Collection: Nem mágneses csavarok, anyák, csavarok, alátétek és rögzítőelemek

What Are Non-Magnetic Fasteners?

Non-magnetic polymer screws, nuts, bolts, and flat washers are fasteners that are made from polymers that have a low magnetic susceptibility. They are used in a variety of applications where magnetic fields are a concern, such as in the medical, military, and aerospace industries, or in environments where magnetic materials are not desired.

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Why are non-magnetic fasteners needed?

Non-magnetic polymer fasteners are needed in applications where the presence of magnetic materials could interfere with sensitive equipment or processes. In industries like medical imaging (such as MRI machines), aerospace, and electronics, non-magnetic fasteners prevent magnetic fields from disrupting the operation of critical devices. They are also essential in military and defense applications, where magnetic signatures must be minimized for stealth purposes. Additionally, non-magnetic fasteners are used in scientific instruments, data storage, and telecommunications equipment to ensure accurate measurements and reliable performance, as magnetic interference can cause data corruption or operational failures.

Non-Magnetic Fastener Materials

There are a variety of non-magnetic polymers that can be used to make screws, nuts, bolts, washers, and fasteners due to their low magnetic susceptibility, which makes them suitable for use in applications where magnetic fields are a concern.

All fasteners provided by HPP are non-magnetic complaint, however, below outlines our key non-magnetic polymer fastener materials:

Polyetheretherketone (PEEK): PEEK is a type of polymer that is made from monomers called ketones. It is a non-magnetic material that is known for its excellent mechanical and thermal properties, as well as its chemical resistance and good electrical insulation properties.

Polyphenylene sulfide (PPS): PPS is a type of polymer that is made from monomers called phenylenes and sulfides. It is a non-magnetic material that is known for its excellent thermal stability and high temperature resistance, as well as its good chemical resistance and electrical insulation properties.

Polytetrafluoroethylene (PTFE): PTFE is a type of polymer that is made from monomers called tetrafluoroethylenes. It is a non-magnetic material that is known for its excellent chemical resistance, low coefficient of friction, and high temperature resistance.

Polyvinyl chloride (PVC): PVC is a type of polymer that is made from monomers called vinyl chlorides. It is a non-magnetic material that is known for its good chemical resistance, low cost, and versatility.

Polycarbonate: Polycarbonate is a type of polymer that is made from monomers called carbonates. It is a non-magnetic material that is known for its excellent mechanical properties, high temperature resistance, and good electrical insulation properties.

Non-Magnetic Fastener Applications

Non-magnetic polymer screws, nuts, bolts, washers, and fasteners may be used in a variety of applications where magnetic fields are a concern, such as in the construction of medical equipment or in the assembly of electronic components. They may also be used in the manufacture of non-magnetic materials or in the installation of electrical systems.

In addition to their use in the medical, military, and aerospace industries, non-magnetic polymer fasteners may also be used in other applications where magnetic fields are a concern, such as in the construction of magnetic resonance imaging (MRI) machines or in the operation of military equipment. They may also be used in environments where magnetic materials are not desired, such as in the assembly of scientific instruments or in the transportation of sensitive materials.

What makes these polymers non-magnetic?

Polymer fasteners are non-magnetic because they are made from organic compounds that lack the free electrons and metallic elements required to generate a magnetic field. Unlike metals, which contain atoms with unpaired electrons that can align and create magnetism, polymers are composed of long chains of non-metallic elements such as carbon, hydrogen, oxygen, and nitrogen. These elements do not interact with magnetic fields, making the material inherently non-magnetic. Additionally, the manufacturing process avoids the use of metallic additives or fillers that could introduce magnetic properties, ensuring that the fasteners remain non-magnetic. This makes polymer fasteners ideal for applications where magnetic interference must be avoided.

What are the benefits of non-magnetic fasteners?

Non-magnetic polymer fasteners offer several benefits, including the elimination of magnetic interference, making them ideal for sensitive equipment like MRI machines, aerospace systems, and scientific instruments. They are corrosion-resistant, durable in harsh environments, and lightweight, which is beneficial for reducing system weight in industries like aerospace and automotive. Additionally, these fasteners provide electrical insulation and resist chemicals, ensuring long-term performance in industrial, chemical, and outdoor applications. Their combination of non-magnetic properties, durability, and versatility makes them valuable in environments requiring both reliability and magnetic neutrality.

Other Benefits Of Non-Magnetic Fasteners

Other beneficial properties of non-magnetic fasteners include; corrosion resistance and good mechanical properties. They can help to improve the safety and reliability of medical and electronic systems, and they can help to prevent interference from magnetic fields.

A nem mágneses polimer csavarok, anyák, csavarok, alátétek és kötőelemek olyan kötőelemek, amelyek alacsony mágneses érzékenységű polimerekből készülnek. Ezeket számos olyan alkalmazásban használják, ahol a mágneses mezők aggodalomra adnak okot, például az orvosi, katonai és űrkutatási iparban, vagy olyan környezetben, ahol a mágneses anyagok nem kívánatosak.

Számos nem mágneses polimer létezik, amelyekből csavarok, anyák, csavarok, alátétek és kötőelemek készíthetők, például polietilén, polipropilén és politetrafluoretilén (PTFE). Ezek a polimerek alacsony mágneses érzékenységükről ismertek, ami alkalmassá teszi őket olyan alkalmazásokban való felhasználásra, ahol a mágneses mezők aggodalomra adnak okot.

A nem mágneses polimer csavarok, anyák, csavarok, alátétek és kötőelemek számos olyan alkalmazásban használhatók, ahol a mágneses mezők aggodalomra adnak okot, például orvosi berendezések gyártásánál vagy elektronikus alkatrészek összeszerelésénél. Használhatók nem mágneses anyagok gyártásánál vagy elektromos rendszerek telepítésénél is.

A nem mágneses polimer kötőelemeket gyakran alacsony mágneses érzékenységük, valamint egyéb előnyös tulajdonságaik, például korrózióállóságuk és jó mechanikai tulajdonságaik miatt választják. Segíthetnek az orvosi és elektronikus rendszerek biztonságának és megbízhatóságának javításában, és segíthetnek a mágneses mezők okozta interferenciák megelőzésében.

A nem mágneses polimer kötőelemek az orvosi, katonai és repülőgépiparban való alkalmazásukon kívül más olyan alkalmazásokban is felhasználhatók, ahol a mágneses mezők aggodalomra adnak okot, például a mágneses rezonancia képalkotó (MRI) gépek építésénél vagy a katonai berendezések működtetésénél. Használhatók olyan környezetben is, ahol a mágneses anyagok nem kívánatosak, például tudományos műszerek összeszerelésénél vagy érzékeny anyagok szállításánál.