INTEGRATED VACUUM SUCTION PAD
20230271336 ยท 2023-08-31
Inventors
Cpc classification
B66C1/0293
PERFORMING OPERATIONS; TRANSPORTING
B66C1/0256
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present disclosure relates to the technical field of suction equipment, in particular to an integrated vacuum suction pad comprising an adsorption part and a vacuum device; the vacuum device is fixedly arranged on one side of the adsorption part, and comprises a vacuum pump, a control valve and a relay; the vacuum pump is used for pumping out air between the adsorption part and an object to be adsorbed, and the control valve is used for controlling the adsorption part to be communicated with atmosphere or the vacuum pump; and the relay is used for powering on the vacuum pump and the control valve. According to the present disclosure, the pads are integrated with the devices, such as the vacuum pump, and each pad is capable of doing adsorption and release actions independently.
Claims
1. An integrated vacuum suction pad, characterized by comprising an adsorption part (1) and a vacuum device; the vacuum device is fixedly arranged on one side of the adsorption part (1), and comprises a vacuum pump (21), a control valve (22) and a relay (23); the vacuum pump (21) is used for pumping out air between the adsorption part (1) and an object to be adsorbed, and the control valve (22) is used for controlling the adsorption part (1) to be communicated with atmosphere or the vacuum pump (21); and the relay (23) is used for powering on the vacuum pump (21) and the control valve (22).
2. The integrated vacuum suction pad according to claim 1, characterized by further comprising a protective box (3), and the protective box (3) is fixedly arranged on one side of the adsorption part (1); the protective box (3) comprises a mounting frame (31) and a protective cover (32), and the protective cover (32) is connected with the mounting frame (31); and the vacuum device is arranged in the protective box (3).
3. The integrated vacuum suction pad according to claim 2, characterized in that set screws (11) are fixedly arranged on the adsorption part (1), the mounting frame (31) is connected with the adsorption part (1) by the set screws (11), and the protective cover (32) is connected with the mounting frame (31) by the set screws (11).
4. The integrated vacuum suction pad according to claim 2, characterized in that the mounting frame (31) is fixedly connected with the adsorption part (1), and connecting parts (311) through which the screws can penetrate are arranged on the mounting frame (31); and the protective cover (32) is connected with the mounting frame (31) by the connecting parts (311).
5. The integrated vacuum suction pad according to claim 2, characterized in that the mounting frame (31) comprises a mounting plate (312), the mounting plate (312) and the adsorption part (1) are arranged at intervals, and the vacuum pump (21) is arranged on the adsorption part (1).
6. The integrated vacuum suction pad according to claim 2, characterized in that the mounting frame (31) further comprises a drainage plate (313), and the drainage plate (313) extends from one end of the mounting frame (31) to the other end, close to the adsorption part (1), of the mounting frame.
7. The integrated vacuum suction pad according to claim 6, characterized in that the end, far away from the adsorption part (1), of the drainage plate (313) is bent, so that a gap is formed between the drainage plate and the inner wall of the protective cover (32).
8. The integrated vacuum suction pad according to claim 1, characterized by further comprising a vacuum tank (4), and the vacuum tank (4) is fixedly arranged on one side of the adsorption part (1); the vacuum tank (4) is communicated with the vacuum pump (21), and the adsorption part (1) can be controlled by the control valve (22) to be communicated with the vacuum tank (4) or the atmosphere.
9. The integrated vacuum suction pad according to claim 1, characterized by further comprising a mounting part (5), and the mounting part (5) comprises connecting struts (51) and a connecting plate (52); and the connecting struts (51) are connected with the adsorption part (1), and the connecting struts (51) penetrate through the connecting plate (52).
10. The integrated vacuum suction pad according to claim 9, characterized by further comprising springs (53), one end of each of the springs (53) is in contact with each of the connecting struts (51), and the other end of each of the springs (53) is in contact with the connecting plate (52).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021]
[0022]
[0023]
[0024]
[0025] In the figures: 1. Adsorption part, 11. Set screw, 21. Vacuum pump, 22. Control valve, 23. Relay, 24. Measuring instrument, 3. Protective box, 31. Mounting frame, 311. Connecting part, 312. Mounting plate, 313. Drainage plate, 32. Protective cover, 4. Vacuum tank, 5. Mounting part, 51. Connecting strut, 52. Connecting plate, 53. Spring, 6. Filter.
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] The following embodiments are only used for explaining the present disclosure, and are not intended to limit the present disclosure; modifications made by those skilled in the art without involving inventive contribution after reading this specification are all protected by the patent law as long as the modifications fall within the scope of the claims of the present disclosure.
[0027]
[0028] The protective box 3 comprises a mounting frame 31 and a protective cover 32, wherein the mounting frame 31 is connected with the adsorption part 1, and the protective cover 32 is connected with the mounting frame 31, so that the interior of the mounting frame 31 is in an approximately closed state. The mounting frame 31 comprises a mounting plate 312, the mounting plate 312 and the adsorption part 1 are parallel to each other, and are arranged at intervals. The mounting frame 31 further comprises a drainage plate 313, and the drainage plate 313 extends from the end, far away from the adsorption part 1, to the other end, close to the adsorption part 1, of the mounting frame 31, and is connected with the mounting plate 312. Meanwhile, the end, far away from the adsorption part 1, of the drainage plate 313 is bent, so that a gap is formed between the drainage plate and the inner wall of the protective cover 32, and thus the drainage plate and the protective cover can form an approximate groove structure jointly. Two connection modes are provided, which are between the mounting frame 31 and the adsorption part 1, and between the protective cover 32 and the mounting frame 31. The first connection mode: set screws 11 are fixedly arranged on the adsorption part 1, and the mounting frame 31 is connected with the adsorption part 1 by the set screws 11. Meanwhile, after the mounting frame 31 is connected with the adsorption part 1, the set screws 11 protrude out of a surface of the mounting frame 31. The protective cover 32 is connected with the mounting frame 31 by the set screws 11. In this connection mode, the protective box 3 can be connected with the adsorption part 1 more stably. However, the set screws 11 are liable to break, and the damaged set screws 11 easily cause that the whole protective box 3 cannot be maintained and replaced normally. The second connection mode: as shown in
[0029]
[0030] Preferably, the vacuum device further comprises a measuring instrument 24 used for measuring an air pressure of the vacuum tank 4, so as to achieve automatic control over the vacuum pump 21 according to measured results; a window corresponding to the measuring instrument 24 is formed in the protective cover 32, so that maintenance personnel can read values of the measuring instrument 24 from outside for maintenance.
[0031] In practical use, a plurality of the pads of the present disclosure can be jointly installed on the same high-altitude installation equipment by the connecting plate 52 to form an adsorption device. If the building material needs to be adsorbed, the adsorption part 1 is attached to the building material to be adsorbed. Due to influences of a mounting error, a part of the adsorption part 1 is liable to be earlier attached to the building material than the other part of the adsorption part 1 does in an alignment process. At the moment, the earlier attached part of the adsorption part 1 is subjected to a reaction force from the building material, and under the action of this reaction force, the springs 53 on the connecting struts 51 are compressed, so that the spacing between the connecting plate 52 and the adsorption part 1 is changed, and thus the other part, to be attached to the building material, of the adsorption part 1 can be attached to the building material properly. Therefore, an error-tolerant rate in practical operation is increased. After completion of attachment, the vacuum pump 21 is controlled to pump out air from the vacuum tank 4, and the adsorption part 1 is controlled by the control valve 22 to be communicated with the vacuum tank 4, so that a negative pressure in the vacuum tank 4 can be applied to the position between the adsorption part 1 and the building material, and thus the building material can be adsorbed by the adsorption part 1. Meanwhile, in the adsorption process of the adsorption part 1, the air flowing into the vacuum tank 4 from the adsorption part 1 is filtered by the filter 6 to prevent external impurities from entering the vacuum tank 4. After the adsorption part 1 is fully adsorbed onto the building material, external air cannot enter the vacuum tank 4, so that the vacuum tank 4 can be kept in a negative pressure state for a certain duration. At the moment, the vacuum pump 21 can be controlled to stop working. Therefore, by taking advantage of the vacuum tank 4, on one hand, the working time of the vacuum pump 21 can be reduced effectively, so as to reduce the fault probability of the vacuum pump 21 and prolong the service life of the vacuum pump 21; and on the other hand, if the vacuum pump 21 stops working due to a fault, the vacuum tank 4 can still maintain the adsorption state of the adsorption part 1 to prevent the adsorption part 1 from being separated from the building material suddenly, so that the safety is improved. When the building material needs to be released, the adsorption part 1 can be communicated with the atmosphere by the control valve 22, and therefore the negative pressure between the adsorption part 1 and the building material can be fractured without reverse inflation for the vacuum tank 4, so that the adsorption part 1 can be separated from the building material properly. Therefore, the control valve 22 can be used for fast switching the pressure state between the adsorption part 1 and the building material, on one hand, the working efficiency is improved, and on the other hand, the control sensitivity is improved.
[0032] In conclusion, the pads of the present disclosure are capable of completing adsorption and release operations independently. In an actual state, when some of the pads are damaged, the working states of the rest pads are not affected. On one hand, the adsorbed building material in the working process can be effectively prevented from being released suddenly, and therefore the safety in work of the high-altitude installation equipment is effectively improved; and on the other hand, the damaged pad can be maintained and replaced independently, so that the maintenance cost is reduced greatly, and the maintenance process is simplified.
[0033] Meanwhile, in case of working in a rainy season, when rainwater falls onto the adsorption part 1, the rainwater will flow out of the protective box 3 through the gap between the mounting plate 312 and the adsorption part 1, and therefore the situation that the rainwater gathers in the protective box 3 and consequently the vacuum device is damaged is effectively avoided. The rainwater directly falling onto the protective box 3 is led by the drainage plate 313, and flows to the mounting plate 312 through the groove structure formed by the drainage plate 313 and the protective cover 32 jointly, and finally flows out of the protective box 3 through the gap between the mounting plate 312 and the adsorption part 1. Thus, the vacuum device can be effectively protected from soaking in external liquid by the protective box 3, so that the damage probability of the vacuum device is reduced, and the overall safety is improved.
[0034] The above descriptions are only implementations of the present disclosure, but the protection scope of the present disclosure is not limited thereto; any easily-thinkable equivalent modifications or substitutions made by those skilled in the art within the technical scope disclosed by the present disclosure shall fall within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure shall follow the protection scope of the claims.