Hollow glass frame drying agent filling device

By designing a desiccant filling device for insulating glass frames, the problem of positional deviation caused by separating drilling and filling was solved, achieving precise positioning and filling of insulating glass frames, and improving production efficiency and product quality.

CN223594029UActive Publication Date: 2025-11-25YICHENG JIAXUAN GLASS CO LTD
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Patent Information

Application Number
CN202423011530.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2025-11-25
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

In existing technologies, the drilling and desiccant filling processes for insulating glass frames are carried out separately, which can easily lead to positional deviations and affect production efficiency and quality.

Method used

A desiccant filling device for insulating glass frames was designed, comprising a support mechanism, a positioning mechanism, a fixing mechanism, a drilling mechanism, and a filling mechanism. The positioning mechanism accurately positions the insulating glass frame, the fixing mechanism ensures stable positioning, the drilling mechanism drills holes at designated locations, and the filling mechanism precisely controls the filling of desiccant.

Benefits of technology

It achieves precise positioning and control of the drilling and filling process, ensuring that the desiccant is evenly poured into the insulating glass frame, thereby improving the quality and production efficiency of insulating glass.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hollow glass frame drying agent filling device which comprises a supporting mechanism, a positioning mechanism, a fixing mechanism, a drilling mechanism and a filling mechanism. The positioning mechanism is used for positioning the hollow glass frame; the fixing mechanism comprises a supporting plate and a pressing plate, the supporting plate is arranged on the rack, the pressing plate is arranged on the supporting plate, and the pressing plate is used for abutting against the hollow glass frame; the drilling mechanism comprises an electric drill arranged on the sliding plate, and a receding hole for the electric drill to penetrate through is formed in the pressing plate. The hollow glass frame drilling and filling device has the advantages that the positioning mechanism is matched with the fixing mechanism, so that the position accuracy of the hollow glass frame in the drilling and filling process can be guaranteed, and the accurate control of the filling mechanism can also guarantee that the filling amount of the drying agent in each hollow glass frame is accurate and consistent; therefore, the quality of the hollow glass is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass processing field, concretely relates to a hollow glass frame desiccant filling device. BACKGROUND

[0002] Hollow glass product is a kind of building energy-saving product, with good sound insulation, heat insulation, thermal insulation performance.Modern building adopts large-area glass lighting has become a trend, effectively improves the comfort of living.Hollow glass product is composed of multiple glasses, supported by aluminium spacer hollow glass frame, in order to prevent damp, need to inject desiccant in aluminium spacer hollow glass frame.

[0003] In the related art, a kind of hollow glass molecular sieve desiccant uniform filling device is presented, including workbench, multiple vertical boards are fixedly installed on the upper surface of workbench two sides, multiple vertical boards adjacent surface movably installs conveying belt, support block is fixedly installed on the rear side of workbench, feeding barrel is fixed on the upper surface of support block, discharge pipe is fixedly installed in the lower end of feeding barrel, carousel is movably installed on the lower surface of support block, multiple sub-barrels are fixedly installed on the lower surface of carousel, servo motor is fixedly installed on the inner wall surface of support block lower, discharge pipe lower end and sub-barrel upper end movably connect, multiple sub-barrel diameters are not the same, servo motor output and carousel upper surface are fixedly connected.

[0004] For the related art in the above, there is the following defect: before filling desiccant, still need to drill hole on hollow glass frame, filling and drilling process are executed separately, if drilling size or drilling position appears deviation, cannot be found in time, influence subsequent filling process, affect production efficiency. UTILITY MODEL CONTENT

[0005] The utility model aims at overcoming the above technical insufficiency, and provides a kind of hollow glass frame desiccant filling device, solves the technical problem that drilling and filling are carried out separately in prior art.

[0006] To achieve the above technical purpose, the technical scheme of the utility model provides a kind of hollow glass frame desiccant filling device, including support mechanism, the support mechanism includes rack;

[0007] Positioning mechanism, the positioning mechanism is used for positioning hollow glass frame;

[0008] Fixing mechanism, the fixing mechanism includes support plate and pressing plate, the support plate is located on rack, the pressing plate is located on support plate, and the pressing plate is used to abut on hollow glass frame;

[0009] Drilling mechanism, the drilling mechanism includes electric drill on slide plate, and the pressing plate is provided with a hole for electric drill to pass through;And,

[0010] A filling mechanism for filling a desiccant into a hollow glass frame.

[0011] In some embodiments, the positioning mechanism comprises two positioning plates and three positioning rods, the two positioning plates are arranged on the rack and opposite to each other, and the three positioning rods are arranged between the two positioning plates and abut the corners of the hollow glass frame.

[0012] In some embodiments, the positioning rods slide through the positioning plates, and nuts are threadedly connected to both ends of the positioning rods and abut the outer sides of the positioning plates.

[0013] In some embodiments, the filling mechanism comprises a storage tank, a pump body, and a filling pipe, the outlet of the storage tank is in communication with the inlet of the pump body, the outlet of the pump body is in communication with the inlet of the filling pipe, and the outlet of the filling pipe faces the through hole of the hollow glass frame.

[0014] In some embodiments, the pressing plate is provided with a filling hole, the outlet of the filling pipe is in communication with the inlet of the filling hole, the pressing plate is slidingly connected to the support plate, the rack is provided with a driving mechanism, the driving mechanism is used to drive the pressing plate to slide so that the outlet of the filling hole is aligned with the through hole of the hollow glass frame.

[0015] In some embodiments, the driving mechanism comprises a power assembly and a transmission assembly, the power assembly comprises a cylinder arranged on the rack, and the piston rod of the cylinder is connected to the pressing plate through the transmission assembly.

[0016] In some embodiments, the transmission assembly comprises a first transmission rod and a second transmission rod, one end of the first transmission rod is connected to the piston rod, the other end of the first transmission rod is hingedly connected to the second transmission rod, one end of the second transmission rod away from the first transmission rod is hingedly connected to the pressing plate, and the second transmission rod is arranged obliquely.

[0017] In some embodiments, a chip collecting box is arranged between the two positioning plates below the positioning rods.

[0018] In some embodiments, the filling pipe is provided with a flow valve.

[0019] In some embodiments, the storage tank is provided with an observation window.

[0020] Compared with the prior art, the beneficial effects of the utility model include: the cooperation of the positioning mechanism and the fixing mechanism can ensure the position accuracy of the hollow glass frame in the drilling and filling process, the accurate drilling position and the appropriate drilling size can ensure that the drying agent is smoothly filled into the hollow glass frame and is uniformly distributed, and the accurate control of the filling mechanism can also ensure that the filling amount of the drying agent in each hollow glass frame is accurate and consistent, thereby improving the quality of the hollow glass. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 is the overall structure schematic diagram of the filling device provided by the utility model, and

[0022] Figure 2 is the overall structure schematic diagram of the filling device provided by the utility model, and Figure 1 is the local structure enlarged view of A in the middle.

[0023] BRIEF DESCRIPTION OF DRAWINGS:

[0024] 1, support mechanism;11, rack;2, positioning mechanism;21, positioning plate;22, positioning rod;23, nut;3, fixing mechanism;31, support plate;32, pressing plate;4, drilling mechanism;41, electric drill;42, let hole;5, filling mechanism;51, storage tank;52, pump body;53, filling pipe;54, filling hole;55, flow valve;56, observation window;6, driving mechanism;61, power assembly;611, air cylinder;62, transmission assembly;621, first transmission rod;622, second transmission rod;7, scrap collecting box. DETAILED DESCRIPTION

[0025] In order to make the purpose, technical scheme and advantages of the utility model more clear and obvious, the following will be further described in detail by combining with the drawings and examples. It should be understood that the specific examples described here are only used to explain the utility model, and are not used to limit the utility model.

[0026] The utility model provides a kind of hollow glass frame drying agent filling device, its structure as Figure 1 Figure 2 As shown in the figure, including support mechanism 1, positioning mechanism 2, fixing mechanism 3, drilling mechanism 4 and filling mechanism 5.

[0027] The support mechanism 1 includes rack 11.

[0028] The positioning mechanism 2 is used to position hollow glass frame.

[0029] The fixing mechanism 3 includes support plate 31 and pressing plate 32, the support plate 31 is located on rack 11, the pressing plate 32 is located on support plate 31, and the pressing plate 32 is used to abut on hollow glass frame.

[0030] ​The drilling mechanism 4 comprises an electric drill 41 arranged on the slide plate, and the pressing plate 32 is provided with a clearance hole 42 for the electric drill 41 to pass through.

[0031] The filling mechanism 5 is used for filling the desiccant into the hollow glass frame.

[0032] In use, the positioning mechanism 2 is used for accurately determining the position of the hollow glass frame. The supporting plate 31 is arranged on the rack 11 and serves as a carrier of the pressing plate 32. The pressing plate 32 abuts against the hollow glass frame, and the hollow glass frame is firmly fixed between the supporting plate 31 and the pressing plate 32 through appropriate pressure, so that the hollow glass frame is prevented from moving during the drilling and filling processes, and the accuracy of the operation is ensured. When the hollow glass frame is fixed, the electric drill 41 can drill a hole for filling the desiccant into the hollow glass frame through the clearance hole 42 on the pressing plate 32. After the drilling of the hole in the hollow glass frame is completed, the filling mechanism 5 starts to work. During the filling process, the amount of the desiccant filled into each hollow glass frame can be ensured to meet the requirements by controlling the flow rate, time and other parameters of the filling.

[0033] In the utility model, the cooperation of the positioning mechanism 2 and the fixing mechanism 3 can ensure the position accuracy of the hollow glass frame during the drilling and filling processes, the accurate drilling position and the appropriate drilling size can ensure that the desiccant is smoothly filled into the hollow glass frame and uniformly distributed, and the accurate control of the filling mechanism 5 can also ensure that the filling amount of the desiccant in each hollow glass frame is accurate and consistent, so that the quality of the hollow glass is improved.

[0034] In order to position the hollow glass frame, please refer to Figure 1 In a preferred embodiment, the positioning mechanism 2 comprises two positioning plates 21 and three positioning rods 22. The two positioning plates 21 are arranged on the rack 11 and oppositely arranged, and the three positioning rods 22 are arranged between the two positioning plates 21 and abut against the corners of the hollow glass frame, respectively.

[0035] In use, when the hollow glass frame is to be filled with desiccant, first place the hollow glass frame in the working area of the positioning mechanism 2. The two positioning plates 21 are located on the rack 11 and are oppositely arranged, forming a channel-like structure. The three positioning rods 22 are arranged between the two positioning plates 21 and abut against the corners of the hollow glass frame. The contact of the three positioning rods 22 with the corners of the hollow glass frame accurately determines the position of the hollow glass frame in the plane from three points. Because of the stability of the triangle, the abutment of the three positioning rods 22 with the corners of the hollow glass frame can prevent the hollow glass frame from rotating or slightly moving in the plane, thereby accurately determining the position of the hollow glass frame and providing an accurate position reference for subsequent fixing, drilling and filling operations.

[0036] For the assembly and disassembly of the positioning rods 22, please refer to Figure 1 In a preferred embodiment, the positioning rods 22 slide through the positioning plates 21, and nuts 23 are threadedly connected to both ends of the positioning rods 22, abutting against the outer side of the positioning plates 21.

[0037] In use, if the positioning rods 22 need to be replaced due to wear and tear or damage during long-term use, or need to be further adjusted, it is also very convenient to operate. Simply loosen the nuts 23, and the positioning rods 22 can be easily removed from the positioning plates 21 for repair, replacement or re-adjustment, and then installed and fixed according to the above installation steps, greatly reducing the difficulty and cost of equipment maintenance.

[0038] For filling the desiccant into the hollow glass frame, please refer to Figure 1 In a preferred embodiment, the filling mechanism 5 includes a storage tank 51, a pump body 52 and a filling pipe 53 arranged on the rack 11. The outlet of the storage tank 51 is in communication with the inlet of the pump body 52, the outlet of the pump body 52 is in communication with the inlet of the filling pipe 53, and the outlet of the filling pipe 53 faces the through hole on the hollow glass frame.

[0039] In use, the storage tank 51 serves as a storage container for the desiccant and is located on the rack 11, storing the desiccant used to fill the hollow glass frame. The pump body 52 generates suction and pressure after starting. The desiccant entering the pump body 52 from the storage tank 51 is given a certain pressure under the action of the pump and flows out from the outlet of the pump body 52. Since the outlet of the pump body 52 is in communication with the inlet of the filling pipe 53, the desiccant smoothly enters the filling pipe 53. The outlet of the filling pipe 53 faces the through hole on the hollow glass frame, and when the desiccant flows through the filling pipe 53 to the outlet under the pressure of the pump body 52, the desiccant is injected into the hollow glass frame through the through hole on the hollow glass frame under the push of the pressure.

[0040] In order to align the filling hole 54 with the through hole, please refer to Figure 2 In a preferred embodiment, the pressing plate 32 is provided with a filling hole 54, the outlet of the filling pipe 53 communicates with the inlet of the filling hole 54, the pressing plate 32 is slidingly connected to the supporting plate 31, the rack 11 is provided with a driving mechanism 6, the driving mechanism 6 is used to drive the pressing plate 32 to slide, so that the outlet of the filling hole 54 is aligned with the through hole on the hollow glass frame.

[0041] In use, after the drilling of the hollow glass frame is completed, in order to accurately fill the desiccant into the through hole of the hollow glass frame, it is necessary to align the outlet of the filling hole 54 on the pressing plate 32 with the through hole on the hollow glass frame. At this time, the driving mechanism 6 on the rack 11 is started, and a suitable driving force is applied to the pressing plate 32 to make the pressing plate 32 slide on the supporting plate 31 in a specific direction. Since the pressing plate 32 is slidingly connected to the supporting plate 31, under the pushing of the driving mechanism 6, the pressing plate 32 can slide smoothly and accurately. With the sliding of the pressing plate 32, the outlet position of the filling hole 54 above it also changes. Once the outlet of the filling hole 54 is aligned with the through hole on the hollow glass frame, the filling mechanism 5 can normally carry out the filling work of the desiccant.

[0042] In order to drive the pressing plate 32 to slide, please refer to Figure 2 In a preferred embodiment, the driving mechanism 6 includes a power assembly 61 and a transmission assembly 62, the power assembly 61 includes a cylinder 611 provided on the rack 11, and the piston rod of the cylinder 611 is connected to the pressing plate 32 through the transmission assembly 62.

[0043] In use, when it is necessary to drive the pressing plate 32 to slide to align the outlet of the filling hole 54 with the through hole on the hollow glass frame, the cylinder 611 on the rack 11 starts to work. The transmission assembly 62 connects the piston rod of the cylinder 611 and the pressing plate 32, and its main function is to transmit the linear motion of the piston rod to the pressing plate 32. Through the transmission of the transmission assembly 62, the pressing plate 32 slides on the supporting plate 31 under the driving of the piston rod of the cylinder 611.

[0044] In order to transmit the force of the piston rod to the pressing plate 32, please refer to Figure 2 In a preferred embodiment, the transmission assembly 62 includes a first transmission rod 621 and a second transmission rod 622, one end of the first transmission rod 621 is connected to the piston rod, the other end of the first transmission rod 621 is hinged to the second transmission rod 622, one end of the second transmission rod 622 away from the first transmission rod 621 is hinged to the pressing plate 32, and the second transmission rod 622 is arranged obliquely.

[0045] In use, in the initial state, the piston rod of the air cylinder 611 is connected with the first transmission rod 621 and the second transmission rod 622, which is arranged in an inclined manner, forming a specific geometric relationship with the first transmission rod 621 and the pressing plate 32. When it is required to drive the pressing plate 32 to slide to align the outlet of the filling hole 54 with the through hole on the hollow glass frame, the air cylinder 611 receives a corresponding control signal to start working. With the movement of the piston in the air cylinder 611, the piston rod will produce a linear motion. The linear motion of the piston rod is directly transmitted to the first transmission rod 621 connected thereto. Since one end of the first transmission rod 621 is fixedly connected to the piston rod, the extension or retraction of the piston rod will drive the first transmission rod 621 to make a corresponding translational motion. The other end of the first transmission rod 621 is hingedly connected to the second transmission rod 622. When the first transmission rod 621 makes a translational motion, a force will be applied to the second transmission rod 622 through the hinge point. Because the second transmission rod 622 is arranged in an inclined manner, the translational force of the first transmission rod 621 will make the second transmission rod 622 rotate around the hinge point with the pressing plate 32, thereby converting the force transmitted by the first transmission rod 621 in terms of direction and mode of action. The end of the second transmission rod 622 away from the first transmission rod 621 is hingedly connected to the pressing plate 32. During the rotation of the second transmission rod 622 around the hinge point with the pressing plate 32, a pushing or pulling force will be applied to the pressing plate 32 through this hinge point, which will drive the pressing plate 32 to slide on the support plate 31.

[0046] In order to collect the debris generated during drilling, please refer to Figure 1 In a preferred embodiment, a debris collecting box 7 is arranged below the positioning rods 22 between the two positioning plates 21.

[0047] In use, when the electric drill 41 of the drilling mechanism 4 drills holes on the hollow glass frame, a large amount of debris will be generated. These debris will naturally fall under the action of gravity. Since the positioning rods 22 are used to position the hollow glass frame, and the debris collecting box is arranged below the positioning rods 22, the debris will pass through the gap between the positioning rods 22 when falling from the position of the gap 42. The debris collecting box is placed between the two positioning plates 21 with its opening facing upwards, just below the position of the gap 42. After passing through the gap between the positioning rods 22, the debris will directly fall into the debris collecting box. The debris collecting box has a certain depth and capacity, which can accommodate a large amount of debris, preventing the debris from scattering around the device and keeping the working area clean.

[0048] In order to control the flow rate during filling of the desiccant, please refer to Figure 1 In a preferred embodiment, a flow valve 55 is arranged on the filling pipe 53.

[0049] In use, different specifications of hollow glass frame can need different amount of desiccant filling, and the flow valve 55 can realize accurate adaptation of filling amount of each hollow glass frame, to ensure that the amount of desiccant filling meets product requirements.

[0050] In order to observe the remaining amount of desiccant in the storage tank 51, please refer to Figure 1 In a preferred embodiment, the storage tank 51 is provided with an observation window 56.

[0051] In use, through the observation window 56, the size of the space occupied by the desiccant in the storage tank 51 can be clearly distinguished, so that it can be intuitively understood how much desiccant is left for use. The operator can arrange the replenishment of desiccant in advance according to the observed situation, to avoid interruption of the filling operation due to depletion of desiccant in the production process.

[0052] In order to better understand the present application, the following will be combined with Figure 1 - Figure 2 The working principle of the technical scheme of the hollow glass frame desiccant filling device of the present application is described in detail: the positioning mechanism 2 is used to accurately determine the position of the hollow glass frame. The support plate 31 is installed on the rack 11, which serves as a carrier for the pressing plate 32. The pressing plate 32 abuts against the hollow glass frame, and through appropriate pressure, the hollow glass frame is firmly fixed between the support plate 31 and the pressing plate 32, to prevent displacement of the hollow glass frame during drilling and filling, and to ensure the accuracy of the operation. When the hollow glass frame is fixed, since the pressing plate 32 is provided with a clearance hole 42 for the electric drill 41 to pass through, the electric drill 41 can drill a hole for filling desiccant in the hollow glass frame through this clearance hole 42. After the drilling of the hollow glass frame is completed, the filling mechanism 5 starts to work. During the filling process, the amount of desiccant filled in each hollow glass frame can be ensured to meet the requirements by controlling the flow, time and other parameters of the filling.

[0053] The specific embodiments of the present application described above do not constitute a limitation on the scope of protection of the present application. Any various other corresponding changes and modifications made according to the technical concept of the present application shall be included in the protection scope of the claims of the present application.

Claims

1. A hollow glass frame desiccant filling device, characterized by, The utility model relates to a hollow glass frame automatic filling device, including: Supporting mechanism, the supporting mechanism includes frame; Positioning mechanism, the positioning mechanism is used for positioning hollow glass frame; Fixing mechanism, the fixing mechanism includes support plate and pressing plate, the support plate is located on the frame, the pressing plate is located on the support plate, and the pressing plate is used for abutting on the hollow glass frame; Drilling mechanism, the drilling mechanism includes electric drill located on the slide plate, and the pressing plate is provided with a gap hole for the electric drill to pass through; and Filling mechanism, the filling mechanism is used for injecting desiccant into the hollow glass frame.

2. The hollow glass frame desiccant filling device according to claim 1, characterized in that, The positioning mechanism includes two positioning plates and three positioning rods, the two positioning plates are located on the frame, the two positioning plates are opposite, the three positioning rods are located between the two positioning plates, and the three positioning rods abut the corners of the hollow glass frame respectively.

3. The hollow glass frame desiccant filling device of claim 2, wherein, The positioning rod slides through the positioning plate, the positioning rod is screw-connected with a nut at both ends, and the nut abuts the outer side of the positioning plate.

4. The hollow glass frame desiccant filling device of claim 1, wherein, The filling mechanism includes a storage tank, a pump body and a filling pipe, the outlet of the storage tank is communicated with the inlet of the pump body, the outlet of the pump body is communicated with the inlet of the filling pipe, and the outlet of the filling pipe faces the through hole on the hollow glass frame.

5. The hollow glass frame desiccant filling device of claim 4, wherein, The pressing plate is provided with a filling hole, the outlet of the filling pipe is communicated with the inlet of the filling hole, the pressing plate is slidingly connected on the support plate, the frame is provided with a driving mechanism, the driving mechanism is used for driving the pressing plate to slide, so that the outlet of the filling hole is aligned with the through hole on the hollow glass frame.

6. The hollow glass frame desiccant filling device of claim 5, wherein, The driving mechanism includes a power assembly and a transmission assembly, the power assembly includes a cylinder located on the frame, and the piston rod of the cylinder is connected with the pressing plate through the transmission assembly.

7. The hollow glass frame desiccant filling device of claim 6, wherein, The transmission assembly includes a first transmission rod and a second transmission rod, one end of the first transmission rod is connected with the piston rod, the other end of the first transmission rod is hinged with the second transmission rod, one end of the second transmission rod away from the first transmission rod is hinged with the pressing plate, and the second transmission rod is inclined.

8. The hollow glass frame desiccant filling device of claim 2, wherein, The scrap collecting box is arranged between the two positioning plates below the positioning rods.

9. The hollow glass frame desiccant filling device of claim 4, wherein, The filling pipe is provided with a flow valve.

10. The hollow glass frame desiccant filling device of claim 4, wherein, The storage tank is provided with an observation window.