Tiltable automobile body heavy load EMS system lifting appliance frame

文档序号:388196 发布日期:2021-12-14 浏览:18次 中文

阅读说明:本技术 一种可倾斜车身重载ems系统吊具框架 (Tiltable automobile body heavy load EMS system lifting appliance frame ) 是由 张鹏飞 于 2021-09-16 设计创作,主要内容包括:本申请公开了一种可倾斜车身重载EMS系统吊具框架,包括:长方形机架,沿所述长方形机架横向中心线设置有第一横向支撑板,所述第一横向支撑板两端沿机架长度方向向外延伸形成有第一纵向支撑板和第二纵向支撑板,所述第一横向支撑板上设置有驱动装置,所述驱动装置包括对向设置的第一升降电机和第二升降电机,所述第一升降电机与第二升降电机一端通过万向轴相连,所述第一纵向支撑板上设置有第一皮带缠绕轮和第二皮缠绕轮,所述第二纵向支撑板上设置有第三皮带缠绕轮和第四皮带缠绕轮。本申请的可倾斜车身重载EMS系统吊具框架通过合理的规划布置,通过两个升降电机与四个皮带缠绕轮的配合,实现对吊具的平稳安全升降。(The application discloses tilting automobile body heavy load EMS system hoist frame includes: the rectangle frame is followed rectangle frame horizontal central line is provided with first horizontal backup pad, frame length direction is outwards extended along first horizontal backup pad both ends and is formed with the vertical backup pad of first vertical backup pad and second, be provided with drive arrangement in the first horizontal backup pad, drive arrangement includes first elevator motor and the second elevator motor of subtend setting, first elevator motor passes through the universal shaft with second elevator motor one end and links to each other, be provided with first belt winding wheel and second belt winding wheel in the first vertical backup pad, be provided with third belt winding wheel and fourth belt winding wheel in the vertical backup pad of second. The utility model provides a tiltable automobile body heavy load EMS system hoist frame arranges through reasonable planning, through the cooperation of two elevator motor and four belt winding wheels, realizes the steady safe lift to the hoist.)

1. The utility model provides a tiltable automobile body heavy load EMS system hoist frame which characterized in that: the method comprises the following steps: the rectangle frame is followed rectangle frame horizontal central line is provided with first horizontal backup pad, frame length direction is outwards extended along first horizontal backup pad both ends and is formed with the vertical backup pad of first vertical backup pad and second, be provided with drive arrangement in the first horizontal backup pad, drive arrangement includes first elevator motor and the second elevator motor of subtend setting, first elevator motor passes through the universal shaft with second elevator motor one end and links to each other, be provided with first belt winding wheel and second belt winding wheel in the first vertical backup pad, be provided with third belt winding wheel and fourth belt winding wheel in the vertical backup pad of second.

2. A tiltable body heavy load EMS system spreader frame as in claim 1, wherein: first belt winding wheel and second belt winding wheel link to each other with first elevator motor output through first connection cardan shaft, third belt winding wheel and fourth belt winding wheel link to each other with second elevator motor output through the second connection cardan shaft.

3. A tiltable body heavy load EMS system spreader frame as in claim 1, wherein: and a belt tensioning device is arranged on the front sides of the first belt winding wheel, the second belt winding wheel, the third belt winding wheel and the fourth belt winding wheel.

4. A tiltable body heavy load EMS system spreader frame as in claim 1, wherein: the first longitudinal support plate, the second longitudinal support plate and the rack are fixedly connected.

5. A tiltable body heavy load EMS system spreader frame as in claim 1, wherein: and fixed supporting seats are supported at two ends of the machine frame along the longitudinal central line of the machine frame.

6. A tiltable body heavy load EMS system spreader frame as in claim 1, wherein: guide pulleys are arranged on two sides of the rack.

7. A tiltable body heavy load EMS system spreader frame as in claim 1, wherein: and a control box mounting part is formed by extending outwards along the length direction of the rack.

Technical Field

The application relates to the technical field of hoisting, in particular to a lifting appliance frame of a tiltable automobile body heavy-load EMS system.

Background

With the rapid development of industrial automation, automobile assembly is also leading to modification and upgrading. In order to cooperate with the automatic production, a new tiltable car body heavy-load EMS system is generated, and in order to cooperate with the work of the tiltable car body heavy-load EMS system sling, a new tiltable car body heavy-load EMS system sling frame is needed.

Disclosure of Invention

The invention aims to provide a lifting appliance frame of a tiltable car body heavy-load EMS system, which overcomes the defects in the prior art.

In order to achieve the purpose, the invention provides the following technical scheme: a tiltable body heavy load EMS system spreader frame, comprising: the rectangle frame is followed rectangle frame horizontal central line is provided with first horizontal backup pad, frame length direction is outwards extended along first horizontal backup pad both ends and is formed with the vertical backup pad of first vertical backup pad and second, be provided with drive arrangement in the first horizontal backup pad, drive arrangement includes first elevator motor and the second elevator motor of subtend setting, first elevator motor passes through the universal shaft with second elevator motor one end and links to each other, be provided with first belt winding wheel and second belt winding wheel in the first vertical backup pad, be provided with third belt winding wheel and fourth belt winding wheel in the vertical backup pad of second.

Preferably, first belt winding wheel and second belt winding wheel link to each other with first elevator motor output through first connection cardan shaft, third belt winding wheel and fourth belt winding wheel link to each other with second elevator motor output through the second connection cardan shaft.

Preferably, a belt tensioning device is arranged on the front side of the first belt winding wheel, the second belt winding wheel, the third belt winding wheel and the fourth belt winding wheel.

Preferably, the first longitudinal support plate and the second longitudinal support plate are fixedly connected with the frame.

Preferably, the fixed supporting seats are supported at two ends of the machine frame along the longitudinal center line of the machine frame.

Preferably, guide pulleys are arranged on two sides of the frame.

Preferably, the control box mounting part extends outwards along the length direction of the machine frame.

Compared with the prior art, the tiltable automobile body heavy load EMS system lifting appliance framework is arranged through reasonable planning, and stable and safe lifting of the lifting appliance is realized through the matching of two lifting motors and four belt winding wheels.

Drawings

In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments described in the present application, and other drawings can be obtained by those skilled in the art without creative efforts.

FIG. 1 is a schematic structural diagram of a frame of a tiltable vehicle body heavy-duty EMS system spreader according to an embodiment of the present invention;

wherein: 1. a frame; 101. a front fixed supporting seat; 102. then fixing the supporting seat; 103. a guide wheel; 201. a first lift motor; 202. a second lift motor; 203. a cardan shaft; 301. a rear side belt winding wheel; 302. a front side belt winding wheel; 303. connecting a universal shaft; 401. a rear-side belt tensioner; 402. a front side belt tensioner; 5. a belt guide; 6. a control box mounting section; 7; and a balancing weight.

Detailed Description

The technical solutions in the embodiments of the present invention will be described in detail below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments. All other embodiments, which can be obtained by a person skilled in the art without any inventive step based on the embodiments of the present invention, are within the scope of the present invention.

Referring to fig. 1, a tiltable vehicle body heavy load EMS system spreader frame includes: rectangle frame 1 follows rectangle frame horizontal central line is provided with first horizontal backup pad, frame length direction is outwards extended along first horizontal backup pad both ends and is formed with the vertical backup pad of first vertical backup pad and second, be provided with drive arrangement in the first horizontal backup pad, drive arrangement includes first elevator motor 201 and the second elevator motor 202 of subtend setting, first elevator motor 201 links to each other through universal shaft 203 with second elevator motor 202 one end, be provided with first belt winding wheel and second belt winding wheel in the first vertical backup pad, be provided with third belt winding wheel and fourth belt winding wheel in the vertical backup pad of second.

In this technical solution, the first belt winding wheel and the third belt winding wheel constitute a front belt winding wheel 302, and the second belt winding wheel and the fourth belt winding wheel constitute a rear belt winding wheel 301; one end of the first lifting motor 201 is connected with one end of the second lifting motor 202 through the universal shaft 203, so that synchronous rotation of the motors is realized, and the generation of rotation speed difference is avoided, and the lifting appliance is prevented from falling.

Preferably, the first belt winding wheel and the second belt winding wheel are connected with the output end of the first lifting motor 201 through a first connecting universal shaft, and the third belt winding wheel and the fourth belt winding wheel are connected with the output end of the second lifting motor 202 through a second connecting universal shaft.

In this technical scheme, rear side belt winding wheel 301 and front side belt winding wheel 302 are connected with elevator motor through connecting cardan shaft 3, realize rear side belt winding wheel 301 and front side belt winding wheel 302 synchronous rotation.

Preferably, the front end of the front belt winding wheel 302 is provided with a front belt tensioner 402, and the front end of the rear belt winding wheel 301 is provided with a rear belt tensioner 401.

In this technical scheme, thereby through belt overspeed device tensioner, thereby prevent that the hoist that the belt is not hard up to lead to from turning on one's side when belt winding wheel twines.

Preferably, the first longitudinal support plate and the second longitudinal support plate are fixedly connected with the frame 1.

Preferably, fixed supporting seats are supported at two ends of the machine frame along the longitudinal center line of the machine frame 1.

In this technical solution, the rack can be adapted to the EMS system by the front fixed support 101 and the rear fixed support 102.

Preferably, guide pulleys 103 are arranged on two sides of the frame 1.

Preferably, a control box mounting part 6 is formed to extend outward along the length direction of the frame.

Preferably, a balancing weight is arranged on the frame 1.

Preferably, a belt guide 5 is provided between the belt winding wheel and the belt advancing device.

Compared with the prior art, the tiltable automobile body heavy load EMS system lifting appliance framework is arranged through reasonable planning, and stable and safe lifting of the lifting appliance is realized through the matching of two lifting motors and four belt winding wheels.

It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.

The foregoing is merely a detailed description of the present application, and it should be noted that modifications and embellishments could be made by those skilled in the art without departing from the principle of the present application, and these should also be considered as the protection scope of the present application.

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