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RSDQA50-30DL 日本SMC止动气缸的原理-SMC锁紧气缸

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日本SMC止动气缸的原理-SMC锁紧气缸
日本SMC止动气缸体有足够的使用寿命。气缸体上部是并列的气缸筒,目前多镶有气缸套。气缸体的下部是曲轴箱,用来安装曲轴,其外部还可安装发电机、发动机支架等各种附件。气缸体大多用铸铁或铝合金铸造而成,铝合金缸体成本较高,但重量轻、冷却性能好,得到越来越广泛的应用。机体是构成发动机的骨架,是发动机各机构和各系统的安装基础,其内、外安装着发动机的所有主要零件和附件,承受各种载荷。因此,机体必须要有足够的强度和刚度。机体组主要由气缸体、曲轴箱、气缸盖和气缸垫等零件组成。SMC 止动汽缸 RSDG40-25DEX866
日本SMC止动气缸的原理-SMC锁紧气缸
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日本SMC止动气缸的原理-SMC锁紧气缸
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SMC 止动汽缸 RSDQA50-30DL
日本SMC止动气缸相组合形成的气-液阻尼缸、气-液增压缸等。众所周知,通常气缸采用的工作介质是压缩空气,其特点是动作快,但速度不易控制,当载荷变化较大时,容易产生“爬行”或“自走”现象;而液压缸采用的工作介质是通常认为不可压缩的液压油,其特点是动作不如气缸快,但速度易于控制,当载荷变化较大时,采用措施得当,一般不会产生“爬行”和“自走”现象。把气缸与液压缸巧妙组合起来,取长补短,即成为气动系统中普遍采用的气-液阻尼缸。
气-液阻尼缸工作原理。实际是气缸与液压缸串联而成,两活塞固定在同一活塞杆上。液压缸不用泵供油,只要充满油即可,其进出口间装有液压单向阀、节流阀及补油杯。当气缸右端供气时,气缸克服载荷带动液压缸活塞向左运动(气缸左端排气),此时液压缸左端排油,单向阀关闭,油只能通过节流阀流入液压缸右腔及油杯内,这时若将节流阀阀口开大,则液压缸左腔排油通畅,两活塞运动速度就快,反之,若将节流阀阀口关小,液压缸左腔排油受阻,两活塞运动速度会减慢。这样,调节节流阀开口大小,就能控制活塞的运动速度。
日本SMC止动气缸的原理-SMC锁紧气缸
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