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HC-ZH20 Static Compression Load Testing Instrument for Pile Foundations, Soil Foundations, and Rock Foundations

It is applicable to static load compression tests for pile foundations, soil foundations, rock foundations, and other types of foundations; static pull-out tests for anchor piles and anchor rods; and horizontal static load tests for foundation piles.

Keywords:

HC-ZH20 Static Compression Load Testing Instrument for Pile Foundations, Soil Foundations, and Rock Foundations
HC-ZH20 Static Compression Load Testing Instrument for Pile Foundations, Soil Foundations, and Rock Foundations
HC-ZH20 Static Compression Load Testing Instrument for Pile Foundations, Soil Foundations, and Rock Foundations
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  • HC-ZH20 Static Compression Load Testing Instrument for Pile Foundations, Soil Foundations, and Rock Foundations
  • HC-ZH20 Static Compression Load Testing Instrument for Pile Foundations, Soil Foundations, and Rock Foundations
  • HC-ZH20 Static Compression Load Testing Instrument for Pile Foundations, Soil Foundations, and Rock Foundations

Description


Product Description:

It is applicable to static load tests on pile foundations, soil foundations, rock foundations, and other types of ground conditions; static pull-out load tests on anchor piles and anchor rods; and horizontal static load tests on foundation piles.

Product Features:

1. The testing process supports fully automated load control and stability assessment, enabling unattended operation throughout the entire test sequence. It features automatic alarm functionality and, in the event of a power outage, an automatic recovery mechanism that resumes the test once power is restored.

2. Standard configuration includes an IP68‑rated, 50‑mm digital displacement sensor. An optional 100‑mm long‑range, waterproof, frequency‑modulated displacement sensor is also available. The displacement sensor housing is waterproof, and all accessories and connection cables are manufactured using industrial‑grade crimping technology.

3. Built-in 4G all‑network‑compatible wireless module enables fast, real-time uploading of data files to a cloud server and synchronized display on mobile devices.

4. Equipped with a 12.1-inch extra-large industrial-grade color LCD display, supporting full-touch operation and adjustable brightness; powered by a high-performance processor and an embedded operating system to ensure stable and reliable performance.

5. Industrial-grade front-end device, equipped with a 6.5-inch color LCD display and an independent GPS positioning system; features stable load control and operates on all‑DC power, making it suitable for both urban areas and remote outdoor environments.

6. The host and the front-end unit are connected wirelessly, with an actual effective transmission range exceeding 2,000 meters under open construction-site conditions.

7. A brand-new user interface that is easy to learn and operate, featuring rich functionality and a user-friendly design; the device firmware can be updated over Wi‑Fi and also supports USB‑drive upgrades.

8. Professional data processing and analysis software that can simultaneously display multiple types of data curves, including Q‑s, s‑lgt, and s‑lgQ. This powerful software enables rapid analysis of test data and automatic generation of test reports.

Low-power design ensures 24-hour continuous, uninterrupted operation even in high-temperature field environments.

Reference standard:

GB 50007-2011 Code for Design of Building Foundations

GB 50086-2015 Code for Technical Specification of Rock and Soil Anchoring and Shotcrete Support Engineering

GB 50021-2001 “Code for Geotechnical Investigation*” (2009 Edition)

GB 50330-2013 Code for Design of Building Slope Engineering

GB/T 50123-2019 “Standard for Geotechnical Test Methods”

JGJ 106-2014 Code for Testing of Building Piles

JGJ 79-2012 "Technical Code for Ground Improvement of Buildings"

JGJ 120-2012 Technical Code for Retaining Structures of Building Excavations

JGJ 340-2015 Technical Code for Testing of Building Foundations

JGJ/T 401-2017 Technical Code for Anchor Bolt Testing and Monitoring

JGJ/T 135-2018 “Technical Standard for Load-Bearing Piles”

JGJ/T 403-2017 “Technical Code for Self-Balancing Static Load Testing of Building Pile Foundations”

JTG 3363-2019 “Code for Design of Foundations and Substructures of Highway Bridges and Culverts”

JTG/T 3512-2020 “Technical Specification for Pile Foundation Testing in Highway Engineering”

TB 10218-2019 “Technical Specification for Pile Testing in Railway Engineering”

TB 10106-2023 “Technical Specification for Subgrade Treatment in Railway Engineering”

T/CECS 22-2024 Code for Geotechnical Anchoring Technology

Technical Specifications:

Parameter Category

Parameter Description

Operating mode

Touch screen

Data transmission

USB 2.0

Display

8.4-inch LCD display with a resolution of 1024×768

Number of time windows

Up to 12

Resolution

Greater than 1 centimeter

Accuracy

±4 cm

Measurement range

0.7–5.0 meters

Storage capacity

8GB

Trigger method

Signal trigger, synchronous trigger

Excitation energy

Levels 1 to 8

Sampling interval

2 ~ 65,535 microseconds

Number of sampling points

512, 1024

Power supply

Built-in lithium battery

Runtime

≥8 Hours

Host weight

1.5Kg

Host dimensions (mm)

254 × 197 × 64

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FAQs



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Customer Reviews


European Plastic Pipe Manufacturer|Purchase: Ring Stiffness & Hydrostatic Burst Tester

European Plastic Pipe Manufacturer|Purchase: Ring Stiffness & Hydrostatic Burst Tester

From Thomas Bennett, Quality Director, UK plastic pipe factory

2026.06.05

★★★★★

“We have purchased two sets of pipe testing equipment from Laibote (Tianjin) for 18 months. The ring stiffness and hydrostatic burst testing machines run stably for daily batch inspection, test data matches ISO standard requirements precisely, and the intelligent test software is easy for our operators to master. Their after-sales team offers timely remote technical guidance whenever we have operational problems, spare parts supply is efficient. We have arranged a second bulk order for our new production workshop and will recommend Laibote’s testing machines to our industry partners across Europe.”
Middle East Construction Lab|Purchase: Universal Electronic Testing Machine & Geotextile Test Equipment

Middle East Construction Lab|Purchase: Universal Electronic Testing Machine & Geotextile Test Equipment

From Mohamed Kareem, Lab Manager, UAE third-party construction inspection institute

2026.06.05

★★★★★

“We compared multiple testing equipment brands from Europe and China before cooperating with Laibote. Their WDW universal tester and full-set geotextile testing instruments meet local construction testing standards perfectly. Custom fixtures tailored per our specimen specifications save much testing time. Pre-sale technical communication was patient and professional; engineers provided online operation training after goods arrived. Stable machine performance greatly improves our laboratory’s detection efficiency, we are satisfied with cost performance and overall service.”
Southeast Asia Rubber & Polymer Factory|Purchase: Vicat Softening Point & Tensile Testing Machine

Southeast Asia Rubber & Polymer Factory|Purchase: Vicat Softening Point & Tensile Testing Machine

From Tanaka Hiroshi, R&D Supervisor, Indonesia rubber materials enterprise

2026.06.05

★★★★★

“Laibote’s Vicat softening point tester and electronic tensile machine have been applied to our raw material incoming inspection and new formula development for over one year. High testing accuracy effectively controls our product defect rate. What impresses us most is their responsive after-sale service; technical staff reply our troubleshooting requests within 24 hours even for time zone differences. Compared with expensive European brands, Laibote’s equipment balances quality and price excellently, we plan to expand procurement of auxiliary testing instruments next quarter.”

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Keywords:

HC-ZH20 Static Compression Load Testing Instrument for Pile Foundations, Soil Foundations, and Rock Foundations


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