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无软带感应淬火

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发表于 2013-4-10 20:20:15 | 显示全部楼层 |阅读模式
New Techniques for Scan Hardening with No Soft Zone
With its residual soft zone, traditional scan hardening is inadequate for mission-critical components with stringent requirements for smoothness and heavy loads such as:
  • Ultra-low vibration systems (e.g., magnetic-resonance imaging, MRI, technology)
  • High mechanical-stress systems (e.g., tunnel-drilling machines)
  • Systems where continuous rotation is required or where challenging environmental conditions mandate maintenance-free systems with high lifetime (e.g., wind turbines, tidal plants and oil platforms)
      Carburizing is limited as a process alternative by furnace size and long process times. Single-shot induction hardening is impractical due to its high power requirement. A better hardening method is needed to efficiently and reliably harden very large, high-value rings. In response to this need, a process to scan harden arbitrarily large rings with no remaining soft zone has been developed and patented.[1] This process differs from conventional scan hardening primarily at the start and end location of the scan, where steps are taken to avoid unwanted tempering and changes in the hardened-zone microstructure.

    Comparing this process to single-shot induction hardening, a 6-meter-diameter ring can be processed with a 200-kW scanning system, which is 1/8th the power the single-shot process would require. In contrast to carburizing, which would require several hundred hours in the furnace, the time required for the induction scan-hardening process (less than two hours) is negligible. Moreover, the cost-intensive and time-consuming straightening operation to clean up the distortion caused by carburizing can be avoided altogether.

    Scan hardening and tooth hardening on both the inside and outside diameters of the workpiece can be done on the same induction machine with minimal setup times. Manufacturers of large ring bearings with small production runs appreciate this flexibility and the freedom to process diverse workpieces while holding equipment costs at a minimum.


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Fig. 6. Inductor movement and spray setup during the end sequence of induction hardening
Characteristics of Induction Scan Hardening with no Soft ZoneScan hardening with no soft zone requires two inductor assembles, each comprised of an inductor and a spray head. The inductors are narrow to create a compact hardening zone. Flux concentrators focus the magnetic field for one-sided hardening.

Start Sequence
The inductor assemblies are brought together in a back-to-back orientation and are then energized with independent power supplies. Both assemblies travel side-by-side in the same direction for a short distance. One of the assemblies reverses directions, so the inductor assemblies travel in opposite direction. This technique avoids the formation of a soft zone at the start location (Fig. 4).

    Figure 5 depicts the hardening result with the etched case and with two hardening passes along the workpiece axis at 0.5 mm and 5 mm depths after tempering. The start location is still recognizable, and one can see that the entire area has been hardened with a relatively constant case depth.

End Sequence
Like the start sequence, the end sequence relies on precise control of the quenching sprays and the tight motion control of the inductors and sprays to achieve a uniform case depth with no soft zone at the end location (Figs. 6 and 7). The resulting bearing surface meets stringent requirements

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发表于 2013-4-10 20:22:33 | 显示全部楼层
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 楼主| 发表于 2013-4-10 20:32:14 | 显示全部楼层
搬运工 发表于 2013-4-10 20:22
龟山先生好!
这些资料你都有电子版的?

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哈哈,基本不做表面淬火了!  发表于 2013-4-10 20:36
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发表于 2013-4-11 10:09:13 | 显示全部楼层
新技术扫描淬火没有软ZoneWith其残余软区,传统扫描淬火是不适用于关键任务组件与严格的要求平滑和高负载如:超低振动系统(如。、核磁共振成像、核磁共振、技术)高机械应力系统(如。、隧道钻孔机)系统在连续旋转是必需的或具有挑战性的环境条件要求不需维护的系统具有高寿命(如。,风力涡轮机,潮汐植物和石油平台)渗碳是作为一个过程的有限选择大小和漫长的过程次炉。单发感应淬火是不切实际的由于其高功率的要求。一个更好的淬火方法是需要有效和可靠涨停非常大的、高价值的戒指。在应对这种需求,一个过程扫描强化任意大的戒指没有剩余的软区已研发并申请专利。[1]这一过程有别于常规扫描淬火主要在开始和结束位置的扫描,我们采取措施避免不必要的回火和改变硬化区微观结构。这个过程比较单发感应淬火,6米直径环可以加工200千瓦扫描系统,这是1/8th的发电过程需要单。与渗碳,这将需要数百小时的炉,需要的时间感应扫描淬火过程(不到两小时)可以忽略不计。此外,成本集约和耗时的矫直操作清理造成的扭曲渗碳都可以避免。扫描淬火和齿淬火两内外直径的工件可以做在同一个感应机最小设置倍。大环轴承制造商与小生产运行欣赏这种灵活性和自由过程不同工件而持有设备成本最低。放大图像
图6。电感器运动和喷雾设置在端序列的感应hardeningCharacteristics感应扫描淬火没有软ZoneScan硬化没有软区需要两个电感器组装,每层都由一个电感器及一个喷头。电感器是狭窄的创建一个紧凑的硬化区。通量集中器聚焦磁场对片面的硬化。开始SequenceThe感应器组件聚集在一个连续的取向,然后激发独立电源。两个组件在同一方向并排旅行很短的距离。一个集会的逆转方向,所以电感器总成旅行在相反的方向。这种技术避免形成软带在开始位置(图4)。图5描述了硬化结果与蚀刻案例和和两个硬化通过沿工件轴在0.5毫米和5毫米深度回火后。开始位置仍可辨认的,你能看到整个地区已硬化与一个相对恒定情况下深度。SequenceLike结束开始序列,最终序列依赖于精确地控制淬火喷雾剂和紧身运动控制的电感和喷雾来实现一个统一的表面深度没有软区最后位置(无花果。6和7)。由此产生的轴承表面符合严格的要求

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发表于 2013-6-14 11:34:27 | 显示全部楼层
关于这个话题我不想说太多,国外设备太贵。而国内做不好。
       还没听说国内那家买过无软带设备。

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发表于 2013-6-14 12:01:54 | 显示全部楼层


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