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    • 2. 发明授权
    • Electric heating element and method for its production
    • 电加热元件及其生产方法
    • US06448539B2
    • 2002-09-10
    • US09775286
    • 2001-02-01
    • Lutz OseEugen WildeWilli Essig
    • Lutz OseEugen WildeWilli Essig
    • H05B368
    • H05B3/148H05B3/141H05B3/748H05B2203/019
    • On the one hand is provided an electric heating element (15, 31) consisting of a semiconducting ceramic (28, 32) as well as a method for its production. The semiconducting ceramic material may be porous or foamed to thus contain pores (29, 34) open outwardly. The pores are attainable by admixing filler bodies, which dissolve during sintering, to the starting material or by impreganting a textile substrate material (36) with a ceramic material. Due to the porosity of the heating element (15, 31) an increased radiant surface area is attained. On the other hand is provided an electric heating element (115, 132, 145, 150, 158, 160, 162) as well as a method for its production which consists of semiconducting ceramic and comprises a negative temperature coefficient of the electrical resistance. The temperature coefficient is negative throughout over the full operating temperature range. The material suitable for the heating element (115, 132, 145, 150, 158, 160, 162) is doped silicon carbide or TiN. One such heating element (115, 132, 145, 150, 158, 160, 162) may be put to use, for example, rod-shaped in a radiant heater body (111) or foil-shaped at the underside of a surface element (30) of a cooktop (31). The electric conductivity of the material of the heating element (115, 132, 145, 150, 158, 160, 162) can be adjusted by nitrogen absorption during annealing in a nitrogen atmosphere subsequent to the sintering process.
    • 一方面提供由半导体陶瓷(28,32)组成的电加热元件(15,31)及其制造方法。 半导体陶瓷材料可以是多孔的或发泡的,从而包含向外开口的孔(29,34)。 可以通过将在烧结期间溶解的填料体混合到起始材料或通过用陶瓷材料浸渍织物基材材料(36)来获得孔。 由于加热元件(15,31)的孔隙率,获得了增加的辐射表面积。 另一方面,提供了一种电加热元件(115,132,145,150,158,160,162)及其制造方法,其由半导体陶瓷组成并且包括电阻的负温度系数。 整个工作温度范围内的温度系数均为负值。 适用于加热元件(115,132,145,150,158,160,162)的材料是掺杂碳化硅或TiN。 一个这样的加热元件(115,132,145,150,158,160,162)可以例如在辐射加热器主体(111)中使用棒状,或者在表面元件的下侧用箔形 (30)。 加热元件(115,132,145,150,158,160,162)的材料的电导率可以通过在烧结过程之后的氮气氛中退火期间的氮吸收来调节。
    • 3. 发明授权
    • Electric switching device, operable for power control
    • 电动开关装置,用于电力控制
    • US4829279A
    • 1989-05-09
    • US117033
    • 1987-11-04
    • Robert KichererWilli EssigSiegfried Mannuss
    • Robert KichererWilli EssigSiegfried Mannuss
    • H01H37/52H01H37/12H01H37/22H01H89/04
    • H01H37/22H01H37/12H01H89/04
    • An electric switching device (1) in the form of a timed power control device with an appliance switch (6) operated by a heated thermobimetal (15) and in the form of a snap switch has an adjusting device (39) for modifying the distance between the opposite contact (36) and the counter-stop (37) for the movable switching contact (34), operated simultaneously with the setting of the different setting ranges of the switching device in such a way that in the low setting ranges the switching hysteresis of the appliance switch (6) is made smaller and in the higher setting ranges larger. Thus, in particular the smaller values of the relative switch on duration of the appliance switch (6) can be set much more accurately, so that there is a very precise power control in the low setting ranges.
    • 具有定时功率控制装置形式的电开关装置(1)具有由加热的热金属片(15)操作并且以卡扣开关的形式操作的器具开关(6)的形式,具有调节装置(39) 在相对触点(36)和用于可移动开关触点(34)的反向止动件(37)之间,与开关装置的不同设置范围的设置同时操作,使得在低设置范围内开关 使器具开关(6)的滞后减小,并且在较高的设定范围内变大。 因此,特别地,可以更精确地设置器具开关(6)的相对开关持续时间的较小值,使得在低设置范围内存在非常精确的功率控制。
    • 4. 发明授权
    • Mounting mechanism for a control device
    • 控制装置的安装机构
    • US4596369A
    • 1986-06-24
    • US569606
    • 1984-01-10
    • Willi EssigWilhelm Stricker
    • Willi EssigWilhelm Stricker
    • H01H9/02G05G1/00H01H43/02H02B1/044G12B9/00
    • H02B1/044H01H43/022Y10T403/4634Y10T403/4642
    • A mechanism for mounting a control device on an implement shield defining a shield plane, the control device having a body formed with slots, the mechanism comprising: the shield having a guide with guidance projections slidably interengageable with the slots on the body of the control device, the guidance projections and slots being connectable to one another by relative movement parallel to the shield plane; the shield having at least one positioning stop forming an abutment against the connecting movement; and, the shield having at least one stop spring for resiliently urging the body against the at least one positioning stop after the connecting movement, whereby the control device is securely positioned on the shield. When the control device is to be mounted in a cutout in the shield, the guidance projections, the at least one positioning stop and the at least one stop spring are shaped from material of the shield bounding the cutout. The guidance projections are preferably straps of L-shaped cross-section, projecting firstly from the shield towards the interior of the implement and then toward one another, engaging in the slots in the body of the control device. In an alternative embodiment, the mechanism may further comprise a sheet metal plate covering the front surface of the body, having bent edges for engaging in the slots in the body, having threaded or plug-receiving retainers and having a securing slot for the setting shaft of the control device.
    • 一种用于将控制装置安装在限定屏蔽平面的工具屏蔽上的机构,所述控制装置具有形成有槽的主体,所述机构包括:所述屏蔽件具有引导件,所述引导件与所述控制装置的主体上的槽可滑动地相互接合, 通过平行于屏蔽平面的相对运动,引导突起和槽可彼此连接; 所述护罩具有至少一个定位止挡件,以形成与所述连接运动的抵接; 并且所述屏蔽件具有至少一个止动弹簧,用于在所述连接运动之后将所述主体弹性地推压至所述至少一个定位止动件,由此所述控制装置被牢固地定位在所述屏蔽件上。 当控制装置安装在屏蔽件的切口中时,引导突起,至少一个定位止挡件和至少一个止动弹簧由围绕切口的屏蔽材料成形。 引导突起优选为L形横截面的带状物,首先从护罩朝向器具的内部突出,然后彼此接合,接合在控制装置的主体中的狭槽中。 在替代实施例中,该机构还可以包括覆盖主体前表面的金属板,具有用于接合主体中的狭槽的弯曲边缘,具有螺纹或插塞接收保持器并且具有用于安装轴的固定槽 的控制装置。
    • 8. 发明授权
    • Temperature limiter
    • 温度限制器
    • US4901049A
    • 1990-02-13
    • US157896
    • 1988-02-19
    • Robert KichererWilli EssigHeinz Petri
    • Robert KichererWilli EssigHeinz Petri
    • H05B3/00H01H37/48H05B1/02
    • H05B1/0216H01H37/48
    • In a temperature limiter (1) with a rod-like temperature sensor (6), the outer tube is formed by a continuously tensile-stressed insulating tube (7) extending into a base (2). An inner rod (8), optionally articulated two or more times in the longitudinal direction, is constructed as a continuously pressure-loaded rod, characterized by temperature-dependent length expansion. The temperature limiter (1), e.g., for a glass ceramic unit, may have a circuit breaker (5) closer to the temperature sensor, and a more-remote signal switch (4). In that case, for operating the remote signal switch, a flat bar-like transfer member (9) traverses both switches through openings (54). The transfer member is coupled at the associated end and in adjustable manner with an operating member (30) for the signal switch (4), receiving the adjustment member (34). The parts are constantly held together in clearance-free manner by the tension of a restoring spring (40).
    • 在具有棒状温度传感器(6)的温度限制器(1)中,外管由延伸到基座(2)中的连续拉伸应力绝缘管(7)形成。 在纵向上可选地铰接两次或更多次的内杆(8)被构造为连续加压杆,其特征在于温度依赖的长度膨胀。 例如用于玻璃陶瓷单元的温度限制器(1)可以具有靠近温度传感器的断路器(5)和更远程的信号开关(4)。 在这种情况下,为了操作远程信号开关,扁平条形转印部件(9)穿过开口(54)穿过两个开关。 传送构件在相关联的端部处以可调节的方式与用于信号开关(4)的操作构件(30)连接,接收调节构件(34)。 这些部件通过复位弹簧(40)的张力一直以无间隙的方式保持在一起。