CN211350388U - Long Life Servo Capacitors - Google Patents
Long Life Servo Capacitors Download PDFInfo
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- CN211350388U CN211350388U CN201922402825.7U CN201922402825U CN211350388U CN 211350388 U CN211350388 U CN 211350388U CN 201922402825 U CN201922402825 U CN 201922402825U CN 211350388 U CN211350388 U CN 211350388U
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Abstract
本实用新型属于伺服电容器领域,具体公开了长寿命伺服电容器,包括电容器主体、外壳、底座和固定螺栓,电容器主体的顶端固定连接有连接杆,电容器主体的顶部嵌入连接有散热孔,电容器主体的底部嵌入连接有底座,底座的两侧嵌入连接有固定螺栓,底座的内部两侧固定连接有支撑块,支撑块的底部固定连接有上抵座,电容器主体的中间固定连接有外壳,外壳使得电容器主体长时间工作时可以更好的将内部的热量进行排出,从而使得电容器主体的使用寿命更加长久,防震机构通过底座可以更好的将外界传过来的震动力进行抵消,从而使得外界的震动力无法传到电容器主体处,进而使得电容器主体可以在更好的工作环境下进行工作,可以在未来具有广泛的发展前景。
The utility model belongs to the field of servo capacitors, and specifically discloses a long-life servo capacitor, which comprises a capacitor body, a casing, a base and a fixing bolt. The bottom is embedded and connected with the base, the two sides of the base are embedded and connected with fixing bolts, the inner two sides of the base are fixedly connected with a support block, the bottom of the support block is fixedly connected with an upper abutment, and the middle of the capacitor body is fixedly connected with a shell, the shell makes the capacitor When the main body works for a long time, the internal heat can be better discharged, so that the service life of the capacitor main body is longer, and the anti-vibration mechanism can better offset the external vibration force through the base, so that the external vibration force It cannot be transmitted to the main body of the capacitor, so that the main body of the capacitor can work in a better working environment, and can have broad development prospects in the future.
Description
技术领域technical field
本实用涉及伺服电容器技术领域,具体为长寿命伺服电容器。The utility relates to the technical field of servo capacitors, in particular to a long-life servo capacitor.
背景技术Background technique
电容器是电子设备中大量使用的电子元件之一,广泛应用于电路中的隔直通交、耦合、旁路、滤波、调谐回路、能量转换和控制等方面。Capacitors are one of the most widely used electronic components in electronic equipment, and are widely used in circuit blocking, coupling, bypassing, filtering, tuning loops, energy conversion and control.
现有的伺服电容器都是安装在较为大型的器械上使用的,所以当器械运行时会产生震动,现有的伺服电容器不能有效的将震动进行抵消,从而使得伺服电容器的使用寿命大大的缩减了,同时现有的伺服电容器在使用过久时内部会散发出热量,当伺服电容器不能将热量散发出体外时,伺服电容器的使用寿命也会被大大的缩减,从而使得伺服电容器的使用时间缩短。The existing servo capacitors are all installed on relatively large equipment, so when the equipment is running, vibration will occur, and the existing servo capacitors cannot effectively offset the vibration, which greatly reduces the service life of the servo capacitors. At the same time, the existing servo capacitors will emit heat when they are used for a long time. When the servo capacitors cannot dissipate heat out of the body, the service life of the servo capacitors will be greatly shortened, thereby shortening the service time of the servo capacitors.
所以,如何设计长寿命伺服电容器,成为当前要解决的问题。Therefore, how to design long-life servo capacitors has become a problem to be solved at present.
实用新型内容Utility model content
本实用新型的目的在于提供长寿命伺服电容器,以解决上述背景技术中提出的不能减震和不能很好的散热的问题。The purpose of the present invention is to provide a long-life servo capacitor, so as to solve the problems of incapability of shock absorption and inability to dissipate heat well in the above-mentioned background art.
为实现上述目的,本实用新型提供如下技术方案:长寿命伺服电容器,包括电容器主体、外壳、底座和固定螺栓,所述电容器主体的顶端固定连接有连接杆,所述电容器主体的顶部嵌入连接有散热孔,所述电容器主体的中间固定连接有外壳,所述外壳的内部固定连接有电容器,所述电容器的外围固定连接有散热条,所述电容器的另一侧中间固定连接有温控开关,所述外壳的内部底部中间活动连接有旋转风叶,所述旋转风叶的底部固定连接有电机,所述电容器主体的底部嵌入连接有底座,所述外壳的底部嵌入连接有进气口,所述底座的两侧嵌入连接有固定螺栓,所述底座的内部两侧固定连接有支撑块,所述支撑块的底部固定连接有上抵座,所述上抵座的底部固定连接有弹簧,所述弹簧的底部固定连接有下抵座,所述底座的顶部两侧固定连接有固定柱,所述固定柱的顶部外围活动连接有紧固螺母。In order to achieve the above purpose, the present utility model provides the following technical solutions: a long-life servo capacitor, comprising a capacitor body, a casing, a base and a fixing bolt, the top of the capacitor body is fixedly connected with a connecting rod, and the top of the capacitor body is embedded and connected with a connecting rod. a heat dissipation hole, a casing is fixedly connected to the middle of the capacitor body, a capacitor is fixedly connected to the inside of the casing, a heat dissipation strip is fixedly connected to the periphery of the capacitor, and a temperature control switch is fixedly connected to the middle of the other side of the capacitor, A rotating fan blade is movably connected in the middle of the inner bottom of the casing, a motor is fixedly connected to the bottom of the rotating fan blade, a base is embedded and connected to the bottom of the capacitor body, and an air inlet is embedded and connected to the bottom of the casing. The two sides of the base are embedded and connected with fixing bolts, the inner two sides of the base are fixedly connected with a support block, the bottom of the support block is fixedly connected with an upper abutment, and the bottom of the upper abutment is fixedly connected with a spring, so The bottom of the spring is fixedly connected with a lower abutment seat, the top two sides of the base are fixedly connected with a fixing column, and the outer periphery of the top of the fixing column is movably connected with a tightening nut.
优选的,所述外壳的顶部两侧固定连接有固定耳。Preferably, fixing ears are fixedly connected to both sides of the top of the casing.
优选的,所述底座的中间顶部嵌入连接有橡胶块。Preferably, a rubber block is embedded and connected to the middle top of the base.
优选的,所述弹簧的内部中间活动连接有液压杆。Preferably, a hydraulic rod is movably connected to the inner middle of the spring.
优选的,所述外壳是由外壳内部的电容器,电容器外围的散热条,电容器中间另一侧的温控开关,外壳内部底部中间的旋转风叶和旋转风叶底部的电机共同组合而成。Preferably, the casing is composed of a capacitor inside the casing, a heat dissipation strip on the periphery of the capacitor, a temperature control switch on the other side of the middle of the capacitor, a rotating fan blade in the middle of the inner bottom of the casing, and a motor at the bottom of the rotating fan blade.
优选的,所述支撑块、上抵座、弹簧、液压杆和下抵座共同组成防震机构。Preferably, the support block, the upper abutment, the spring, the hydraulic rod and the lower abutment together constitute an anti-vibration mechanism.
与现有技术相比,本种实用新型的有益效果是:Compared with the prior art, the beneficial effects of this utility model are:
1.该长寿命伺服电容器,外壳通过这样的设置使得电容器在使用过久而产生热量时可以通过旋转风叶吹动的空气一起从外壳的内部流到外壳的外部,从而使得电容器在使用过久时可以更好的将内部的热量散出外壳内部,进而使得电容器主体的使用寿命更加长久。1. For this long-life servo capacitor, the casing is set so that when the capacitor is used for a long time and generates heat, the air blown by the rotating fan blade can flow from the inside of the casing to the outside of the casing, so that the capacitor can be used for a long time. At the same time, the internal heat can be better dissipated out of the casing, thereby making the service life of the capacitor body longer.
2.该长寿命伺服电容器,防震机构通过这样的设置使得电容器主体在受到外部器械影响时,底座两侧的弹簧和液压杆可以通过配合将外界传来的震动力进行抵消,从而使得外部传来的震动力无法传进电容器主体处,进而使得电容器主体在运行时不会受到外界的震动力影响。2. The long-life servo capacitor and the shock-proof mechanism are arranged in this way so that when the capacitor body is affected by external equipment, the springs and hydraulic rods on both sides of the base can counteract the external vibration force through cooperation, so that the external The vibration force of the capacitor cannot be transmitted into the main body of the capacitor, so that the main body of the capacitor will not be affected by the external vibration force during operation.
附图说明Description of drawings
图1为本实用新型的电容器主体结构示意图;1 is a schematic diagram of the structure of a capacitor main body of the present invention;
图2为本实用新型的外壳剖面结构示意图;2 is a schematic diagram of a cross-sectional structure of a casing of the present invention;
图3为本实用新型的底座结构示意图;Fig. 3 is the base structure schematic diagram of the utility model;
图4为本实用新型的A处放大结构示意图。FIG. 4 is a schematic view of the enlarged structure of the A part of the present invention.
图中标记:1、电容器主体,2、连接杆,3、散热孔,4、固定耳,5、外壳, 501、电容器,502、散热条,503、温控开关,504、旋转风叶,505、电机,6、底座,601、紧固螺母,602、固定柱,603、橡胶块,7、进气口,8、固定螺栓,9、支撑块,10、上抵座,11、弹簧,12、液压杆,13、下抵座。Labels in the picture: 1. Capacitor body, 2. Connecting rod, 3. Heat dissipation hole, 4. Fixing ear, 5. Shell, 501, Capacitor, 502, Heat dissipation strip, 503, Temperature control switch, 504, Rotating fan blade, 505 , Motor, 6, Base, 601, Fastening nut, 602, Fixing column, 603, Rubber block, 7, Air inlet, 8, Fixing bolt, 9, Support block, 10, Upper seat, 11, Spring, 12 , Hydraulic rod, 13. Lower seat.
具体实施方式Detailed ways
下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例,基于本实用新型中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the implementations. For example, based on the embodiments of the present invention, all other embodiments obtained by persons of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.
请参阅图1-4,本实用新型提供一种技术方案:长寿命伺服电容器,包括电容器主体1、外壳5、底座6和固定螺栓8,电容器主体1的顶端固定连接有连接杆2,电容器主体1的顶部嵌入连接有散热孔3,电容器主体1的中间固定连接有外壳5,外壳5的内部固定连接有电容器501,电容器501的外围固定连接有散热条502,电容器501的另一侧中间固定连接有温控开关503,外壳5的内部底部中间活动连接有旋转风叶504,旋转风叶504的底部固定连接有电机505,电容器主体1的底部嵌入连接有底座6,外壳5的底部嵌入连接有进气口7,底座6的两侧嵌入连接有固定螺栓8,底座6的内部两侧固定连接有支撑块9,支撑块9的底部固定连接有上抵座10,上抵座10的底部固定连接有弹簧11,弹簧11的底部固定连接有下抵座13,底座6的顶部两侧固定连接有固定柱602,固定柱602的顶部外围活动连接有紧固螺母601。1-4, the present utility model provides a technical solution: a long-life servo capacitor, including a
优选的,外壳5的顶部两侧固定连接有固定耳4,在使用者需要移动电容器主体1时,使用者可以通过固定耳4将电容器主体1搬起来进行移动,当使用者需要将电容器主体1固定在底座6上时,使用者需要先将紧固螺母601 从固定柱602内部旋出来,之后使用者再将固定耳4上的贯穿孔穿过底座6 顶部的固定柱602,穿过去之后,使用者再使用紧固螺母601将电容器主体1 固定在底座6上,通过这样的设置使得使用者可以更加方便的将电容器主体1 与底座6固定在一起。Preferably, fixing ears 4 are fixedly connected on both sides of the top of the
优选的,底座6的中间顶部嵌入连接有橡胶块603,在使用者将电容器主体1放置在底座6顶部时,电容器主体1的底部就会嵌进底座6顶部中间的凹槽内,在电容器主体1的底部嵌进底座6顶部中间的凹槽时,电容器主体1 的底部就会与凹槽内部的橡胶块603进行接触,在电容器主体1的底部与橡胶块603接触时,橡胶块603会发生一定的形变,从而使得底座6可以更加稳定的与电容器主体1固定在一起。Preferably, a
优选的,弹簧11的内部中间活动连接有液压杆12,在液压杆12接触到外界震动力时,液压杆12底部的杆子随着震动力进行相应的伸缩,当液压杆 12上下伸缩时液压杆12顶部对支撑块9的支撑力和支撑位置并不会发生改变,通过这样的设置使得液压杆12可以更好的配合弹簧11对外界传来的震动力进行抵消。Preferably, a
优选的,外壳5是由外壳5内部的电容器501,电容器501外围的散热条502,电容器501中间另一侧的温控开关503,外壳5内部底部中间的旋转风叶504和旋转风叶504底部的电机505共同组合而成,当电容器501使用过久时,电容器501就会产生热量,当电容器501产生热量时,电容器501外围的散热条502就会将电容器501产生的热量进行吸收,当散热条502的热量过高时,温控开关503就会因为热量过高而开启电机505进行运作,当电机505运作时会带动顶部的旋转风叶504进行相应的旋转,在旋转风叶504 旋转的同时就会使得外壳5内部的空气往上流通,在空气往外壳5的顶部流动时,空气可以同时将散热条502内部的热量一起通过散热孔3流出外壳5 的内部,通过这样的设置使得电容器501在使用过久而产生热量时可以通过旋转风叶504吹动的空气一起从外壳5的内部流到外壳5的外部,从而使得电容器501在使用过久时可以更好的将内部的热量散出外壳5内部,进而使得电容器主体1的使用寿命更加长久。Preferably, the
优选的,由支撑块9、上抵座10、弹簧11、液压杆12和下抵座13共同组成防震机构,在使用者需要将电容器主体1进行安装时,使用者需要先将电容器主体1与底座6固定在一起,固定好之后,使用者再通过固定螺栓8 将底座6与固定点进行固定,当使用者将电容器主体1固定稳定之后,使用者就可以对电容器主体1进行使用,在电容器主体1使用时,电容器主体1 会因为外部其他的器械而产生震动,当电容器主体1发生震动时,震动力会通过下抵座13传到弹簧11处,因为上抵座10是固定不动的,所以弹簧11 在接收到外部的震动力时,弹簧11就会产生一定的形变,当弹簧11产生形变的同时弹簧11内部中间的液压杆12的底部会随着弹簧11一起进行形变,当液压杆12发生形变时,液压杆12的顶部并不会产生位置改变,从而使得支撑块9可以更加平稳的处在当前位置,通过这样的设置使得电容器主体1 在受到外部器械影响时,底座6两侧的弹簧11和液压杆12可以通过配合将外界传来的震动力进行抵消,从而使得外部传来的震动力无法传进电容器主体1处,进而使得电容器主体1在运行时不会受到外界的震动力影响。Preferably, the shock-proof mechanism is composed of the
工作原理:首先,在使用者需要移动电容器主体1时,使用者可以通过固定耳4将电容器主体1搬起来进行移动,当使用者需要将电容器主体1固定在底座6上时,使用者需要先将紧固螺母601从固定柱602内部旋出来,之后使用者再将固定耳4上的贯穿孔穿过底座6顶部的固定柱602,穿过去之后,使用者再使用紧固螺母601将电容器主体1固定在底座6上,通过这样的设置使得使用者可以更加方便的将电容器主体1与底座6固定在一起。Working principle: First, when the user needs to move the
然后,在使用者将电容器主体1放置在底座6顶部时,电容器主体1的底部就会嵌进底座6顶部中间的凹槽内,在电容器主体1的底部嵌进底座6 顶部中间的凹槽时,电容器主体1的底部就会与凹槽内部的橡胶块603进行接触,在电容器主体1的底部与橡胶块603接触时,橡胶块603会发生一定的形变,从而使得底座6可以更加稳定的与电容器主体1固定在一起。Then, when the user places the
接着,在液压杆12接触到外界震动力时,液压杆12底部的杆子随着震动力进行相应的伸缩,当液压杆12上下伸缩时液压杆12顶部对支撑块9的支撑力和支撑位置并不会发生改变,通过这样的设置使得液压杆12可以更好的配合弹簧11对外界传来的震动力进行抵消。Next, when the
紧接着,当电容器501使用过久时,电容器501就会产生热量,当电容器501产生热量时,电容器501外围的散热条502就会将电容器501产生的热量进行吸收,当散热条502的热量过高时,温控开关503就会因为热量过高而开启电机505进行运作,当电机505运作时会带动顶部的旋转风叶504 进行相应的旋转,在旋转风叶504旋转的同时就会使得外壳5内部的空气往上流通,在空气往外壳5的顶部流动时,空气可以同时将散热条502内部的热量一起通过散热孔3流出外壳5的内部,通过这样的设置使得电容器501 在使用过久而产生热量时可以通过旋转风叶504吹动的空气一起从外壳5的内部流到外壳5的外部,从而使得电容器501在使用过久时可以更好的将内部的热量散出外壳5内部,进而使得电容器主体1的使用寿命更加长久。Next, when the
最后,在使用者需要将电容器主体1进行安装时,使用者需要先将电容器主体1与底座6固定在一起,固定好之后,使用者再通过固定螺栓8将底座6与固定点进行固定,当使用者将电容器主体1固定稳定之后,使用者就可以对电容器主体1进行使用,在电容器主体1使用时,电容器主体1会因为外部其他的器械而产生震动,当电容器主体1发生震动时,震动力会通过下抵座13传到弹簧11处,因为上抵座10是固定不动的,所以弹簧11在接收到外部的震动力时,弹簧11就会产生一定的形变,当弹簧11产生形变的同时弹簧11内部中间的液压杆12的底部会随着弹簧11一起进行形变,当液压杆12发生形变时,液压杆12的顶部并不会产生位置改变,从而使得支撑块9可以更加平稳的处在当前位置,通过这样的设置使得电容器主体1在受到外部器械影响时,底座6两侧的弹簧11和液压杆12可以通过配合将外界传来的震动力进行抵消,从而使得外部传来的震动力无法传进电容器主体1 处,进而使得电容器主体1在运行时不会受到外界的震动力影响,这就是该长寿命伺服电容器的工作原理。Finally, when the user needs to install the
尽管已经示出和描述了本实用新型的实施例,对于本领域的普通技术人员而言,可以理解在不脱离本实用新型的原理和精神的情况下可以对这些实施例进行多种变化、修改、替换和变型,本实用新型的范围由所附权利要求及其等同物限定。Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes and modifications can be made to these embodiments without departing from the principles and spirit of the present invention , alternatives and modifications, the scope of the present invention is defined by the appended claims and their equivalents.
Claims (7)
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