CN219652544U - Slice infrared ceramic sample lifting device - Google Patents

Slice infrared ceramic sample lifting device Download PDF

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Publication number
CN219652544U
CN219652544U CN202223542077.0U CN202223542077U CN219652544U CN 219652544 U CN219652544 U CN 219652544U CN 202223542077 U CN202223542077 U CN 202223542077U CN 219652544 U CN219652544 U CN 219652544U
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China
Prior art keywords
rotating
telescopic
lifting device
infrared ceramic
ceramic sample
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CN202223542077.0U
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Chinese (zh)
Inventor
江天瑞
张阳
吴鑫涛
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Hangzhou Hengying Technology Co ltd
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Hangzhou Hengying Technology Co ltd
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Abstract

The utility model relates to the technical field of lifting devices, in particular to a flaky infrared ceramic sample lifting device which comprises a stand column and a rotating arm rotatably arranged on the stand column; the device is characterized by further comprising a lifting assembly arranged on the rotating arm, a rotating structure arranged on the rotating arm and connected with the upright post, and a stable structure arranged on the lifting assembly; the rotating structure comprises a connecting column arranged on the rotating arm, a rotating motor arranged on the connecting column, a rotating wheel arranged on the rotating motor and a matching block arranged on the upright column and contacted with the rotating wheel; the upright post is provided with a supporting plate; the connecting column is provided with a mounting block; and the bottom of the mounting block is provided with a universal wheel which is contacted with the supporting plate. According to the utility model, the hooks are limited by the arrangement of the stable structure, the telescopic rods can stretch and lift according to the movement of the hooks, and the shaking of cargoes in the hoisting process is reduced, so that the safety of the hoisting process is improved, and the safety of operators is ensured.

Description

Slice infrared ceramic sample lifting device
Technical Field
The utility model relates to the technical field of lifting devices, in particular to a flaky infrared ceramic sample lifting device.
Background
The lifting device is widely applied because of simplicity, flexibility and low cost, the lifting device generally comprises an upright post and a rotating arm, the rotating arm is rotationally connected with the upright post, then the rotating arm is driven to rotate around the upright post through a rotating structure, a trolley type electric hoist is further installed on the rotating arm, and goods are driven to move by the trolley type electric hoist.
In the existing lifting device, limiting plates are arranged at two ends of a rotating arm to limit the maximum and minimum strokes of the trolley type electric hoist, collision frequently occurs in the actual operation process, the impact force of the collision winding height acts on the limiting plates completely, and the limiting plates are easy to deform and influence the service life of the trolley type electric hoist; in addition, the trolley type electric hoist can easily drive the hook to shake in the sliding process, and in the lifting process, the hook can drive goods to shake back and forth, so that the threat is generated to the installation of operators, and the safety is reduced; in addition, the rotating structure of the lifting device is deformed at the rotating structure of the lifting device after long-time lifting, so that the rotating arm is not smooth to rotate. Therefore, the utility model provides a flaky infrared ceramic sample lifting device.
Disclosure of Invention
The utility model aims to solve the problems that the existing lifting device is frequently collided with a limiting plate, the limiting plate is deformed, the service life of the trolley type electric hoist is shortened, the risk of goods shaking back and forth easily occurs in the lifting process, the safety of operators is threatened, and the rotation of a rotating arm is unsmooth after the lifting device is lifted for a long time.
In order to achieve the aim, the utility model provides a flaky infrared ceramic sample lifting device which comprises a stand column and a rotating arm rotatably arranged on the stand column; the device is characterized by further comprising a lifting assembly arranged on the rotating arm, a rotating structure arranged on the rotating arm and connected with the upright post, and a stable structure arranged on the lifting assembly; the rotating structure comprises a connecting column arranged on the rotating arm, a rotating motor arranged on the connecting column, a rotating wheel arranged on the rotating motor and a matching block arranged on the upright column and contacted with the rotating wheel; the upright post is provided with a supporting plate; the connecting column is provided with a mounting block; and the bottom of the mounting block is provided with a universal wheel which is contacted with the supporting plate.
Further preferably, the rotating electrical machine is mounted on a mounting block; the mounting block is provided with a mounting groove; the rotating wheel is positioned in the mounting groove.
Further preferably, the lifting assembly comprises a trolley type electric hoist arranged on the rotating arm, a hook connected to the trolley type electric hoist and a sample barrel arranged on the hook; the stabilizing structure is arranged on the trolley type electric hoist.
Further preferably, limiting plates are symmetrically arranged on the rotating arms, and buffer pads are arranged on the limiting plates.
Further preferably, the stabilizing structure comprises a connecting plate arranged on the trolley type electric hoist, a telescopic rod arranged on the connecting plate, a stabilizing plate arranged on the telescopic rod and a semicircular buckle arranged on the stabilizing plate and connected with the hook.
Further preferably, the telescopic rod comprises a telescopic fixed pipe arranged on the connecting plate and a plurality of telescopic inner pipes sleeved in the telescopic fixed pipe in sequence.
Further preferably, the telescopic fixed pipe and the telescopic inner pipe are provided with telescopic inner holes; the telescopic fixed pipe and the telescopic inner pipe are respectively provided with a telescopic limiting plate; and the telescopic inner tube is also provided with a telescopic limit boss.
Further preferably, the telescopic limiting plates are provided with central holes matched with the telescopic inner pipes.
The utility model has the beneficial effects that: through the arrangement of the buffer cushion, after the trolley type electric hoist collides with the limiting plate, the buffer cushion buffers the impact force of the collision, so that the impact force of the collision between the trolley type electric hoist and the limiting plate is reduced, the deformation of the limiting plate is avoided, and the service life of the trolley type electric hoist is prolonged;
through the arrangement of the stable structure, the hooks are limited, the telescopic rods can stretch and lift according to the movement of the hooks, so that the shaking of the hooks in the hoisting process is reduced, the shaking of goods in the hoisting process is further reduced, the safety of the hoisting process is improved, and the safety of operators is ensured;
through the setting of backup pad, support the installation piece, and then support rotating electrical machines and swiveling wheel, prevent that swiveling wheel and cooperation piece hookup location from taking place the skew because of long-time hoist and mount to guarantee the smoothness nature when the swinging boom is rotatory.
Drawings
FIG. 1 is a schematic view of the overall structure of the present utility model.
Fig. 2 is an enlarged view of a portion of fig. 1 a of the present utility model.
Fig. 3 is a schematic overall structure of another view of the present utility model.
Fig. 4 is a partial enlarged view of the present utility model at B in fig. 3.
Fig. 5 is an enlarged view of a portion of the present utility model at C in fig. 4.
Fig. 6 is a schematic structural view of the telescopic rod of the present utility model.
Fig. 7 is a partial enlarged view of the present utility model at D in fig. 6.
Description of the drawings: upright 1, support plate 11, rotating arm 2, limiting plate 21, buffer 22, lifting assembly 4, trolley type electric hoist 41, hook 42, sample barrel 43, rotating structure 5, connecting column 51, rotating motor 52, rotating wheel 53, matching block 54, mounting block 55, mounting groove 551, universal wheel 56, stabilizing structure 6, connecting plate 61, telescopic rod 62, stabilizing plate 63, semicircle buckle 64; the telescopic fixing tube 65, the telescopic inner tube 66, the telescopic inner hole 67, the telescopic limiting plate 68, the telescopic limiting boss 69 and the central hole 691.
Detailed Description
The utility model will be further described by the following embodiments and with reference to the accompanying drawings.
Referring to fig. 1 to 6, the lifting device for the sheet ceramic sample in the utility model comprises a stand column 1 and a rotating arm 2 rotatably arranged on the stand column 1; the device is characterized by further comprising a lifting assembly 4 arranged on the rotating arm 2, a rotating structure 5 arranged on the rotating arm 2 and connected with the upright post 1, and a stable structure 6 arranged on the lifting assembly 4; the rotating structure 5 comprises a connecting column 51 arranged on the rotating arm 2, a rotating motor 52 arranged on the connecting column 51, a rotating wheel 53 arranged on the rotating motor 52 and a matching block 54 arranged on the upright 1, contacted with the rotating wheel 53 and integrally processed and molded with the upright 1; the upright 1 is provided with a supporting plate 11; the connecting column 51 is provided with a mounting block 55; the bottom of the mounting block 55 is provided with a universal wheel 56 which is contacted with the supporting plate 11; according to the utility model, the installation block 55 is supported by the arrangement of the support plate 11, so that the rotating wheel 53 and the rotating motor 52 are supported, and the connection position of the rotating wheel 53 and the matching block 54 is prevented from being deviated due to long-time hoisting, so that the smoothness of the rotating arm 2 during rotation is ensured; through the setting of universal wheel 56, make backup pad 11 when supporting installation piece 55, reduce the frictional property of backup pad 11 and installation piece 55 junction, guarantee the smoothness nature when the swinging boom is rotatory.
Referring to fig. 1-6, the rotary electric machine 52 according to the present utility model is mounted on a mounting block 55; the mounting block 55 is provided with a mounting groove 551; the rotating wheel 53 is positioned in the mounting groove 551; the lifting assembly 4 comprises a trolley type electric hoist 41 arranged on the rotating arm 2, a hook 42 connected to the trolley type electric hoist 41 and a sample barrel 43 arranged on the hook 42; the stabilizing structure 6 is arranged on the trolley type electric hoist 41; the rotating arm 2 is symmetrically provided with a limiting plate 21, and the limiting plate 21 is provided with a buffer cushion 22; according to the utility model, through the arrangement of the buffer cushion 22, after the trolley type electric hoist 41 collides with the limiting plate 21, the buffer cushion 22 buffers the collision impact force, so that the impact force of the trolley type electric hoist 41 on the limiting plate 21 is reduced, the deformation of the limiting plate 21 is avoided, and the service life of the trolley type electric hoist 41 is prolonged.
Referring to fig. 1-6, the stabilizing structure 6 of the present utility model includes a connecting plate 61 mounted on a trolley type electric hoist, a telescopic rod 62 mounted on the connecting plate 61, a stabilizing plate 63 mounted on the telescopic rod 62, and a semicircular buckle 64 mounted on the stabilizing plate 63 and connected with the hook 42; according to the utility model, the telescopic rod 62 is arranged to limit the hook 42, and the telescopic rod 62 can extend and retract according to the movement of the hook 42 and cannot swing, so that the shaking of goods in the hoisting process is reduced, the safety of the hoisting process is improved, and the safety of operators is ensured; through the setting of semicircle buckle 64, when telescopic link 62 is connected with couple 42, only need directly with semicircle buckle 64 with couple 42 go on the joint can, easy operation is convenient.
Referring to fig. 1-7, the telescopic rod 62 includes a telescopic fixed tube 65 mounted on the connecting plate 61 and a plurality of telescopic inner tubes 66 sequentially sleeved in the telescopic fixed tube 65; the telescopic fixed pipe 65 and the telescopic inner pipe 66 are respectively provided with a telescopic inner hole 67; the telescopic fixed pipe 65 and the telescopic inner pipe 66 are provided with telescopic limiting plates 68 through screws; a telescopic limit boss 69 is further arranged on the telescopic inner tube 66; the telescopic limiting plates 68 are provided with central holes 691 which are matched with the telescopic inner pipes 66; the telescopic limiting plate 68 is utilized to limit the telescopic limiting boss 69 on the telescopic inner tube 66, so that the telescopic inner tube 66 is limited in telescopic manner, and the telescopic inner tube 66 is conveniently limited.
The use process of the utility model comprises the steps that firstly, a rotating motor 52 is controlled by a controller to rotate, the rotating motor 52 drives a rotating wheel 53 to rotate, the rotating wheel 53 rubs with a matching block 54, the rotating wheel 53 moves around the matching block 54 to drive a mounting block 255 to move around the matching block 54, the mounting block 55 drives a universal wheel 56 and a rotating arm 2 to move around the matching block 54, the rotating arm 2 drives a trolley type electric hoist 41 to rotate, and the trolley type electric hoist 41 drives a hook 42 and a stabilizing component 6 to synchronously rotate; then the trolley type electric hoist 41 is controlled by the controller to move along the rotating arm 2, the trolley type electric hoist 41 drives the hook 42 and the stabilizing component 6 to move along the rotating arm 2, when the trolley type electric hoist 41 drives the stabilizing component 6 and the hook 42 to move right above the sample barrel 43 filled with samples, the trolley type electric hoist 41 is controlled to put down the hook 42, the hook 42 drives the semicircular buckle 64 to move downwards, the semicircular bayonet 64 drives the stabilizing plate 63 to move downwards, the stabilizing plate 63 drives the telescopic rod 62 to move downwards to stretch out, after the hook 42 is put down, the sample barrel 43 is hung on the hook 42, the trolley type electric hoist 41 is controlled to enable the hook 42 to move upwards, the sample barrel 43 and the stabilizing plate 63 are driven to move upwards to shorten, after the sample barrel 43 is lifted to a certain height, the hook 42 is controlled by the controller to rotate, the hook 42 is driven to rotate until the hook 42 moves to the target position, and then the trolley type electric hoist 41 is controlled to put down the hook 42.
The above embodiments are illustrative of the present utility model, and not limiting, and any simple modifications of the present utility model fall within the scope of the present utility model.

Claims (8)

1. The flaky infrared ceramic sample lifting device comprises a stand column (1) and a rotating arm (2) rotatably arranged on the stand column (1); the device is characterized by further comprising a lifting assembly (4) arranged on the rotating arm (2), a rotating structure (5) arranged on the rotating arm (2) and connected with the upright post (1), and a stable structure (6) arranged on the lifting assembly (4); the rotating structure (5) comprises a connecting column (51) arranged on the rotating arm (2), a rotating motor (52) arranged on the connecting column (51), a rotating wheel (53) arranged on the rotating motor (52) and a matching block (54) arranged on the upright post (1) and contacted with the rotating wheel (53); a supporting plate (11) is arranged on the upright post (1); the connecting column (51) is provided with a mounting block (55); the bottom of the mounting block (55) is provided with a universal wheel (56) which is contacted with the supporting plate (11).
2. The sheet-like infrared ceramic sample lifting device of claim 1, wherein: the rotating motor (52) is mounted on a mounting block (55); the mounting block (55) is provided with a mounting groove (551); the rotating wheel (53) is positioned in the mounting groove (551).
3. The sheet-like infrared ceramic sample lifting device of claim 1, wherein: the lifting assembly (4) comprises a trolley type electric hoist (41) arranged on the rotating arm (2), a hook (42) connected to the trolley type electric hoist (41) and a sample barrel (43) arranged on the hook (42); the stabilizing structure (6) is arranged on the trolley type electric hoist (41).
4. A sheet-like infrared ceramic sample lifting device as recited in claim 3, wherein: limiting plates (21) are symmetrically arranged on the rotating arms (2), and buffer pads (22) are arranged on the limiting plates (21).
5. A sheet-like infrared ceramic sample lifting device as recited in claim 3, wherein: the stabilizing structure (6) comprises a connecting plate (61) arranged on the trolley type electric hoist, a telescopic rod (62) arranged on the connecting plate (61), a stabilizing plate (63) arranged on the telescopic rod (62) and a semicircular buckle (64) arranged on the stabilizing plate (63) and connected with the hook (42).
6. The sheet-like infrared ceramic sample lifting device as recited in claim 5, wherein: the telescopic rod (62) comprises a telescopic fixed pipe (65) arranged on the connecting plate (61), and a plurality of telescopic inner pipes (66) sleeved in the telescopic fixed pipe (65) in sequence.
7. The sheet-like infrared ceramic sample lifting device as recited in claim 6, wherein: the telescopic fixed pipe (65) and the telescopic inner pipe (66) are respectively provided with a telescopic inner hole (67); the telescopic fixed pipe (65) and the telescopic inner pipe (66) are provided with telescopic limiting plates (68); and a telescopic limit boss (69) is further arranged on the telescopic inner tube (66).
8. The sheet-like infrared ceramic sample lifting device of claim 7, wherein: and central holes (691) matched with the telescopic inner pipes (66) are formed in the telescopic limiting plates (68).
CN202223542077.0U 2022-06-08 2022-12-30 Slice infrared ceramic sample lifting device Active CN219652544U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN2022214087547 2022-06-08
CN202221408754 2022-06-08

Publications (1)

Publication Number Publication Date
CN219652544U true CN219652544U (en) 2023-09-08

Family

ID=87862384

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223542077.0U Active CN219652544U (en) 2022-06-08 2022-12-30 Slice infrared ceramic sample lifting device

Country Status (1)

Country Link
CN (1) CN219652544U (en)

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