Hollow glass partition frame drying agent filling machine

By drilling holes directly into the insulating glass frame and filling it with desiccant, the problem of low filling efficiency in the existing technology is solved, and efficient desiccant filling and improved stability are achieved.

CN223854115UActive Publication Date: 2026-01-30SHENYANG AEROSPACE MASCH AUTOMATION CO LTD
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Patent Information

Application Number
CN202423275615.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-30
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In existing technologies, holes need to be drilled in the hollow spacers and the material needs to be transferred to the filling device, which reduces filling efficiency.

Method used

A drilling mechanism is used to drill holes in the insulating glass frame and directly fill it with desiccant. The desiccant is injected into the insulating glass frame through the drill bit passing through the clearance hole, avoiding the need for transportation.

Benefits of technology

This improves the filling efficiency of desiccant within the insulating glass frame, enhancing product stability and user experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223854115U_ABST
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Abstract

The utility model provides a drying agent filling machine for a hollow glass bulkhead, and belongs to the technical field of hollow glass bulkhead processing. The hollow glass partition frame drying agent filling machine comprises a first mounting plate, an end plate, a containing frame, a containing groove, a translation mechanism, a first connecting frame, a pressing air cylinder, a pressing head, a receding hole, a drilling mechanism, a material injection hole, a material storage tank, a first mounting frame and a material injection air cylinder. According to the hollow glass partition frame drilling device, drilling can be conducted on a hollow glass partition frame, the hollow glass partition frame can be filled with a drying agent through the drilled hole, and therefore the hollow glass partition frame does not need to be transferred, and the efficiency of filling the drying agent into the hollow glass partition frame is improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to hollow glass spacer frame processing technical field, specifically related to a kind of hollow glass spacer frame desiccant filling machine. BACKGROUND

[0002] In the related art, hollow glass has good heat and sound insulation effect, so hollow glass is widely used in high-speed rail, residential and hospital and other occasions. Hollow glass is composed of two glass and aluminum spacer frame, in order to absorb moisture in hollow glass, dry agent needs to be filled in aluminum spacer frame.

[0003] Prior art (authorized publication number:CN218506182U) discloses a kind of hollow spacer strip formula dry agent filling machine, it includes workbench, mounting frame and feeding machine, mounting frame is fixedly installed in the top surface right side position of workbench, feeding machine is arranged in the right side wall of workbench, the top surface of workbench is rotatably installed with carousel, the top end left side position of mounting frame is fixedly installed with fixed frame, dry agent filling machine is installed in the inboard of fixed frame, and valve mouth nozzle is installed through the lower part of dry agent filling machine. By setting plugging plate, the circular plugging plate that is consistent with the shape of the inside of filling pipe can block the filling pipe, the plugging plate is rotated by micro motor operation, so that the filling pipe is opened, and the dry agent falls down through the filling pipe. When the plugging plate continues to rotate, the filling pipe can be resealed gradually. With the uniform rotation of micro motor, the valve mouth nozzle realizes multiple uniform discharging, and the dry agent is automatically filled with a certain amount.

[0004] In the prior art, holes need to be drilled in the hollow spacer strip, and then dry agent is filled into the hollow spacer strip, so the hollow spacer strip needs to be transferred from the drilling device to the filling device, thereby reducing the filling efficiency of the product. UTILITY MODEL CONTENTS

[0005] In order to solve the problem of the prior art that the hollow spacer strip needs to be transferred from the drilling device to the filling device, thereby reducing the filling efficiency of the product, the utility model provides a kind of hollow glass spacer frame dry agent filling machine, drilling mechanism can drive drill bit to rotate and make drill bit pass through the hole, so that drill bit can drill hole in hollow glass spacer frame, and dry agent in storage tank can also be pushed out and flow into injection hole, so that dry agent enters hollow glass spacer frame through the hole drilled by drill bit, to complete the filling of dry agent into hollow glass spacer frame, so it is not necessary to transfer hollow glass spacer frame, to improve the efficiency of filling dry agent in hollow glass spacer frame. Its specific technical scheme is as follows:

[0006] The hollow glass spacer desiccant filling machine comprises a first mounting plate, an end plate, a containing frame, a containing groove, a translation mechanism, a first connecting frame, a pressing cylinder, a pressing head, a let-in hole, a drilling mechanism, a material injection hole, a material storage tank, a first mounting frame and a material injection cylinder; the end plate is connected with the bottom of one end of the first mounting plate and is perpendicular to the first mounting plate; the containing frame is connected with the end plate; the containing groove is triangular and is arranged in the containing frame; the translation mechanism is mounted on the first mounting plate; the first connecting frame is connected with the translation mechanism and at least part of the first connecting frame is located above the containing groove; the pressing cylinder is provided with a first output shaft and is fixed on the first connecting frame and located above the containing groove; the bottom of the pressing head is triangular, the pressing head is connected with the first output shaft of the pressing cylinder and at least part of the pressing head is located in the containing groove; two let-in holes are arranged in the containing frame; the drilling mechanism is provided with a drill bit, two drilling mechanisms are mounted on the bottom of the containing frame on both sides and the drill bits of the two drilling mechanisms are opposite to the two let-in holes respectively; two material injection holes are arranged in the containing frame and located on the side of the let-in hole close to the end plate; the material storage tank is a hollow cavity, two material storage tanks are mounted on the bottom of the containing frame on both sides and the material storage tank is in communication with the material injection hole; two first mounting frames are fixed on the bottom of the containing frame on both sides and the two material storage tanks are embedded in the two first mounting frames respectively; the material injection cylinder is provided with a second output shaft, two material injection cylinders are mounted on the two first mounting frames respectively and the second output shafts of the two material injection cylinders are embedded in the two material storage tanks respectively.

[0007] In addition, the hollow glass spacer desiccant filling machine in the above technical solution can further have the following additional technical features.

[0008] In the above technical solution, the hollow glass spacer desiccant filling machine further comprises a second connecting frame, a clamping cylinder, a connecting rod, a first fixing plate, a first clamping plate, a second fixing plate and a second clamping plate; the second connecting frame is mounted on the side wall of the pressing head; the clamping cylinder is provided with a third output shaft and the third output shaft of the clamping cylinder is connected with the second connecting frame; one end of each of the two connecting rods is connected with the clamping cylinder and the connecting rods pass through the second connecting frame and the pressing head in sequence; the first fixing plate is triangular, the first fixing plate is located on one side of the pressing head, the first fixing plate is connected with the second connecting frame and the two connecting rods pass through the first fixing plate; two first clamping plates are connected with the two sides of the first fixing plate and the two first clamping plates are located below the pressing head; the second fixing plate is triangular, the second fixing plate is located on the other side of the pressing head, the second fixing plate is connected with the other end of the two connecting rods; two second clamping plates are connected with the two sides of the second fixing plate and the two second clamping plates are located below the pressing head.

[0009] In the technical scheme, the hollow glass spacer desiccant filling machine further comprises a second mounting plate, a guide rod, a first supporting plate, a first glue injection cylinder, a glue injection cylinder, a pushing plate, a glue guide groove, a glue injection groove, a glue injection hole, a mounting cylinder and a second glue injection cylinder; the second mounting plate is connected with the bottom of the other end of the first mounting plate, and the second mounting plate is perpendicular to the first mounting plate; one end of the guide rod is connected with the end plate, and the other end of the guide rod is connected with the second mounting plate; the two first supporting plates are located between the second mounting plate and the end plate, the two first supporting plates have a spacing, and the guide rod passes through the two first supporting plates in sequence; the first glue injection cylinder is provided with a fourth output shaft, and the two ends of the first glue injection cylinder are connected with the two first supporting plates respectively; the glue injection cylinder is a hollow cavity with openings at two ends, one end of the glue injection cylinder is attached to the first supporting plate close to the end plate, and the other end of the glue injection cylinder passes through the end plate; the pushing plate is located in the glue injection cylinder, and the pushing plate is connected with the fourth output shaft of the first glue injection cylinder; the glue guide groove is in a strip shape, the glue guide groove is arranged in the end portion of the containing frame, and the glue guide groove is communicated with the glue injection cylinder; the two glue injection grooves are arranged in the two sides of the containing frame, and the two glue injection grooves are communicated with the glue guide groove; the two glue injection holes are arranged in the containing frame, the two glue injection holes are communicated with the two glue injection grooves respectively, and the glue injection holes are located on the side of the glue injection hole close to the end plate; the mounting cylinder is provided with a fifth output shaft, the mounting cylinder is mounted on the second mounting plate, and the fifth output shaft of the mounting cylinder is attached to the first supporting plate close to the second mounting plate; the second glue injection cylinder is provided with a sixth output shaft, the second glue injection cylinder is fixed on the first mounting frame, and the sixth output shaft of the second glue injection cylinder is opposite to the glue injection hole.

[0010] In the technical scheme, the drilling mechanism comprises a second mounting frame, a second supporting plate, a drilling cylinder, a motor frame and a motor body; the second mounting frame is fixed on the bottom of the containing frame; the two second supporting plates are fixed in the second mounting frame, and the two second supporting plates have a spacing; the drilling cylinder comprises a drilling cylinder body and two seventh output shafts, the two seventh output shafts pass through the drilling cylinder body, and the two ends of the two seventh output shafts are connected with the two second supporting plates respectively; the motor frame is in an L shape, the motor frame is connected with the drilling cylinder body; the motor body is fixed in the motor frame, and the motor body is connected with the drill bit.

[0011] In the technical scheme, the translation mechanism comprises a translation cylinder, a sliding block and a sliding rail; the translation cylinder is provided with an eighth output shaft, the translation cylinder is mounted on the first mounting plate, and the eighth output shaft of the translation cylinder is connected with the first connecting frame; the sliding block is provided with a sliding groove, the sliding block is fixed on the first mounting plate, and the sliding block is located below the first connecting frame; the sliding rail is connected with the bottom of the first connecting frame, and the sliding rail passes through the sliding groove of the sliding block.

[0012] In the technical scheme, the hollow glass spacer desiccant filling machine further comprises a weight reduction groove; the weight reduction groove is in a strip shape, and the two weight reduction grooves are arranged in the first mounting plate in a penetrating manner.

[0013] The hollow glass spacer frame drying agent filling machine has the beneficial effects that, compared with the prior art,

[0014] 1. By installing two drilling mechanisms on the bottom of the containing frame, setting two accommodating holes in the containing frame, and making the accommodating holes opposite to the drill bits of the drilling mechanisms, when the hollow glass spacer frame is placed in the containing groove and the hollow glass spacer frame is pressed by the pressing joint, the drilling mechanisms can drive the drill bits to rotate and pass through the accommodating holes, so that the drill bits can drill the hollow glass spacer frame. By setting two injection holes in the containing frame, connecting the storage tank with the injection holes, and embedding the second output shaft of the injection cylinder into the storage tank, when the hole drilled by the drill bit is opposite to the injection hole, the injection cylinder can drive the second output shaft to move in the storage tank, so that the second output shaft pushes the drying agent in the storage tank and flows into the injection hole, and then the drying agent enters the hollow glass spacer frame through the hole drilled by the drill bit, so as to complete the filling of the drying agent into the hollow glass spacer frame. Not only can the hole be drilled on the hollow glass spacer frame, but also the drying agent can be filled in the hollow glass spacer frame through the drilled hole, so that the hollow glass spacer frame does not need to be transferred, and the efficiency of filling the drying agent in the hollow glass spacer frame is improved.

[0015] 2. When the pressing head presses the hollow glass spacer frame, the clamping cylinder is started, the second fixed plate and the two second clamping plates are driven by the two connecting rods to move, so that the two second clamping plates and the two first clamping plates cooperate to clamp the hollow glass spacer frame, so as to improve the stability of the hollow glass spacer frame, and at the same time, it can also ensure that the translation mechanism can drive the hollow glass spacer frame to move, and then ensure that the hole drilled in the hollow glass spacer frame is opposite to the injection hole, so as to improve the use experience of the product.

[0016] 3. After completing the filling of the drying agent into the hollow glass spacer frame, the translation mechanism is started, the translation mechanism drives the hollow glass spacer frame to move, so that the hole on the hollow glass spacer frame is opposite to the injection hole; then, the first injection cylinder is started, the first injection cylinder drives the pushing plate to move in the injection cylinder, so that the pushing plate pushes out the sealing glue in the injection cylinder, and the sealing glue flows into the glue guide groove, the injection groove and the injection hole in turn, at this time, the glue guide groove, the injection groove and the injection hole are filled with sealing glue; then, the second injection cylinder is started, the second injection cylinder drives the sixth output shaft to move in the injection hole, so that the sealing glue in the injection hole is pushed out and applied on the hole on the hollow glass spacer frame, and then the drying agent is sealed in the hollow glass spacer frame.

[0017] 4. The motor body is fixed in the motor frame by connecting the L-shaped motor frame with the drilling air cylinder body, and connecting the motor body with the drill bit, so that the drilling air cylinder body can drive the motor frame and the motor body to move, so that the motor body can drive the drill bit to rotate, and then the drill bit can pass through the clearance hole and drill the hollow glass spacer.

[0018] 5. The first connecting frame is moved along the sliding block by connecting the sliding rail with the bottom of the first connecting frame and making the sliding rail pass through the sliding groove of the sliding block, so that the first connecting frame is prevented from deviating during movement, thereby improving the stability of the movement of the first connecting frame.

[0019] 6. The overall weight of the first mounting plate is reduced by arranging two long strip-shaped weight reduction grooves in the first mounting plate, thereby reducing the difficulty of moving the first mounting plate and improving the use experience of the product. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 is a perspective view of a hollow glass spacer desiccant filling machine of the utility model;

[0021] Figure 2 is Figure 1 is a partial enlarged view of A in the figure.

[0022] Figure 3 is a perspective view of a hollow glass spacer desiccant filling machine of the utility model;

[0023] Figure 4 is a perspective view of a hollow glass spacer desiccant filling machine of the utility model;

[0024] Figure 5 is a perspective view of a containing frame of the utility model;

[0025] wherein, Figures 1 to 5 the correspondence between the reference signs and the component names in the figure is as follows:

[0026] 10 First mounting plate, 11 End plate, 12 Receiving frame, 13 Receiving groove, 14 Translation mechanism, 141 Translation cylinder, 142 Slider, 143 Slide rail, 15 First connecting frame, 16 Clamping cylinder, 17 Clamping head, 18 Clearing hole, 19 Drilling mechanism, 191 Second mounting frame, 192 Second support plate, 193 Drilling cylinder, 194 Motor frame, 195 Motor body, 20 Drill bit, 21 Injection hole, 22 Storage tank 23 First mounting bracket, 24 Injection cylinder, 25 Second connecting bracket, 26 Clamping cylinder, 27 Connecting rod, 28 First fixing plate, 29 First clamping plate, 30 Second fixing plate, 31 Second clamping plate, 32 Second mounting plate, 33 Guide rod, 34 First support plate, 35 First glue injection cylinder, 36 Glue injection cylinder, 38 Glue guide groove, 39 Glue injection groove, 40 Glue injection hole, 41 Mounting cylinder, 42 Second glue injection cylinder, 43 Weight reduction groove. Detailed Implementation

[0027] The following are specific implementation cases and appendices. Figures 1 to 5 The present invention will be further described below, but the present invention is not limited to these embodiments.

[0028] A type of desiccant filling machine for insulating glass frames, such as Figures 1 to 5As shown, the hollow glass spacer frame desiccant filling machine comprises a first mounting plate 10, an end plate 11, a containing frame 12, a containing groove 13, a translation mechanism 14, a first connecting frame 15, a compression cylinder 16, a compression head 17, a let-hole 18, a drilling mechanism 19, a filling hole 21, a storage tank 22, a first mounting frame 23 and a filling cylinder 24; the end plate 11 is connected with the bottom of one end of the first mounting plate 10, and the end plate 11 is perpendicular to the first mounting plate 10; the containing frame 12 is connected with the end plate 11; the containing groove 13 is triangular, and the containing groove 13 is arranged in the containing frame 12; the translation mechanism 14 is installed on the first mounting plate 10; the first connecting frame 15 is connected with the translation mechanism 14, and at least part of the first connecting frame 15 is above the containing groove 13; the compression cylinder 16 is provided with a first output shaft, the compression cylinder 16 is fixed on the first connecting frame 15, and the compression cylinder 16 is above the containing groove 13; the bottom of the compression head 17 is triangular, the compression head 17 is connected with the first output shaft of the compression cylinder 16, and at least part of the compression head 17 is in the containing groove 13; two let-holes 18 are arranged in the containing frame 12; the drilling mechanism 19 is provided with a drill bit 20, two drilling mechanisms 19 are installed on the bottom of the containing frame 12 on both sides, and the drill bits 20 of the two drilling mechanisms 19 are opposite to the two let-holes 18 respectively; two filling holes 21 are arranged in the containing frame 12, and the filling holes 21 are on the side of the let-holes 18 close to the end plate 11; the storage tank 22 is a hollow cavity, two storage tanks 22 are installed on the bottom of the containing frame 12 on both sides, and the storage tank 22 is in communication with the filling hole 21; two first mounting frames 23 are fixed on the bottom of the containing frame 12 on both sides, and two storage tanks 22 are embedded in the two first mounting frames 23 respectively; the filling cylinder 24 is provided with a second output shaft, two filling cylinders 24 are installed on the two first mounting frames 23 respectively, and the second output shafts of the two filling cylinders 24 are embedded in the two storage tanks 22 respectively.

[0029] The end plate 11 is connected with the bottom of one end of the first mounting plate 10, the containing frame 12 is connected with the end plate 11, and the triangular containing groove 13 is arranged in the containing frame 12, so that the first mounting plate 10 supports the containing frame 12 through the end plate 11, and the containing space in the containing frame 12 is realized; the translation mechanism 14 is installed on the first mounting plate 10, and the first connecting frame 15 is connected with the translation mechanism 14, so that the first mounting plate 10 supports the translation mechanism 14, and the translation mechanism 14 can drive the first connecting frame 15 to move, so as to adjust the relative position of the first connecting frame 15 and the containing frame 12; the pressing cylinder 16 is fixed on the first connecting frame 15, the pressing head 17 is connected with the first output shaft of the pressing cylinder 16, and the supporting part of the pressing head 17 is located in the containing groove 13, so that the pressing cylinder 16 drives the pressing head 17 to move in the containing groove 13 through the first output shaft. Two accommodation holes 18 are arranged in the containing frame 12, two drilling mechanisms 19 are installed on the bottom of the containing frame 12 on both sides, and the drill bit 20 of the two drilling mechanisms 19 is opposite to the two accommodation holes 18 respectively, so that the drilling mechanism 19 can drive the drill bit 20 to rotate, and the drill bit 20 can pass through the accommodation hole 18. The injection hole 21 is arranged in the containing frame 12, two storage tanks 22 are installed on the bottom of the containing frame 12 on both sides, and the storage tank 22 is communicated with the injection hole 21, so that the storage tank 22 can store the drying agent, so that the drying agent in the storage tank 22 can flow out from the injection hole 21; two first mounting frames 23 are fixed on the bottom of the containing frame 12 on both sides, two injection cylinders 24 are respectively installed on the two first mounting frames 23, and the second output shaft of the two injection cylinders 24 is respectively embedded in the two storage tanks 22, so that the first mounting frame 23 supports the injection cylinder 24, so that the injection cylinder 24 can drive the second output shaft to move in the storage tank 22, and then the drying agent in the storage tank 22 is pushed out and flows into the injection hole 21.

[0030] In the specific use of the product, the hollow glass spacer frame which has completed the bending is placed in the accommodating groove 13, and the hollow glass spacer frame is arranged on the outer side of the pressing head 17; then, the pressing cylinder 16 is started, the pressing cylinder 16 drives the pressing head 17 to move downwards, so that the pressing head 17 presses the hollow glass spacer frame in the accommodating frame 12 to lift the hollow glass spacer frame; then, the drilling mechanism 19 is started, the drilling mechanism 19 drives the drill bit 20 to rotate, so that the drill bit 20 passes through the accommodation hole 18 and drills the hollow glass spacer frame; when the drilling of the hollow glass spacer frame is completed, the translation mechanism 14 is started, the translation mechanism 14 drives the first connecting frame 15 and the hollow glass spacer frame to move, so that the hole drilled by the drill bit 20 is opposite to the injection hole 21; then, the injection cylinder 24 is started, the injection cylinder 24 drives the second output shaft to move in the storage tank 22, so that the second output shaft pushes the desiccant in the storage tank 22 into the injection hole 21, and then the desiccant enters the hollow glass spacer frame through the hole drilled by the drill bit 20, so as to complete the filling of the desiccant in the hollow glass spacer frame.

[0031] By installing two drilling mechanisms 19 on the bottom of the accommodating frame 12, arranging two accommodation holes 18 in the accommodating frame 12 and making the accommodation holes 18 opposite to the drill bits 20 of the drilling mechanisms 19, when the hollow glass spacer frame is placed in the accommodating groove 13 and the hollow glass spacer frame is pressed by the pressing head, the drilling mechanisms 19 can drive the drill bits 20 to rotate and pass through the accommodation holes 18, so that the drill bits 20 can drill the hollow glass spacer frame. By arranging two injection holes 21 in the accommodating frame 12, connecting the storage tank 22 with the injection holes 21 and embedding the second output shaft of the injection cylinder 24 in the storage tank 22, when the hole drilled by the drill bit 20 is opposite to the injection hole 21, the injection cylinder 24 can drive the second output shaft to move in the storage tank 22, so that the second output shaft pushes the desiccant in the storage tank 22 into the injection hole 21, and then the desiccant enters the hollow glass spacer frame through the hole drilled by the drill bit 20, so as to complete the filling of the desiccant in the hollow glass spacer frame. By adopting the above structure, not only the drilling on the hollow glass spacer frame can be realized, but also the desiccant can be filled in the hollow glass spacer frame through the drilled hole, so that the hollow glass spacer frame does not need to be transported, and the efficiency of filling the desiccant in the hollow glass spacer frame is improved.

[0032] In the embodiment of the utility model, such as Figures 1 to 5The hollow glass spacer drying agent filling machine also includes a second connecting frame 25, a clamping cylinder 26, a connecting rod 27, a first fixed plate 28, a first clamping plate 29, a second fixed plate 30 and a second clamping plate 31. The second connecting frame 25 is installed on the side wall of the pressing head 17. The clamping cylinder 26 is provided with a third output shaft, and the third output shaft of the clamping cylinder 26 is connected with the second connecting frame 25. One end of each of the two connecting rods 27 is connected with the clamping cylinder 26, and the connecting rods 27 pass through the second connecting frame 25 and the pressing head 17 in sequence. The first fixed plate 28 is triangular, and is located on one side of the clamping head, connected with the second connecting frame 25, and the two connecting rods 27 pass through the first fixed plate 28. The two first clamping plates 29 are connected with the two sides of the first fixed plate 28, and are located below the clamping head. The second fixed plate 30 is triangular, and is located on the other side of the clamping head, connected with the other end of the two connecting rods 27. The two second clamping plates 31 are connected with the two sides of the second fixed plate 30, and are located below the clamping head.

[0033] By installing the second connecting frame 25 on the side wall of the pressing head 17 and connecting the third output shaft of the clamping cylinder 26 with the second connecting frame 25, when the second connecting frame 25 supports the clamping cylinder 26 through the third output shaft, the clamping cylinder 26 can move relative to the second connecting frame 25 when the third output shaft is driven to extend or retract, thereby adjusting the distance between the clamping cylinder 26 and the second connecting frame 25. By connecting one end of each of the two connecting rods 27 with the clamping cylinder 26 and making the connecting rods 27 pass through the second connecting frame 25 and the pressing head 17 in sequence, the two connecting rods 27 can move synchronously with the clamping cylinder 26, so that the connecting rods 27 can move in the second connecting frame 25 and the pressing head 17. By connecting the first fixed plate 28 with the second connecting frame 25 and making the two connecting rods 27 pass through the first fixed plate 28, the second connecting frame 25 supports the first fixed plate 28, so that the two connecting rods 27 can move in the first fixed plate 28. By connecting the two first clamping plates 29 with the two sides of the first fixed plate 28 and locating the two first clamping plates 29 below the clamping head, the first clamping plate 29 supports the first fixed plate 28. By connecting the second fixed plate 30 with the other end of the two connecting rods 27 and connecting the two second clamping plates 31 with the two sides of the second fixed plate 30, and making the second clamping plates 31 opposite the first clamping plates 29, the two connecting rods 27 can drive the second fixed plate 30 and the two second clamping plates 31 to move, so that the second clamping plates 31 cooperate with the first clamping plates 29 to clamp the hollow glass spacer, thereby improving the stability of the hollow glass spacer.

[0034] When the pressing head 17 presses the hollow glass spacer, the clamping cylinder 26 is started to drive the second fixed plate 30 and the two second clamping plates 31 through the two connecting rods 27, so that the two second clamping plates 31 and the two first clamping plates 29 cooperate to clamp the hollow glass spacer, thereby improving the stability of the hollow glass spacer, and ensuring that the translation mechanism 14 can drive the hollow glass spacer to move, thereby ensuring that the hole drilled in the hollow glass spacer is opposite to the injection hole 21, thereby improving the use experience of the product.

[0035] In the embodiment of the utility model, as shown in Figures 1 to 5 The hollow glass spacer desiccant filling machine further comprises a second mounting plate 32, a guide rod 33, a first supporting plate 34, a first glue injection cylinder 35, a glue injection cylinder 36, a pushing plate, a glue guide groove 38, a glue injection groove 39, a glue injection hole 40, a mounting cylinder 41, and a second glue injection cylinder 42. The second mounting plate 32 is connected to the bottom of the other end of the first mounting plate 10, and the second mounting plate 32 is perpendicular to the first mounting plate 10. One end of the guide rod 33 is connected to the end plate 11, and the other end of the guide rod 33 is connected to the second mounting plate 32. Two first supporting plates 34 are located between the second mounting plate 32 and the end plate 11, and there is a gap between the two first supporting plates 34, and the guide rod 33 passes through the two first supporting plates 34 in sequence. The first glue injection cylinder 35 is provided with a fourth output shaft, and the two ends of the first glue injection cylinder 35 are connected to the two first supporting plates 34, respectively. The glue injection cylinder 36 is a hollow cavity with openings at both ends. One end of the glue injection cylinder 36 is fitted to the first supporting plate 34 close to the end plate 11, and the other end of the glue injection cylinder 36 passes through the end plate 11. The pushing plate is located in the glue injection cylinder 36, and the pushing plate is connected to the fourth output shaft of the first glue injection cylinder 35. The glue guide groove 38 is in the shape of a long strip. The glue guide groove 38 is arranged in the end part of the containing frame 12, and the glue guide groove 38 is in communication with the glue injection cylinder 36. Two glue injection grooves 39 are arranged on both sides of the containing frame 12, and the two glue injection grooves 39 are in communication with the glue guide groove 38. Two glue injection holes 40 are arranged in the containing frame 12. The two glue injection holes 40 are in communication with the two glue injection grooves 39, respectively, and the glue injection hole 40 is located on the side of the injection hole 21 close to the end plate 11. The mounting cylinder 41 is provided with a fifth output shaft. The mounting cylinder 41 is mounted on the second mounting plate 32, and the fifth output shaft of the mounting cylinder 41 is fitted to the first supporting plate 34 close to the second mounting plate 32. The second glue injection cylinder 42 is provided with a sixth output shaft. The second glue injection cylinder 42 is fixed to the first mounting frame 23, and the sixth output shaft of the second glue injection cylinder 42 is opposite to the glue injection hole 40.

[0036] The first mounting plate 10 supports the second mounting plate 32 by connecting the second mounting plate 32 with the bottom of the other end of the first mounting plate 10, connecting one end of the guide rod 33 with the end plate 11, and connecting the other end of the guide rod 33 with the second mounting plate 32, so as to support the guide rod 33 by the cooperation of the second mounting plate 32 and the end plate 11; the two first supporting plates 34 are located between the second mounting plate 32 and the end plate 11, and the guide rod 33 passes through the two first supporting plates 34 in sequence, so as to enable the two first supporting plates 34 to move along the guide rod 33; the first glue injection cylinder 35 is connected with the two first supporting plates 34 at both ends, so as to support the two first supporting plates 34, thereby enabling the first glue injection cylinder 35 to move along the guide rod 33 through the two first supporting plates 34. The end plate 11 and the first supporting plate 34 clamp the glue injection cylinder 36 by connecting one end of the glue injection cylinder 36 with the first supporting plate 34 close to the end, and passing the other end of the glue injection cylinder 36 through the end plate 11; the pushing plate is located in the glue injection cylinder 36, and the pushing plate is connected with the fourth output shaft of the first glue injection cylinder 35, so as to enable the first glue injection cylinder 35 to drive the pushing plate to move in the glue injection cylinder 36, thereby enabling the pushing plate to push out the sealant in the glue injection cylinder 36. The glue guide groove 38 is arranged in the end of the containing frame 12, and the glue guide groove 38 is communicated with the glue injection cylinder 36, so as to enable the sealant flowing out of the glue injection cylinder 36 to enter the glue guide groove 38; meanwhile, the two glue injection grooves 39 are arranged on both sides of the containing frame 12, the two glue injection grooves 39 are communicated with the glue guide groove 38, the two glue injection holes 40 are arranged in the containing frame 12, and the two glue injection holes 40 are respectively communicated with the two glue injection grooves 39, so as to enable the sealant in the glue guide groove 38 to enter the two glue injection grooves 39, thereby enabling the sealant in the glue injection groove 39 to flow out of the glue injection hole 40. The mounting cylinder 41 is mounted on the second mounting plate 32, and the fifth output shaft of the mounting cylinder 41 is attached to the first supporting plate 34 close to the second mounting plate 32, so as to enable the second mounting plate 32 to support the mounting cylinder 41, thereby enabling the mounting cylinder 41 to drive the two first supporting plates 34 and the first glue injection cylinder 35 to move, and further enabling the first supporting plate 34 and the first glue injection cylinder 35 to have a spacing from the glue injection cylinder 36, so as to facilitate the disassembly of the glue injection cylinder 36. The second glue injection cylinder 42 is fixed on the first mounting frame 23, and the sixth output shaft of the second glue injection cylinder 42 is opposite to the glue injection hole 40, so as to enable the first mounting frame 23 to support the second glue injection cylinder 42, thereby enabling the second glue injection cylinder 42 to drive the sixth output shaft to push the sealant in the glue injection hole 40 into the hole on the hollow glass spacer frame, and further enabling the desiccant in the hollow glass spacer frame to be sealed.

[0037] With the above structure, when the desiccant is filled into the hollow glass spacer, the translation mechanism 14 is started to move the hollow glass spacer, so that the hole on the hollow glass spacer is opposite to the glue injection hole 40; then, the first glue injection cylinder 35 is started to move the pushing plate in the glue injection cylinder 36, so that the pushing plate pushes the sealant in the glue injection cylinder 36 out, and the sealant flows into the glue guide groove 38, the glue injection groove 39 and the glue injection hole 40 in turn, at this time, the glue guide groove 38, the glue injection groove 39 and the glue injection hole 40 are filled with sealant; then, the second glue injection cylinder 42 is started to drive the sixth output shaft to move in the glue injection hole 40, so that the sealant in the glue injection hole 40 is pushed out and applied to the hole on the hollow glass spacer, thereby sealing the desiccant in the hollow glass spacer.

[0038] In the embodiment of the utility model, as shown in Figures 1 to 5 The drilling mechanism 19 includes a second mounting frame 191, a second support plate 192, a drilling cylinder 193, a motor frame 194 and a motor body 195. The second mounting frame 191 is fixed to the bottom of the containing frame 12. Two second support plates 192 are fixed in the second mounting frame 191, and there is a space between the two second support plates 192. The drilling cylinder 193 includes a drilling cylinder 193 body and two seventh output shafts. The two seventh output shafts pass through the drilling cylinder 193 body, and the two ends of the two seventh output shafts are connected with the two second support plates 192 respectively. The motor frame 194 is L-shaped, and the motor frame 194 is connected with the drilling cylinder 193 body. The motor body 195 is fixed in the motor frame 194, and the motor body 195 is connected with the drill bit 20.

[0039] By fixing the second mounting frame 191 to the bottom of the containing frame 12, fixing the two second support plates 192 in the second mounting frame 191 and spacing the two second support plates 192, the containing frame 12 supports the two second support plates 192. By connecting the two ends of the two seventh output shafts with the two second support plates 192 respectively and making the two seventh output shafts pass through the drilling cylinder 193 body, the two second support plates 192 support the two seventh output shafts, so that the drilling cylinder 193 body can move along the two seventh output shafts. By connecting the L-shaped motor frame 194 with the drilling cylinder 193 body, fixing the motor body 195 in the motor frame 194 and connecting the motor body 195 with the drill bit 20, the drilling cylinder 193 body can drive the motor frame 194 and the motor body 195 to move, so that the motor body 195 can drive the drill bit 20 to rotate, and the drill bit 20 can pass through the gap hole 18 and drill the hollow glass spacer.

[0040] In the embodiment of the utility model, as shown in Figures 1 to 5As shown in the figure, the translation mechanism 14 comprises a translation air cylinder 141, a sliding block 142 and a sliding rail 143; the translation air cylinder 141 is provided with an eighth output shaft, the translation air cylinder 141 is installed on the first mounting plate 10, and the eighth output shaft of the translation air cylinder 141 is connected with the first connecting frame 15; the sliding block 142 is internally provided with a sliding groove, the sliding block 142 is fixed on the first mounting plate 10, and the sliding block 142 is located below the first connecting frame 15; the sliding rail 143 is connected with the bottom of the first connecting frame 15, and the sliding rail 143 passes through the sliding groove of the sliding block 142.

[0041] By installing the translation air cylinder 141 on the first mounting plate 10 and connecting the eighth output shaft of the translation air cylinder 141 with the first connecting frame 15, the translation air cylinder 141 can drive the first connecting frame 15 to move, so as to adjust the position of the first connecting frame 15; by fixing the sliding block 142 on the first mounting plate 10, connecting the sliding rail 143 with the bottom of the first connecting frame 15 and making the sliding rail 143 pass through the sliding groove of the sliding block 142, the first connecting frame 15 can move along the sliding block 142 through the sliding rail 143, so as to avoid the deviation of the first connecting frame 15 during movement, thereby improving the stability of the movement of the first connecting frame 15.

[0042] In the embodiment of the present application, as shown in the figure, Figures 1 to 5 As shown in the figure, the hollow glass spacer drying agent filling machine further comprises: a weight reduction groove 43; the weight reduction groove 43 is in a strip shape, and two weight reduction grooves 43 are throughly arranged in the first mounting plate 10.

[0043] By throughly arranging the two weight reduction grooves 43 in the first mounting plate 10, the overall weight of the first mounting plate 10 is reduced, thereby reducing the difficulty of moving the first mounting plate 10 and improving the use experience of the product.

[0044] In the description of the present application, the term "a plurality of" refers to two or more than two, unless otherwise explicitly limited, the terms "upper", "lower" and the like indicate the orientation or position relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, therefore it cannot be understood as a limitation on the present application; the terms "connection", "installation", "fixation" and the like should be understood in a broad sense, for example, "connection" can be fixed connection, can also be detachable connection, or integral connection; can be directly connected, or indirectly connected through an intermediate medium. For ordinary skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0045] In the description of the utility model, the description of the terms "one embodiment", "some embodiments", "a specific embodiment" and the like means that the specific features, structures, materials or characteristics described in combination with the embodiment or example are contained in at least one embodiment or example of the utility model. In the utility model, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0046] The above only is the preferred embodiment of the utility model has, and does not use for limiting the utility model, for the person skilled in the art, the utility model can have various changes and changes. Any modification, equivalent replacement, improvement etc. that is made within the spirit and principle of the utility model should be contained in the protection scope of the utility model.

Claims

1. A hollow glass spacer desiccant filling machine characterized by, The hollow glass spacer desiccant filling machine comprises: a first mounting plate; an end plate connected to the bottom of one end of the first mounting plate and perpendicular to the first mounting plate; a containing frame connected to the end plate; a containing groove in the shape of a triangle provided in the containing frame; a translation mechanism mounted on the first mounting plate; a first connecting frame connected to the translation mechanism, at least part of the first connecting frame being located above the containing groove; a pressing cylinder provided with a first output shaft, the pressing cylinder being fixed to the first connecting frame and located above the containing groove; a pressing head with a triangular bottom connected to the first output shaft of the pressing cylinder, at least part of the pressing head being located in the containing groove; two let-in holes provided in the containing frame; two drilling mechanisms provided with drill bits, the two drilling mechanisms being mounted on the bottom of the containing frame on both sides, and the drill bits of the two drilling mechanisms being respectively opposite to the two let-in holes; two injection holes provided in the containing frame and located on the side of the let-in holes close to the end plate; two storage tanks in the shape of hollow cavities, the two storage tanks being mounted on the bottom of the containing frame on both sides and being in communication with the injection holes; two first mounting frames fixed to the bottom of the containing frame on both sides, and the two storage tanks being respectively embedded in the two first mounting frames; two injection cylinders provided with second output shafts, the two injection cylinders being respectively mounted on the two first mounting frames, and the second output shafts of the two injection cylinders being respectively embedded in the two storage tanks.

2. The hollow glass spacer desiccant filling machine of claim 1, wherein, The hollow glass spacer desiccant filling machine further comprises: a second connecting frame mounted on the side wall of the pressing head; a clamping cylinder provided with a third output shaft, the third output shaft of the clamping cylinder being connected to the second connecting frame; two connecting rods, one end of each of the two connecting rods being connected to the clamping cylinder, the connecting rods sequentially passing through the second connecting frame and the pressing head; a first fixed plate in the shape of a triangle located on one side of the clamping head, the first fixed plate being connected to the second connecting frame, and the two connecting rods passing through the first fixed plate; two first clamping plates connected to the two sides of the first fixed plate, and the two first clamping plates being located below the clamping head; a second fixed plate in the shape of a triangle located on the other side of the clamping head, the second fixed plate being connected to the other end of the two connecting rods; two second clamping plates connected to the two sides of the second fixed plate, and the two second clamping plates being located below the clamping head.

3. The hollow glass spacer desiccant filling machine of claim 2, wherein, The hollow glass spacer desiccant filling machine further comprises: A second mounting plate is connected to the bottom of the other end of the first mounting plate, and the second mounting plate is perpendicular to the first mounting plate; A guide rod is connected to the end plate at one end, and the other end of the guide rod is connected to the second mounting plate; Two first support plates are located between the second mounting plate and the end plate, and the guide rod passes through the two first support plates in sequence; A first glue injection cylinder is provided with a fourth output shaft, and the two ends of the first glue injection cylinder are connected to the two first support plates, respectively; A glue injection cylinder is a hollow cavity with openings at both ends, one end of the glue injection cylinder is attached to the first support plate close to the end plate, and the other end of the glue injection cylinder passes through the end plate; A pushing plate is located in the glue injection cylinder, and the pushing plate is connected to the fourth output shaft of the first glue injection cylinder; A glue guide groove is long strip-shaped, and the glue guide groove is arranged in the end of the containing frame, and the glue guide groove is in communication with the glue injection cylinder; Two glue injection grooves are arranged in the two sides of the containing frame, and the two glue injection grooves are in communication with the glue guide groove; Two glue injection holes are arranged in the containing frame, and the two glue injection holes are in communication with the two glue injection grooves, respectively, and the glue injection holes are located on the side of the glue injection hole close to the end plate; An installation cylinder is provided with a fifth output shaft, and the installation cylinder is installed on the second mounting plate, and the fifth output shaft of the installation cylinder is attached to the first support plate close to the second mounting plate; A second glue injection cylinder is provided with a sixth output shaft, and the second glue injection cylinder is fixed on the first mounting frame, and the sixth output shaft of the second glue injection cylinder is opposite to the glue injection hole.

4. The hollow glass spacer desiccant filling machine of claim 3, wherein, The drilling mechanism comprises: A second mounting frame is fixed on the bottom of the containing frame; Two second support plates are fixed in the second mounting frame, and there is a gap between the two second support plates; A drilling cylinder comprises a drilling cylinder body and two seventh output shafts, the two seventh output shafts pass through the drilling cylinder body, and the two ends of the two seventh output shafts are connected to the two second support plates, respectively An electric machine frame is L-shaped, and the electric machine frame is connected to the drilling cylinder body; An electric machine body is fixed in the electric machine frame, and the electric machine body is connected to the drill bit.

5. The hollow glass spacer desiccant filling machine of claim 1, wherein, The translation mechanism comprises: A translation cylinder is provided with an eighth output shaft, and the translation cylinder is installed on the first mounting plate, and the eighth output shaft of the translation cylinder is connected to the first connecting frame; A sliding block is provided with a sliding groove, and the sliding block is fixed on the first mounting plate, and the sliding block is located below the first connecting frame; A slide rail is connected to the bottom of the first connecting frame, and the slide rail passes through the sliding groove of the sliding block.

6. The hollow glass spacer desiccant filling machine of claim 5, wherein, The hollow glass spacer drying agent filling machine further comprises: The weight-reducing grooves are in the shape of long strips, and two weight-reducing grooves are arranged through the first mounting plate.

Citation Information

Patent Citations

  • Hollow division bar type drying agent filling machine

    CN218506182U