High-rigidity LM Guide×高津伝動精機 - List of Manufacturers, Suppliers, Companies and Products

High-rigidity LM Guide Product List

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Super high rigidity LM guide 'SRN' with roller retainer: THK

This is an LM guide with ball retainers, optimized for ultra-heavy loads and high rigidity, suitable for machine tools.

The adoption of roller retainers enables low friction and smooth operation, achieving long-term maintenance-free performance. 【Ultra High Rigidity】 By using high-rigidity rollers for the rolling elements and ensuring that the total length of the rollers is more than 1.5 times the roller diameter, even higher rigidity is achieved. 【Four-Way Equal Load】 The roller rows are arranged at a contact angle of 45 degrees to ensure that the same rated load acts in four directions (radial, reverse radial, and lateral) on the LM block, providing high rigidity in all directions. 【Smooth Operation Preventing Skew】 The roller retainer ensures that the rollers are uniformly aligned and circulate, preventing skew (tipping) of the rollers when entering the block load area, resulting in small fluctuations in rolling resistance and stable, smooth operation. 【Long-Term Maintenance-Free】 The roller retainer eliminates mutual friction between rollers and improves grease retention, achieving long-term maintenance-free performance. 【Thin and Low Center of Gravity】 The total height has been reduced for the LM guide SRG type with roller retainers, making it ideal for compact designs.

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Ultra-low waving ultra-high rigidity LM guide 'SPR/SPS': THK

New realm of LM guides. Achieved ultra-low waviness and ultra-high rigidity that surpass conventional LM guides.

The SPR/SPS shape has a waviness value of about 1/10 compared to conventional general LM guides (100-300nm). To achieve ultra-low waviness and ultra-high rigidity that surpass conventional LM guides, it employs eight rolling grooves, small diameter balls, and ultra-long blocks. With a significant increase in the number of effective balls, the amplitude caused by the entry and exit of the balls is minimized, achieving ultra-low waviness comparable to static pressure guidance. At the same time, the deformation of the balls is minimized, achieving ultra-high rigidity that surpasses roller guides. This contributes to the high precision of the equipment.

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