用于避让产品干涉的真空拧紧技术
SEV固定式真空拧紧系统,在难以接近的位置上利用真空技术可靠地完成拧紧工艺过程。封闭式结构设计和耐磨表面即便在无油的干运转作业中,也能确保超长的使用寿命并延长维护间隔。SEV可选配气动马达和EC 电机。
SEV固定式真空拧紧系统,在难以接近的位置上利用真空技术可靠地完成拧紧工艺过程。封闭式结构设计和耐磨表面即便在无油的干运转作业中,也能确保超长的使用寿命并延长维护间隔。SEV可选配气动马达和EC 电机。
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More InformationSEV固定式自动拧紧系统,开放式驱动设计可集成客户方提供的驱动器。因此,SEV可方便地集成至客户带驱动器和控制器的现有装配线上,以后可随时改装至全WEBER 部件。

| 系列 | 03 | 10 | 30 | 60 | 120 |
|---|---|---|---|---|---|
| 扭矩范围 [Nm] | 0,3 – 3 | 1 – 10 | 3 – 30 | 6 – 60 | 12 – 120 |
| 最大转速 [rpm] | 2.500 | 2.500 | 1.500 | 1.500 | 300 |
| 螺栓头直径 [mm] | 6,5 – 11 | 6,5 – 13 | 9- 24 | 9 – 24 | 9 – 24 |
| 重量* [kg] | 最少 5 | 最少 7 | 最少 9 | 最少 11 | 约 16 |
| 旋具头行程 (内部) [mm] | 70 | 90 | 120 | 190 | 90 | 120 | 160 | 240 | 120 | 160 | 200 | 120 | 160 | 200 | 160 | 200 |
| 旋具头轴向力 (1 | 3 | 6 bar) [N] | 30 | 90 | 180 | 45 | 135 | 270 | 70 | 210 | 420 | 70 | 210 | 420 | 160 | 480 | 960 70 | 210 | 420** |
| 取决于头部直径的最大超 程 [mm] | 11 -18 | 7,4 – 38 | 24,4 – 68 | 89 – 126 | 4,5 – 33,3 | 2,3 – 63,3 | 42,3 – 103,3 | 89 – 126,4 | 2,5 – 42,2 | 42,5 – 82,2 | 42,3 – 84 | 2,5 – 42,2 | 42,5 – 82,2 | 42,3 – 84 | 2,5 – 42,2 | 42,5 – 82,2 | 42,3 – 84 |
| 工具支架 | 3/16″ | 1/4″ | 5/16″ | 7/16″ | 7/16″ |
| – | |||||
| * 采用直接驱动装置和标准旋入组件 | |||||
| **LAF 低轴向力设计 | 如有技术性变更,恕不另行通知。 |
您可以在这里找到有关公司及其产品的更多信息。了解 WEBER Schraubautomaten GmbH 和装配线自动化世界。
WEBER 拧紧自动化有限公司是家族型创新型企业,秉持着价值链的可持续发展理念,创造出具有最高工艺可靠性的高品质产品,让生产流程更加高效。您的成功即我们的成就!

Automated pick and place solutions for efficient disassembly
Disassembly has become one of the biggest challenges for modern manufacturing. As products become more complex and regulations like the Extended Producer Responsibility (EPR) regulation push circular design, manual disassembly methods can´t keep up. Increasing part diversity, stricter safety standards, and rising costs make efficient disassembly solutions more important and difficult than ever.
The webinar provides valuable insights into:
✅ The key challenges of modern disassembly
✅ How smart pick-and-place systems enable automated disassembly
✅ Application examples for smart handling technologies
Learn advanced detection strategies to achieve the ideal clamp load and provide a stronger basis for traceability and in-line quality assurance.
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