Ball cylindrical worm speed reducer

文档序号:418970 发布日期:2021-12-21 浏览:29次 中文

阅读说明:本技术 一种滚珠圆柱蜗杆减速机 (Ball cylindrical worm speed reducer ) 是由 张德明 于 2020-06-19 设计创作,主要内容包括:本发明提供一种滚珠圆柱蜗杆减速机,包括:包括机壳、涡轮和蜗杆,所述机壳内部一侧套设有蜗杆,蜗杆在机壳内部自由旋转,所述蜗杆一侧设置有涡轮,所述涡轮套设在机壳内部,在机壳内部自由转动。本发明提供的一种滚珠圆柱蜗杆减速机,滚珠、蜗杆和涡轮都采用高强度耐磨材质钢,传动强度和刚性比传统减速机更大,采用滚珠结构,滚动摩擦传动方式,提高了机械效率,采用滚珠结构,能承受更大的输入转速,使用场合更广泛,采用滚珠结构,同时也缩小了减速机的体积,由于蜗杆中段及其相对应的机壳上端面都为圆柱型,更方便滚珠进出鼠笼,更加高效和高速。(The invention provides a ball cylindrical worm speed reducer, comprising: including casing, turbine and worm, the inside one side cover of casing is equipped with the worm, and the worm freely rotates in the casing is inside, worm one side is provided with the turbine, the turbine cover is established inside the casing, at the inside free rotation of casing. According to the ball cylindrical worm speed reducer provided by the invention, the balls, the worm and the turbine are all made of high-strength wear-resistant material steel, the transmission strength and rigidity are higher than those of a traditional speed reducer, the ball structure is adopted, a rolling friction transmission mode is adopted, the mechanical efficiency is improved, the ball structure is adopted, the larger input rotating speed can be borne, the use occasions are wider, the ball structure is adopted, the size of the speed reducer is reduced, and the middle section of the worm and the upper end face of the corresponding shell are cylindrical, so that the balls can enter and exit a mouse cage more conveniently, and the efficiency and the high speed are higher.)

1. A ball-bearing cylindrical worm reducer comprising: the worm-gear type squirrel-cage worm wheel comprises a shell (1), a turbine (3) and a worm (2), wherein the worm (2) is sleeved on one side inside the shell (1), the worm (2) freely rotates inside the shell (1), a cavity is arranged inside the worm (2), a key groove is formed in the front end of the cavity, thread teeth are arranged on the outer surface of the middle section of the worm (2), the middle section of the worm (2) is cylindrical, the upper end surface of the shell (1) and the middle section of the worm (2) are correspondingly cylindrical, extension holes communicated with the cavity are further formed in two ends of the middle section of the worm (2), a squirrel-cage (4) is arranged inside the cavity, the squirrel-cage (4) is fixed at the tail end of the worm (2) through screws, holes are formed in the squirrel-cage (4), the extension holes are communicated with the holes of the squirrel-cage (4) to form a loop, a plurality of balls (16) are arranged on the thread teeth in the middle section of the worm (2), the squirrel cage 4 is also internally provided with a plurality of balls (16), one side of the worm (2) is provided with a turbine (3), and the turbine (3) is sleeved inside the casing (1) and freely rotates inside the casing (1).

2. The ball-bearing cylindrical worm speed reducer according to claim 1, characterized in that: the two ends of the worm (2) are respectively provided with a cover (5) and a rear cover (6), a first oil seal (7) and a first bearing (8) are arranged between the worm (2) and the cover (5), and a second bearing (9) is arranged between the worm (2) and the rear cover (6).

3. The ball-bearing cylindrical worm speed reducer according to claim 1, characterized in that: the rear cover (6) is connected with the machine shell (1) through screws.

4. The ball-bearing cylindrical worm speed reducer according to claim 1, characterized in that: and a sealing ring is also arranged between the rear cover (6) and the machine shell (1).

5. The ball-bearing cylindrical worm speed reducer according to claim 1, characterized in that: the two ends of the turbine (3) are respectively a shell (1) and a side cover (10), a second oil seal (11) and a third bearing (12) are arranged between the turbine (3) and the shell (1), and a third oil seal (13) and a fourth bearing (14) are arranged between the turbine (3) and the side cover (10).

6. The ball-and-ring worm reducer of claim 5, wherein: the side cover (10) is fixed on the machine shell (1) through screws.

7. The ball-and-ring worm reducer of claim 1, wherein: and a plug (15) is arranged at the position on the surface of the shell (1) corresponding to the worm (2).

8. The ball-and-ring worm reducer of claim 1, wherein: the holes of the squirrel cage (4) are S-shaped holes or U-shaped holes.

Technical Field

The invention relates to the field of speed reducers, in particular to a ball cylindrical worm speed reducer.

Background

The reducer is an independent part consisting of gear drive, worm drive and gear-worm drive which are enclosed in a rigid casing and is commonly used as a speed reduction transmission device between a prime mover and a working machine. The function of matching the rotation speed and transmitting the torque between the prime mover and the working machine or the actuating mechanism is very extensive in modern machinery. The speed reducer is generally used for low-speed and large-torque transmission equipment, and the purpose of reducing speed is achieved by meshing a motor, an internal combustion engine or other high-speed running power with a large gear on an output shaft through a gear with a small number of teeth on an input shaft of the speed reducer.

The speed reducer in the prior art has the problems of insufficient transmission strength and rigidity, low transmission efficiency, overlarge equipment and the like.

Therefore, the prior art has yet to be developed.

Disclosure of Invention

In view of the above-mentioned disadvantages of the prior art, it is an object of the present invention to provide a ball-and-cylinder worm reducer that solves the problems of the prior art and has certain advantages.

To achieve the above and other related objects, the present invention provides a ball-and-cylinder worm reducer, comprising: casing, turbine and worm, the inside one side cover of casing is equipped with the worm, and the worm freely rotates in the casing is inside, the inside cavity that is equipped with of worm, the cavity front end is equipped with the keyway, worm middle section surface is equipped with the thread tooth, the worm middle section is the cylinder type, the casing up end also is the cylinder type with the corresponding position in worm middle section, the middle part both ends of worm still are equipped with the hole that extends that link up each other with the cavity, the inside squirrel cage that is equipped with of cavity, the squirrel cage passes through the fix with screw the end of worm, the inside of squirrel cage is equipped with the hole, extends the hole and links up each other with the hole of squirrel cage, forms the return circuit, be equipped with a plurality of balls on the thread tooth in worm middle section, the inside a plurality of balls that also is equipped with of squirrel cage, worm one side is provided with the turbine, the turbine cover is established inside the casing, at the inside free rotation of casing.

In an embodiment of the present invention, a cover and a rear cover are respectively disposed at two ends of the worm, a first oil seal and a first bearing are disposed between the worm and the cover, and a second bearing is disposed between the worm and the rear cover.

In an embodiment of the invention, the rear cover is connected to the housing through screws.

In an embodiment of the present invention, a sealing ring is further disposed between the rear cover and the casing.

In an embodiment of the present invention, two ends of the turbine are respectively a casing and a side cover, a second oil seal and a third bearing are disposed between the turbine and the casing, and a third oil seal and a fourth bearing are disposed between the turbine and the side cover.

In an embodiment of the invention, the side cover is fixed on the casing by screws.

In an embodiment of the present invention, a plug is disposed on a surface of the casing corresponding to the worm.

In an embodiment of the present invention, the holes of the squirrel cage are S-shaped holes or U-shaped holes.

As described above, the ball-point cylindrical worm speed reducer according to the present invention has the following advantageous effects: according to the ball cylindrical worm speed reducer provided by the invention, the balls, the worm and the turbine are all made of high-strength wear-resistant material steel, the transmission strength and rigidity are higher than those of a traditional speed reducer, the ball structure is adopted, a rolling friction transmission mode is adopted, the mechanical efficiency is improved, the ball structure is adopted, the larger input rotating speed can be borne, the use occasions are wider, the ball structure is adopted, the size of the speed reducer is reduced, and the middle section of the worm and the upper end face of the corresponding shell are cylindrical, so that the balls can enter and exit a mouse cage more conveniently, and the efficiency and the high speed are higher.

Drawings

Fig. 1 is a perspective view of a ball-point cylindrical worm reducer disclosed in an embodiment of the present invention.

Fig. 2 is a schematic rear view of a ball-screw worm reducer according to an embodiment of the present invention.

Fig. 3 is a schematic side view of a ball-point cylindrical worm reducer according to an embodiment of the present invention.

Fig. 4 is a sectional view of a plane a-a of the ball-point cylindrical worm speed reducer disclosed in the embodiment of the present invention.

Fig. 5 is a sectional view of a B-B plane of a ball-point cylindrical worm speed reducer according to an embodiment of the present invention.

Fig. 6 is a C-C sectional view of a ball-point cylindrical worm reducer according to an embodiment of the present invention.

Description of the element reference numerals

1 case

2 Worm

3 turbine

4 mouse cage

5 machine cover

6 rear cover

7 first oil seal

8 first bearing

9 second bearing

10 side cover

11 second oil seal

12 third bearing

13 third oil seal

14 fourth bearing

15 plug

16 ball

Detailed Description

The following description of the embodiments of the present invention is provided for illustrative purposes, and other advantages and effects of the present invention will become apparent to those skilled in the art from the present disclosure.

Please refer to fig. 1 to 6. It should be understood that the structures, ratios, sizes, and the like shown in the drawings and described in the specification are only used for matching with the disclosure of the specification, so as to be understood and read by those skilled in the art, and are not used to limit the conditions under which the present invention can be implemented, so that the present invention has no technical significance, and any structural modification, ratio relationship change, or size adjustment should still fall within the scope of the present invention without affecting the efficacy and the achievable purpose of the present invention. In addition, the terms "upper", "lower", "left", "right", "middle" and "one" used in the present specification are for clarity of description, and are not intended to limit the scope of the present invention, and the relative relationship between the terms and the terms is not to be construed as a scope of the present invention.

Referring to fig. 1 to 6, the present invention provides a ball-bearing cylindrical worm reducer, including: the structure comprises a shell 1, a turbine 3 and a worm 2, wherein the worm 2 is sleeved on one side inside the shell 1, the worm 2 freely rotates inside the shell 1, a cavity is arranged inside the worm 2, a key groove is formed in the front end of the cavity, thread teeth are arranged on the outer surface of the middle section of the worm 2, the middle section of the worm 2 is cylindrical, the position, corresponding to the middle section of the worm 2, of the upper end surface of the shell 1 is also cylindrical, extension holes which are communicated with the cavity are further formed in two ends of the middle part of the worm 2, a mouse cage 4 is arranged inside the cavity, the mouse cage 4 is fixed at the tail end of the worm 2 through screws, holes are formed in the mouse cage 4, the extension holes are communicated with the holes of the mouse cage 4 to form a loop, a plurality of balls 16 are arranged on the thread teeth in the middle section of the worm 2, a plurality of balls 16 are also arranged inside the mouse cage 4, and the turbine 3 is arranged on one side of the worm 2, the turbine 3 is sleeved in the casing 1 and freely rotates in the casing 1.

Specifically, the both ends of worm 2 are provided with cover 5 and hou gai 6 respectively, be equipped with first oil blanket 7 and first bearing 8 between worm 2 and the cover 5, be equipped with second bearing 9 between worm 2 and the hou gai 6.

Specifically, the rear cover 6 is connected to the housing 1 by screws.

Specifically, a sealing ring is further arranged between the rear cover 6 and the casing 1.

Specifically, the both ends of turbine 3 are casing 1 and side cap 10 respectively, be equipped with second oil blanket 11 and third bearing 12 between turbine 3 and the casing 1, be equipped with third oil blanket 13 and fourth bearing 14 between turbine 3 and the side cap 10.

Specifically, the side cover 10 is fixed to the casing 1 by screws.

Specifically, a plug 15 is arranged on the surface of the casing 1 corresponding to the worm 2.

Wherein, the ball, the worm and the worm wheel are all made of high-strength steel.

Specifically, the holes of the squirrel cage 4 are S-shaped holes or U-shaped holes.

The holes of the squirrel cage 4 are not limited to S-shaped holes or U-shaped holes, and any squirrel cage that can realize the functions of the squirrel cage 4 of the present invention falls within the scope of the present invention.

When the invention is installed, a third bearing 12 and a second oil seal 11 are arranged at one end of a worm wheel 3, a fourth bearing 14 and a third oil seal 13 are arranged in a side cover 10, the arranged side cover 10 and the worm wheel 3 are arranged in a machine shell 1, the side cover 10 and the machine shell 1 are fixed by screws, a worm 2 is arranged in the machine shell 1, a first bearing 8 and a first oil seal 7 are arranged at the front end of the worm 2, a second bearing 9 is arranged at the rear end of the worm 2, then balls are put into a cavity in the worm 2, the specific number of the balls is a fixed number calculated in advance, when the balls are filled, a cavity hole at the rear end of the worm 2 is blocked to prevent the balls from falling off, the worm 2 is rotated by hands in a counterclockwise direction while the balls are arranged, a squirrel cage 4 is arranged in the cavity after the teeth on the outer wall of the worm 2 and the extending hole in the worm 2 are filled with the balls, and is fixed at the rear end of the worm 2 by screws and sealants, at this time, the rear cover 6 is screwed tightly, and the plug 15 is installed to complete the installation.

During specific implementation, the worm 2 is connected with an input shaft, the input shaft drives the worm 2 to rotate, and when the worm 2 rotates, the balls 16 roll between a loop formed by the worm 2 and the squirrel cage 4 and drive the turbine 3 to rotate.

In summary, according to the ball cylindrical worm speed reducer provided by the invention, the balls, the worm and the worm wheel are made of high-strength wear-resistant steel, the transmission strength and rigidity are higher than those of the traditional speed reducer, the ball structure and the rolling friction transmission mode are adopted, the mechanical efficiency is improved, the ball structure is adopted, the larger input rotating speed can be borne, the use occasions are wider, the ball structure is adopted, the size of the speed reducer is reduced, and the middle section of the worm and the upper end face of the corresponding shell are cylindrical, so that the balls can enter and exit from a mouse cage more conveniently, and the efficiency and the high speed are higher.

The foregoing embodiments are merely illustrative of the principles and utilities of the present invention and are not intended to limit the invention. Any person skilled in the art can modify or change the above-mentioned embodiments without departing from the spirit and scope of the present invention. Accordingly, it is intended that all equivalent modifications or changes which can be made by those skilled in the art without departing from the spirit and technical spirit of the present invention be covered by the claims of the present invention.

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