Festo 抓取系统:应用广、经济、完美匹配且始终确保高生产率

完美匹配、经济、动态、灵活:从用于常规应用场合的常规解决方案到针对特定要求的定制化解决方案,Festo 应用广泛的抓取系统产品线将为客户搭建完备的系统。

我们提供的即可安装的系统、软件和服务帮助您缩短工程设计时间,精简工作。我们从从设计、安装到调试都会为您提供支持。让您完全专注于自己的核心业务,提高生产效率。

Festo – 为您构建新抓取系统的专业合作伙伴

搬运系统和工业机器人

借助搬运系统和工业机器人,可在很大程度上实现工件搬运自动化,例如抓取、定位、堆放、分组或分度。因此,搬运系统能够确保顺利、高效地在完全自动化过程中完成物料运输。通过投资搬运系统,制造公司可以节约成本,显著提高生产力。自动化技术同机器人技术和搬运密切相关,它涵盖了搬运工件所需的编程和控制过程。Festo 是全球自动化领域的领导企业:从项目规划到生产,再到集成,我们会用我们的专业诀窍伴随客户实施整个过程。

Festo 搬运系统和机器人

我们为装配和搬运领域的各种应用提供搬运系统:从自动化技术领域常见应用的标准解决方案,到满足您具体要求的个性化解决方案,应有尽有。在生产中,除了整个设备的数字互联,自学系统和基于机器人的自动化解决方案也日益发挥着决定性的作用。因此,我们的产品范围包括气动搬运系统和相应的控制系统,以及笛卡尔机器人三角运动机器人

气动搬运系统

我们的气动系统是即买即装的搬运模块,用于在狭窄空间内搬移、送入和移除小零件。这种运动在滑槽中被强制引导,循环时间非常短。根据搬运系统而定,执行的运动为 C 型或 L 型。这些运动可在 Y 和 Z 方向最大 40 mm 的范围内变化。搬运模块设计可用于与电驱、气伺服或气动驱动器搭配运行。此外,我们还可为您提供带加装驱动器的预装模块。由于配有工件的接口,因此可适应不同类型的 Festo 抓手。

抓取模块

笛卡尔机器人

即买即装型笛卡尔机器人是基于 Festo 线性和滑动驱动器或平行运动学技术,可实现多维运动。从紧凑型、坚固耐用型,到高动态型的搬运系统,每一种应用都有合适的解决方案。这些搬运系统配有线性面型空间门架,因此可实现从线性区域到三维空间的自由定位。通过适配的步进和伺服电机、电机控制器和集成的能源供应方案,组成了可靠的即买即装型解决方案。在创新的工程设计和配置软件解决方案的支持下,您可在线设计搬运系统,并根据您的应用数据在短短几分钟内有效地完成调试。

笛卡尔系统

Parallel kinematic system robots

Our delta robots with parallel kinematics are also ready-to-install systems. They are used for freely positioning parts in three-dimensional workspaces. The industrial robots provide excellent precision in movement and positioning as well as exceptionally high dynamic response. The kinematics are based on a parallel kinematic drive concept with three fixed motors that are mounted on a pyramid-shaped mechanical structure consisting of linear axes and carbon fibre-reinforced rods. The highly rigid mechanical design and low moving mass make the parallel kinematic system up to three times faster than comparable Cartesian systems. The robot is suspended from the top of the structure so that access to and usage of the workspace can be maximised, while also contributing to a reduction of the overall footprint.

Parallel kinematic system, tripod EXPT

Control technology

We offer control systems that are suitable for handling systems and robots all from a single source, and that are tested and ready to connect. They can significantly reduce commissioning and integration costs, regardless of whether they are systems for simple control tasks or complex controllers for highly dynamic movements. The Festo control systems with their user-friendly and maintenance-friendly design complete the ready-to-connect solution packages for all handling systems. Safety-related electric components and control technology from Festo provide you with the security that safety measures are implemented in compliance with the Machinery Directive.

Robotic control systems

Accessories for handling technology

Our accessories for handling systems and industrial robots are comprehensive. In addition to front units, adapter plates, profile columns, support profiles and adjustment units, we offer basic components, adapters, multi-axis components and drive-specific accessories for our handling units.

Accessories for handling modules

FAQ about handling systems and robots

What are handling systems?

Handling systems are all devices that move an object towards a specific position and rotate it until it is in the correct position. They carry out functions similar to those of the human hand and have visual perception. Handling systems are therefore used for precise workpiece and tool positioning and are intended to relieve people of monotonous and physically heavy work. Handling technology replaces hands with tools, grippers, levers, holders and the like.

Handling technology plays an important part in manufacturing and assembly tasks, and its application is distinctly different from other applications. Handling is about more than just transporting a workpiece; it's about automatically moving or manipulating it. For example, when a workpiece needs to be turned, tilted or positioned.

Where are handling systems used?

Nowadays many manufacturing companies are forced to further optimise and automate their production processes because of growing competitive pressures and the ever increasing trend to automate production processes. That is why handling systems are used since they reduce error rates and increase production speed and efficiency. This primarily affects sectors such as machine building and the automotive industry, but also medical technology, the pharmaceutical industry and the electronics industry. The keys to greater efficiency, profitability, competitiveness and especially higher profits are maximum utilisation of machine running times, reduction of error rates and minimisation of unproductive downtime.