Sand blasting equipment for sand blasting and rust removing of pipeline surface

文档序号:1482437 发布日期:2020-02-28 浏览:29次 中文

阅读说明:本技术 一种用于管道表面喷砂除锈的喷砂设备 (Sand blasting equipment for sand blasting and rust removing of pipeline surface ) 是由 卢嫣萍 于 2019-11-12 设计创作,主要内容包括:本发明涉及一种喷砂设备,尤其涉及一种用于管道表面喷砂除锈的喷砂设备。要解决的技术问题为提供一种工作效率高、除锈全面的用于管道表面喷砂除锈的喷砂设备。一种用于管道表面喷砂除锈的喷砂设备,包括有安装架、动力组件、升降组件、旋转组件、传动组件和喷砂组件等;安装架左侧下部安装有通过转动方式提供动力的动力组件,安装架内下部左右两侧均安装有通过转动方式进行升降的升降组件,安装架左侧下部安装有通过转动方式进行旋转的旋转组件。本发明通过动力组件代替了人工对钢管进行喷砂除锈,节省了大量的人力,通过升降组件使人们更加方便的将钢管抬起和放下,通过传动组件使设备在喷砂时更加均匀,除锈质量更好。(The invention relates to sand blasting equipment, in particular to sand blasting equipment for sand blasting and rust removing on the surface of a pipeline. The technical problem to be solved is to provide a sand blasting device which has high working efficiency and comprehensive rust removal and is used for sand blasting and rust removal on the surface of a pipeline. A sand blasting device for sand blasting and rust removing on the surface of a pipeline comprises a mounting frame, a power assembly, a lifting assembly, a rotating assembly, a transmission assembly, a sand blasting assembly and the like; the power component that provides power through the rotation mode is installed to mounting bracket left side lower part, and the lift subassembly that goes up and down through the rotation mode is all installed to the lower part left and right sides in the mounting bracket, and the rotating assembly who carries out the rotation through the rotation mode is installed to mounting bracket left side lower part. According to the invention, the power assembly replaces manual sand blasting and rust removing for the steel pipe, a large amount of manpower is saved, people can lift and put down the steel pipe more conveniently through the lifting assembly, the equipment is more uniform in sand blasting through the transmission assembly, and the rust removing quality is better.)

1. A sand blasting equipment for sand blasting rust removal of pipeline surface is characterized by comprising:

a mounting frame (1);

the power assembly is arranged at the lower part of the left side of the mounting rack (1) and provides power in a rotating mode;

the lifting components are arranged on the left side and the right side of the inner lower part of the mounting rack (1) and lift in a rotating mode;

the rotating assembly is arranged at the lower part of the left side of the mounting rack (1) and rotates in a rotating mode;

the transmission assembly is arranged at the inner upper part of the mounting rack (1) and performs transmission in a rotating mode;

the sandblast subassembly is installed in mounting bracket (1), sandblasts through the slip mode.

2. The sand blasting equipment for sand blasting and rust removing of the surfaces of pipelines according to claim 1, wherein the power assembly comprises a speed reducing motor (2), a first bearing seat (3), a first rotating shaft (4) and a first gear (41), the speed reducing motor (2) is installed on the lower portion of the left side of the installation frame (1), the first bearing seat (3) is installed on the lower portion of the left side of the installation frame (1) in an embedded mode, the first rotating shaft (4) is arranged in the first bearing seat (3), the left end of the first rotating shaft (4) is connected with an output shaft of the speed reducing motor (2), and the first gear (41) is installed on the right end of the first rotating shaft (4).

3. The sand blasting equipment for sand blasting and rust removing of the surface of the pipeline as claimed in claim 2, wherein the lifting assembly comprises a second bearing seat (5), an L-shaped rotating rod (6), a first sliding sleeve (61), an inserted rod (62) and a second gear (63), the second bearing seat (5) is installed on the left side and the right side in the installation frame (1), the L-shaped rotating rod (6) is installed in the second bearing seat (5), the first sliding sleeve (61) is arranged on the inner side of the L-shaped rotating rod (6), the inserted rod (62) is arranged in the first sliding sleeve (61) in a sliding manner, and the second gear (63) is installed on the outer end of the L-shaped rotating rod (6) on the left side.

4. The sand blasting equipment for sand blasting and rust removing on the surface of the pipeline as claimed in claim 3, wherein the rotating assembly comprises an annular sliding block (71), guide rods (72), a second sliding sleeve (73), connecting rods (74), first springs (75), clamping blocks (76) and a gear ring (78), the lower part of the inner left side of the mounting rack (1) is provided with an annular sliding groove (7), the annular sliding grooves (7) are internally provided with the annular sliding block (71) in a sliding manner, the guide rods (72) are respectively arranged on the annular sliding blocks (71), the guide rods (72) are respectively provided with the second sliding sleeve (73) in a sliding manner, the outer side of the second sliding sleeve (73) is respectively provided with the connecting rods (74) in a sliding manner, the inner ends of the connecting rods (74) penetrate through the second sliding sleeve (73) and are internally provided with the clamping blocks (76), the first springs (75) are respectively connected between the connecting rods (74), the ring gear (78) meshes with the first gear (41) and the second gear (63).

5. The sand blasting equipment for sand blasting and rust removing on the surface of the pipeline according to claim 4, characterized in that the transmission assembly comprises a third bearing seat (8), a second rotating shaft (9), a third sliding sleeve (10), a first belt pulley (11), a first flat belt (12), a fourth bearing seat (13), a threaded rod (14), a first nut (15), a second belt pulley (16) and a second flat belt (17), the third bearing seat (8) is symmetrically arranged on the left side and the right side of the upper part in the mounting frame (1), the second rotating shaft (9) is arranged between the left and right side third bearing seats (8), the third sliding sleeve (10) is arranged on the second rotating shaft (9) in a sliding manner, the first belt pulleys (11) are respectively arranged on the left side and the right side of the second rotating shaft (9) and on the left and right side L-shaped rotating rods (6), the first flat belt (12) is respectively connected between the upper and lower side first, fourth bearing frame (13) are installed to mounting bracket (1) upper portion left and right sides symmetry, fourth bearing frame (13) are located third bearing frame (8) below, install threaded rod (14) between the left and right sides fourth bearing frame (13), fourth bearing frame (13) are passed to threaded rod (14) left end, be furnished with first nut (15) on threaded rod (14), first nut (15) bottom is connected with third sliding sleeve (10) bottom, all install second belt pulley (16) on threaded rod (14) left end and first pivot (4), be connected with flat belt (17) of second between two upper and lower second belt pulley (16).

6. The sand blasting equipment for sand blasting and rust removing on the surface of the pipeline according to claim 5, wherein the sand blasting component comprises a mounting rod (18) with threads, an arc-shaped pipe (19), high-pressure nozzles (20), a joint (21), a second nut (22), a fourth sliding sleeve (23) and a connecting rod (24), the mounting rod (18) with threads is mounted at the bottom of a first nut (15), the joint (21) is rotatably mounted at the bottom end of the mounting rod (18) with threads, the arc-shaped pipes (19) are rotatably arranged on the front side and the rear side of the joint (21), the arc-shaped pipes (19) on the front side and the rear side are communicated through the joint (21), at least two high-pressure nozzles (20) are uniformly arranged on the inner sides of the front arc-shaped pipe and the rear arc-shaped pipe (19) at intervals, the second nut (22) is arranged on the mounting rod (18) with threads, the top of the fourth sliding sleeve (23) is rotatably connected with the bottom of the second nut (22), the front side and the rear side of the fourth sliding sleeve (23) are rotatably and symmetrically provided with connecting rods (24), and the other end of each connecting rod (24) is slidably connected with the arc-shaped pipe (19).

7. The sand blasting equipment for sand blasting and rust removing on the surface of the pipeline according to claim 6, which further comprises a wiping component, wherein the wiping component comprises a circle (25), a sliding rod (26), a first arc-shaped block (27), a second spring (28), a first sponge block (29), a second arc-shaped block (30) and a second sponge block (31), the circle (25) is installed on the left side of the mounting rod (18) with threads, four sliding rods (26) are evenly arranged on the circle (25) in a sliding manner at intervals, the first arc-shaped block (27) is installed on the inner side of each sliding rod (26), the second spring (28) is connected between each sliding rod (26) and the circle (25), the first sponge block (29) is arranged on the inner side of each first arc-shaped block (27), the four second arc-shaped blocks (30) are evenly arranged on the inner side of each circle (25) at intervals, and the second arc-shaped blocks (30) are connected with the first arc-shaped, the inner sides of the second arc-shaped blocks (30) are provided with second sponge blocks (31).

Technical Field

The invention relates to sand blasting equipment, in particular to sand blasting equipment for sand blasting and rust removing on the surface of a pipeline.

Background

The steel pipe is used for conveying fluid and powdery solid, exchanging heat energy, manufacturing mechanical parts and containers, and is also an economic steel material. The surface of the steel pipe is rusted after the steel pipe is used for a long time, and the use of the steel pipe is affected, so that the rust on the surface of the steel pipe needs to be removed by sand blasting.

At present, when people remove the iron rust on steel pipe surface in the sandblast, generally the nozzle of holding the sandblast with the hand through people carries out the sandblast rust cleaning to steel pipe surface, this kind of people can be removed the iron rust on steel pipe surface with the mode that the nozzle was carried out the sandblast rust cleaning to steel pipe surface with holding the hand, but the great reduction work efficiency of this kind of mode, people hold the nozzle with the hand and carry out the sandblast to the steel pipe, make steel pipe surface sandblast even inadequately, lead to rust cleaning quality greatly reduced.

Therefore, the invention aims to solve the technical problem of designing the sand blasting equipment which has high working efficiency and comprehensive rust removal and is used for sand blasting and rust removal on the surface of the pipeline.

Disclosure of Invention

In order to overcome the defects of low working efficiency and poor derusting quality of the existing steel pipe derusting mode, the technical problems to be solved are as follows: the sand blasting equipment for sand blasting and rust removing on the surface of the pipeline is high in working efficiency and comprehensive in rust removing.

The technical scheme of the invention is as follows: a sand blasting equipment for sand blasting and rust removing on the surface of a pipeline comprises: a mounting frame; the power assembly is arranged at the lower part of the left side of the mounting rack and provides power in a rotating mode; the lifting components are arranged on the left side and the right side of the lower part in the mounting rack and lift in a rotating mode; the rotating assembly is arranged at the lower part of the left side of the mounting rack and rotates in a rotating mode; the transmission assembly is arranged at the upper part in the mounting rack and performs transmission in a rotating mode; the sandblast subassembly is installed in the mounting bracket, sandblasts through the slip mode.

In one embodiment, the power assembly comprises a speed reduction motor, a first bearing seat, a first rotating shaft and a first gear, the speed reduction motor is mounted at the lower part of the left side of the mounting frame, the first bearing seat is embedded in the lower part of the left side of the mounting frame, the first rotating shaft is arranged in the first bearing seat, the left end of the first rotating shaft is connected with an output shaft of the speed reduction motor, and the first gear is mounted at the right end of the first rotating shaft.

In one embodiment, the lifting assembly comprises a second bearing seat, an L-shaped rotating rod, a first sliding sleeve, an inserting rod and a second gear, the second bearing seat is mounted on the left side and the right side of the mounting frame, the L-shaped rotating rod is mounted in the second bearing seat, the first sliding sleeve is arranged on the inner side of the L-shaped rotating rod, the inserting rod is slidably arranged in the first sliding sleeve, and the second gear is mounted on the outer end of the left L-shaped rotating rod.

In one embodiment, the rotating assembly comprises an annular sliding block, a guide rod, a second sliding sleeve, a connecting rod, a first spring, a clamping block and a gear ring, an annular sliding groove is formed in the lower portion of the left side in the mounting frame, the annular sliding groove is internally provided with the annular sliding block in a sliding manner, the annular sliding block is provided with the guide rod, the guide rod is provided with the second sliding sleeve in an all-sliding manner, the outer side of the second sliding sleeve is provided with the connecting rod in an all-sliding manner, the inner end of the connecting rod penetrates through the second sliding sleeve to be internally provided with the clamping block, the connecting rod and the second sliding sleeve are connected with the first spring, the.

In one embodiment, the transmission assembly comprises a third bearing seat, a second rotating shaft, a third sliding sleeve, a first belt pulley, a first flat belt, a fourth bearing seat, a threaded rod, a first nut, a second belt pulley and a second flat belt, the third bearing seat is symmetrically arranged on the left side and the right side of the upper portion in the mounting frame, the second rotating shaft is arranged between the left and the right side of the third bearing seat, the third sliding sleeve is slidably arranged on the second rotating shaft, the first belt pulleys are arranged on the left side and the right side of the second rotating shaft and on the left and the right side L-shaped rotating rods, the first flat belt is connected between the upper and the lower side of the first belt pulleys, the fourth bearing seat is symmetrically arranged on the left and the right side of the upper portion of the mounting frame, the fourth bearing seat is positioned below the third bearing seat, the threaded rod is arranged between the left and the right side of the fourth bearing seat, second belt pulleys are mounted at the left end of the threaded rod and on the first rotating shaft, and a second flat belt is connected between the upper second belt pulley and the lower second belt pulley.

In one of the embodiments, the sandblast component includes the mounting rod with screw thread, the arc, the high pressure nozzle, connect, the second nut, fourth sliding sleeve and connecting rod, the mounting rod with screw thread is installed to first nut bottom, the rotary type of mounting rod bottom with screw thread installs the joint, connect the equal rotary type in both sides and be equipped with the arc around, the arc passes through to connect the intercommunication around, the equal even interval in two front and back arcs intraductal sides is equipped with two at least high pressure nozzles, be furnished with the second nut on the mounting rod with screw thread, the gliding style is equipped with the fourth sliding sleeve on the mounting rod with screw thread, fourth sliding sleeve top is connected with second nut bottom rotary type, both sides rotary type symmetry is equipped with the connecting rod around the fourth sliding sleeve, the connecting rod other end and arc sliding.

In one embodiment, the cleaning device further comprises a cleaning component, the cleaning component comprises a circle, sliding rods, a first arc-shaped block, a second spring, a first sponge block, a second arc-shaped block and a second sponge block, the circle is installed on the left side of the mounting rod with the threads, the circle is provided with four sliding rods at uniform intervals in a sliding mode, the first arc-shaped block is installed on the inner side of each sliding rod, the second spring is connected between each sliding rod and the circle, the first sponge block is arranged on the inner side of each first arc-shaped block, the four second arc-shaped blocks are installed on the inner side of the circle at uniform intervals, the second arc-shaped blocks are connected with the first arc-shaped blocks in a sliding mode, and the second sponge blocks are.

The beneficial effects are that: according to the invention, the power assembly replaces manual sand blasting and rust removing for the steel pipe, a large amount of manpower is saved, people can lift and put down the steel pipe more conveniently through the lifting assembly, the equipment is more uniform in sand blasting through the transmission assembly, the rust removing quality is better, the steel pipe subjected to sand blasting and rust removing can be cleaned through the cleaning assembly, the rust removing effect of the steel pipe is better, the rust removing of the steel pipe is more convenient, and the sand blasting and rust removing quality of the equipment is higher.

Drawings

Fig. 1 is a schematic front view of the present invention.

Fig. 2 is a left side view of the sandblasting module of the present invention.

Fig. 3 is a schematic front view of the present invention a.

Fig. 4 is a left side view of a wiping component of the present invention.

Labeled as: 1 mounting rack, 2 speed reducing motor, 3 first bearing seat, 4 first rotating shaft, 41 first gear, 5 second bearing seat, 6L-shaped rotating rod, 61 first sliding sleeve, 62 inserted rod, 63 second gear, 7 annular sliding groove, 71 annular sliding block, 72 guide rod, 73 second sliding sleeve, 74 connecting rod, 75 first spring, 76 clamping block, 77 clamping groove, 78 gear ring, 8 third bearing seat, 9 second rotating shaft, 10 third sliding sleeve, 11 first belt pulley, 12 first flat belt, 13 fourth bearing seat, 14 threaded rod, 15 first nut, 16 second belt pulley, 17 second flat belt, 18 threaded mounting rod, 19 arc tube, 20 high-pressure nozzle, 21 joint, 22 second nut, 23 fourth sliding sleeve, 24 connecting rod, 25 circle, 26 sliding rod, 27 first arc block, 28 … second spring, 29 … first sponge block, 30 … second arc block, 31 … second sponge block.

Detailed Description

The invention will be further described with reference to examples of embodiments shown in the drawings to which the invention is attached.

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