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康茂盛(Camozzi)气动2025

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康茂盛(Camozzi)是意大利最大的气动元件有限公司,也是世界著名的气动元件厂商之一。其产品广泛应用于轻工、纺织、印染、食品、包装、印刷、橡塑、化工、电子、汽车和机械设备等行业。康茂盛的气动产品主要包括以下几类:
气动执行元件:
气缸:康茂盛的气缸种类丰富,有标准气缸、紧凑型气缸、薄型气缸、导向气缸等。不同类型的气缸适用于不同的工作场景和空间要求。例如,标准气缸适用于一般的直线运动驱动;紧凑型气缸结构紧凑,适用于空间有限的场合;导向气缸则能在运动过程中提供更好的导向精度。
气爪:用于抓取和搬运物体,具有不同的抓取力和手指形状,可满足各种抓取需求。
气动控制元件:
电磁阀:是康茂盛的重要产品之一,可控制气体的通断和流向。有二位五通、三位五通等多种类型,以及单稳式、双稳式等不同的工作方式,适用于不同的气动系统控制要求。
阀岛:将多个电磁阀集成在一起,方便安装和维护,提高了气动系统的集成度和可靠性。
减压阀:用于调节气体的压力,确保气动系统中的压力稳定在合适的范围内。
节流阀:可控制气体的流量,实现对气动执行元件速度的调节。
气源处理装置:包括过滤器、调压阀、油雾器等。过滤器用于去除气体中的杂质和水分,保护气动系统中的其他元件;调压阀可调节气源的压力;油雾器则能为气动元件提供润滑。这些元件通常组合成气源处理三联件或二联件使用。
气动辅助元件:如气管、接头、消音器等。气管用于连接气动元件,传输气体;接头用于连接气管和气动元件,保证气体的密封连接;消音器可降低气动系统工作时产生的噪音。
真空元件:包括真空发生器、真空吸盘等。真空发生器可产生真空,真空吸盘则用于吸附物体,广泛应用于自动化生产线中的物料搬运和抓取。
康茂盛(CAMOZZI)产品型号:
气缸系列:
41 系列:具体型号可能有 41N2A032A0025 等,该系列气缸在众多工业场景中有应用。
60 系列:例如 60N2L040A0125 等,在自动化设备、机械制造等行业较为常见。
61 系列:像 61M2P032A0130EX、61M2P032A0145、61M2P032A0150EX 等,在气动系统中发挥着重要作用。
62 系列:也是康茂盛气缸产品中的一个系列,具体型号因应用场景不同而有所差异。
32 系列:如 32F2A080A020W 等。
45 系列:有 45NHB020A0010、45NHB020A0020 等型号,适用于多种小型设备或特定的气动应用场景。
电磁阀系列:
K8 系列:是康茂盛电磁阀产品中的一个系列,具有特定的性能和应用范围。
K8B 系列:在一些对电磁阀性能有特殊要求的场合可能会使用到该系列产品。
K 系列:例如 K 系列的某个具体型号电磁阀,可用于控制气体或液体的流动。
W 系列:具有独特的设计和性能特点,适用于不同的气动控制系统。
磁性接近开关系列:
CST 系列:可用于检测气缸活塞的位置等信息,为气动系统的控制提供反馈信号。
CSN 系列:在一些特定的设备或系统中,用于磁性接近检测。
CSH 系列:具有较高的可靠性和稳定性,适用于各种工业环境。
减压器系列:
CLR 系列:可对气体压力进行调节和稳定,确保气动系统的正常运行。
M 系列:是康茂盛减压器产品中的一个型号系列。
T 系列:具有不同的压力调节范围和性能特点,满足不同的应用需求。
PR 系列:在一些对压力控制精度要求较高的场合使用。
以上只是康茂盛(CAMOZZI)的部分产品型号,该品牌还有其他众多型号的产品,具体的型号选择需要根据实际的应用需求、工作环境、性能要求等因素来确定。
CAMOZZI 的产品主要分为以下几类:
气动执行元件:
气缸:
标准气缸:例如符合 ISO 标准的气缸,具有较为通用的尺寸和性能,适用于多种常规的气动应用场景。
紧凑型气缸:结构紧凑,占用空间小,适合安装空间有限的场合,如小型机械设备、自动化生产线的狭窄空间部位等。
短行程气缸:行程较短,可快速完成短距离的动作,常用于对行程要求不高但需要快速响应的场合。
特殊气缸:包括具有特殊功能或结构的气缸,如带锁气缸(可在特定位置锁定活塞)、旋转气缸(可实现旋转运动)、导向气缸(具有精确的导向功能,保证活塞运动的准确性)等。
气动阀执行器:用于驱动气动阀门的装置,可根据控制信号实现阀门的开启、关闭或调节动作,常见的有球阀执行器、蝶阀执行器等。
回转执行器:能够将气压能转化为旋转运动的装置,可用于驱动旋转机构或设备,如旋转工作台、旋转门等。
气动控制元件:
电磁阀:通过电磁力控制阀芯的运动,实现气路的通断或切换。根据结构和工作原理可分为直动式电磁阀、分步直动式电磁阀、先导式电磁阀等;按功能可分为普通开关型电磁阀、比例电磁阀等;按材质可分为不锈钢电磁阀、黄铜电磁阀、塑料电磁阀等。
气动逻辑元件:用于实现气动逻辑控制,如与门、或门、非门等逻辑功能,可对气路信号进行逻辑运算和处理,从而控制气动系统的工作。
气动比例阀:能够根据输入的电信号连续地调节气体的流量或压力,实现对气动系统的精确控制,常用于对控制精度要求较高的场合。
气源处理装置:
空气过滤器:用于过滤空气中的杂质、灰尘、水分等污染物,保证进入气动系统的空气清洁,防止对气动元件造成损坏。
减压阀:可将较高的输入压力降低到所需的输出压力,并保持输出压力的稳定,为气动系统提供合适的工作压力。
油雾器:向压缩空气中添加微量的润滑油雾,对气动元件进行润滑,减少摩擦和磨损,延长气动元件的使用寿命。
空气干燥器:去除空气中的水分,防止水分在气动系统中结冰或引起腐蚀等问题,保证气动系统在干燥的环境下工作。
气动辅助元件:
管接头:用于连接气动管路,包括快插管接头、快拧管接头、卡套式管接头等多种类型,确保气路的密封和连接可靠。
气管:输送压缩空气的管道,有不同的材质、直径和耐压等级可供选择,以满足不同的气动系统需求。
密封件:用于气动元件的密封,如 O 型圈、密封圈、密封垫等,保证气动系统的气密性。
消声器:安装在气动元件的排气口处,降低排气噪声,减少噪声污染。
真空元件:
真空吸盘:用于吸附物体,可在真空环境下产生吸附力,广泛应用于自动化搬运、包装、印刷等行业,实现对物体的抓取和搬运。
真空发生器:产生真空的装置,通过压缩空气的流动产生负压,为真空吸盘等真空设备提供真空源。
真空过滤器:用于过滤真空系统中的杂质和污染物,保护真空设备的正常运行。
真空压力开关:用于检测真空系统中的压力变化,当压力达到设定值时发出信号,控制真空系统的工作。

Camozzi is the largest pneumatic components limited company in Italy and also one of the world's renowned manufacturers of pneumatic components. Its products are widely applied in industries such as light industry, textile, printing and dyeing, food, packaging, printing, rubber and plastics, chemical industry, electronics, automotive, and mechanical equipment. The pneumatic products of Camozzi mainly include the following categories:
Pneumatic Actuating Components:
Cylinders: Camozzi offers a rich variety of cylinders, including standard cylinders, compact cylinders, thin cylinders, and guided cylinders. Different types of cylinders are suitable for different working scenarios and space requirements. For example, standard cylinders are suitable for general linear motion driving; compact cylinders have a compact structure and are suitable for occasions with limited space; guided cylinders can provide better guiding accuracy during the movement process.
Pneumatic Grippers: They are used for grasping and handling objects. They have different gripping forces and finger shapes to meet various gripping needs.
Pneumatic Control Components:
Solenoid Valves: One of the important products of Camozzi, which can control the on-off and flow direction of gas. There are various types such as two-position five-way and three-position five-way, as well as different working modes such as single-stable and double-stable, suitable for different control requirements of pneumatic systems.
Valve Islands: Integrate multiple solenoid valves together, facilitating installation and maintenance, and improving the integration and reliability of the pneumatic system.
Pressure Reducing Valves: Used to regulate the pressure of gas, ensuring that the pressure in the pneumatic system remains stable within an appropriate range.
Throttle Valves: Can control the flow rate of gas, realizing the adjustment of the speed of pneumatic actuating components.
Air Source Treatment Devices: Including filters, pressure regulating valves, mist lubricators, etc. The filter is used to remove impurities and moisture in the gas, protecting other components in the pneumatic system; the pressure regulating valve can adjust the pressure of the air source; the mist lubricator can provide lubrication for pneumatic components. These components are usually combined into an air source treatment three-piece unit or two-piece unit for use.
Pneumatic Auxiliary Components: Such as air pipes, connectors, silencers, etc. The air pipes are used to connect pneumatic components and transmit gas; the connectors are used to connect the air pipes and pneumatic components, ensuring a sealed connection of the gas; the silencer can reduce the noise generated when the pneumatic system is working.
Vacuum Components: Including vacuum generators, vacuum suction cups, etc. The vacuum generator can generate a vacuum, and the vacuum suction cup is used to adsorb objects, which are widely applied in material handling and grasping in automated production lines.
CAMOZZI Product Models:
Cylinder Series:
41 Series: Specific models may include 41N2A032A0025, etc. This series of cylinders is applied in many industrial scenarios.
60 Series: For example, 60N2L040A0125, etc., which are relatively common in industries such as automated equipment and machinery manufacturing.
61 Series: Such as 61M2P032A0130EX, 61M2P032A0145, 61M2P032A0150EX, etc., playing an important role in the pneumatic system.
62 Series: Also a series of Camozzi's cylinder products, and the specific models vary according to different application scenarios.
32 Series: Such as 32F2A080A020W, etc.
45 Series: There are models such as 45NHB020A0010, 45NHB020A0020, etc., which are suitable for a variety of small equipment or specific pneumatic application scenarios.
Solenoid Valve Series:
K8 Series: A series of Camozzi's solenoid valve products, with specific performance and application range.
K8B Series: This series of products may be used in some occasions with special requirements for the performance of solenoid valves.
K Series: For example, a specific model of solenoid valve in the K series can be used to control the flow of gas or liquid.
W Series: With unique design and performance characteristics, suitable for different pneumatic control systems.
Magnetic Proximity Switch Series:
CST Series: Can be used to detect information such as the position of the cylinder piston, providing feedback signals for the control of the pneumatic system.
CSN Series: In some specific equipment or systems, it is used for magnetic proximity detection.
CSH Series: With high reliability and stability, suitable for various industrial environments.
Pressure Reducer Series:
CLR Series: Can regulate and stabilize the gas pressure, ensuring the normal operation of the pneumatic system.
M Series: A model series of Camozzi's pressure reducer products.
T Series: With different pressure regulation ranges and performance characteristics, meeting different application needs.
PR Series: Used in some occasions with high requirements for pressure control accuracy.
The above are just some of the product models of CAMOZZI. This brand also has many other product models. The specific model selection needs to be determined according to factors such as actual application requirements, working environment, and performance requirements.
The products of CAMOZZI are mainly divided into the following categories:
Pneumatic Actuating Components:
Cylinders:
Standard Cylinders: For example, cylinders that meet the ISO standard have relatively universal dimensions and performance, and are suitable for a variety of conventional pneumatic application scenarios.
Compact Cylinders: With a compact structure and small space occupation, they are suitable for occasions with limited installation space, such as small mechanical equipment and narrow space parts of automated production lines.
Short-Stroke Cylinders: With a short stroke, they can quickly complete short-distance actions and are often used in occasions where the stroke requirement is not high but a quick response is needed.
Special Cylinders: Including cylinders with special functions or structures, such as locking cylinders (which can lock the piston at a specific position), rotary cylinders (which can achieve rotary motion), guided cylinders (which have an accurate guiding function to ensure the accuracy of the piston movement), etc.
Pneumatic Valve Actuators: Devices used to drive pneumatic valves, which can realize the opening, closing or adjusting actions of the valves according to the control signals. Common ones include ball valve actuators and butterfly valve actuators.
Rotary Actuators: Devices that can convert the energy of compressed air into rotary motion, which can be used to drive rotary mechanisms or equipment, such as rotary worktables and revolving doors.
Pneumatic Control Components:
Solenoid Valves: Control the movement of the valve core through electromagnetic force to realize the on-off or switching of the air circuit. According to the structure and working principle, they can be divided into direct-acting solenoid valves, step-by-step direct-acting solenoid valves, pilot-operated solenoid valves, etc.; according to the function, they can be divided into ordinary on-off solenoid valves, proportional solenoid valves, etc.; according to the material, they can be divided into stainless steel solenoid valves, brass solenoid valves, plastic solenoid valves, etc.
Pneumatic Logic Components: Used to realize pneumatic logic control, such as logic functions like AND gates, OR gates, and NOT gates, which can perform logical operations and processing on the air circuit signals, thereby controlling the operation of the pneumatic system.
Pneumatic Proportional Valves: Can continuously adjust the flow rate or pressure of the gas according to the input electrical signal, realizing precise control of the pneumatic system, and are often used in occasions with high requirements for control accuracy.
Air Source Treatment Devices:
Air Filters: Used to filter out impurities, dust, moisture and other pollutants in the air, ensuring that the air entering the pneumatic system is clean and preventing damage to the pneumatic components.
Pressure Reducing Valves: Can reduce the higher input pressure to the required output pressure and maintain the stability of the output pressure, providing a suitable working pressure for the pneumatic system.
Mist Lubricators: Add a small amount of lubricating oil mist to the compressed air to lubricate the pneumatic components, reduce friction and wear, and extend the service life of the pneumatic components.
Air Dryers: Remove the moisture in the air to prevent problems such as ice formation or corrosion in the pneumatic system caused by moisture, and ensure that the pneumatic system works in a dry environment.
Pneumatic Auxiliary Components:
Pipe Connectors: Used to connect pneumatic pipelines, including various types such as quick-connect pipe connectors, quick-release pipe connectors, and compression fittings, ensuring the sealing and reliable connection of the air circuit.
Air Pipes: Pipes for transporting compressed air, with different materials, diameters and pressure resistance ratings available for selection to meet the needs of different pneumatic systems.
Sealing Parts: Used for the sealing of pneumatic components, such as O-rings, sealing rings, gaskets, etc., to ensure the airtightness of the pneumatic system.
Silencers: Installed at the exhaust port of the pneumatic components to reduce the exhaust noise and reduce noise pollution.
Vacuum Components:
Vacuum Suction Cups: Used to adsorb objects, which can generate an adsorption force in a vacuum environment and are widely applied in industries such as automated handling, packaging, and printing to realize the grasping and handling of objects.
Vacuum Generators: Devices that generate a vacuum, which generate a negative pressure through the flow of compressed air and provide a vacuum source for vacuum devices such as vacuum suction cups.
Vacuum Filters: Used to filter out impurities and pollutants in the vacuum system to protect the normal operation of the vacuum equipment.
Vacuum Pressure Switches: Used to detect the pressure changes in the vacuum system, and send a signal when the pressure reaches the set value to control the operation of the vacuum system.

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