MATTEST · TESTING & DIGITAL LABORATORY
TASHKENTSAMARKANDBUKHARA
MATTEST · CONSTRUCTION TESTING LABORATORY · TASHKENT

Construction testing laboratory for the full project

Incoming control of materials, operational control of works and testing of structures, soils and piles. A single engineering team accompanies the project and delivers a traceable result.

Laboratory in Tashkent · we work across Uzbekistan — depending on the task and scope of the project
01 / M·UZMAIN SCREEN · test → data → result
02–04 / MATTEST PRINCIPLES
01One laboratory

Materials, structures and foundations — within a single control programme.

02Real test

The measurement is actually performed and confirmed by primary data and photographs.

03Digital trace

The result is linked to a point, time, coordinates and instrument data.

04Site safety

Engineering decisions must rely on a verifiable fact, not on formal paperwork.

05 / WHAT WE TEST

Testing for every construction stage.

Concrete, soils, piles, steel, road and construction materials — choose a direction to see the test methods, applicable standards and the result delivered to the client.

01Concrete and concrete mixOpen ↗02Soils and foundationsOpen ↗03PilesOpen ↗04Crushed stoneOpen ↗05SandOpen ↗06Asphalt concreteOpen ↗07Steel and welded jointsOpen ↗08Brick, blocks and stoneOpen ↗09Waterproofing and roofingOpen ↗10Road bitumen and mineral fillerOpen ↗
06 / SAFE
SAFETY AS AN ENGINEERING DISCIPLINE

In a seismically active region a test cannot be a formality

MATTEST helps raise the safety and reliability of construction in Uzbekistan through credible, professional and traceable testing.

01Real test

Every result must rely on work that was actually performed.

02Engineering responsibility

The method is followed by a specialist authorised to run tests independently.

03Traceable result

Primary records, photographs and digital data confirm the course of control.

Building destroyed by the 1966 Tashkent earthquake
Toshkent teleminorasi · Boymatova Ugiloy · CC BY 4.0
07 / EXPERIENCE

Engineering practice on major construction projects

We show scale through facts, tasks and real photographs — without loud promises.

08→09 / EXPERIENCE THAT BECAME A SYSTEM

MATTEST is not a set of separate tests but engineering practice accumulated since 2013.

For more than ten years MATTEST Group has been developing laboratory control of construction materials and structures. Now this experience becomes the basis of a laboratory for projects in Uzbekistan.

01During this time the team has taken part in Olympic construction, worked on transport infrastructure, roads, tunnels and major industrial projects. Such projects have taught us to see testing not as an isolated laboratory operation but as part of the overall rhythm of construction, where every decision affects deadlines, documentation and safety.

02A new MATTEST laboratory is being established in Uzbekistan. We do not pass off the age of the new division as its own history: the Uzbek direction relies on the experience of the Group, on refined approaches, equipment and engineering culture accumulated since 2013.

03A large project rarely needs a single control method. Today concrete and the soil foundation need to be verified, tomorrow — crushed stone, a welded joint or a pile, and then the results must be assembled into a clear system for the contractor, technical supervision and the client.

04That is why MATTEST is being built as a single centre for construction testing. A broad set of methods makes it possible to avoid assembling different contractors for each new task and instead to form a common programme of control for materials, structures and foundations.

05For us scale is not a loud statement nor a photograph of a famous project by itself. Scale is revealed in the ability to accept a complex task, select a method, arrange the field trip, run an actual test and hand over to the client a result that can be relied upon.

06The archive below is not a decorative portfolio. It is proof of continuous engineering practice: people, instruments, construction sites, specimens, field conditions and results, from which the real history of MATTEST is composed.

07Only a small part of this work can be shown on the home page. The spatial archive will allow the history to be seen in a wider view — not through a handful of selected marketing shots but through many genuine episodes accumulated year after year.

09 / ARCHIVE OF REAL WORK

A history you can step into.

Projects, tests, equipment and the people of MATTEST since 2013.

13 YEARSOF REAL
WORK
SITES
TESTS
ENGINEERS
OPEN THE ARCHIVEINSIDE — A SPACE OF PHOTOGRAPHS ↗
09→10 / HOW WE UNDERSTAND RESPONSIBILITY

A report is the finale of a test, not its substitute.

We build trust not around promises but around a clear path from a real test to an engineering result.

01We call honest only the test that has actually been performed. Behind the final figure there must stand a specimen or a structure, the method applied, the equipment, the engineer and the primary data confirming the course of the work.

02MATTEST already accompanies its tests with primary records and process photographs. The next level is a unified digital trace, in which the result is linked to time, place, the control point, instrument data and the responsible specialist.

03This approach protects the client from a situation where the document exists separately from the real project. The report becomes the outcome of a verifiable sequence of actions rather than a formal paper that cannot be confirmed.

04Speed is also part of our responsibility. We understand that waiting for the laboratory can halt the next stage of work, delay the closing of a structure and cost the contractor considerably more than the test itself.

05At the same time we do not promise a single lead time for every task. The duration depends on the method, the volume, specimen preparation and testing conditions; our duty is to name a realistic schedule and to organise the process so that the project does not wait longer than necessary.

06The technical promise of MATTEST rests on four pillars: adherence to the method, metrologically confirmed equipment, a qualified engineer and a traceable result. A conclusion that is convenient for one side cannot outweigh the facts that have actually been established.

07A MATTEST engineer earns the right to work independently not by job title alone. The candidate demonstrates engineering thinking, studies practice alongside experienced colleagues, receives sign-off from a senior specialist, and the knowledge of the team is checked regularly.

08For seismically active Uzbekistan the quality of construction control is of particular importance. MATTEST helps raise the safety and reliability of construction through professional tests whose results can be verified and used for engineering decisions.

09This system is further reinforced by the digital laboratory. Specialised M-Instrument equipment and software reduce manual operations, speed up data transfer and make the path of a test more transparent.

10Our long-term task is not only to fulfil commercial orders but also to develop, together with the industry, a culture of credible and traceable testing. An active laboratory must become a place of practice, of training engineers and of dialogue with construction organisations, universities and the professional community.

10 / DIGITAL LABORATORY

A result you can trust

Specialised M-Instrument equipment + software = a digital laboratory.

  • 01 Data is captured at the moment of the test
  • 02 Photograph, time and coordinates are linked to the control point
  • 03 The result reaches the engineer and the client faster
Instrument for concrete control in the laboratory
TEST / 02431.8MPa

Data saved

11 / MATTEST INSTRUMENT

MATTEST INSTRUMENT proprietary devices — a new generation of testing equipment

Inside MATTEST there is an instrument-making division, MATTEST INSTRUMENT. We design and manufacture laboratory and field equipment with digital data capture, automatic transfer of results and full traceability of the test. The instrument stops being just a meter — it becomes part of the digital laboratory.

01
MIT STRIKE 225 — Rebound hammer
Rebound hammer

MIT STRIKE 225

Non-destructive express control of concrete strength

02
MIT SONIC — Ultrasonic instrument
Ultrasonic instrument

MIT SONIC

Concrete strength and homogeneity control via ultrasonic pulse velocity

03
MIT UZK MONOLIT — Multi-channel UPV
Multi-channel UPV

MIT UZK MONOLIT

Cross-hole sonic logging (CSL) for concrete pile integrity

04
MIT KIK — Seismic-acoustic device
Seismic-acoustic device

MIT KIK

Pile integrity and length control via low-strain impact (PIT)

05
MIT STONE 55 — Pull-off tester
Pull-off tester

MIT STONE 55

Concrete strength by pull-off with fracture — reference method

06
MIT ARMOTREK — Rebar detector
Rebar detector

MIT ARMOTREK

Detection, depth and diameter of reinforcement in concrete structures

07
MIT PRESS — Hydraulic press
Hydraulic press

MIT PRESS

Laboratory compression tests — concrete, brick, stone, cores

08
MIT RM — Tensile testing machine
Tensile testing machine

MIT RM

Tensile testing of steel, reinforcement and coupler joints

09
MIT RAY — X-ray unit
X-ray unit

MIT RAY

Radiographic inspection of welded joints and pipelines

10
MIT CROWLER — In-pipe crawler
In-pipe crawler

MIT CROWLER

Automated internal inspection of main pipelines

01
MIT STRIKE 225 — Rebound hammer
Rebound hammer

MIT STRIKE 225

Non-destructive express control of concrete strength

02
MIT SONIC — Ultrasonic instrument
Ultrasonic instrument

MIT SONIC

Concrete strength and homogeneity control via ultrasonic pulse velocity

03
MIT UZK MONOLIT — Multi-channel UPV
Multi-channel UPV

MIT UZK MONOLIT

Cross-hole sonic logging (CSL) for concrete pile integrity

04
MIT KIK — Seismic-acoustic device
Seismic-acoustic device

MIT KIK

Pile integrity and length control via low-strain impact (PIT)

05
MIT STONE 55 — Pull-off tester
Pull-off tester

MIT STONE 55

Concrete strength by pull-off with fracture — reference method

06
MIT ARMOTREK — Rebar detector
Rebar detector

MIT ARMOTREK

Detection, depth and diameter of reinforcement in concrete structures

07
MIT PRESS — Hydraulic press
Hydraulic press

MIT PRESS

Laboratory compression tests — concrete, brick, stone, cores

08
MIT RM — Tensile testing machine
Tensile testing machine

MIT RM

Tensile testing of steel, reinforcement and coupler joints

09
MIT RAY — X-ray unit
X-ray unit

MIT RAY

Radiographic inspection of welded joints and pipelines

10
MIT CROWLER — In-pipe crawler
In-pipe crawler

MIT CROWLER

Automated internal inspection of main pipelines

13 / PEOPLE · CULTURE · EDUCATION

A strong laboratory starts with who is allowed to run the test.

The instrument captures the measurement, but the choice of method, the quality of the work and the credibility of the result are the engineer’s responsibility. That is why the selection and training of MATTEST staff is part of the quality system.

A MATTEST engineer testing a structure
PRACTICE ON SITEWe learn to work not only with the instrument but with a real construction task.
01
Select the technically strong

At the interview we check more than just the CV. What matters to us is engineering thinking and a solid foundation in physics, mathematics, geometry and mechanics.

02
Train alongside an experienced engineer

A new specialist studies the methods and performs real tasks under the supervision of senior colleagues. Theory is immediately linked to the instrument, the structure and the conditions on site.

03
Sign-off only after confirmation

An engineer becomes independent when the group leader confirms readiness to answer for the method, the measurement and the result.

04
Check knowledge on a regular basis

Preparation does not end after hiring. Internal assessments and annual examinations help maintain a single professional level across the team.

14 / CONTACT MATTEST

Tell us how we can help

Leave your contact details and briefly describe your enquiry. A MATTEST engineer will clarify the task and the appropriate test method by phone.

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