Fully automatic concrete compression testing machine, 200-ton cement specimen press with computer-controlled constant‑stress compression.
Fully automatic concrete compression testing machine, 200-ton cement specimen press with computer-controlled constant‑stress compression.
Fully automatic concrete compression testing machine, 200-ton cement specimen press with computer-controlled constant‑stress compression.
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  • Fully automatic concrete compression testing machine, 200-ton cement specimen press with computer-controlled constant‑stress compression.
  • Fully automatic concrete compression testing machine, 200-ton cement specimen press with computer-controlled constant‑stress compression.
  • Fully automatic concrete compression testing machine, 200-ton cement specimen press with computer-controlled constant‑stress compression.

Fully automatic concrete compression testing machine, 200-ton cement specimen press with computer-controlled constant‑stress compression.

Main Applications: The DYE-2000S series, a fully computer-controlled constant‑stress pressure testing machine, is primarily used to determine the compressive strength of building materials such as bricks, stones, and concrete. It is essential testing equipment for construction firms, building material manufacturers, highway and bridge engineering organizations, quality inspection agencies, and transportation research institutes. This machine features electric‑hydraulic, computer‑controlled loading and load measurement via hydraulic pressure sensors. It offers functions including display of loading‑rate control curves, retention of peak failure values, data storage, printing, query capabilities, and conversion of test results to compressive strength. The equipment complies with GB/T 50081‑2002 “Standard for Test Methods of Mechanical Properties of Ordinary Concrete” and meets the requirements of GB/T 3159‑2008 “Hydraulic Universal Testing Machine.” Main Technical Parameters: 1) Maximum Load: 2000 kN 2) Testing Machine Class: Class 1 3) Minimum Resolution: 0.1 kN 4) Maximum Distance Between Pressure Plates: 320 mm 5) Upper Pressure Plate Dimensions: 220 × 250 mm 6) Lower Pressure Plate Dimensions: 220 × 250 mm 7) Piston Diameter × Maximum Stroke: Φ250 × 30 mm 8) Motor Power: 0.75 kW 9) Input Voltage: — Electric motor section: ~380 V ±10%, 50 Hz — Computer section: ~220 V ±10%, 50 Hz 10) Overall Dimensions of the Testing Machine: 850 × 650 × 1800 mm 11) Net Weight: 750 kg

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  • Product Description
  • 1 Main Uses

    The DYE-2000S series computer‑controlled, fully automatic constant‑stress compression testing machine is primarily used to determine the compressive strength of building materials such as bricks, stones, and concrete. It is an essential testing and inspection instrument for institutions in the construction, building materials, highway and bridge, quality supervision, and transportation research sectors.

    This machine features electric‑hydraulic, computer‑controlled loading and load measurement via a hydraulic pressure sensor. It offers functions such as display of the loading‑rate control curve, retention of the peak crushing force, data storage, printing, query capabilities, and conversion to compressive strength.

    This machine complies with GB/T 50081-2002, “Standard for Test Methods of Mechanical Properties of Ordinary Concrete,” and conforms to GB/T 3159-2008, “Hydraulic Universal Testing Machine.”

    2. Main Technical Parameters

    1) Maximum load: 2000 kN

    2) Testing machine class: Class 1

    3) Minimum resolution: 0.1 kN

    4) Maximum distance between bearing plates: 320 mm

    5) Upper platen dimensions: 220×250 mm

    6) Lower platen specifications: 220×250 mm

    7) Piston diameter × maximum stroke: Φ250 × 30 mm

    8) Motor power: 0.75 kW

    9) Input voltage: Motor section; ~380 V ±10%, 50 Hz

    Computer section: ~220V ±10%, 50Hz

    10) External dimensions of the testing machine host: 850×650×1800 mm

    11) Net weight: 750 kg

Reasons to Choose Us

Multiple specifications to choose from

Source factory

Ships promptly

Thoughtful service

Supports customization

Selected Raw Materials

Factory Advantages

Deep expertise, comprehensive product range

Deep expertise, comprehensive product range

Over 10 years of dedicated R&D and manufacturing of testing instruments for highway, construction, geotechnical, asphalt, cement, and other engineering applications.
Comprehensive category coverage: from raw material testing to construction quality control, a one-stop solution.
Compliant with international standards such as ISO and GB, meeting the regulatory requirements of overseas projects.

Customized Solutions

Reliable quality and excellent value for money.

We strictly adhere to the ISO 9001 quality management system, select core components from internationally renowned brands, and conduct full inspection before shipment.
In-house manufacturing + a large-scale supply chain deliver strong price competitiveness, with no markups from intermediaries.
Stable and durable, with a low failure rate, reducing operational and maintenance costs for overseas customers.

Efficient delivery, global service

Efficient delivery, global service

In-stock inventory plus flexible manufacturing ensures 7–15 day rapid delivery, with support for customized rush orders.
Cangzhou’s Lin’gang District boasts a strategic location, with convenient sea and air transportation and globally traceable logistics.
Multilingual team with 24-hour technical support, offering installation and commissioning, training, a three‑year warranty, and ongoing follow-up services.

Operating with integrity and backed by extensive experience.

Operating with integrity and backed by extensive experience.

13 years of industry expertise, serving over 30 countries and regions worldwide.
The principle of “integrity in business, mutual benefit.”
Deep understanding of international engineering standards and procurement processes, with efficient communication and seamless collaboration.

Frequently Asked Questions

Is the universal materials testing machine experiencing loading stalling or abnormal zeroing of load data?


1. Loading lag: Clean the lead screw and guide rails, apply lubricant, and remove debris from the transmission components. 2. Zeroing anomaly: Restart the equipment system, calibrate the load and displacement zero points, and check for poor electrical contact in the sensor wiring. 3. Overloading is strictly prohibited; before testing, verify that the grips are securely tightened to prevent eccentric loading of the specimen.

How often should in‑instrument verification be performed? Which instruments are required to undergo it?


High‑precision, high‑frequency‑use, and drift‑prone equipment (such as balances, penetration testers, water permeability testers, and sensor‑type devices) shall undergo intermediate verification every three months; routine equipment shall be verified every six months. Equipment that is within the verification/calibration interval, has been repaired following a malfunction, or has been relocated must undergo additional intermediate verification, with complete verification records maintained.

Is the repeatability of pendulum-type pavement friction coefficient measurements poor?


Key points for resolution: Prior to testing, thoroughly clean the pavement at each measurement point, ensuring there is no standing water, dust, or debris; calibrate the instrument’s level and zero point to ensure a standardized pendulum‑drop trajectory; strictly control the pendulum’s sliding distance; avoid conditions such as strong winds, wet pavement, or abrupt temperature changes; and calculate the average of multiple measurements taken at the same point.

How should one handle cases where the pavement infiltration meter data exceeds allowable error limits, exhibits leakage, or shows abnormal readings?


1. Sealing leaks: Inspect the base seal for aging or damage and replace it promptly; before testing, firmly press down on the base to expel any residual air inside. 2. Data deviation > ±2%: Calibrate the level sensor, clean any fouling from the graduated cylinder, and check for damage to the scale markings. 3. Compliance with new regulations: For seepage rates ≤ 300 mL/min, existing equipment may continue to be used; for rates > 300 mL/min, the accuracy of older equipment fails to meet standards, and such equipment must not be used.

Can the old Marshall compaction apparatus and stability tester still be used?


According to the 2025 revised asphalt testing procedures, after adjusting the indenter configuration on the Marshall stability test apparatus, existing instruments currently in use may continue to be operated normally without mandatory replacement; only periodic calibration to maintain accuracy and ensure equipment integrity is required.

What are the causes of uneven compaction and layered cracking in molded specimens during compaction testing?


Main causes: non‑vertical drop of the compaction hammer, rail jamming, excessive deviation in hammer weight, uneven layer thickness during loading, insufficient number of blows, or overload. Solutions: regularly lubricate the guide rails; verify and correct the vertical alignment of the hammer; strictly follow the procedure for layered material placement and step‑by‑step compaction; ensure that hammer weight and drop height comply with standards; and prevent over‑thick layers.

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