WO2019052548A1 - 开关装置和相关联的开关 - Google Patents

开关装置和相关联的开关 Download PDF

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Publication number
WO2019052548A1
WO2019052548A1 PCT/CN2018/105825 CN2018105825W WO2019052548A1 WO 2019052548 A1 WO2019052548 A1 WO 2019052548A1 CN 2018105825 W CN2018105825 W CN 2018105825W WO 2019052548 A1 WO2019052548 A1 WO 2019052548A1
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WO
WIPO (PCT)
Prior art keywords
mode button
signal generator
lever
switch
switching device
Prior art date
Application number
PCT/CN2018/105825
Other languages
English (en)
French (fr)
Inventor
林泽明
郭恒杰
苏塔里南·阿基
Original Assignee
Abb 有限公司
林泽明
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Abb 有限公司, 林泽明 filed Critical Abb 有限公司
Priority to EP18856588.1A priority Critical patent/EP3683818B1/en
Publication of WO2019052548A1 publication Critical patent/WO2019052548A1/zh
Priority to US16/820,089 priority patent/US11164705B2/en

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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/20Interlocking, locking, or latching mechanisms
    • H01H9/26Interlocking, locking, or latching mechanisms for interlocking two or more switches
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/20Interlocking, locking, or latching mechanisms
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/20Interlocking, locking, or latching mechanisms
    • H01H9/28Interlocking, locking, or latching mechanisms for locking switch parts by a key or equivalent removable member
    • H01H9/286Interlocking, locking, or latching mechanisms for locking switch parts by a key or equivalent removable member making use of a removable locking part acting directly on the operating part
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/54Circuit arrangements not adapted to a particular application of the switching device and for which no provision exists elsewhere
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H3/00Mechanisms for operating contacts
    • H01H3/22Power arrangements internal to the switch for operating the driving mechanism
    • H01H3/227Interlocked hand- and power-operating mechanisms
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/20Interlocking, locking, or latching mechanisms
    • H01H9/28Interlocking, locking, or latching mechanisms for locking switch parts by a key or equivalent removable member
    • H01H9/281Interlocking, locking, or latching mechanisms for locking switch parts by a key or equivalent removable member making use of a padlock
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H9/00Details of switching devices, not covered by groups H01H1/00 - H01H7/00
    • H01H9/20Interlocking, locking, or latching mechanisms
    • H01H9/28Interlocking, locking, or latching mechanisms for locking switch parts by a key or equivalent removable member
    • H01H9/287Interlocking, locking, or latching mechanisms for locking switch parts by a key or equivalent removable member wherein the operating part is made inaccessible or more difficult to access by a lid, cover or guard, e.g. lockable covers

Definitions

  • Various embodiments of the present disclosure are directed to a switching device and a switch associated therewith.
  • the automatic changeover switch provides different operating modes, including electric (or automatic) operating mode and manual operating mode.
  • electric (or automatic) operating mode provides different operating modes, including electric (or automatic) operating mode and manual operating mode.
  • misoperations between different modes of operation may occur, resulting in a safety incident. Therefore, it is desirable to provide a locking mechanism to disable electrical operation in the manual mode of operation of the switch.
  • a service mode also referred to as a padlock mode
  • a first aspect of the present disclosure provides a switch device for a switch, comprising: a handle including a first slot; a mode button operable to change an operation mode of the switch, the mode button including a second slot; a slider, and The mode button is coupled and movable in a first direction in association with movement of the mode button, the slider including a first block; the lever operatively rotatably opening and including a pin, wherein when the mode button is set In the service position, the first block is received in the first slot to hold the handle; and in response to the lever being rotated open, the pin is operable to pass through the second slot to prevent movement of the mode button.
  • the handle when the switch is operated in service mode, the handle can be locked in place so that the operator cannot pull it out.
  • the mode button can also be locked in place so that the operator can no longer move it to another location.
  • the switching device further includes: a first signal generator; and a second signal generator, wherein the lever further includes a cam, and the slider further includes a second block, wherein the cam is responsive to the pin passing through the second slot Operating to press the first signal generator to trigger the first signal generator, and the second block is operable to press the second switch to trigger the second signal generator, and the triggered first signal generator and the triggered second signal
  • the generator indicates that the mode button is set at the service location. In this way, electrical operation will be safely prohibited.
  • the switching device further includes a torsion spring coupled to the lever and configured to apply a torsional force to the lever to resist opening of the lever, wherein the lever further includes at least one aperture configured to receive the padlock to facilitate retaining the lever In its open state. In this way, when the lever is released, the lever can automatically spring back to the folded state.
  • the switching device further includes: a rod disposed against the handle in the second direction; and a first spring coupled to the rod and operable to apply an elastic force to the rod in the positive second direction, wherein When the button is set in the manual position, the first block is configured to be released from the first slot to enable the lever to push the handle away from the frame of the switch device by the applied spring force.
  • the combination of the rod and the compression spring and the fit between the slot and the first block enables a way to easily and cost effectively lock and release the handle.
  • the switching device further includes a second spring disposed in the first direction, one end of the second spring coupled to the mode button and the other end coupled to the frame, wherein when the mode button is set in the manual position, The two springs are configured to apply an elastic force to the mode button in a negative first direction.
  • the cam when the mode button is set in the automatic position, the cam is configured to release the first signal generator, and the second block is configured to release the second switch, and the untriggered first signal generator and The triggered second signal generator is configured to indicate that the mode button is set at the automatic position. In this way, electrical operation is enabled.
  • a second aspect of the present disclosure provides a switch comprising the switching device according to the first aspect of the present disclosure.
  • FIG. 1A is a perspective view of a switch including a switching device in accordance with an embodiment of the present disclosure
  • FIG. 1B is a perspective view of a switching device in an automatic mode, in accordance with an embodiment of the present disclosure
  • Figure 2 shows a partial view of the switch of Figure 1A with three modes of operation
  • 3A-3C illustrate different views of a switch device in a service mode in accordance with an embodiment of the present disclosure
  • FIGS. 4A-4C illustrate different views of a switching device in a manual mode, in accordance with an embodiment of the present disclosure
  • FIG. 5A shows a cross-sectional view of a switching device in a manual mode in accordance with an embodiment of the present disclosure
  • FIG. 5B illustrates a cross-sectional view of a switching device in a service mode, in accordance with an embodiment of the present disclosure.
  • FIG. 1A is a perspective view of a switch including a switching device in accordance with various embodiments of the present disclosure.
  • the apparatus generally includes a mode button 2 and a lever 3 surrounded by a frame 1 from an operational point of view.
  • the mode button 2 can receive an operation of the user to change/switch the operation of the switch between various modes of operation.
  • the lever 3 is particularly used in the service mode and is operable to open in a rotational manner.
  • the device also includes a handle 11 that operates only in the manual mode.
  • the mode button 2 is arranged on the top of the lever 3, and the handle 11 is in the form of a strip extending in the longitudinal direction and arranged adjacent to the mode button 2 and the lever 3.
  • the handle 11 is housed within the housing of the switch such that it is substantially coplanar with the frame 1.
  • the lever 3 is folded/retracted (not pulled out) within the housing such that the lever 3 and the frame 1 are also substantially coplanar.
  • Figure 1B shows the internal structure of the device as shown in Figure 1A.
  • the handle 11 includes a first slot 11 1 at its top
  • the mode button 2 includes a second slot 2 1 at its lower portion (as shown in Figure 4C)
  • the lever 3 includes a pin 3 1 .
  • the apparatus further includes a slider 12 having a first block 12 1 on top.
  • the slider 12 is coupled to the mode button 2 and is movable in the first direction Y in association with the movement of the mode button 2.
  • the slider 12 is rigidly coupled to the mode button 2 and is always co-moving with the mode button 2.
  • the first direction Y is defined as a vertical direction.
  • the switches according to various embodiments of the present disclosure provide three different modes of operation for different applications, namely a manual mode, a service mode (hereinafter also referred to as a padlock mode), and an automatic mode.
  • mode button 2 For each mode of operation, mode button 2 needs to be moved to the respective position, namely the manual position, the service position (hereinafter also referred to as the padlock position) and the automatic position.
  • the manual position (“Manual") is the top position
  • the service position (“Service”
  • Automatic Automatic
  • handle 11 further comprises a linear mark 112, which terminates at one end of the linear mark service position, the lever and the other end terminates on the padlock symbol 335.
  • the line mark 11 2 indicates that the padlock function is only available when the mode button 2 is in the service position.
  • Figures 3A-3C illustrate different views of devices operating in a service mode.
  • the mode button 2 when the mode button 2 is switched from the automatic mode to the service position (or intermediate position), the first block 12 1 is still received in the first slot 11 1 to hold (or lock) the handle 11 in place.
  • the lever 3 can be pulled out open in a rotational manner, which allows the pin 3 1 of the lever 3 to pass through the second slot 2 1 of the mode button 2 to prevent the movement of the mode button 2.
  • the mode button 2 can be securely locked in the service position, and the handle 11 can also be securely locked so that the handle 11 cannot be pulled out by the operator.
  • a locking mechanism can be implemented at the service location that prevents both electrical and manual operations.
  • the apparatus further includes a first signal generator 9 and a second signal generator 10.
  • the lever 3 also includes a cam 3 2 and the slider 12 further includes a second block 12 2 .
  • the pin 3 1 of the lever 3 can pass through the second slot 2 1 .
  • the pin 31 passes through the second groove 21 o'clock, the cam 32 is pressed or operable to load a first trigger signal generator 9 to the first signal generator 9, so as to inform the control in FIG. 3C associated with the switch when About the position of the padlock lever 3.
  • the second block 12 2 is also operable to press or load the second signal generator 10 to trigger the second signal generator 10.
  • FIG. 3C shows the signal generators 9 and 10 of the push trigger (or load trigger) type, it will be understood by those skilled in the art that it is also possible to release the trigger type of signal generator depending on the application.
  • the device further includes a torsion spring 4.
  • the torsion spring 4 is coupled to the lever 3 and is operable to apply a torsional force to the lever 3 to resist opening of the lever 3.
  • the lever 3 can also include one or more apertures for receiving a padlock. The insertion of the padlock can help keep the lever 3 in its open state.
  • the lever 3 includes two holes 3 3 and 3 4 .
  • the two apertures 3 3 and 34 can have different dimensions, such as 6 mm and 4 mm in diameter, respectively, to receive padlocks of different sizes.
  • Figure 4A shows a cross-sectional view of the device in manual mode.
  • the device also includes a rod 5 and a first compression spring 7 coupled to the rod 5.
  • the rod 5 is arranged against the handle 11 in the second direction X, and when the first pressure spring 7 is compressed, the first pressure spring 7 is operable to apply an elastic force to the rod 5 in the positive second direction X+.
  • the second direction X is defined as the horizontal direction
  • the positive second direction X+ is defined as the horizontal direction indicated by the switch.
  • the first block 12 1 is operable to be released from the first slot 11 1 .
  • the lever 5 can push the handle 11 away from the frame 1 by the above-described applied elastic force caused by the recovery of the pressure spring 7. In this manner, the handle 11 can be "popped" outward so that the operator can easily pull it out.
  • the combination of the rod 5 and the compression spring 7 and the cooperation between the groove 11 1 and the first block 12 1 makes it possible to achieve an easy and cost-effective manner of locking and releasing the handle 11.
  • the rod 5 includes a hook 51, and wherein when the mode button 2 is provided in the manual position, the hook 51 is operable as a second X along the positive direction via the elastic force exerted by projecting + . In this way, the movement of the slider 12 in the negative first direction Y- can be prevented. Therefore, the button 2 will be locked in the manual position because the hook 51 abuts against the slider 12.
  • the negative first direction Y- is defined as the vertical direction pointing downward.
  • the second block 12 2 still presses the second switch 10 to trigger the second signal generator 10, but the cam 3 2 no longer presses the first signal generator 9 ( Not shown).
  • the untriggered first signal generator 9 and the triggered second signal generator 10 together indicate that the mode button 2 is set to the manual position.
  • the second pressure spring 8 is compressed to apply an elastic force to the mode button 2 in the first direction Y-.
  • the hook 51 still blocks the slider 12, the mode button 2 cannot be moved down to, for example, the service position.

Abstract

本公开的实施方式提供了一种用于开关的开关装置,包括:手柄,包括第一槽;模式按钮,其可操作为改变开关的操作模式,模式按钮包括第二槽;滑块,与模式按钮相连接,并能够与模式按钮的移动相关联地在第一方向上移动,滑块包括第一块;杠杆,可操作地以可旋转的方式打开并包括销,其中当模式按钮被设置在服务位置时,第一块被容纳在第一槽中以保持手柄,以及响应于杠杆被以旋转方式打开,销可操作为穿过第二槽来防止模式按钮的移动。

Description

开关装置和相关联的开关
相关专利的交叉引用
本申请要求2017年9月15日提交的发明名称为“开关装置和相关联的开关”的中国发明专利申请第201710833952.5号的优先权,其全部内容通过引用并入本文并且构成本申请的一部分。
技术领域
本公开的各个实施方式涉及开关装置和与其相关联的开关。
背景技术
自动切换开关(ATS)可以提供不同的操作模式,包括电动(或自动)操作模式和手动操作模式。但是,在某些情况下,可能会发生在不同操作模式之间的误操作,并由此导致安全事故。因此,期望提供一种锁定机制,以在开关的手动操作模式下禁用电气操作。此外,当开关在服务模式(也称为挂锁模式)下操作时,期望电动操作和手动操作均被锁定机构所禁用。
发明内容
本文描述的主题的各种实施方式提供了一种锁定机制,其可以防止在不同操作模式之间的错误操作。特别地,当开关在手动操作模式下操作时,这种锁定机构可以禁用电气操作。此外,当开关在服务模式下操作时,这种锁定机构可以禁用电气操作和手动操作两者。以这种方式,可以有效地避免在不同操作模式之间的误操作,从而提高操作开关的操作者的安全性。
本公开的第一方面提供了一种用于开关的开关装置,包括:手柄,包括第一槽;模式按钮,其可操作为改变开关的操作模式,模式按钮包括第二槽;滑块,与模式按钮相连接,并能够与模式按钮的移动相关联地在第一方向上移动,滑块包括第一块;杠杆,可操 作地以可旋转的方式打开并包括销,其中当模式按钮被设置在服务位置时,第一块被容纳在第一槽中以保持手柄;以及响应于杠杆被以旋转方式打开,销可操作为穿过第二槽来防止模式按钮的移动。
以这种方式,能够实现紧凑的内部结构设计。此外,当开关在服务模式下操作时,手柄可以锁定就位,使操作者无法拉出。同时,模式按钮也可以被锁定在适当的位置,使得操作者不能再将其移动到其他位置。
在一些实施方式中,开关装置还包括:第一信号发生器;和第二信号发生器,其中杠杆还包括凸轮,并且滑块还包括第二块,其中响应于销穿过第二槽,凸轮可操作为按压第一信号发生器以触发第一信号发生器,并且第二块可操作为按压第二开关以触发第二信号发生器,并且触发的第一信号发生器和触发的第二信号发生器指示模式按钮被设置在服务位置。以这种方式,电气操作将被安全禁止。
在一些实施方式中,开关装置还包括:扭转弹簧,联接到杠杆并且被构造成对杠杆施加扭转力以抵抗杠杆的打开,其中杠杆还包括构造成接收挂锁的至少一个孔,以便于将杠杆保持在其打开状态。以这种方式,当释放杆时,杠杆可以自动地弹回到折叠状态。
在一些实施方式中,开关装置还包括:在第二方向上抵靠手柄布置的杆;和第一弹簧,耦合到杆并且可操作为在正第二方向上向杆施加弹力,其中,当模式按钮被设置在手动位置时,第一块被配置为从第一槽释放,以使杆能够通过施加的弹力将手柄推离开关装置的框架。杆和压力弹簧的组合以及槽和第一块之间的配合使得能够实现一种容易且成本有效地锁定和释放手柄的方式。
在一些实施方式中,杆包括钩,并且其中当模式按钮被设置在手动位置时,钩被构造成通过所施加的弹力而沿正的第二方向伸出,以阻止滑动件在负第一方向的运动。
在一些实施方式中,开关装置还包括沿第一方向布置的第二弹簧,第二弹簧的一端联接到模式按钮,并且另一端联接到框架,其 中,当模式按钮被设置在手动位置时,第二弹簧构造成在负第一方向上向模式按钮施加弹力。
在一些实施方式中,当手柄返回到框架时,手柄构造成将杆在负第二方向上推动以使钩移动远离滑块,以便允许滑块在负第一方向的运动,以及第二弹簧构造成使得模式按钮移动到服务位置。以这种方式,当手柄被推回到折叠状态时,模式按钮将自动返回到服务位置。
在一些实施方式中,当模式按钮设置在手动位置时,凸轮被配置为释放第一信号发生器,并且第二块被配置为按压第二开关以触发第二信号发生器,未触发的第一信号发生器和触发的第二信号发生器被配置为指示模式按钮被设置在手动位置。
在一些实施方式中,当模式按钮被设置在自动位置时,凸轮被配置为释放第一信号发生器,并且第二块被配置为释放第二开关,并且未触发的第一信号发生器和未触发的第二信号发生器被配置为指示模式按钮被设置在自动位置。以这种方式,启用电气操作。
本公开的第二方面提供了一种开关,开关包括根据本公开第一方面所述的开关装置。
附图说明
通过结合附图更详细地描述本公开所描述的技术方案的示例性实施方式,本公开所描述的技术方案的上述和其它目的、特征和优点将变得更加明显,其中在本公开的技术方案的实施方式中,相同附图标记通常表示相同的部件。
图1A是包括根据本公开的实施方式的开关装置的开关的立体图;
图1B是根据本公开的实施方式的自动模式下的开关装置的立体图;
图2示出了图1A中的具有三种操作模式的开关的局部视图;
图3A-3C示出了根据本公开的实施方式在服务模式下的开关装 置的不同视图;
图4A-4C示出了根据本公开的实施方式的在手动模式下的开关装置的不同视图;
图5A示出了根据本公开的实施方式的手动模式下的开关装置的截面图;
图5B示出了根据本公开的实施方式的在服务模式下的开关装置的截面视图。
具体实施方式
现在将参考几个实施方式来讨论本公开所描述的技术方案。应当理解,这些实施方式仅为了使本领域技术人员能够更好地理解并因此实现本公开所描述的技术方案而进行讨论,而不是暗示对技术方案范围的任何限制。
如本公开所使用的,术语“包括”及其变体将被视为公开术语,其表示“包括但不限于”。术语“基于”应被视为“至少基于”,术语“一个实施方式”和“实施方式”应被视为“至少一个实施方式”。术语“另一个实施方式”应被视为“至少一个其他实施方式”。术语“第一”、“第二”等可以指不同的或相同的对象。下面还包括其他定义、显式和隐含特征。术语的定义在整个描述中是一致的,除非上下文另有明确指出。
图1A是包括根据本公开的各种实施方式的开关装置的开关的立体图。如图1A所示,从操作的角度来看,该装置总体上包括被框架1围绕的模式按钮2和杠杆3。模式按钮2可接收用户的操作以在各种操作模式之间改变/切换开关的操作。杠杆3特别用于服务模式并且可操作为以旋转方式打开。该装置还包括手柄11,手柄11仅在手动模式下操作。
在该示例中,模式按钮2布置在杠杆3的顶部,并且手柄11是沿纵向方向延伸并且与模式按钮2和杠杆3相邻布置的条带的形式。在如图1A所示的自动位置处,手柄11被容纳在开关的壳体内,使 得其与框架1基本上共面。与此同时,如图1A所示,杠杆3在壳体内被折叠/缩回(未拉出),使得杠杆3和框架1也基本上共面。
图1B示出了如图1A所示的装置的内部结构。如图所示,手柄11在其顶部包括第一槽11 1,模式按钮2在其下部包括第二槽2 1(如图4C所示),并且杠杆3包括销3 1。如在图1B中进一步描绘的,该装置还包括滑块12,其顶部具有第一块12 1。滑块12与模式按钮2相连,并能够与模式按钮2的移动相关联地沿第一方向Y移动。在示例性实施方式中,滑块12与模式按钮2刚性连接,并且始终与模式按钮2共同运动。在本公开中,第一方向Y被定义为垂直方向。
根据本公开的各种实施方案的开关为不同的应用情况提供了三种不同的操作模式,即手动模式、服务模式(以下也称为挂锁模式)和自动模式。对于每个操作模式,模式按钮2需要分别移动到相应位置,即手动位置、服务位置(以下也称为挂锁位置)和自动位置。在图2所示的示例中,手动位置(“Manual”)为顶部的位置,服务位置(“Service”)为中间的位置,自动位置(“Automatic”)为底部的位置。如图2进一步示出的,手柄11还包括线状标记11 2,该线状标记一端终止于服务位置,另一端终止于杠杆3上的挂锁符号3 5。线状标记11 2表示挂锁功能仅在模式按钮2处于服务位置时才可用。
应当理解,图2仅示出了在不同的操作模式下模式按钮2的对应位置的示例性布置。根据实际要求或内部设计,还可以设想不同操作模式的另外的位置布置。
返回参考图1B,其中装置处于自动模式,并且相应地模式按钮2被设置在自动位置。如图所示,当模式按钮2设置在自动位置(或底部位置)时,第一块12 1被容纳在手柄11的第一槽11 1中,以将手柄11保持在垂直方向,使得手柄11被锁定就位。由于操作者不能取出手柄11,因此防止了手动操作。
现在参考图3A-3C,图3A-3C示出了工作在服务模式下的设备的不同视图。如图3C所示,当模式按钮2从自动模式切换到服务位 置(或中间位置)时,第一块12 1仍然被接收在第一槽11 1中以将手柄11保持(或锁定)就位。同时,为了安全起见,杠杆3可以以旋转方式被拉出打开,这允许杠杆3的销3 1通过模式按钮2的第二槽2 1,以防止模式按钮2的移动。以这种方式,模式按钮2可以牢固地锁定在服务位置,而手柄11同样可以被牢固地锁定,使得手柄11不能被操作者拉出。这样,可以在服务位置实现一种锁定机制,其防止了电气操作和手动操作两者。
仍然参考图3C,该装置还包括第一信号发生器9和第二信号发生器10。杠杆3还包括凸轮3 2,并且滑块12还包括第二块12 2。如上所述,当模式按钮2设置在服务位置(或中间位置)时,杠杆3的销3 1可以穿过第二槽2 1。如图3C所示,当销31穿过第二槽2 1时,凸轮3 2可操作为按压或加载第一信号发生器9以触发第一信号发生器9,以便通知与开关相关联的控制器关于挂锁杠杆3的位置。
如图3C进一步所示,当模式按钮2设置在服务位置时,第二块12 2也可操作为按压或加载第二信号发生器10以触发第二信号发生器10。尽管图3C示出了按压触发(或加载触发)类型的信号发生器9和10,但本领域技术人员应当理解的是,取决于不同应用,释放触发类型的信号发生器也是可能的。
在该示例中,第一信号发生器9布置成主要监视挂锁状态。如果只有第一信号发生器9被触发,则表示挂锁被拉出,电动(自动)和手动操作都不可用。第二信号发生器10被布置成监视手柄状态。如果仅触发第二信号发生器10,则表明手柄11已被释放或解锁。如果第一信号发生器9和第二信号发生器10都被触发,则指示模式按钮2已被设置为服务位置。
仍然参考图3C,在一些实施方式中,该装置还包括扭转弹簧4。扭转弹簧4联接到杠杆3并且可操作为向杠杆3施加扭转力以抵抗杠杆3的打开。在一些实施方式中,杠杆3还可包括用于接收挂锁的一个或多个孔。挂锁的插入可以有助于将杠杆3保持在其打开状态。在图1所示的这个示例中。如图3C所示,杠杆3包括两个孔 3 3和3 4。在一些实施方式中,两个孔3 3和3 4可以具有不同的尺寸,例如直径分别为6mm和4mm,以接收不同尺寸的挂锁。
现在参考图4A,图4A示出了手动模式下的装置的截面图。如图所示,该装置还包括杆5和联接到杆5的第一压力弹簧7。杆5沿第二方向X抵靠手柄11布置,并且当第一压力弹簧7被压缩时,第一压力弹簧7可操作为正第二方向X+向杆5施加弹力。在本文中,将第二方向X定义为水平方向,并将正第二方向X+定义为从开关指出的水平方向。
当模式按钮2被设置在如图4B所示的手动位置(或顶部位置)时,第一块12 1可操作为从第一槽11 1释放。在这种情况下,杆5可以通过上述由压力弹簧7的恢复而引起的所施加的弹力将手柄11推离框架1。以这种方式,手柄11可以向外“弹出”,使得操作者可以容易地将其拉出。杆5和压力弹簧7的组合以及槽11 1和第一块12 1之间的配合,使得能够实现一种容易且成本有效地锁定和释放手柄11的方式。
现在参考图5A,在一些实施方式中,杆5包括钩5 1,并且其中当模式按钮2设置在手动位置时,钩5 1可操作为经由所施加的弹力沿着正第二方向X+伸出。以这种方式,可以阻止滑块12沿负第一方向Y-的移动。因此,按钮2将被锁定在手动位置,这是因为钩51抵靠滑块12。在该示例中,负第一方向Y-被定义为向下指向的垂直方向。
仍然参考图5A,当模式按钮2被设置在手动位置时,第二块12 2仍然按压第二开关10以触发第二信号发生器10,但是凸轮3 2不再按压第一信号发生器9(未示出)。在这种情况下,未触发的第一信号发生器9和触发的第二信号发生器10一起指示模式按钮2被设置为手动位置。
如图5A进一步示出的,该装置还可以包括以第一方向Y布置的第二压力弹簧8,其一端联接到模式按钮2,另一端联接到框架1.在该示例中,第二压力弹簧8垂直地布置在杆6和模式按钮2之间。
在这种情况下,当模式按钮2被设置为手动位置时,第二压力弹簧8被压缩,以在第一方向Y-上向模式按钮2施加弹力。然而,由于钩51仍然阻挡滑块12,所以模式按钮2不能向下移动到例如服务位置。
现参考图5B,当手柄11返回到框架1中时,手柄11可操作为将杆5沿负第二方向X推动,以使钩5 1移动远离滑块12,从而允许了滑块12在负第一方向Y-上的运动。一旦滑块12被允许向下移动到服务位置,则第二压力弹簧8将使模式按钮2恰好移动到服务位置,而不使模式按钮2进一步移动。从服务位置,用户只能手动地将模式按钮2切换到自动位置。
现返回图1B,当模式按钮2从服务位置返回到自动位置(或底部位置)时,凸轮3 2可操作为释放第一信号发生器9,并且第二块12 2也可操作为释放第二开关。未触发的第一信号发生器9和未触发的第二信号发生器10被配置为指示模式按钮2被设置在自动位置。

Claims (10)

  1. 一种用于开关的开关装置,包括:
    手柄(11),包括第一槽(11 1);
    模式按钮(2),其可操作为改变所述开关的操作模式,所述模式按钮(2)包括第二槽(2 1);
    滑块(12),与所述模式按钮(2)相连接,并能够与所述模式按钮(2)的移动相关联地在第一方向(Y)上移动,所述滑块(12)包括第一块(12 1);
    杠杆(3),可操作为以可旋转的方式打开并包括销(3 1),
    其中当所述模式按钮(2)被设置在服务位置时,
    第一块(12 1)被容纳在第一槽(11 1)中以保持所述手柄(11);以及
    响应于杠杆(3)被以旋转方式打开,所述销(3 1)可操作为穿过第二槽(2 1)来防止所述模式按钮(2)的移动。
  2. 根据权利要求1所述的开关装置,还包括:
    第一信号发生器(9);和
    第二信号发生器(10),
    其中所述杠杆(3)还包括凸轮(3 2),并且所述滑块(12)还包括第二块(12 2)
    其中响应于所述销(3 1)穿过所述第二槽(2 1),
    凸轮(3 2)可操作为按压第一信号发生器(9)以触发第一信号发生器(9),并且第二块(12 2)可操作为按压第二开关(10)以触发第二信号发生器(10),并且
    触发的第一信号发生器(9)和触发的第二信号发生器(10)指示所述模式按钮(2)被设置在所述服务位置。
  3. 根据权利要求1所述的开关装置,还包括:
    扭转弹簧(4),联接到所述杠杆(3)并且被构造成对所述杠杆(3)施加扭转力以抵抗所述杠杆(3)的打开,
    其中所述杠杆(3)还包括构造成接收挂锁的至少一个孔(3 3,3 4),以便于将所述杠杆(3)保持在其打开状态。
  4. 根据权利要求2所述的开关装置,还包括:
    在第二方向(X)上抵靠手柄(11)布置的杆(5);和
    第一弹簧(7),耦合到所述杆(5)并且可操作为在正第二方向(X+)上向所述杆(5)施加弹力,
    其中,当所述模式按钮(2)被设置在手动位置时,所述第一块(12 1)被配置为从所述第一槽(11 1)中释放,以使所述杆(5)能够通过施加的弹力将所述手柄(11)推离所述开关装置的框架(1)。
  5. 根据权利要求4所述的开关装置,其中所述杆(5)包括钩(5 1),并且
    其中当所述模式按钮(2)被设置在所述手动位置时,所述钩(5 1)构造成通过所施加的弹力而沿所述正的第二方向(X+)伸出,以阻止所述滑动件(12)在负第一方向(Y-)上的运动。
  6. 根据权利要求5所述的开关装置,还包括沿所述第一方向(Y)布置的第二弹簧(8),所述第二弹簧(8)的一端联接到所述模式按钮(2),并且另一端联接到所述框架(1)
    其中,当所述模式按钮(2)被设置在所述手动位置时,所述第二弹簧(8)构造成在所述负第一方向(Y-)上向所述模式按钮(2)施加弹力。
  7. 根据权利要求6所述的开关装置,
    其中当所述手柄(11)返回到框架(1)时,
    所述手柄(11)构造成将杆(5)沿负第二方向(X)推动以使所述钩(5 1)移动远离所述滑块(12),以便允许所述滑块(12)在负第一方向(Y-)的运动,以及
    所述第二弹簧(8)构造成使得所述模式按钮(2)移动到所述服务位置。
  8. 根据权利要求4所述的开关装置,其中
    当模式按钮(2)设置在手动位置时,
    所述凸轮(3 2)被配置为释放所述第一信号发生器(9),并且所述第二块(12 2)被配置为按压所述第二开关(10)以触发所述第二信号发生器(10),以及
    未触发的第一信号发生器(9)和触发的第二信号发生器(10)被配置为指示模式按钮(2)被设置在所述手动位置。
  9. 根据权利要求2所述的开关装置,其中
    当模式按钮(2)被设置在自动位置时,
    所述凸轮(3 2)被配置为释放所述第一信号发生器(9),并且所述第二块(12 2)被配置为释放所述第二开关(10),并且未触发的所述第一信号发生器(9)和未触发的所述第二信号发生器(10)被配置为指示模式按钮(2)被设置在所述自动位置。
  10. 一种开关,包括根据权利要求1-9中任一项所述的开关装置。
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