CN212335032U - High-temperature-resistant vacuum glass getter distributing device - Google Patents
High-temperature-resistant vacuum glass getter distributing device Download PDFInfo
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- CN212335032U CN212335032U CN202020681013.0U CN202020681013U CN212335032U CN 212335032 U CN212335032 U CN 212335032U CN 202020681013 U CN202020681013 U CN 202020681013U CN 212335032 U CN212335032 U CN 212335032U
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Abstract
The utility model belongs to the glass field relates to high temperature resistant vacuum glass field, concretely relates to device is put to high temperature resistant vacuum glass getter cloth, including support, getter feed bin, adsorption equipment and promotion device, the support sets up in the high temperature case outside, and bottom one end is deepened to the high temperature incasement, the getter feed bin sets up at the high temperature incasement, and getter feed bin bottom fixes the one end that is located the high temperature incasement in the support bottom, adsorption equipment sets up in getter feed bin top, just adsorption equipment one end stretches out the high temperature case to the slip sets up at the support upper surface, promote that device one end deepens the high temperature incasement to establish in the getter feed bin, other end sliding connection is on the support. The utility model provides a getter cloth put the problem that influences process efficiency, utilize the combination of getter feed bin and suction nozzle, stable automatic cloth is put the system about can forming, and cloth is put in succession under high temperature environment, need not to shut down, has promoted efficiency greatly.
Description
Technical Field
The utility model belongs to the glass field relates to high temperature resistant vacuum glass field, concretely relates to device is put to high temperature resistant vacuum glass getter cloth.
Background
Is assembled on a sheet combining table of a vacuum glass sealing production line or on a vacuum glass support distributing table. According to the process requirement, the upper sheet and the lower sheet of the vacuum glass are laminated in an environment with high temperature of about 200 ℃, and the getter is placed at the getter placing position of the lower sheet before lamination. The current process is to place the getters in other stations at low temperatures and is extremely inefficient.
SUMMERY OF THE UTILITY MODEL
To the problem among the prior art, the utility model provides a device is put to high temperature resistant vacuum glass getter cloth has solved the getter and has laid the problem that influences process efficiency, utilizes the combination of getter feed bin and suction nozzle, can form stable automatic cloth system from top to bottom, lays in succession under high temperature environment, need not to shut down, has promoted efficiency greatly.
In order to realize the technical purpose, the technical proposal of the utility model is that:
a high-temperature-resistant vacuum glass getter distribution device comprises a support, a getter bin, an adsorption device and a pushing device, wherein the support is arranged outside a high-temperature box, one end of the bottom of the support extends into the high-temperature box, the getter bin is arranged in the high-temperature box, the bottom of the getter bin is fixed at one end, located in the high-temperature box, of the bottom of the support, the adsorption device is arranged above the getter bin, one end of the adsorption device extends out of the high-temperature box and is arranged on the upper surface of the support in a sliding mode, one end of the pushing device extends into the high-temperature box and is arranged in the getter bin, and the other end of the pushing device is connected to the support;
the support comprises a bottom rod, an ejector rod, a connecting rod, a guide sliding table and a ball screw, the bottom rod and the ejector rod are arranged in parallel up and down, one end of the bottom rod is flush with one end of the same side of the ejector rod and is connected with the same through the connecting rod, the other end of the bottom rod extends into the high temperature box and is fixed at the bottom of a getter bin, the length of the ejector rod is smaller than that of the bottom rod, the upper surface of the ejector rod is provided with a transverse sliding table which is connected with an adsorption device in a sliding manner, one end of the ejector rod is connected with the connecting rod, the other end of the ejector rod is close to the high temperature box, the ball screw is downwards sleeved at one end of the ejector rod close to the high temperature box, the lower end of the ball screw penetrates through a pushing and lifting device and is sleeved on the bottom rod and is connected with a driving belt, the, and is connected with one end of the pushing and lifting device in a sliding way, and two ends of the guide sliding table are respectively fixed on the bottom rod and the ejector rod;
the getter storage bin comprises a cylindrical bin body, the interior of the bin body is smooth, an elastic mounting clamp is arranged at the bottom of the bin body and is fixed on the rack through the elastic mounting clamp, a sliding block is arranged in the bin body and is arranged on the pushing and lifting device, and a getter is placed on the sliding block;
the absorption device comprises a suction nozzle, a connecting rod, a lifting device and a transverse moving device, wherein the suction nozzle is positioned right above the getter bin and positioned at one end of the connecting rod, the other end of the connecting rod extends out of the high-temperature box and is connected with the movable end of the lifting device, the lifting device is fixed on the transverse moving device, the transverse moving device is connected to the upper surface of the rack in a sliding manner, and the suction nozzle is connected with an external vacuum device through a vacuum tube;
the pushing and lifting device comprises a support rod, a thread block and a guide sliding block, one end of the support rod extends into the high-temperature box and is arranged in the getter bin, the other end of the support rod penetrates through the thread block and is connected with the guide sliding block, the thread block is sleeved on the rack in a threaded manner, and the guide sliding block is connected to the rack in a sliding manner.
As can be seen from the above description, the present invention has the following advantages:
1. the utility model provides a getter cloth put the problem that influences process efficiency, utilize the combination of getter feed bin and suction nozzle, stable automatic cloth is put the system about can forming, and cloth is put in succession under high temperature environment, need not to shut down, has promoted efficiency greatly.
2. The utility model discloses a drive unit such as lift lead screw, slip table, motor is whole outside the high temperature district, avoids high temperature to damage motor and motion, convenient maintenance.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention;
fig. 2 is a longitudinal sectional view of an embodiment of the present invention.
Detailed Description
With reference to fig. 1 and 2, a specific embodiment of the present invention is described in detail, but the present invention is not limited to the claims.
As shown in fig. 1 and 2, a high temperature resistant vacuum glass getter distribution device comprises a support 1, a getter bin 2, an adsorption device 3 and a pushing and lifting device 4, wherein the support 1 is arranged outside a high temperature box, one end of the bottom of the support 1 extends into the high temperature box, the getter bin 2 is arranged in the high temperature box, the bottom of the getter bin 2 is fixed at one end of the bottom of the support 1, which is positioned in the high temperature box, the adsorption device 3 is arranged above the getter bin 2, one end of the adsorption device 3 extends out of the high temperature box and is slidably arranged on the upper surface of the support 1, one end of the pushing and lifting device 4 extends into the high temperature box and is arranged in the getter bin 2, and the other end of the pushing and lifting device is slidably connected to the support 1;
the support 1 comprises a bottom rod 1-1, a top rod 1-2, a connecting rod 1-3, a guide sliding table 1-4 and a ball screw 1-5, wherein the bottom rod 1-1 and the top rod 1-2 are arranged in parallel up and down, one end of the bottom rod 1-1 is flush with one end of the top rod 1-2 at the same side and is connected with the other end of the bottom rod through the connecting rod 1-3, the other end of the bottom rod extends into a high temperature box and is fixed at the bottom of a getter bin 2, the length of the top rod 1-2 is smaller than that of the bottom rod 1-1, a transverse sliding table in sliding connection with an adsorption device 2 is arranged on the upper surface of the top rod, one end of the top rod 1-2 is connected with the connecting rod 1-3, the other end of the top rod 1-2 is close to the high temperature box, the ball screw 1-5 is, the guide sliding table 1-4 is vertically arranged between the ball screw 1-5 and the connecting rod 1-3, a sliding groove of the guide sliding table 1-4 faces to the high-temperature box and is connected with one end of the pushing and lifting device 4 in a sliding mode, and two ends of the guide sliding table 1-4 are respectively fixed on the bottom rod 1-1 and the ejector rod 1-2; in the using process, the rack is arranged outside the high-temperature box, meanwhile, the transverse sliding table on the upper surface of the ejector rod can ensure that the adsorption device can transversely move back and forth, and can ensure that the adsorption device and the getter bin are positioned, a driving belt is arranged between the bottom of the ball screw and the free end of the rotating motor, and the rotation of the rotating motor is used for driving the self-rotation of the ball screw, so that the height of the pushing and lifting device can be slowly changed by utilizing the threaded connection of the ball screw and the pushing and lifting device;
the getter bin 2 comprises a bin body 2-2, the bin body 2-2 is cylindrical and smooth in interior, an elastic mounting clamp 2-1 is arranged at the bottom of the bin body 2-2 and is fixed on the rack 1 through the elastic mounting clamp 2-1, a sliding block 2-3 is arranged in the bin body 2-2, the sliding block 2-3 is arranged on the pushing and lifting device, and a getter is placed on the sliding block 2-3; the inner diameter of the bin body is slightly larger than the size of the getter, the bin body can keep smooth and without stagnation when the sliding block moves up and down, meanwhile, the bottom of the sliding block is arranged on the pushing and lifting device, and the sliding block is driven to slide up and down by the up-and-down pushing of the pushing and lifting device, so that the effect of automatically supporting and discharging materials is achieved; the elastic mounting clamp is arranged at the bottom of the bin body and is fixed on a bottom rod of the rack under the action of the mounting hole, and meanwhile, the elastic mounting clamp is clamped at the bottom of the bin body, so that the detachable connection mode can realize quick replacement within 2 minutes and support continuous production of a production line; the getter storage bin can store not less than 300 getters and can continuously produce more than ten small lives;
the absorption device 3 comprises a suction nozzle 3-1, a connecting rod 3-2, a lifting device 3-3 and a transverse moving device 3-4, wherein the suction nozzle 3-1 is positioned above the getter bin 2, the suction nozzle 3-1 is positioned at one end of the connecting rod 3-2, the other end of the connecting rod 3-2 extends out of the high temperature box and is connected with the movable end of the lifting device 3-3, the lifting device 3-3 is fixed on the transverse moving device 3-4, the transverse moving device 3-4 is connected to the upper surface of the rack in a sliding mode, and the suction nozzle 3-1 is connected with an external vacuum device through a vacuum tube; in the using process, the lifting device is connected with the connecting rod, the up-and-down movement of the connecting rod is realized by driving the lifting device, the suction nozzle can move up and down along with the lifting device based on the fact that the suction nozzle is fixed at one end of the connecting rod, the effect of quickly adjusting the height is achieved, meanwhile, the transverse moving device is arranged on the transverse sliding table on the top rod of the frame and can quickly move along the transverse sliding table, a good moving effect is achieved, and the positioning accuracy is improved; the suction nozzle forms a vacuum structure of the suction nozzle by using the vacuum tube, so that a good adsorption effect is achieved, and the getter is sucked; the suction nozzle is made of high-temperature-resistant fluororubber, can resist high temperature of 250 ℃ and can work at 200 ℃ for a long time. When the getter needs to be arranged, the lifting device moves downwards, the suction nozzle is transferred to the surface of the getter bin, the getter on the surface of the getter bin in the getter is adsorbed, the vacuum tube is combined with the vacuum device, vacuum negative pressure is formed in the suction nozzle, the getter is firmly sucked, and then the suction nozzle with the getter is lifted to the original position by the lifting device; after the glass sheet is conveyed to the designated position, the lifting device and the transverse moving device adjust the position of the suction nozzle, the adsorbent on the suction nozzle stays at the designated position, the suction nozzle is desorbed and broken, the adsorbent is placed on the glass sheet, and finally the suction nozzle is suspended at the standby position by the lifting device and the transverse moving device to wait for the next working cycle.
The pushing and lifting device 4 comprises a support rod 4-1, a thread block 4-2 and a guide sliding block 4-3, one end of the support rod 4-1 extends into the high temperature box and is arranged in the getter bin 2, specifically the bottom of the sliding block 2-3 in the getter bin, the other end of the support rod passes through the thread block 4-2 and is connected with the guide sliding block 4-3, the thread block 4-2 is sleeved on the rack 1 in a threaded manner, specifically the ball screw rod is sleeved on the guide sliding block, and the guide sliding block is connected to the rack in a sliding manner, and specifically the guide sliding block is connected to the guide sliding table in a sliding manner; ball screw rotates under the rotating electrical machines effect, utilizes ball screw to drive the screw thread piece and reciprocates, and the slider that leads simultaneously removes along direction slip table, reaches the effect that the die-pin removed steadily, and the die-pin setting can stably rise the getter in the slider bottom.
To sum up, the utility model has the advantages of it is following:
1. the utility model provides a getter cloth put the problem that influences process efficiency, utilize the combination of getter feed bin and suction nozzle, stable automatic cloth is put the system about can forming, and cloth is put in succession under high temperature environment, need not to shut down, has promoted efficiency greatly.
2. The utility model discloses a drive unit such as lift lead screw, slip table, motor is whole outside the high temperature district, avoids high temperature to damage motor and motion, convenient maintenance.
It should be understood that the above detailed description of the present invention is only for illustrative purposes and is not limited to the technical solutions described in the embodiments of the present invention. It will be understood by those skilled in the art that the present invention may be modified and equivalents may be substituted to achieve the same technical effects; as long as the use requirement is satisfied, the utility model is within the protection scope.
Claims (5)
1. A high temperature resistant vacuum glass getter laying device is characterized in that: including support, getter feed bin, adsorption equipment and promotion device, the support sets up in the high temperature case outside, and bottom one end is deep to the high temperature incasement, the getter feed bin sets up in the high temperature incasement, and getter feed bin bottom fixes the one end that is located the high temperature incasement in the support bottom, adsorption equipment sets up in getter feed bin top, just adsorption equipment one end stretches out the high temperature case to slide and set up at the support upper surface, promote in the device one end is deep to the high temperature incasement to establish in the getter feed bin, other end sliding connection is on the support.
2. The high temperature resistant vacuum glass getter distribution device according to claim 1, wherein: the support comprises a bottom rod, an ejector rod, a connecting rod, a guide sliding table and a ball screw, the bottom rod and the ejector rod are arranged in parallel up and down, one end of the bottom rod is flush with one end of the same side of the ejector rod and is connected with the same through the connecting rod, the other end of the bottom rod extends into the high temperature box and is fixed at the bottom of a getter bin, the length of the ejector rod is smaller than that of the bottom rod, the upper surface of the ejector rod is provided with a transverse sliding table which is connected with an adsorption device in a sliding manner, one end of the ejector rod is connected with the connecting rod, the other end of the ejector rod is close to the high temperature box, the ball screw is downwards sleeved at one end of the ejector rod close to the high temperature box, the lower end of the ball screw penetrates through a pushing and lifting device and is sleeved on the bottom rod and is connected with a driving belt, the, and is connected with one end of the pushing device in a sliding way, and the two ends of the guide sliding table are respectively fixed on the bottom rod and the ejector rod.
3. The high temperature resistant vacuum glass getter distribution device according to claim 1, wherein: the getter bin comprises a bin body, the bin body is cylindrical and smooth in interior, an elastic mounting clamp is arranged at the bottom of the bin body and fixed on the rack through the elastic mounting clamp, a sliding block is arranged in the bin body and arranged on the pushing and lifting device, and getters are placed on the sliding block.
4. The high temperature resistant vacuum glass getter distribution device according to claim 1, wherein: the adsorption device comprises a suction nozzle, a connecting rod, a lifting device and a transverse moving device, wherein the suction nozzle is positioned right above the getter bin, the suction nozzle is positioned at one end of the connecting rod, the other end of the connecting rod extends out of the high-temperature box and is connected with the movable end of the lifting device, the lifting device is fixed on the transverse moving device, the transverse moving device is slidably connected to the upper surface of the rack, and the suction nozzle is connected with an external vacuum device through a vacuum tube.
5. The high temperature resistant vacuum glass getter distribution device according to claim 1, wherein: the pushing and lifting device comprises a support rod, a thread block and a guide sliding block, one end of the support rod extends into the high-temperature box and is arranged in the getter bin, the other end of the support rod penetrates through the thread block and is connected with the guide sliding block, the thread block is sleeved on the rack in a threaded manner, and the guide sliding block is connected to the rack in a sliding manner.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202020681013.0U CN212335032U (en) | 2020-04-28 | 2020-04-28 | High-temperature-resistant vacuum glass getter distributing device |
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CN202020681013.0U CN212335032U (en) | 2020-04-28 | 2020-04-28 | High-temperature-resistant vacuum glass getter distributing device |
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CN212335032U true CN212335032U (en) | 2021-01-12 |
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CN202020681013.0U Active CN212335032U (en) | 2020-04-28 | 2020-04-28 | High-temperature-resistant vacuum glass getter distributing device |
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2020
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TR01 | Transfer of patent right |
Effective date of registration: 20220722 Address after: No.208 Changjiang East Road, Shuofang, Xinwu District, Wuxi City, Jiangsu Province, 214000 Patentee after: Wuxi Jiangsong Technology Co.,Ltd. Address before: 214000 No.16, Zhenfa 2nd Road, phase 5, Shuofang Industrial Park, Wuxi City, Jiangsu Province Patentee before: Wuxi Songtong Intelligent Equipment Co.,Ltd. |
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TR01 | Transfer of patent right |