Angle-controllable overturning platform for production of distribution box

文档序号:1299382 发布日期:2020-08-07 浏览:7次 中文

阅读说明:本技术 一种配电箱生产用角度可控式翻转台 (Angle-controllable overturning platform for production of distribution box ) 是由 王永斌 于 2020-04-29 设计创作,主要内容包括:本发明公开了一种配电箱生产用角度可控式翻转台,包括承载架构和安装于承载架构上的翻转装置;承载架构包括两根平行设置的第一方钢,第一方钢的上表面固定有两根平行设置的第二方钢,其中一根第二方钢的内侧表面通过第一安装板固定有齿轮箱,齿轮箱的输出端上活动安装有第一连杆,第一连杆的另一端活动安装有第二连杆,第二连杆套设于翻转装置上;翻转装置包括翻转操作板,翻转操作板的下表面固定于第一承接板的上表面。本发明通过电机能够实现翻转操作板的翻转,通过指示条与角度尺的配合使用,精确控制翻转操作板的翻转角度,能够提高配电箱加工精度,而且翻转操作是通过电机控制,代替了手工操作,能够有效提高配电箱生产效率。(The invention discloses an angle-controllable overturning platform for production of a distribution box, which comprises a bearing framework and an overturning device arranged on the bearing framework; the bearing framework comprises two first square steels arranged in parallel, two second square steels arranged in parallel are fixed on the upper surface of each first square steel, a gear box is fixed on the inner side surface of one second square steel through a first mounting plate, a first connecting rod is movably mounted on the output end of the gear box, a second connecting rod is movably mounted at the other end of the first connecting rod, and the second connecting rod is sleeved on the turnover device; the turnover device comprises a turnover operation plate, and the lower surface of the turnover operation plate is fixed on the upper surface of the first bearing plate. According to the invention, the overturning of the overturning operation plate can be realized through the motor, the overturning angle of the overturning operation plate is accurately controlled through the matching use of the indication strip and the angle ruler, the processing precision of the distribution box can be improved, the overturning operation is controlled through the motor, manual operation is replaced, and the production efficiency of the distribution box can be effectively improved.)

1. An angle-controllable overturning platform for production of a distribution box is characterized by comprising a bearing framework (1) and an overturning device (2) arranged on the bearing framework (1);

the bearing framework (1) comprises two first square steels (11) arranged in parallel, two second square steels (13) arranged in parallel are fixed on the upper surface of each first square steel (11), each two first square steels (11) and each two second square steels (13) form a square frame, a gear box (14) is fixed on the inner side surface of one second square steel (13) through a first mounting plate, a first motor (1401) is further fixed on the surface of each gear box (14), the output end of each first motor (1401) is connected with the input end of each gear box (14), a first connecting rod (1402) is movably mounted on the output end of each gear box (14), a second connecting rod (1403) is movably mounted at the other end of each first connecting rod (1402), a mounting ring is arranged at the other end of each second connecting rod (1403), and the mounting rings are sleeved on the turnover device (2); a plurality of second mounting plates (15) which are uniformly distributed along the length direction are further fixed on the upper surface of the second square steel (13), and a first shaft rod (1502) is mounted on the upper surface of each second mounting plate (15) through a bearing seat (1501); first bearing plates (1503) are uniformly distributed and fixed on the first shaft rod (1502), the upper surface of each first bearing plate (1503) is used for fixing the turnover device (2), an indicating strip (1504) is further fixed at one end of the first shaft rod (1502), a protractor (1301) is fixed on the end surface of the second square steel (13), and the indicating strip (1504) is matched with the protractor (1301) for use so as to indicate the rotating angle of the first shaft rod (1501);

turning device (2) are including upset operation board (21), and the lower surface of upset operation board (21) is fixed in the upper surface of first accepting board (1503), and the lower surface of upset operation board (21) is fixed with second and accepts board (2102), and the second is accepted and is gone up to run through on board (2102) and is fixed with second axostylus axostyle (2103), and second axostylus axostyle (2103) is on a parallel with first axostylus axostyle (1502) setting, and the installation ring cover of second connecting rod (1403) end department is located on second axostylus axostyle (2103), and the two rotates and.

2. The angle-controllable overturning platform for the production of the distribution box according to claim 1, wherein two ends of the lower surface of the first square steel (11) are provided with supporting legs (12).

3. The angle-controllable overturning platform for the production of the distribution box is characterized in that the first mounting plate is fixed on the inner side surface of the second square steel (13), and the gear box (14) is fixed on the surface of the first mounting plate.

4. The angle-controllable overturning platform for the production of the distribution box is characterized in that the first shaft rod (1502) is arranged along the length direction of the second square steel (13), and the first shaft rod (1502) is connected with the bearing seat (1501) through a bearing in an installing mode.

5. The angle-controllable overturning platform for the production of the distribution box is characterized in that bullseye wheels (2101) are uniformly distributed on the upper surface of the overturning operation plate (21).

6. The angle-controllable overturning platform for the production of the distribution box according to claim 1, wherein third mounting plates (22) uniformly distributed in the width direction are further fixed at the edge position of the upper surface of the overturning operating plate (21), gears (2201) are rotatably mounted on the third mounting plates (22), a gear ring (2202) is sleeved on each gear (2201), the gear ring (2202) is meshed with the gears (2201), and a second motor (2203) is connected to one gear (2201).

Technical Field

The invention belongs to the technical field of distribution box production, and particularly relates to an angle-controllable overturning platform for distribution box production.

Background

The distribution box is a mass parameter on data, generally forms a low-voltage forest according to electrical wiring, and requires that a switch device, a measuring instrument, a protective electrical appliance and an auxiliary device are assembled in a closed or semi-closed metal cabinet or on a screen to form the low-voltage distribution box. In normal operation, the circuit can be switched on or off by means of a manual or automatic switch. The existing overturning platform for production of the distribution box cannot realize full-automatic overturning in the using process, so that the processing and production efficiency of the distribution box is low, manual operation is required, and the using efficiency is reduced.

Chinese patent No. CN201921277523.5 discloses an angle-controllable type overturning platform for production of a distribution box, which comprises a base, a power device, a hydraulic telescopic rod, a supporting rod and an overturning platform, wherein the power device is fixedly installed on the upper side of the left side wall of the base, the hydraulic telescopic rod is fixedly installed on the left side of the top of the base, the supporting rod is fixedly installed on the front side of the middle of the top of the base, the overturning platform is fixedly installed on the right side of the supporting rod, a supporting plate is arranged on the upper side of the left side wall of the base, a movable rod is arranged on the right side wall of the hydraulic telescopic rod, a first rotating part is arranged on the right side of the front side wall of the movable rod, a second rotating part is arranged on the upper side of the front side wall of the supporting rod, a connecting rod is arranged at the front end of the second rotating part, a connecting plate is arranged in the, sliding blocks are arranged on the front side and the rear side of the bottom of the movable plate. This application can realize the upset to through gravity sensor's setting, realize automatic upset, but this application when overturning, the angle that can not accurate control upset, and then influence the machining precision of block terminal.

Disclosure of Invention

The invention aims to provide an angle-controllable overturning platform for production of a distribution box.

The purpose of the invention can be realized by the following technical scheme:

an angle-controllable overturning platform for production of a distribution box comprises a bearing framework and an overturning device arranged on the bearing framework;

the bearing framework comprises two first square steels arranged in parallel, two second square steels arranged in parallel are fixed on the upper surface of each first square steel, each first square steel and each second square steel form a square frame shape, a gear box is fixed on the inner side surface of one second square steel through a first mounting plate, a first motor is further fixed on the surface of the gear box, the output end of the first motor is connected with the input end of the gear box, a first connecting rod is movably mounted on the output end of the gear box, a second connecting rod is movably mounted at the other end of the first connecting rod, a mounting ring is arranged at the other end of the second connecting rod, and the mounting ring is sleeved on the turnover device; the upper surface of the second square steel is also fixedly provided with a plurality of second mounting plates which are uniformly distributed along the length direction, and the upper surface of each second mounting plate is provided with a first shaft lever through a bearing seat; the first bearing plates are uniformly distributed and fixed on the first shaft lever, the upper surface of each first bearing plate is used for fixing the turnover device, an indication strip is further fixed at one end of the first shaft lever, a bevel protractor is fixed on the end surface of the second square steel, and the indication strips are matched with the bevel protractor for use so as to indicate the rotation angle of the first shaft lever;

the turnover device comprises a turnover operation plate, the lower surface of the turnover operation plate is fixed on the first upper surface of the bearing plate, the lower surface of the turnover operation plate is fixed with a second bearing plate, the second bearing plate is fixed with a second shaft rod in a penetrating mode, the second shaft rod is parallel to the first shaft rod, the mounting ring sleeve at the end of the second connecting rod is arranged on the second shaft rod, and the second shaft rod and the second connecting rod are connected in a rotating mode.

Furthermore, supporting legs are installed at two ends of the lower surface of the first square steel.

Further, the first mounting plate is fixed on the inner side surface of the second square steel, and the gear box is fixed on the surface of the first mounting plate.

Furthermore, the first shaft rod is arranged along the length direction of the second square steel, and the first shaft rod is connected with the bearing seat through a bearing in an installing mode.

Furthermore, bull's eye wheels are uniformly distributed on the upper surface of the turnover operation plate.

Furthermore, the edge position of the upper surface of the turnover operation plate is further fixed with a third mounting plate which is uniformly distributed along the width direction, a gear is rotatably mounted on the third mounting plate, a gear ring is sleeved on the gear, the gear ring is meshed with the gear, and a second motor is connected to one of the gears.

The invention has the beneficial effects that:

according to the turnover device, the first motor is transmitted to the first connecting rod through the gear box, the first connecting rod drives the second connecting rod to be linked, the turnover operating plate is jacked upwards by the second connecting rod under the limiting action of the connecting rod transmission and the mounting ring, and the other end of the turnover operating plate is rotatably mounted on the bearing seat through the first shaft rod, so that the turnover operating plate rotates around the axis of the first shaft rod, and the turnover operation is realized;

an indication strip is further fixed at one end of the first shaft lever, an angle ruler is fixed on the surface of the end of the second square steel, and the indication strip is matched with the angle ruler for use so as to indicate the rotation angle of the first shaft lever, so that the real-time attention to the overturning angle of the overturning operation plate is facilitated, the overturning angle of the overturning operation plate is conveniently and accurately controlled, and the processing precision of the distribution box is improved;

during the use, place the block terminal accessory in upset operation panel surface, open first motor, under the drive of motor and the transmission of connecting rod, realize the upset of upset operation panel, use through the cooperation of instruction strip with the angle square, the rotation angle of accurate control upset operation panel, make the block terminal accessory process under suitable, accurate rotation angle, not only can improve block terminal machining precision, the operation of overturning is through motor control moreover, manual operation has been replaced, block terminal production efficiency can be effectively improved.

Drawings

The invention will be further described with reference to the accompanying drawings.

FIG. 1 is a schematic structural view of an angle-controllable overturning platform for production of a distribution box, disclosed by the invention;

FIG. 2 is a schematic view of a partial structure of an angle-controllable overturning platform for distribution box production according to the present invention;

FIG. 3 is a schematic structural view of an angle-controllable overturning platform for distribution box production according to the present invention;

fig. 4 is a schematic partial structure view of an angle-controllable overturning platform for production of a distribution box.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described 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 of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Referring to fig. 1-4, an angle-controllable turning table for distribution box production, as shown in fig. 1, includes a supporting structure 1 and a turning device 2 mounted on the supporting structure 1;

the bearing framework 1 comprises two first square steels 11 arranged in parallel, supporting legs 12 are arranged at two ends of the lower surface of each first square steel 11 and play a role in stabilizing and supporting, two second square steels 13 arranged in parallel are fixed on the upper surface of each first square steel 11, the two first square steels 11 and the two second square steels 13 form a square frame shape, a gear box 14 is fixed on the inner side surface of one second square steel 13 through a first mounting plate, specifically, the first mounting plate is fixed on the inner side surface of each second square steel 13, the gear box 14 is fixed on the surface of the first mounting plate, a first motor 1401 is further fixed on the surface of the gear box 14, the output end of the first motor 1401 is connected with the input end of the gear box 14, a first connecting rod 1402 is movably mounted on the output end of the gear box 14, a second connecting rod 1403 is movably mounted at the other end of the first connecting rod 1402, and a mounting ring is arranged at the other end of the, the mounting ring is sleeved on the turnover device 2; the upper surface of the second square steel 13 is also fixedly provided with a plurality of second mounting plates 15 which are uniformly distributed along the length direction, the upper surface of each second mounting plate 15 is provided with a first shaft bar 1502 through a bearing seat 1501, the first shaft bars 1502 are arranged along the length direction of the second square steel 13, and the first shaft bars 1502 are connected with the bearing seats 1501 through bearings; first bearing plates 1503 are uniformly and fixedly arranged on the first shaft rod 1502, the upper surface of the first bearing plates 1503 is used for fixing the turnover device 2, one end of the first shaft rod 1502 is further fixedly provided with an indication strip 1504, it should be noted that an angle scale 1301 is fixedly arranged on the end surface of the second square steel 13, and the indication strip 1504 is matched with the angle scale 1301 for use so as to indicate the rotation angle of the first shaft rod 1501;

the turnover device 2 comprises a turnover operation plate 21, wherein bull's eyes wheels 2101 are uniformly distributed on the upper surface of the turnover operation plate 21, the lower surface of the turnover operation plate 21 is fixed on the upper surface of a first bearing plate 1503, a second bearing plate 2102 is fixed on the lower surface of the turnover operation plate 21, a second shaft lever 2103 penetrates and is fixed on the second bearing plate 2102, the second shaft lever 2103 is arranged in parallel with the first shaft lever 1502, and a mounting ring at the end of a second connecting rod 1403 is sleeved on the second shaft lever 2103 and is in rotating connection with the second shaft lever 2103; the edge position of the upper surface of the overturning operation plate 21 is also fixedly provided with third mounting plates 22 which are uniformly distributed along the width direction, gears 2201 are rotatably mounted on the third mounting plates 22, gear rings 2202 are sleeved on the gears 2201, the gear rings 2202 are meshed with the gears 2201, one gear 2201 is connected with a second motor 2203, the second motor 2203 drives the gears 2201 to rotate, and the transmission effect is achieved under the driving of the gear rings 2202;

the working principle and the mode of the invention are as follows:

the first motor 1401 is transmitted to the first connecting rod 1402 through the gear box 14, the first connecting rod 1402 drives the second connecting rod 1403 to be linked, the second connecting rod 1403 enables the overturning operation plate 21 to be jacked upwards under the limiting effect of connecting rod transmission and the mounting ring, and the other end of the overturning operation plate 21 is rotatably mounted on the bearing block 1501 through the first shaft rod 1502, so that the overturning operation plate 21 rotates around the axis of the first shaft rod 1502, and overturning operation is achieved;

an indication strip 1504 is further fixed at one end of the first shaft rod 1502, an angle rule 1301 is fixed on the surface of the end of the second square steel 13, and the indication strip 1504 is matched with the angle rule 1301 for use so as to indicate the rotation angle of the first shaft rod 1501, so that the turning angle of the turning operation plate 21 can be conveniently paid attention to in real time, the turning angle of the turning operation plate 21 can be conveniently and accurately controlled, and the processing precision of the distribution box is improved;

during the use, place the block terminal accessory in upset operation panel 21 surface, the rotation angle of accurate control upset operation panel 21 makes the block terminal accessory process under suitable, accurate rotation angle, not only can improve block terminal machining precision, and the operation of overturning moreover is through motor control, has replaced manual operation, can effectively improve block terminal production efficiency.

The foregoing is merely exemplary and illustrative of the present invention and various modifications, additions and substitutions may be made by those skilled in the art to the specific embodiments described without departing from the scope of the invention as defined in the following claims.

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