Some References












OTHER REFERENCES ON DEMAGNETIZING DEVICES: Martur, Akçelik, Telform, Derby (Azmüsebat), Sampa Otomotiv, Armetal, Valfsan, Erwtech (Yüksel Otomasyon), Samsun, Segman, İzmakpar, Çağrı Endüstri, Erbend Makina, Karakaya, Arfesan, Kaban Makina, Som Cıvata, FNNS Savunma, Dilek Hırdavat, Cemal Otomasyon, Saf Demir Çelik, Ege Teknik Cıvata, Azak, Soylu Kalıp, Set Medikal, Doğu Pres, FORD, Hidroma Hidrolik, ERMED, EGO Elektrikli Aletler, DT Makina, Diapro Tıbbi Ürünler, AYD Otomotiv, ESKA Valve, Torunlar Teknoloji, Özel Teknik, Obel Cıvata, Erha Mühendislik, Dalgakıran Makina, İkra Makine, Alev Makina, Eril Hırdavat, Bioaktif Tıbbi Ürünler, Öz Pres, İmortaş Oto, Avrasya Kalıp, Zintek Kimya, Dilek Hırdavat, Voestalpine High Performance Metal, Fatih Profil Sanayi, Kaban Makina vb.
Use Cases of Demagnetizing Devices



Introduction Videos
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How Does a Demagnetizer Work and What Are Its Types?
Demagnetization is the process of eliminating or reducing the magnetic field on an object. This crucial technique finds widespread application in various industries, particularly in the automotive sector, where it’s used to neutralize the magnetic properties of metal components and springs. Our company specializes in manufacturing custom-made demagnetization devices tailored to your specific dimensions and power requirements. We proudly offer five distinct types of demagnetization equipment to meet diverse industrial needs.
In the final stages of product manufacturing, residual magnetism can accumulate on surfaces due to various processes such as machining, welding, spot welding, pressing, or even during transportation and handling by machinery. This unwanted magnetism must be removed as it can significantly impact product quality in subsequent production phases. For instance, residual magnetism can attract metal dust particles to the surface, compromising the quality of coatings like cataphoresis. In welding applications, it can hinder proper penetration of the weld.
When the residual magnetism on a material’s surface exceeds 5 Gauss, demagnetization becomes necessary. The demagnetization process involves passing products through a tunnel or over a plate at specific speeds, followed by a controlled removal. This can be achieved either manually or through automated systems, with the latter requiring conveyor belts.
Our company takes pride in being a comprehensive solution provider, offering both demagnetization tunnels and conveyor belt manufacturing services. We work closely with our clients to develop tailored solutions that meet their unique demagnetization needs, ensuring optimal product quality and manufacturing efficiency.
Handheld Demagnetizing Devices
Plate Type Demagnetizing Devices
Tunnel Type Demagnetizers
Conveyor Demagnetizing Devices
Demagnetizing Devices with Low Frequency Conveyor
What else is Demagnetize Used for?
In the shipbuilding sector, demagnetization coils play a crucial role across various applications. This sophisticated system, which de-polarizes the oriented domains within materials, is particularly vital in vessels requiring high-precision technology, such as minesweepers. By neutralizing magnetic signatures, these coils contribute to the stealth and operational effectiveness of sensitive naval equipment.
The medical field places paramount importance on the sterilization of equipment. Every instrument that comes into contact with the human body must undergo rigorous sterilization processes. During the manufacturing of cutting tools like scalpels and needles, it’s essential to remove any microscopic metal particles from their surfaces. Magnetized equipment may harbor invisible metal dust, posing potential risks. Demagnetization serves as a critical step in preventing these metal particles from adhering to surfaces due to magnetic attraction, thereby enhancing the safety and efficacy of medical procedures. This process ensures that medical instruments meet the stringent cleanliness standards required in healthcare settings, ultimately safeguarding patient well-being.