Solutions for ceramics & abrasives R&D

Explore the potential for creating novel innovative ceramics through solid-state, high-temperature, and hydro-/solvothermal synthesis methods.

Ceramics and Abrasives Industry Applications - Materials Science Laboratory Automation Solutions

Accelerating your existing workflow

Ceramic materials take a crucial role in various applications such as electronics / semiconductors, medical technology, energy, environment, mechanical engineering, automotive, aerospace.

The development of truly innovative novel materials using procedures such as:

  • Solid-state, high-temperature synthesis
  • Hydro- / solvothermal synthesis

is heavily pressed for time.

Chemspeed provides high throughput and high output solutions which accelerate, standardize, digitize your R&D and quality control without compromise.

Truly innovative technologies allow mimicking virtually any workflow in a fully automated way. This saves precious time and increases output and quality of your lab dramatically, by using concepts designed for chemists by chemists.

Ceramics & abrasives example solutions

Chemspeed provides innovative automated solutions for ceramic and abrasive materials development. Discover how our deep understanding of advanced materials allows us to deliver unparalleled solutions for a huge range of applications
 

33 solutions · Page 1 of 4

Automated versatile gravimetric solid dispensing

Chemspeed's FLEX POWDERDOSE with its proprietary overhead gravimetric solid dispensing / dosing (mg to g) and our user-friendly software allow you to automatically dispense virtually any powder / solid and extrudate into any type of destination.

Automated versatile gravimetric solid dispensing

Automated gravimetric solid dispensing / dosing - precision, accuracy, speed, data integrity (incl. applications in GMP environments).

Versatile matrix-to-matrix gravimetric pick & decision dispense of solids

Gravimetric pick & decision dispense of solids (matrix-to-matrix) - paradigm shift in solid / powder distribution / reformatting.

End-to-end DSC sample preparation

Step-change in end-to-end DSC sample preparation - gravimetric pick & decision dispense of solids / matrix-to-matrix reformatting.

End-to-end NMR and LCMS sample preparation

Step-change in end-to-end NMR and LCMS sample preparation - gravimetric pick & decision dispense of solids / matrix-to-matrix reformatting, dissolution and online / offline NMR and / or LC-MS (incl. applications in GMP environments).

High throughput library synthesis for innovative, better medicines

Automated, parallel library synthesis / lead optimization in drug discovery (medicinal chemistry).

Automated, parallel library synthesis of e.g. organics, inorganics, nanomateriales

High throughput library synthesis of organics, inorganics, and hybrid materials in disposable glass vials and / or reusable double-jacket reactors and / or microwave reactors and / or photochemical glass reactors with mixing, heating, refluxing, cooling, vacuum, inert gas.

High throughput, versatile solid and liquid reaction preparation

Automated solid and liquid reaction preparation for e.g. library synthesis, catalyst screening.

Automated overhead gravimetric viscous liquid, paste, or wax dispensing

Overhead gravimetric viscous liquid, paste, wax dispensing WHILE sample processing (e.g. heating / cooling, mixing).

Automated gravimetric compound / substance handling and preparation

Versatile compound / substance handling for e.g. analytical sample preparation, reaction preparation, formulation, application and testing preparation.

Ceramics & abrasives news

25 results · Page 1 of 5

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Identifying critical powder properties for high-throughput dispensing of alumina and organic templates

Screening powder properties such as flowability, compressibility, and particle geometry is crucial for controlling ceramic processing, particularly in automated workflows that demand high reproducibility. Sacrificial templating for porous ceramics is well suited to automation because it is prone to variability arising from manual handling.

16.06.2026
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Integration of Machine Learning and Automated Synthesis for Accelerated Drug and Material Research

The challenges posed by global climate change and disease risks have intensified the demand for efficient and practical materials and molecules. Traditional trial-and-error approaches are becoming increasingly inefficient and resource-intensive. The rapid advancement of artificial intelligence (AI) has opened new avenues to accelerate research and shorten development cycles.

02.06.2026
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Localization, inspection, and reasoning (LIRA) module for autonomous workflows in self-driving laboratories

Self-driving labs (SDLs) combine robotic automation with artificial intelligence (AI) to allow autonomous, high-throughput experimentation. However, robot manipulation in most SDL workflows operates in an open-loop manner, lacking real-time error detection and error correction. This can reduce reliability and overall efficiency.

05.05.2026
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Artificial intelligence-driven autonomous laboratory for accelerating chemical discovery

Autonomous laboratories, also known as self-driving labs, have emerged as a powerful strategy to accelerate chemical discovery. By highly integrating different key parts including artificial intelligence (AI), robotic experimentation systems and automation technologies into a continuous closed-loop cycle, autonomous laboratories can efficiently conduct scientific experiments with minimal human intervention.

24.02.2026
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Chemspeed & Ames National Laboratory: Driving Innovation Together in DOE’s Genesis Mission

We are proud to spotlight our partnership with Ames National Laboratory, a key leader in the U.S. Department of Energy’s historic Genesis Mission—an initiative harnessing the power of Artificial Intelligence (AI) to transform American science and innovation.

02.12.2025
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How AI is driving R&D productivity

02.09.2025

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