief

BUTECH needle valves isolate and vent system pressure on demand, a check valve (set to 1.5 Bar) protects against reverse flow, and a 1000 Bar high-pressure ball valve together with a ¼″ BSPF vent valve (1000 Bar rated) provide controlled, safe pressure release at the end of every cycle.

04
Test Capabilities

Two modes. One static test.

From fully automated LabVIEW-guided sequences to direct manual control — the bench runs structured static proof pressure cycles with data logging on every channel.

T · 01

Static Proof Pressure Testing

Controlled static pressurization up to 1000 bar using Servo 636 hydraulic oil, checking the HSU N2 chamber or nitrogen bottle for structural problems.

Up to 1000 Bar · Static
T · 02

Automatic Testing Mode

Operator enters part number, model and test pressure into the LabVIEW interface; the system verifies valve states, fills, pressurizes, and vents automatically.

LabVIEW-Guided Sequence
T · 03

Manual Testing Mode

Direct operator control of the ABB motor fill cycle, drive valve activation, and pressure monitoring up to 1000 bar, with manual venting on completion.

Operator-Controlled
T · 04

Damper Assembly / HSU Chamber Validation

Validates the HSU N2 gas chamber damper assembly used in the K9 Vajra tank, confirming it absorbs shock and jerk loads without pressure loss.

K9 Vajra HSU Assembly
T · 05

Data Logging & Report Generation

Real-time pressure graph and test report captured by the DAQ system, stored for retrieval from the STATIC Report section on the control desktop.

LabVIEW DAQ Reporting
06
Downloads

Catalog & drawings.

General catalog and engineering design drawings for the 1000 Bar Hydraulic Proof Pressure Test Bench, available as PDF.

07
Specifications

Full technical parameters.

Key system parameters for the standard 1000 Bar Hydraulic Proof Pressure Test Bench configuration.

System Type1000 Bar Hydraulic Proof Pressure Test Bench (Static Condition Testing Machine)
Test Pressure1000 Bar
Tank100 litre, SS304 construction
Temperature Gauge0–90°C
Drive Motor1.5 kW, 3-phase, 440V AC, 1500 RPM, 50 Hz
Air-Driven Hydraulic Pump1034 Bar
Low-Pressure Filters20 Micron, 10 LPM, 10 Bar, with visual & electrical clogging indicator
Check Valve (Positive Pressure)Set pressure 1.5 Bar
High-Pressure Ball Valve1000 Bar
Gear Pump4 cc, 2 Bar
Pressure Transmitter0–1000 Bar, accuracy ±0.5%, 4–20mA output, 230V AC input
Digital Indicator4–20 mA
Vent Valve¼″ BSPF, 1000 Bar
Pressure GaugeRange 0–1400 kg/cm², dial size 4″, ½″ BSPM, panel mountable
Hoses1000 Bar rated
Test MediumServo 636 hydraulic oil
Control SystemLabVIEW interface on industrial PC, automatic & manual modes
Motor DriveVFD panel for smooth operation and energy efficiency
Key Valves & RegulatorsBUTECH needle valves, FESTO pressure regulators & drive valves
SafetyBulletproof glass safety chamber, secure locking, pressure venting, emergency shutdown
Reference StandardsMIL-STD · ISO · IS · customer-specified requirements
08
Applications

Where it runs.

A specialized static proof pressure platform for industries where nitrogen bottle and gas chamber integrity under extreme pressure is mission-critical.

A · 01HSU N2 gas chamber proof pressure validation for armoured vehicles
A · 02K9 Vajra self-propelled howitzer damper assembly testing
A · 03Nitrogen bottle structural integrity testing for defence platforms
A · 04Aerospace nitrogen and gas storage bottle proof testing
A · 05Industrial gas cylinder burst and proof pressure validation
A · 06Hydraulic hose and fitting burst pressure testing
A · 07High-pressure valve and component testing
A · 08Pump pressure testing and qualification
A · 09Custom 1000 bar test unit programmes for OEMs
A · 10Component qualification and certification testing to MIL-STD / ISO / IS
09
In Depth

The complete technical read.

Engineering narrative for test engineers, procurement teams, and QA managers evaluating a 1000 bar hydraulic proof pressure test bench manufacturer before committing to a test programme.

1. Introduction

The 1000 Bar Hydraulic Proof Pressure Test Bench is a high-precision testing machine designed to assess the structural integrity of nitrogen (N₂) bottles under extreme static pressure conditions. It operates by filling the test bottle with Servo 636 hydraulic oil and pressurizing it up to 1000 bar using a Rexroth high-pressure pump and Haskel air booster, ensuring reliability in high-pressure applications such as aerospace, defence, and industrial gas storage. The system features automatic and manual testing modes, a Data Acquisition (DAQ) system for real-time pressure monitoring, and LabVIEW interface integration for automated report generation. With built-in safety mechanisms — including secure chamber locking, pressure venting, and emergency shutdown features — this test bench guarantees accurate, safe, and efficient pressure testing for critical industrial applications.

2. Technical Specifications and Key Features

The test bench is built with high-performance hydraulic and pneumatic components to ensure accuracy, reliability, and safety during testing. The system operates with a 100-litre SS304 stainless steel tank that serves as the hydraulic oil reservoir. The test is conducted using Servo 636 oil, selected for its stability under extreme pressure conditions. The hydraulic system is powered by an ABB electric motor coupled with a Rexroth high-pressure pump, which delivers a flow rate of 6 litres per minute (LPM) to fill the test bottle efficiently.

To control and regulate the pressure, the system is equipped with BUTECH needle valves, used to isolate and vent pressure when required. The nitrogen bottle is securely mounted inside the test chamber, designed to withstand 1000 bar pressure, and connected to a manifold that ensures pressure is evenly distributed.

For pressurization, a dedicated air supply line is provided, utilizing a Haskel booster to increase air pressure as needed. The system includes FESTO pressure regulators and drive valves, which allow for precise control over airflow during manual operation. During automatic testing, a solenoid valve regulates the ON/OFF condition of the air booster, allowing for seamless operation. The test bench also incorporates a temperature gauge, filler breather, and high-efficiency filters to maintain optimal hydraulic system performance. The control system includes a Variable Frequency Drive (VFD) panel, which ensures smooth operation and allows for better energy efficiency.

3. Working Principle and Procedure

The proof pressure test bench operates by filling the nitrogen bottle with hydraulic oil and subjecting it to 1000 bar static pressure. This process ensures that the bottle is structurally sound and capable of maintaining high-pressure conditions without failure.

Automatic Testing Procedure

The automatic testing process begins with system initialization. The operator first switches on the main supply from the VFD panel, ensuring that the emergency stop is turned off. The UPS and industrial computer are then switched on, and the user logs into the LabVIEW interface, which provides a digital platform for monitoring and executing the test.

The operator navigates to the Proof Pressure Test Mode and enters the necessary details, including the unit part number, model number, and test pressure. The system verifies that all necessary valves — the vent valve, isolation valve, and drive valve — are open before proceeding.

Once the test parameters are set, the bottle filling time is determined, and the filling and venting process is initiated. The test chamber is gradually filled with hydraulic oil while maintaining strict control over the pressure buildup. After filling is completed, the operator confirms that all valves are properly closed before entering the test duration.

Pressurization begins with the click of a button, and the system automatically regulates the 1000 bar pressure using the hydraulic pump and air booster. The DAQ system continuously monitors the pressure and generates a real-time pressure graph and test report.

Once the test is completed, the system safely vents the pressure inside the bottle through the release valve. The air supply is shut off via the ball valve, and the test bottle is carefully removed from the chamber. The test report and graph are stored in the system, which can be accessed later from the STATIC Report section on the desktop.

Manual Testing Procedure

The manual testing process follows similar steps but requires direct operator intervention at key stages. After the initial installation of the test bottle in the chamber, the operator starts the ABB motor, which begins filling the bottle with hydraulic oil. The filling process takes approximately two minutes. Once the bottle is filled, the vent and isolation valves are manually closed.

Next, the drive valve is turned on to activate the air booster, increasing the pressure inside the test chamber. The operator monitors the pressure gauge until the value reaches 1000 bar, ensuring that the bottle maintains pressure without any drop.

Once the required pressure is achieved, the drive valve is closed, and the system is observed for any changes in pressure that could indicate a leakage or structural weakness. After completing the test, the pressure is released through the vent valve, and the bottle is carefully removed from the test chamber. It is essential to ensure that the bottle's threads remain undamaged during the removal process.

4. Safety Instructions

To ensure safe operation of the 1000 Bar Hydraulic Proof Pressure Test Bench, the following safety measures must be strictly followed:

  • The main ball valve at the booster inlet must always be turned ON to prevent damage to the booster from dry running.
  • The pressure regulator settings must not be altered without proper supervision. The regulator pressure should never exceed 5.2 bar.
  • Before testing, the test bottle must be securely tightened, along with the adapters, to avoid leakage.
  • The safety chamber must be properly closed before initiating the test to prevent accidents.
  • The hydraulic oil level should always be checked before operation. In automatic mode, a level switch will shut down the system if oil levels are insufficient.
  • During the filling process, the vent valve and isolation valve must be open to allow smooth flow of hydraulic oil.
  • After the test, the vent valve must be opened to safely release pressure before removing the test bottle.
  • The motor rotation direction must be checked to ensure it follows the correct signage.
  • Once an automatic test begins, operators must maintain a safe distance from the test bench.
  • The pressure should never be increased beyond the system's limit to avoid equipment failure or hazards.
  • In case of an electrical short circuit, the main supply to the test bench must be cut off immediately from the VFD panel.
  • Proper earthing must be ensured to prevent electrical hazards.

5. Maintenance and Troubleshooting

To ensure consistent performance and longevity of the 1000 Bar Hydraulic Proof Pressure Test Bench, regular maintenance and troubleshooting should be performed.

If the power pack supply does not turn ON, the main supply should be checked, along with internal panel connections. If the motor does not start from the DAQ panel, it is essential to verify that the Local/DAQ knob is set to DAQ mode.

If the pump is not generating pressure, the operator should confirm that the pressure regulator setting is correct and make necessary adjustments. In cases where analog input is not being registered by the DAQ system, the MCB switch on the DAQ panel should be checked to ensure it is turned ON.

If flow is not detected in the flowmeter, the operator should confirm that both loading valves are properly engaged. In case of a clogged filter, the filter code should be checked, and a replacement filter should be arranged through Neometrix. Operating the test bench with a clogged filter can cause permanent damage to the servo valve.

If there is leakage from fittings or hose connections, the fittings should be tightened, and hoses should be inspected for any signs of wear or damage.

6. Technical Specifications

Test Pressure1000 Bar
Tank100 litre, SS304
Temperature Gauge0–90°C
Motor1.5 kW, 3-phase, 440V AC, 1500 RPM, 50 Hz
Air-Driven Hydraulic Pump1034 Bar
Pressure Transmitter0–1000 Bar, ±0.5% accuracy
High-Pressure Ball Valve1000 Bar
Hoses1000 Bar rated
Test MediumServo 636 hydraulic oil
ControlLabVIEW DAQ, automatic & manual modes

7. Application Areas

The 1000 Bar Hydraulic Proof Pressure Test Bench is a specialized solution for industries where nitrogen bottle and gas chamber reliability under extreme pressure is mission-critical, including:

Defence & Aerospace

  • HSU N2 gas chamber proof pressure validation for armoured vehicles, including the K9 Vajra damper assembly
  • Nitrogen bottle structural integrity testing for defence platforms
  • Aerospace nitrogen and gas storage bottle proof testing

Industrial & General Engineering

  • Industrial gas cylinder burst and proof pressure validation
  • Hydraulic hose, fitting and high-pressure valve testing
  • Pump pressure testing and component qualification

8. Delivery and Support

Neometrix provides comprehensive after-sales support including installation, commissioning, operator training, preventive maintenance, and on-site service for the 1000 Bar Hydraulic Proof Pressure Test Bench, and exports the system to global customers across defence, aerospace, and industrial sectors.

Conclusion

The 1000 Bar Hydraulic Proof Pressure Test Bench is a highly specialized, precision-engineered system designed for high-pressure testing of nitrogen bottles and HSU N2 gas chambers. Equipped with automated data acquisition, real-time pressure monitoring, and comprehensive safety features, this test bench ensures accuracy, reliability, and compliance with industry standards. Its dual-mode operation — automatic and manual — makes it a versatile custom 1000 bar test unit for aerospace, defence, and industrial applications where extreme pressure conditions must be verified. Key systems such as this High Pressure Proof Test Rig, Burst Pressure Test Equipment, and Hydraulic Proof Load Tester enable precise measurement of strength, resilience, and failure thresholds — with Neometrix positioned as a trusted 1000 bar hydraulic proof pressure test bench manufacturer and supplier in India, serving global defence, aerospace, and industrial gas storage programmes.

10
FAQ

Common questions.

Plain-language answers from the engineering team.

Q · 01 What is the 1000 Bar Hydraulic Proof Pressure Test Bench?
The 1000 Bar Hydraulic Proof Pressure Test Bench is a precision-engineered static condition testing machine designed and manufactured by Neometrix Engineering Pvt Ltd, India. It fills HSU N2 gas chambers and nitrogen bottles with hydraulic oil and subjects them to 1000 bar static pressure to validate structural integrity for defence, aerospace, and industrial applications.
Q · 02 Who manufactures the 1000 Bar Hydraulic Proof Pressure Test Bench?
The 1000 Bar Hydraulic Proof Pressure Test Bench is designed and manufactured by Neometrix Engineering Pvt Ltd, a leading test equipment manufacturer based in India.
Q · 03 What industries use the 1000 Bar Hydraulic Proof Pressure Test Bench?
The 1000 Bar Hydraulic Proof Pressure Test Bench is used across defence, aerospace, automotive, railways, and industrial gas storage sectors for precision proof pressure testing and performance validation, including HSU N2 gas chamber testing for platforms such as the K9 Vajra.
Q · 04 Is the 1000 Bar Hydraulic Proof Pressure Test Bench customizable?
Yes, Neometrix offers customized versions of the 1000 Bar Hydraulic Proof Pressure Test Bench tailored to specific client requirements, operational parameters, and industry standards.
Q · 05 Does the 1000 Bar Hydraulic Proof Pressure Test Bench comply with relevant standards?
Yes, the 1000 Bar Hydraulic Proof Pressure Test Bench is designed to comply with applicable national and international standards including MIL-STD, ISO, IS, and customer-specified requirements.
Q · 06 What are the key features of the 1000 Bar Hydraulic Proof Pressure Test Bench?
Key features include static proof testing up to 1000 bar, a 100-litre SS304 oil reservoir, a Rexroth high-pressure pump with Haskel air booster, dual automatic and manual testing modes, a LabVIEW-based DAQ system for real-time monitoring and report generation, and a bulletproof glass safety chamber with emergency shutdown.
Q · 07 Can the 1000 Bar Hydraulic Proof Pressure Test Bench be integrated with data acquisition systems?
Yes, the 1000 Bar Hydraulic Proof Pressure Test Bench is integrated with a LabVIEW-based DAQ system for real-time pressure monitoring, automated report generation, and traceability of test results.
Q · 08 What after-sales support does Neometrix provide for the 1000 Bar Hydraulic Proof Pressure Test Bench?
Neometrix provides comprehensive after-sales support including installation, commissioning, operator training, preventive maintenance, and on-site service for the 1000 Bar Hydraulic Proof Pressure Test Bench.
Q · 09 How can I get a quotation for the 1000 Bar Hydraulic Proof Pressure Test Bench?
You can request a quotation for the 1000 Bar Hydraulic Proof Pressure Test Bench by contacting Neometrix Engineering Pvt Ltd through the website at neometrixgroup.com/products/1000-bar-hydraulic-proof-pressure-test-bench or by reaching out via email or phone.
Q · 10 Does Neometrix export the 1000 Bar Hydraulic Proof Pressure Test Bench internationally?
Yes, Neometrix Engineering Pvt Ltd exports the 1000 Bar Hydraulic Proof Pressure Test Bench to global customers in defence, aerospace, and industrial sectors across multiple countries.
Get a proposal

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and bottle specification.

We size the pump and booster pairing, configure the safety chamber, and walk through the static proof pressure test programme with your engineering team before you commit.

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Engineered To Standards Used In UK, NATO & U.S. Defence Procurement
DEF STAN (UK MoD)
NATO STANAG
RTCA/EUROCAE DO-160
MIL-SPEC / MIL-STD
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E-148, Sector-63, Noida, Delhi-NCR, India
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