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(8 Types de produit)
Ces rails de guidage linéaire en aluminium sont une forme de palier de mouvement linéaire qui permet un mouvement linéaire précis et exact. Ils sont normalement constitués d'un rail de base, d'un bloc coulissant et d'éléments roulants. Le rail de base est trempé à cœur sur lequel les éléments roulants se déplacent et le bloc coulissant maintient les éléments roulants et est couplé à l'élément mobile.
Ces rails sont utilisés dans les applications requérant une haute précision, un faible frottement et des mouvements lisses. Il peuvent supporter des charges dynamiques tout en tenant compte des impacts, des vibrations et de l'usure.
En général, les chariots seront placés individuellement sur les rails. Pour mettre le chariot sur le rail, l'approcher et le glisser sur le rail. Ils sont couramment utilisés dans les applications à charges lourdes et précises dans l'ensemble de l'industrie, des dispositifs médicaux, des équipements de production de semi-conducteurs et des équipements d'automatisation industrielle.
Dans cette gamme utilisée avec des vis mères, vous trouverez une large gamme d'écrous carrés en fonction de vos besoins : écrous carrés en bronze avec trous de fixation, écrous carrés en laiton, écrous carrés en acier et écrous carrés en acier avec trous de fixation.
These Flanged Aluminium Carriages are a type of linear bearing that is particularly useful for heavy loads in a range of applications where they guide and support linear motion. Their rails are made of contoured aluminium with two hardened stainless steel shafts pressed to act as the runner block balls' raceways.
-The flange design provides both a greater surface area for the moving component to be mounted to, but also the ability to fasten to the moving part from either above or below the carriage.
It works well in harsh conditions or weight critical applications since it is more lightweight and corrosion-resistant than steel ones. It can be used in various applications, including machinery, aerospace, handling technology, machine enclosures, medical, food, etc.
These Flanged Linear bushing Carriages are used in linear motion systems to guide and support moving parts. It comprises of a steel linear bushing inside a flanged aluminium housing providing a great surface area to mount to.
The aluminium housing helps to keep the weight down whilst the hardened steel balls inside the bushing take the loads and facilitate the movement. Only to be used on hardened linear shafts.
The open bearing carriages are only for use with shaft support rails. It can withstand temperatures from 20C to +80C. However, steel ball retainers can be provided for higher temperature applications up to +120C without end seals. Commonly used in applications such as food packaging machines, printing machines, computers, or tool grinders.
These Linear Guide rails are a linear motion-bearing system used to guide and support moving components in a linear direction. Linear guide rails are made up of two major components: a rail and a carriage. The rail is a long, straight beam attached to a permanent surface. The carriage is a moving block that goes along the rail. The carriage comprises bearings that make contact with the rail and offer low-friction linear motion.
These rails are used in applications requiring high accuracy, low friction and smooth movements. It can sustain dynamic loads while accounting for impact, vibration, and fatigue.
In general, the carriages will be delivered to the tracks individually. To put the carriage onto the tracks, bring it up to the rails and slide it onto the rail. It is widely utilised in high-load and accurate applications throughout the industry, including medical devices, semiconductor production equipment, and industrial automation equipment.
These Unflanged Aluminium Carriages are a type of linear bearing that is very effective for heavy loads in various applications where they guide and support linear motion. Their rails are composed of contoured aluminium, with two hardened stainless steel shafts pressed to function as the raceways for the runner block balls.
The unflanged design provides a more compact solution when compared against the flanged carriages but the moving component in the application can only be mounted to the top of the carriage.
Because it is lighter and more corrosion-resistant than steel, it can be used in various applications, including aerospace, machinery, handling technology, machine enclosures, medical, food, etc.
These low-profile unflanged carriages are linear bearings used for heavy-duty and precise linear motion applications. They give precision, stability, and dependability. The four row contact with the mating rail offers the same load capacity capabilities regardless of the load pressing into the carriage or hanging from it.
The unflanged design provides a more compact solution but can only be mounted to from the top. The carriages' ball retainers allow for a quieter operation whilst improving lubrication of the system. It also ensures the balls remain in place should the carriage be removed from the rail in error.
Its low profile provides an even smaller compact solution when compared again the standard unflanged linear carriages. It is used in many applications, including special purpose equipment, automation, material handling systems, medical devices, etc.
These low-profile unflanged carriages are linear bearings used for heavy-duty and precise linear motion applications. They give precision, stability, and dependability. The four row contact with the mating rail offers the same load capacity capabilities regardless of the load pressing into the carriage or hanging from it.
The unflanged design provides a more compact solution but can only be mounted to from the top. The carriages' ball retainers allow for a quieter operation whilst improving lubrication of the system. It also ensures the balls remain in place should the carriage be removed from the rail in error.
The carriages are supplied on dummy blocks which must be offered up to the edge of the rail the carriage is going onto during installation. Slide the carriage from the dummy block onto the rail to ensure no damage can occur. It is used in many applications, including special purpose equipment, automation, material handling systems, medical devices, etc.
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