Technologies

Advanced Solutions for Industry and Science

AMP Sp. z o.o. is a company that stands out in the technology industry for its innovation and attention to precision in its processes.

This approach enables us to deliver top-quality solutions that meet our customers’ growing needs and keep pace with a rapidly changing market.

The key aspects of our business are discussed below:

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Innovation in Technological Processes

AMP Sp. z o.o. focuses on modern technologies and solutions that not only optimize production processes but also support sustainable development.

The company invests in:

Automation

Advanced automation systems help eliminate human error and increase efficiency.

Research and Development (R&D) Growth

The ongoing search for new technologies that can be implemented in production.

Digitization

Implementation of IoT (Internet of Things) systems and data analytics to monitor and optimize processes.

Eco-innovations

Implementing solutions that minimize environmental impact.

Precision as a Key Element

At AMP Sp. z o.o., precision in manufacturing processes means:

Attention to detail

Regardless of the project's scale, every stage is carefully monitored.

Advanced Tools and Equipment

The use of modern machinery makes it possible to achieve an extremely high level of precision.

Quality Management Systems

Implementing standards such as ISO 9001 ensures the highest standard of project execution.

Quantum G Vacuum and Gas Quenching and Tempering

Vacuum and gas quenching and tempering are heat treatment processes for materials designed to improve their mechanical and physical properties, such as hardness, strength, and wear resistance. Quantum G technology offers advanced solutions for these processes, based on controlled vacuum or gas atmosphere conditions.

Quantum M Precision High-Vacuum Furnaces

The Quantum M high-vacuum furnaces manufactured by AMP Sp. z o.o. are technologically advanced devices designed for thermal processing under high-vacuum conditions. A key feature that sets these furnaces apart is the use of a heating chamber insulation made of molybdenum or tungsten—a technology known as All Metal.

Quantum OQ Vacuum Oil Quenching

Vacuum oil quenching is a heat treatment process in which components are heated in a controlled vacuum atmosphere and then quenched in oil. Quantum OQ technology combines the advantages of vacuum treatment—such as surface cleanliness and precise process control—with the high cooling efficiency characteristic of quenching oil.

Piro-Carb Vacuum Carbonization

Vacuum carburizing (LPC), also known as the Piro-Carb process, is a modern thermochemical treatment method that allows carbon to be introduced into the surface layers of metal under controlled vacuum conditions. Compared to traditional methods, this technology is characterized by high precision, repeatability, and efficiency, making it an ideal solution for advanced industrial applications.

ASPN Nitro-Tool Plasma Nitriding

ASPN Nitro-Tool plasma nitriding is a modern, environmentally friendly, and cost-effective nitriding method developed by AMP Sp. z o.o. This process involves introducing nitrogen into the metal surface under plasma conditions, which results in the hardening of the treated components and an increase in their corrosion resistance.

Carbo-Tool Atmospheric Carbonizing

Atmospheric carburizing using the Carbo-Tool AMP is a thermochemical process used in metalworking, particularly for steel, to increase surface hardness and wear resistance while maintaining the ductility and toughness of the core.

Clean-Tec Cleaning and Degreasing

Clean-Tec offers equipment based on advanced industrial cleaning and degreasing technologies, providing solutions tailored to the requirements of various sectors, such as the automotive, aerospace, machinery, and medical industries. Clean-Tec’s systems and technologies focus on the effective removal of contaminants from metal, plastic, and other surfaces, while meeting stringent environmental standards.

HIP Isostatic Presses

Isostatic presses, including both HIP (Hot Isostatic Pressing) and CIP (Cold Isostatic Pressing), are devices used in materials processing technology. They utilize the principle of isostatic pressure, which means that the compressive force acts uniformly in all directions on the material being processed. Both technologies are widely used in the metallurgical, ceramic, and energy industries, as well as in the production of high-quality components.

CIP Isostatic Presses

Isostatic presses, including both HIP (Hot Isostatic Pressing) and CIP (Cold Isostatic Pressing), are devices used in materials processing technology. They utilize the principle of isostatic pressure, which means that the compressive force acts uniformly in all directions on the material being processed. Both technologies are widely used in the metallurgical, ceramic, and energy industries, as well as in the production of high-quality components.

Braz-Tec Soldering

Vacuum brazing using Braz-Tec technology is an advanced process for joining metals and alloys in a controlled vacuum atmosphere. This method is used in applications that require high-quality joints with excellent leak tightness, strength, and corrosion resistance.

Sintering: Sinter and SinterHIP

Sintering and High-Temperature Isostatic Pressing (SinterHIP) are advanced manufacturing processes used in the processing of materials such as metal powders, ceramics, and other powdered materials. Their purpose is to create dense, durable components with the required mechanical and physical properties. Both techniques are widely used in the aerospace, automotive, and medical industries, as well as in the manufacture of cutting tools.

SPS Sintering Processes

The SPS (Spark Plasma Sintering) sintering process, also known as Spark Plasma Sintering (SPS) or Pulse Electric Current Sintering (PECS), is an advanced sintering technology that uses electrical pulses to generate heat and pressure, allowing for the rapid and efficient bonding of powder particles into a homogeneous material with high density and good mechanical properties.

Autoclaves for composite polymerization

Autoclaves for composite polymerization are devices used in the materials industry to carry out the polymerization of composite materials under high pressure and temperature. Composites polymerized in an autoclave typically consist of a polymer matrix (e.g., epoxy, polyester, or vinyl ester resin) and a reinforcing material (e.g., glass, carbon, or aramid fibers).

Autoclaves for rubber and tire vulcanization

Autoclaves for rubber and tire vulcanization are specialized devices used in the tire industry and in the manufacture of rubber products. Vulcanization is a chemical process in which rubber (natural or synthetic) is subjected to high temperature and pressure in the presence of sulfur or other vulcanizing agents. The purpose of vulcanization is to improve the mechanical properties of rubber—such as its elasticity, hardness, and wear resistance—as well as to increase its durability.

Wood heat treatment – thermal processing of wood

Wood heat treatment (also known as thermal modification) is a process in which wood is exposed to elevated temperatures under controlled conditions to improve its performance characteristics. The goal of this process is to alter the structure of the wood so that it becomes more resistant to moisture, fungi, and insects, and less prone to cracking and warping. In addition, wood heat treatment improves its dimensional stability and aesthetic appeal (darker color).

VIM Induction Vacuum Furnaces for Melting and Casting

Induction vacuum furnaces for melting and VIM casting are state-of-the-art devices that enable the processing of metals under controlled vacuum conditions using induction technology.

Tr-Endo Protective Atmosphere Generators

The Tr-Endo series of endothermic protective atmosphere generators are advanced devices designed to produce stable, controlled protective atmospheres, used primarily in metal heat treatment processes.

Ammonia dissociators

Ammonia dissociators are advanced devices whose primary function is the thermal or catalytic dissociation of ammonia (NH) into reactive nitrogen and hydrogen. Thanks to precise control of the conditions, this process enables the generation of a highly reactive gas mixture, which is used in many industrial processes.

Equipment for the Production of CVD Pyrographite

Vacuum Furnaces for the Production of Pyrolytic Graphite (Pyrographite) Using the CVD Method – AMP Sp. z o.o.
AMP Sp. z o.o. is a leading manufacturer of highly specialized vacuum furnaces for the production of pyrolytic graphite (pyrographite) using chemical vapor deposition (CVD) technology.

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