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    • 91. 发明公开
    • GAP COMPENSATION DEVICE FOR MODEL CAR
    • EP3967383A1
    • 2022-03-16
    • EP19928878.8
    • 2019-11-22
    • Gil, Sang Chul
    • Gil, Sang Chul
    • A63H33/42A63H18/16A63H18/14A63H17/26G09B19/10
    • A clearance compensation device for a model car according to an embodiment of the present invention comprises: a guide part which is provided on the bottom surface of the model car and has a guide rail formed along the vertical direction; a clearance compensation part which is provided to the guide part, has a bottom surface that is in contact with the upper surface of a panel having a runway formed therein, ascends and descends along the guide rail in response to the shape of the upper surface of the panel when the model car travels, and is configured to compensate for a clearance between the bottom surface of the model car and the upper surface of the panel so that the bottom surface is constantly in contact with the upper surface of the panel; and a magnetic body which is provided to the clearance compensation part and provided at the lower side of the panel with the panel therebetween to be coupled with the lead member movable in the horizontal direction by a magnetic force.According to the present invention, even when a clearance between the bottom surface of the model car and one surface of the panel is narrowed and widened due to the shape of the model car or the shape of the runway, the clearance is compensated for so that the magnetic body is constantly in contact with the upper surface of the panel. Accordingly, the magnetic force between the lead member and the magnetic body is constantly maintained by constantly maintaining the clearance between the magnetic body and the lead member, thereby improving the traveling performance of the model car.
    • 92. 发明公开
    • SCALE MODEL COURSE
    • 尺度模式发展FAITHFUL
    • EP2618901A4
    • 2015-03-25
    • EP11807139
    • 2011-07-12
    • LUNDMARK TORGNY
    • LUNDMARK TORGNY
    • A63H18/10A63F9/14A63H17/26A63H18/14A63H23/02A63H30/04
    • A63H18/10A63H17/262A63H18/14A63H23/02A63H30/04
    • The present invention relates to a scale model course (1), designed to simulate real-world conditions with a high degree of realism. The scale model course (1) includes a course (2) comprised of an upper course section (8) on which at least one model (3) is designed to travel on its topside (10) and at least one second lower course section (11) which together form an intermediate space (15) in which at least one radio-controlled drive unit (4) is designed to operate. The drive unit (4) is via at least one magnetic coupler (5) linked with a model (3) on the topside (10) of the upper course section (8) allowing the model's (3) movement of the upper course section (8) to be controlled by the drive unit's (4) movement on the lower course section (11). The present scale model course's unique feature is that the coupler (5) includes at least one first coupling body (47) and at least one second coupling body (48), whose first coupling body (47) is comprised of at least one first magnetic trolley (49) which is connected with at least one arm (42) to the drive unit (4) and whose second coupling body (48) includes at least one magnetic body (59) which is intended to slide on the surface of the topside (10) of the upper course section (8), whose coupling body is attached to the model via a flexible elongated connection part (44) in essentially a vertical direction.
    • 94. 发明公开
    • MOVING TOY UTILIZING MAGNETIC FORCE
    • BEWEGLICHES SPIELZEUG UNTER EINSATZ VON MAGNETKRAFT
    • EP1849508A1
    • 2007-10-31
    • EP05743738.6
    • 2005-05-24
    • Hajime Corporation
    • YAMANA, Tsutomu, c/o Hajime Corporation
    • A63H18/14A63H13/20A63H17/14A63H29/22
    • A63H18/16A63H17/14A63H18/14
    • A moving toy utilizing a magnetic force movable by itself without exposing the presence of a moving force by using an interaction force by the magnetic force without relying on natural fall so that a user can take more enjoyment by the strangeness and sustaining of its movement. The moving toy comprises a moving toy body (11) having a drive belt (13) on which magnetic poles (12) are disposed at prescribed intervals, a drive means (14), and magnetic poles (15) installed on the outer surfaces of the moving toy body. A moving road surface (16) formed in a channel-shaped gutter-like body in cross section comprises magnetic poles (17) installed on the inside bottom surface thereof at prescribed intervals, and magnetic poles (18) installed on the side parts (161) of the moving road surface at prescribed intervals. The moving toy body (11) is moved by itself since the magnetic poles (12) repel against the magnetic poles (17) in the floated state thereof from the moving road surface (16) by a repulsion between the magnetic poles (15) and the magnetic poles (18) and the magnetic poles (12) are moved by the rotation of the drive belt (13) by the drive means (14). The presence of the moving force when the moving toy body (11) is moved becomes hard to know visually.
    • 利用可以自身移动的磁力的移动玩具,不会通过利用磁力的相互作用力而不暴露动作力的存在,而不依赖于自然坠落,使得使用者可以更多地享受由陌生人和维持其运动。 移动玩具包括具有驱动带(13)的移动玩具本体(11),磁极(12)以规定间隔设置在该驱动带(13)上,驱动装置(14)和磁极(15)安装在 移动的玩具身体。 形成在通道状沟槽状体的横截面中的移动路面(16)包括以规定间隔安装在其内底面的磁极(17)和安装在侧部(161)上的磁极(18) )。 移动的玩具本体(11)由于磁极(12)通过磁极(15)与磁极(15)之间的排斥而从浮动路面(16)抵靠其浮动状态的磁极(17) 磁极(18)和磁极(12)通过驱动装置(14)由驱动带(13)的旋转而移动。 当移动的玩具主体(11)移动时存在移动力,很难在视觉上知道。
    • 99. 发明公开
    • Magnetischen Antriebssystem für Modelle
    • 用于型号的磁力驱动系统
    • EP1759748A2
    • 2007-03-07
    • EP06016547.9
    • 2006-08-08
    • Mühle, Ralf
    • Mühle, Ralf
    • A63H18/14A63H18/10A63H18/12
    • A63H18/10A63H18/14
    • Es wird mit einem vertretbaren technischen und wirtschaftlichen Aufwand ein einfacher und robuster Bewegungsantrieb auch kleinster Miniaturkraftfahrzeugmodelle (1) mit einem Elektromotor (7), einer Stromversorgung, einer Steuerungselektronik und einer Lenkung über eine mechanische Führung (4;14;24;34) zur Verfügung gestellt, was dadurch erzielt wird, dass eine ferromagnetische Schiene und eine zugeordnete Führung (4;14;24:34) unterhalb der Grundplatte (3) angeordnet ist, von der ein Fahrschlitten (13) geführt ist, der mit dem Elektromotor (7) und mindestens einem Antriebsrad (10) sowie mit mindestens einem starken Dauermagneten (8) ausgestattet ist, wobei der Fahrschlitten (13) von der Anziailungskraft des Dauermagneten (8) entlang der Führung (4;14:24;34) unter der Grundplatte (3) verfahrbar gehalten ist und das Modell (1) mittels eines über der Grundplatte (3) angeordneten Dauermagneten (2) mit dem Magneten (8) des Fahrschlittens (13) magnetisch gekoppelt, von diesem auf der Grundplatte (3) mitführbar ist.
    • 它是一个合理的技术和经济成本,机动车辆(1)的即使是最小的微型模型的与电动马达的简单且健壮的运动的驱动器(7),通过一个机械引导件的电源,控制电子装置和转向系统(4; 14; 24; 34)是可用 提供,其由铁磁轨道实现和相关联的引导件(4; 14; 24:34)被布置在基板(3),从该驱动滑块(13)被引导至低于所述电动机(7) 被提供并且至少一个驱动轮(10)和与至少一种强的永久磁铁(8),其中,从沿着所述引导永久磁铁(8)的Anziailungskraft行走托架(13)(4; 14:24; 34)(下基板3 )保持可动,并通过所述底板(3)的装置中的模型(1),布置永磁体(2)(与驱动滑架(13)磁耦合的磁体8),从这个与G 圆盘(3)被携带。