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CN200981800Y - Electric winch cone brake device - Google Patents

Electric winch cone brake device Download PDF

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Publication number
CN200981800Y
CN200981800Y CN 200620106774 CN200620106774U CN200981800Y CN 200981800 Y CN200981800 Y CN 200981800Y CN 200620106774 CN200620106774 CN 200620106774 CN 200620106774 U CN200620106774 U CN 200620106774U CN 200981800 Y CN200981800 Y CN 200981800Y
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wedge
brake
shaped block
double
section
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曹国祥
谢玉枝
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Cao Guoxiang
Xie Yu Branch
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Abstract

The utility model discloses a conical surface brake device of an electric winch, which is characterized in that a section of hollow gear shaft, a section of mandrel, a wedge-shaped seat, a brake pad, an elastic element, a wedge-shaped block B, a wedge-shaped block A, a brake clutch seat and other components are arranged in a winch reduction box body, when a motor runs, the mandrel at one section of the motor can drive the brake clutch seat and the wedge-shaped block A, B to rotate until the wedge-shaped seat and the wedge-shaped block B form a gap with a friction surface of the brake pad, so that the brake function stops; when the motor stops operating suddenly, the load weight hung by the cable drum generates a reverse pulling force, so that the wedge block B generates a reverse pushing force to push the friction surface of the brake pad, thereby generating a braking action quickly. Because the double-conical-surface brake pad is adopted, the brake area is increased, the brake force is large, the brake is safe and stable, the vulnerable parts are concentrated on the brake pad, only the brake pad made of friction materials needs to be replaced, the maintenance is simple and convenient, the cost of the parts is low, and the service life of the reduction box body is not influenced.

Description

电动绞车锥面刹车装置Electric winch cone brake device

技术领域technical field

本实用新型涉及一种刹车装置,尤其是一种电动绞车锥面刹车装置。The utility model relates to a brake device, in particular to a cone brake device for an electric winch.

背景技术Background technique

电动刹车是利用钢索的收、放来拉动物品的,用于汽车野外遇事故时作自救或互救。为了避免钢索在卷收过程中,突然发生断电造成钢索有失速的危险,故设有安全保护的刹车装置,以确保操作上的安全性。中国专利文献CN2484297Y名称为“动力绞车的刹车装置”,其所披露的技术方案由减速箱体、刹车盖、一段齿轴、由电机转轴延伸的一段芯轴、锲形块A、锲形块B、刹车离合座、弹性元件、刹车片等构成,它利用电机转轴延伸的一段芯轴带动刹车离合座旋转,刹车离合座内的内双凸缘同时带动锲形块A和B的外双凸缘旋转,此时锲形块B上的刹车片与减速箱体摩擦锥面仍然保留间隙状态而不刹车,当电机骤然停止转动时,因刹车离合座的惯性使锲形块B在转动的同时产生轴向移动,带动刹车片实现对减速箱体单锥面制动。该机构的缺陷是单锥面制动产生的制动面积小、制动力小,易产生打滑现象,而更主要的是刹车片直接刹车减速箱体的锥面,容易造成直接磨损减速箱锥面,使减速箱锥面失去刹车功能,就必须更换减速箱体才能解决,这样既造成维修上的困难又需付出高额的零件费用。Electric brakes are used to pull articles by retracting and releasing steel cables, and are used for self-rescue or mutual rescue when automobiles encounter accidents in the field. In order to avoid the danger of the wire rope stalling due to a sudden power failure during the winding process of the wire rope, a safety brake device is provided to ensure the safety of the operation. The title of Chinese patent document CN2484297Y is "braking device of power winch", and the technical solution disclosed by it consists of a reduction box body, a brake cover, a section of gear shaft, a section of mandrel extending from the motor shaft, wedge block A, and wedge block B , brake clutch seat, elastic elements, brake pads, etc. It uses a mandrel extending from the motor shaft to drive the brake clutch seat to rotate, and the inner double flanges in the brake clutch seat drive the outer double flanges of wedge blocks A and B at the same time Rotate, at this time, the brake pad on the wedge block B and the friction cone surface of the reduction box still maintain a gap state without braking. When the motor suddenly stops rotating, due to the inertia of the brake clutch seat, the wedge block B will generate a Axial movement drives the brake pads to achieve single-cone braking on the reduction box. The defect of this mechanism is that the braking area and braking force produced by the single-cone surface braking are small, and it is easy to cause slippage. What is more important is that the brake pad directly brakes the conical surface of the reduction box, which is easy to cause direct wear on the conical surface of the reduction box. , Make the tapered surface of the reduction box lose the braking function, and it is necessary to replace the reduction box body to solve it, which will not only cause difficulties in maintenance but also pay high parts costs.

发明内容Contents of the invention

本实用新型的发明目的皆在克服现有技术的缺陷而提供一种刹车面积大、刹车效果好、不直接磨损减速箱、更换易损零件成本低的电动绞车锥面刹车装置。The purpose of the invention of the utility model is to overcome the defects of the prior art and provide an electric winch cone brake device with large braking area, good braking effect, no direct wear on the reduction box, and low cost of replacing vulnerable parts.

本实用新型的发明目的通过下列技术方案实现:The purpose of the invention of the utility model is realized through the following technical solutions:

一种电动绞车锥面刹车装置,包括有:固设在电动绞车上的减速箱体;与减速箱体固连的刹车盖;伸插在减速箱体轴孔中以轴承支承的一段空心齿轴;从电机转轴延伸的一段芯轴贯穿空心齿轴,伸出端部为多面体形;一锲形块A套设在一段空心齿轴上与空心齿轴相啮合,锲形块A的左端面为双斜面构成的凸轮面,右端面以扣环轴向限位,外圆面设圆周均布的外双凸缘结构;一锲形块B空套在空心齿轴上,其右端面是与锲形块A相啮合的双斜面构成的凸轮面,外圆面设圆周均布的外双凸缘结构,锲形块B的外缘设有若干刹车片;一弹性元件套装在一段空心齿轴上并顶推在锲形块B上;一刹车离合座,其中心套设在所述一段芯轴的端部与其多面体形相结合,与刹车盖之间以轴承支承,其内圆面设有与所述锲形块A、锲形块B外双凸缘相配的内双凸缘结构,该内双凸缘结构可推动锲形块A的外双凸缘转动进而推动锲形块B轴向移动;其特征在于所述的刹车片为双锥面结构,分别与套设在一段空心齿轴上的锲形座和锲形块B构成双锥面摩擦面。A cone braking device for an electric winch, comprising: a reduction box fixed on the electric winch; a brake cover fixedly connected with the reduction box; ; A section of the mandrel extending from the motor shaft runs through the hollow gear shaft, and the protruding end is polyhedral; a wedge-shaped block A is sleeved on a section of the hollow gear shaft and meshed with the hollow gear shaft, and the left end surface of the wedge-shaped block A is The cam surface is composed of double slopes, the right end surface is axially limited by the buckle ring, and the outer surface is provided with an outer double flange structure uniformly distributed around the circumference; a wedge-shaped block B is emptied on the hollow gear shaft, and its right end surface is a The cam surface is composed of double slopes meshed with blocks A, and the outer circular surface is provided with an outer double flange structure uniformly distributed around the circumference, and a number of brake pads are provided on the outer edge of wedge block B; an elastic element is set on a section of hollow gear shaft And push it on the wedge-shaped block B; a brake clutch seat, the center of which is sleeved on the end of the section of the mandrel and combined with its polyhedron shape, is supported by a bearing between the brake cover, and its inner surface is provided with the The inner double-flange structure matching the outer double flanges of the wedge-shaped block A and the wedge-shaped block B is described. The inner double-flange structure can push the outer double flanges of the wedge-shaped block A to rotate and then push the wedge-shaped block B to move axially; It is characterized in that the brake pad has a double-cone structure, which respectively forms a double-cone friction surface with a wedge-shaped seat and a wedge-shaped block B sleeved on a section of the hollow gear shaft.

所述的锲形块B的左端面上设有容纳弹性元件的环槽。The left end surface of the wedge-shaped block B is provided with an annular groove for accommodating elastic elements.

所述的刹车片沿圆周排列4~8片。The brake pads are arranged in 4 to 8 pieces along the circumference.

与现有技术相比,本实用新型将单锥面改进为双锥面摩擦刹车,且刹车片与减速箱体不存在摩擦刹车,通过对锲形座和锲形块B材质的优选,使摩擦磨损面集中在刹车片上,且增加一倍刹车面积,使刹车力增大,刹车安全可靠,刹车磨损只要更换摩擦材料制的刹车片即可,简化维修,使用成本大大降低。Compared with the prior art, the utility model improves the single-cone surface into a double-cone surface friction brake, and there is no friction brake between the brake pad and the deceleration box body. By optimizing the material of the wedge-shaped seat and the wedge-shaped block B, the friction The wear surface is concentrated on the brake pads, and the braking area is doubled, so that the braking force is increased, the brakes are safe and reliable, and the brake wear only needs to be replaced by the brake pads made of friction materials, which simplifies maintenance and greatly reduces the use cost.

附图说明Description of drawings

图1为本实用新型电动绞车锥面刹车装置分解结构示意图。Fig. 1 is a schematic diagram of the disassembled structure of the cone brake device of the electric winch of the present invention.

图2为本实用新型顺时针转动未刹车状态结构图。Fig. 2 is a structural diagram of the utility model in a clockwise rotation state without braking.

图3为顺时针转动未刹车状态时、刹车离合座与锲形块A、B相对位置关系图。Fig. 3 is a diagram showing the relative positional relationship between the brake clutch seat and the wedge-shaped blocks A and B when the brake is rotated clockwise without braking.

图4为本实用新型逆时针转动未刹车状态结构图。Fig. 4 is a structural diagram of the utility model in a counterclockwise rotation state without braking.

图5为逆时针转动未刹车状态时、刹车离合座与锲形块A、B相对位置关系图。Fig. 5 is a diagram showing the relative positional relationship between the brake clutch seat and the wedge blocks A and B when the brake is rotated counterclockwise without braking.

图6为本实用新型处于刹车状态结构图。Fig. 6 is a structural diagram of the utility model in a braking state.

图7为顺时针转动处于刹车状态时、刹车离合座与锲形块A、B相对位置关系图。Fig. 7 is a diagram showing the relative position relationship between the brake clutch seat and the wedge-shaped blocks A and B when the clockwise rotation is in the braking state.

图8为逆时针转动处于刹车状态时、刹车离合座与锲形块A、B相对位置关系图。Fig. 8 is a diagram showing the relative positional relationship between the brake clutch seat and the wedge blocks A and B when the brake is in the counterclockwise rotation state.

图9为本实用新型在电动绞车机构中与离合装置在离状态时的相对位置关系图。Fig. 9 is a diagram of the relative position relationship between the utility model and the clutch device in the disengaged state in the electric winch mechanism.

图10为本实用新型在电动绞车机构中与离合装置在合状态时的相对位置关系图。Fig. 10 is a relative positional diagram of the utility model in the electric winch mechanism and the clutch device in the engaged state.

具体实施方式Detailed ways

下面将结合上述附图对本实用新型实施例再进行详细描述。The embodiments of the present utility model will be described in detail below in conjunction with the above-mentioned drawings.

如图1~10所示,电动绞车锥面刹车装置,包括固设在电动绞车上的减速箱体4,与减速箱体固连的刹车盖13,减速箱体中央伸插一由轴承3支承的一段空心齿轴2,该空心齿轴为多键结构,从电机转轴延伸的一段芯轴1贯穿在空心齿轴中,伸出端部为六面体形18,一段空心齿轴上从左到右除安装轴承3外还分别套装有锲形座5、弹性元件7、锲形块B8、锲形块A9。As shown in Figures 1 to 10, the electric winch cone brake device includes a reduction box 4 fixed on the electric winch, a brake cover 13 fixedly connected with the reduction box, and the center of the reduction box is inserted and supported by a bearing 3. A section of hollow gear shaft 2, the hollow gear shaft is a multi-key structure, a section of mandrel 1 extending from the motor shaft runs through the hollow gear shaft, and the protruding end is a hexahedral shape 18, on a section of hollow gear shaft from left to right Except that bearing 3 is installed, wedge-shaped seat 5, elastic element 7, wedge-shaped block B8, wedge-shaped block A9 are also sleeved respectively.

锲形座5和锲形块B8的外圆表面具有相对的锥面,与设在减速箱体内的双锥面结构的6片刹车片6,沿圆周排列形成摩擦接触或脱离的双锥面摩擦面。The outer circular surfaces of the wedge-shaped seat 5 and the wedge-shaped block B8 have opposite tapered surfaces, which are arranged along the circumference with the six brake pads 6 of the double-cone structure in the reduction box to form frictional contact or disengagement. noodle.

弹性元件7为宝塔形左旋弹簧,设在选用耐磨的合金钢制成的锲形座5与锲形块B8之间,一端扣接在一段空心齿轴孔中,另一端扣接在锲形块B所设的环槽17孔中,弹性元件的作用是当不需要刹车时有利于推动锲形块B,使锲形座和锲形块B的锥面与刹车片的双锥面形成间隙(如图2~5所示)。在组装时,弹性元件受压,故会存有将锲形块B的刹车片推离摩擦面的反向推力及倾向,故在组装时,在锲形块B8与弹性元件7之间考虑适当的回旋力,也就是说,将弹性元件的两端分别扣接孔时使锲形块B相对弹性元件存在适度的反向回旋力。The elastic element 7 is a pagoda-shaped left-handed spring, which is located between the wedge-shaped seat 5 made of wear-resistant alloy steel and the wedge-shaped block B8. In the hole 17 of the annular groove provided by the block B, the function of the elastic element is to facilitate pushing the wedge-shaped block B when the brake is not needed, so that the wedge-shaped seat and the tapered surface of the wedge-shaped block B form a gap with the double-tapered surface of the brake pad. (As shown in Figure 2-5). During assembly, the elastic element is under pressure, so there will be a reverse thrust and tendency to push the brake pad of the wedge-shaped block B away from the friction surface, so during assembly, proper consideration should be given between the wedge-shaped block B8 and the elastic element 7. That is to say, when the two ends of the elastic element are fastened to the holes respectively, the wedge-shaped block B has a moderate reverse rotational force relative to the elastic element.

锲形块B8利用轴孔空套在一段空心齿轴2上无直接传动关系,锲形块A9内孔为花键形齿孔,与一段空心齿轴2的花键形齿啮合形成直接带动转动的关系,同时被齿轴上的一组C型扣环10轴向限位,藉以限制及防止锲形块A移位,锲形块B与锲形块A的结合端面为双斜面构成的凸轮面16,两者凸轮面结合时使机构处于非刹车状态,当两者双斜面构成的凸轮面分离时,锲形块A推动锲形块B向左轴向移动使机构处于与刹车片紧贴的刹车状态(如图6~8所示)。锲形块A和锲形块B的外圆面分别设圆周均布的外双凸缘结构15和14。The wedge-shaped block B8 uses the shaft hole to be sleeved on a section of the hollow gear shaft 2 without a direct transmission relationship. The inner hole of the wedge-shaped block A9 is a spline-shaped tooth hole, which meshes with the spline-shaped teeth of a section of the hollow gear shaft 2 to form a direct driving rotation. At the same time, it is axially limited by a set of C-shaped buckles 10 on the gear shaft, so as to limit and prevent the wedge-shaped block A from shifting. The combined end surface of the wedge-shaped block B and the wedge-shaped block A is a cam composed of double slopes. Surface 16, when the two cam surfaces are combined, the mechanism is in a non-braking state. When the cam surfaces formed by the two inclined surfaces are separated, the wedge-shaped block A pushes the wedge-shaped block B to move axially to the left, so that the mechanism is in close contact with the brake pad. brake state (as shown in Figure 6-8). The outer circular surfaces of the wedge-shaped block A and the wedge-shaped block B are respectively provided with outer double flange structures 15 and 14 uniformly distributed around the circumference.

一刹车离合座11,其中心轴孔为六面体形孔,套设在所述一段芯轴1端部的六面体18上,与一段芯轴形成直接带动转动的关系,刹车离合座11与刹车盖13之间以轴承12支承,该刹车离合座内配合锲形块A、B的外双凸缘的结构而设圆周均布的内双凸缘19结构(图3、图5、图7、图8所示),当刹车离合座11受到电机转轴驱动一段芯轴1旋转时(不管正转或反转),锲形块A9会因外双凸缘15受到刹车离合座内双凸缘19的顶推,使得锲形块A跟着转动,使一段空心齿轴受到锲形块A的转动跟着同步带动,在带动旋转的同时,刹车离合座又会立即以其内双凸缘19顶推到锲形块B的外双凸缘14,使得锲形块B亦跟着转动。A brake clutch seat 11, the central shaft hole of which is a hexahedron-shaped hole, is sleeved on the hexahedron 18 at the end of the first section of mandrel 1, and forms a direct driving relationship with a section of mandrel. The brake clutch seat 11 and the brake cover 13 Supported by bearings 12 between them, the inner double flange 19 structure (Fig. 3, Fig. 5, Fig. 7, Fig. As shown), when the brake clutch seat 11 is driven by the motor shaft to rotate a section of the mandrel 1 (regardless of forward rotation or reverse rotation), the wedge-shaped block A9 will be pushed by the inner double flange 19 of the brake clutch seat due to the outer double flange 15 Push, so that the wedge-shaped block A rotates accordingly, so that a section of the hollow gear shaft is synchronously driven by the rotation of the wedge-shaped block A. While driving the rotation, the brake clutch seat will immediately be pushed to the wedge-shaped by its inner double flange 19 The outer double flange 14 of the block B makes the wedge block B also rotate accordingly.

当使用者操作将重物(负载)吊起时,按压正转钮以使电机芯轴顺时针转动,而当电机运转带动其芯轴转动时,即会立即带动刹车离合座转动,且在瞬间刹车离合座内的内双凸缘顶推到锲形块A的外双凸缘与锲形块B的外双凸缘,使锲形块A、B同步受到带动转动(如图2~3所示),此时锲形块A因转动而带动一段空心齿轴跟着同步转动,而一段空心齿轴恢复与前述的减速齿轮组(图中未示)啮合,所以能传动带动钢索卷筒转动卷收钢索,以将重物吊起。在此同时,因为锲形块B亦被带动转动致锲形块A、B间的角度差消失,而使锲形块B的较缓凸轮斜面会靠近锲形块A的较缓凸轮斜面(如图2~3所示),且其转动力量大于锲形块B所受的反向扭力,再加上弹性元件的反向推力作用即促使锲形块B右靠(图2、图4所示),故其刹车片脱离与摩擦面的贴触制动作用,使能顺利吊起重物。而当电机停止传递动力时,电机芯轴与刹车离合座随即停止转动,故刹车离合座11的内双凸缘19即停止对外双凸缘14和15的推动,此时重物的重力所产生的扭力经过钢索而拉动钢索卷筒欲回转,并经由减速齿轮组传导给一段芯轴1及锲形块A皆欲回转,且实际上锲形块A也确实回转一极小段距离,然后随即停止,故瞬间锲形块B、A间的角度差又产生,且在此瞬间锲形块A的较陡斜面已推及锲形块B的较陡斜面,再加上前所述锲形块B所受弹性元件的反向扭力作用,故锲形块B即被迫左移(如图7~8所示),而瞬即产生刹车片与摩擦面贴触摩擦的制动作用,且重物扭力越大,锲形块A推动锲形块B的力量也越大,从而贴触刹车制动的力量也越大。When the user operates to lift the heavy object (load), press the forward rotation button to make the motor mandrel rotate clockwise, and when the motor runs to drive the mandrel to rotate, it will immediately drive the brake clutch seat to rotate, and in an instant The inner double flanges in the brake clutch seat push against the outer double flanges of the wedge block A and the outer double flanges of the wedge block B, so that the wedge blocks A and B are driven to rotate synchronously (as shown in Figure 2-3 (shown), at this time, the wedge-shaped block A drives a section of the hollow gear shaft to rotate synchronously due to the rotation, and a section of the hollow gear shaft resumes meshing with the aforementioned reduction gear set (not shown in the figure), so it can drive the cable drum to rotate Reel in the wire rope to lift heavy objects. At the same time, because the wedge-shaped block B is also driven to rotate so that the angle difference between the wedge-shaped blocks A and B disappears, the slower cam slope of the wedge-shaped block B will be close to the slower cam slope of the wedge-shaped block A (such as As shown in Figures 2-3), and its rotational force is greater than the reverse torsion force on the wedge-shaped block B, coupled with the reverse thrust of the elastic element, the wedge-shaped block B is pushed to the right (as shown in Figures 2 and 4 ), so the brake pads are separated from the contact braking effect with the friction surface, so that heavy objects can be lifted smoothly. And when the motor stopped transmitting power, the motor mandrel and the brake clutch seat stopped rotating immediately, so the inner double flanges 19 of the brake clutch seat 11 stopped the promotion of the outer double flanges 14 and 15. The torsion force pulls the cable drum through the steel cable to rotate, and is transmitted to a section of the mandrel 1 and the wedge A through the reduction gear set to rotate, and in fact the wedge A does rotate a very small distance. Then stop immediately, so the angle difference between the wedge-shaped blocks B and A is produced again in an instant, and the steeper slope of the wedge-shaped block A has been pushed to the steeper slope of the wedge-shaped block B at this moment, plus the aforementioned wedge The wedge-shaped block B is subjected to the reverse torsion force of the elastic element, so the wedge-shaped block B is forced to move to the left (as shown in Figures 7-8), and the braking effect of the brake pad and the friction surface will be produced instantly, And the greater the torsional force of the heavy object, the greater the power of the wedge-shaped block A to push the wedge-shaped block B, and thus the greater the power of sticking to the brake.

以上情形是指使用者将重物吊起至停止时之间的刹车作用,另有一种经常会使用到的情形是,将重物自高处吊下至低处停止,在此过程中,当使用者将重物吊至钢索末端的吊钩并使重物悬空时,即先产生以上所述及图7~8所表达的停止动力时的刹车作用;接着,使用者操作电机动力逆时针反转,使电机芯轴及刹车离合座皆反向转动,则瞬间,刹车离合座内的内双凸缘推及锲形块B的外双凸缘且亦即推及锲形块A的外双凸缘(图4~5所示),而使锲形块B、A间的角度差消失,且锲形块B的较缓斜面重又靠近锲形块A的较缓斜面(如图4所示),故锲形块B的锥面即脱离与刹车片摩擦面的贴触制动作用,使能顺利将重物吊下。请比较图4与图5,即知在借助动力吊起(重物)与吊下(重物)二种使用情形时,锲形块B皆稍微右移,停止刹车作用。而当电机停止时,皆迅速产生如图8所示的刹车作用。另外,在不吊重物亦不使用动力时,亦存在着刹车作用。The above situation refers to the braking effect when the user lifts the heavy object until it stops. Another situation that is often used is that the heavy object is lifted from a high place to a low place to stop. When the user lifts the heavy object to the hook at the end of the cable and suspends the heavy object in the air, the above-mentioned braking effect and the stopping power shown in Figures 7-8 will first be generated; then, the user operates the motor power counterclockwise Reverse, so that the motor mandrel and the brake clutch seat are reversely rotated, then in an instant, the inner double flanges in the brake clutch seat push the outer double flanges of the wedge-shaped block B and also push the outer double flanges of the wedge-shaped block A. Double flanges (as shown in Figures 4-5), so that the angle difference between the wedge-shaped blocks B and A disappears, and the slower slope of the wedge-shaped block B is closer to the slower slope of the wedge-shaped block A (as shown in Figure 4 Shown), so the tapered surface of the wedge-shaped block B promptly breaks away from the contact braking effect with the friction surface of the brake pad, so that the heavy object can be hoisted smoothly. Please compare Fig. 4 and Fig. 5, that is to say, in the two situations of lifting (heavy object) and lowering (heavy object) by means of power, wedge-shaped block B all moves slightly to the right, and stops the braking action. And when the motor stops, the braking effect as shown in Fig. 8 is rapidly produced. In addition, there is also a braking effect when neither lifting heavy objects nor using power.

由以上说明可知,当组装完后本实用新型即存在着刹车作用,而当一旦启动电机运转时(无论正、逆转)刹车作用皆会停止,而当动力停止时或突然停电时,刹车作用随即产生,且重物愈重刹车力量愈大,如此方能确保使用上的方便性与安全性。As can be seen from the above description, the utility model has a braking effect after the assembly is completed, and once the motor is started to run (no matter forward or reverse), the braking effect will stop, and when the power stops or a sudden power failure, the braking effect immediately Produced, and the heavier the weight, the greater the braking force, so as to ensure the convenience and safety of use.

Claims (3)

1、一种电动绞车锥面刹车装置,包括有:固设在电动绞车上的减速箱体(4);与减速箱体固连的刹车盖(13);伸插在减速箱体轴孔中以轴承(3)支承的一段空心齿轴(2);从电机转轴延伸的一段芯轴(1)贯穿空心齿轴,伸出端部为多面体形;一锲形块A(9)套设在一段空心齿轴(2)上与空心齿轴相啮合,锲形块A的左端面为双斜面构成的凸轮面(16),右端面以扣环(10)轴向限位,外圆面设圆周均布的外双凸缘(15)结构;一锲形块B(8)空套在空心齿轴(2)上,其右端面是与锲形块A相啮合的双斜面构成的凸轮面(16),外圆面设圆周均布的外双凸缘(14)结构,锲形块B的外缘设有若干刹车片(6);一弹性元件(7)套装在一段空心齿轴(2)上并顶推在锲形块B(8)上;一刹车离合座(11),其中心套设在所述一段芯轴(1)的端部与其多面体形相结合,与刹车盖(13)之间以轴承(12)支承,其内圆面设有与所述锲形块A、锲形块B外双凸缘相配的内双凸缘(19)结构,该内双凸缘结构可推动锲形块A的外双凸缘转动进而推动锲形块B轴向移动;其特征在于所述的刹车片(6)为双锥面结构,分别与套设在一段空心齿轴(2)上的锲形座(5)和锲形块B(8)构成双锥面摩擦面。1. A cone braking device for an electric winch, comprising: a reduction box (4) fixed on the electric winch; a brake cover (13) fixedly connected to the reduction box; extended and inserted in the shaft hole of the reduction box A section of hollow gear shaft (2) supported by bearings (3); a section of mandrel (1) extending from the motor shaft runs through the hollow gear shaft, and the protruding end is polyhedron-shaped; a wedge-shaped block A (9) is sleeved on A section of the hollow gear shaft (2) meshes with the hollow gear shaft. The left end face of the wedge-shaped block A is a cam face (16) formed by double slopes, and the right end face is axially limited by the snap ring (10). The structure of outer double flanges (15) uniformly distributed on the circumference; a wedge-shaped block B (8) is emptied on the hollow gear shaft (2), and its right end surface is a cam surface composed of double slopes meshing with the wedge-shaped block A (16), the outer double flange (14) structure that the circumference is evenly distributed on the outer circular surface is provided with some brake pads (6) on the outer edge of the wedge block B; an elastic element (7) is sleeved on a section of the hollow gear shaft ( 2) Go up and push on the wedge-shaped block B (8); a brake clutch seat (11), the center of which is sleeved on the end of the section of the mandrel (1) and combined with its polyhedron shape, and brake cover (13 ) are supported by bearings (12), and its inner circular surface is provided with an inner double flange (19) structure matching the outer double flanges of the wedge block A and wedge block B, and the inner double flange structure can be Push the outer double flanges of the wedge block A to rotate and then push the wedge block B to move axially; it is characterized in that the brake pad (6) is a double-cone structure, which is respectively sleeved on a section of the hollow gear shaft (2) The wedge-shaped seat (5) and the wedge-shaped block B (8) on the top constitute a double-cone friction surface. 2、根据权利要求1所述的电动绞车锥面刹车装置,其特征在于所述的锲形块B(8)的左端面上设有容纳弹性元件(7)的环槽(17)。2. The electric winch cone braking device according to claim 1, characterized in that the left end surface of the wedge block B (8) is provided with an annular groove (17) for accommodating the elastic element (7). 3、根据权利要求1或2所述的电动绞车锥面刹车装置,其特征在于所述的双锥面刹车片(6)沿圆周排列4~8片。3. The electric winch cone brake device according to claim 1 or 2, characterized in that said double cone brake pads (6) are arranged in 4 to 8 pieces along the circumference.
CN 200620106774 2006-08-17 2006-08-17 Electric winch cone brake device Expired - Lifetime CN200981800Y (en)

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CN 200620106774 CN200981800Y (en) 2006-08-17 2006-08-17 Electric winch cone brake device

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103663239A (en) * 2013-11-25 2014-03-26 南通力威机械有限公司 Anti-reversing device winch
CN108069357A (en) * 2016-11-14 2018-05-25 郑州飞机装备有限责任公司 A kind of self-sustaining gear

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103663239A (en) * 2013-11-25 2014-03-26 南通力威机械有限公司 Anti-reversing device winch
CN103663239B (en) * 2013-11-25 2015-12-09 南通力威机械有限公司 A kind of anti-kickback device winch
CN108069357A (en) * 2016-11-14 2018-05-25 郑州飞机装备有限责任公司 A kind of self-sustaining gear

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