Quartz part batch waxing process and quartz part batch waxing device
Automatic wax coating of quartz parts is achieved through a three-axis robotic arm and a visual positioning system. Combined with an independent temperature control module and a buffer mechanism, the problems of position deviation and uneven heating caused by manual wax coating are solved, thereby improving production efficiency and safety.
Patent Information
- Application Number
- CN202510904608.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-01
- Publication Date
- 2025-10-10
AI Technical Summary
The existing wax coating process for quartz components relies on manual operation, which has large position deviations, uneven wax coating, low efficiency, and is prone to worker fatigue and burn risks in high temperature environments.
A three-axis robotic arm and visual positioning system are used for automated wax coating. Combined with an independent temperature control module and multi-station heating, precise wax coating is achieved through a three-axis nozzle, and a buffer mechanism is used to prevent damage to quartz parts.
It improves the wax coating position accuracy and heating uniformity, reduces manual intervention, improves batch production efficiency, and reduces manual operation risks.
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Figure CN120757311A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of wax coating of quartz parts, in particular to a batch wax coating process and a device thereof for quartz parts. Background Art
[0002] Quartz components refer to various devices made of quartz glass, which are mainly used in various high-tech fields such as semiconductors, optical fibers, photovoltaics, etc. Quartz glass has excellent properties such as high light transmittance, high temperature resistance, low expansion coefficient, strong chemical stability and good electrical insulation, which makes quartz components widely used in these fields. When processing quartz components, wax coating process is used, for example:
[0003] Announcement No. CN110204182A provides a split-type quartz ring wax coating and bonding device, comprising a base, an internal liquid receiving chamber, a fixed plate fixedly mounted on the top of the base, an outer ring liquid guide groove, an inner ring liquid guide groove located inside the outer ring liquid guide groove and connected to the outer ring liquid guide groove at its bottom, a flow hole fixedly mounted on the bottom of the outer ring liquid guide groove, the bottom of the flow hole connected to the top of the liquid receiving chamber, and a guide post with one end extending through and extending to the outside of the fixed plate, each of the four corners of the top of the fixed plate being movably mounted on the inside. This split-type quartz ring wax coating and bonding device has a simple overall structure, avoids the contamination of quartz products caused by pencils used in traditional wax coating and bonding methods, reduces product scrap rate, and evenly applies solid paraffin wax, improving overall product production quality and facilitating use.
[0004] Another example is an electric telescopic automatic waxing adhesive provided by announcement number CN110240390A, which includes a platform, support plates fixedly connected to the left and right sides of the platform top, the tops of the two support plates being fixedly connected via a connecting plate, the connecting plate having a sliding hole formed therein, a first electric push rod fixedly mounted on the right side of the top of the connecting plate, the output shaft of the first electric push rod fixedly connected to a movable block, the front and rear sides of the movable block being movably connected to rollers, a second electric push rod fixedly mounted on the top of the movable block, a sleeve fixedly mounted on the bottom of the movable block, the output shaft of the second electric push rod extending below the movable block and fixedly connected to a movable rod, paraffin fixedly mounted on the bottom end of the movable rod, and sliders fixedly connected to the left and right sides of the movable rod. This electric telescopic automatic waxing adhesive achieves uniform wax application and improves processing quality.
[0005] The existing technical solutions have the following defects, for example: the existing quartz parts wax coating process is too limited in manual operation, and traditionally relies on manual wax coating, resulting in large position deviation and uneven wax coating, which leads to repeated positioning during subsequent machining, low efficiency, uneven thickness of manual wax coating, and repeated operations in high temperature environments that can easily lead to worker fatigue and a risk of burns. Therefore, the present invention provides a quartz parts batch wax coating process and device thereof to solve the above-mentioned problems. Summary of the Invention
[0006] The purpose of the present invention is to provide a batch wax coating process and device for quartz parts, so as to solve the problems proposed in the above background technology that manual operation is too limited, traditional reliance on manual wax coating, large position deviation and uneven wax coating amount, resulting in repeated positioning of subsequent machining, low efficiency, uneven thickness of manual wax coating, repeated operation in high temperature environment, easy to cause worker fatigue, and the risk of burns.
[0007] To achieve the above-mentioned object, the present invention provides the following technical solution: a device for batch wax coating of quartz parts, comprising: a processing bottom plate, a processing panel disposed on the processing bottom plate, and a quartz part body disposed on the processing panel, and further comprising:
[0008] Two sets of mounting rail seats are connected in parallel to the outer side of the upper surface of the processing bottom plate, and the connecting support plate at the end of the mounting rail seat is connected to the processing bottom plate, and the first electric slide rail on the outer side of the connecting support plate is provided with a first electric slider, and the upper side of the first electric slider is respectively connected to a spacer block and a second electric slide rail;
[0009] The interior of the second electric slide rail is connected to a connecting top block, and the lower side of the connecting top block is connected to the third electric slide rail, and the outer side of the third electric slide rail is connected to the fourth electric slider via an electric slide rail groove, and a pressing component with a buffering function is provided on the outer side of the fourth electric slider, and the machined surface of the third electric slide rail is connected to the third electric slider via bolts, and the outer surface of the third electric slider is connected to the first connecting block;
[0010] Two sets of connecting telescopic rods are provided inside and outside the first connecting block, and the bottom of the first connecting block is connected to a limit block, and a wax coating component is provided at the bottom of the connecting telescopic rod outside the first connecting block;
[0011] Four groups of mounting panels are arranged on the surface of the processing panel, and the surfaces of the mounting panels are connected with a quartz substrate.
[0012] As a preferred technical solution of the present invention, wax is bonded to the surface of the quartz substrate to serve as a position limiting process for the quartz component body.
[0013] As a preferred technical solution of the present invention, the quartz component bodies are evenly arranged on the surface of the quartz substrate to achieve the purpose of mass production.
[0014] As a preferred technical solution of the present invention, the wax coating assembly includes an adjustment positioning plate arranged at the bottom of the telescopic rod, and the lower side of the first connecting block is connected to the limiting block, and the outer side of the adjustment positioning plate is connected to the adjustment rod, the interior of the adjustment positioning plate is connected to the third electric slider through a supporting block, and the outer side of the adjustment rod is connected to a three-axis nozzle for spraying wax.
[0015] As a preferred technical solution of the present invention, the quartz substrates are connected to each other through independent temperature control modules arranged on the processing panel to achieve uniform heating of the substrates at each workstation.
[0016] As a preferred technical solution of the present invention, the adjustment rod is connected to the adjustment positioning plate through a thread to play the role of disassembly and assembly of the three-axis nozzle.
[0017] As a preferred technical solution of the present invention, the pressing assembly includes a stable mounting plate arranged on the outside of the fourth electric slider by bolts, and the outside of the stable mounting plate is connected to an automatic operation block, and the lower side of the automatic operation block is connected to a first connecting column, and the bottom of the first connecting column is connected to a pressing block.
[0018] As a preferred technical solution of the present invention, a connecting plate is provided inside the pressing block for equal-angle rotation, and a third connecting column is connected to the upper side of the connecting plate, and a mounting spring is connected to the outer surface of the third connecting column, and the second connecting column is slidingly connected inside the third connecting column, and the mounting motor inside the pressing block is coaxially arranged with one of the connecting plates.
[0019] As a preferred technical solution of the present invention, the connecting plate is connected with 8 groups of equal angles inside the pressing block, and the third connecting column is staggered and arranged with 4 groups of equal angles on the upper end of the connecting plate.
[0020] A wax coating process for a batch wax coating device for quartz parts, the specific process steps are as follows:
[0021] Step 1: Install the quartz substrate separately on the surface of the mounting panel to form a single station. Set an independent temperature control module on each separate station to heat the quartz substrate;
[0022] Step 2: After starting the temperature control module, the PLC main control module is controlled to move the first electric slide in the Y-axis direction. At the same time, the third electric slide can be moved in the X-axis direction inside the second electric slide. The third electric slide can also slide in the Z-axis direction inside the electric slide groove. The three-axis robotic arm equipped with a visual positioning camera is used to quantitatively apply the molten wax liquid.
[0023] Step 3: Then, by setting the pressing block, press the quartz part body evenly to the designated position of the wax coating, and limit the bonding of the quartz part body;
[0024] Step 4: After processing, the quartz part body is cooled and solidified and the quartz substrate is transferred to the processing machine for the next operation.
[0025] Compared with the prior art, the present invention has the following beneficial effects: the batch wax coating process and device for quartz parts achieves wax coating position accuracy through a three-axis robotic arm and visual positioning, eliminating the need for manual operation; and independently heats the quartz substrates to achieve multi-station parallel processing of the quartz substrates, thereby improving batch production efficiency, increasing heating uniformity, and reducing manual intervention;
[0026] 1. The first electric slider slides inside the first electric slide rail, thereby moving the first electric slider in the Y-axis direction. When the first electric slider moves in the Y-axis, the lower side of the connecting top block is connected to the third electric slide rail, and the third electric slide rail slides inside the second electric slide rail, thereby moving the third electric slide rail in the X-axis direction. At the same time, the third electric slider slides in the third electric slide rail to move in the Z-axis. The sliding of the first electric slider, the third electric slide rail and the third electric slider can perform three-axis robot arm operation for moving the X, Y and Z axes, thereby improving the level of automation. The outside of the adjustment rod is connected to a three-axis nozzle for spraying wax. The integrated wax melting tank, the micro-metering pump and the three-axis nozzle are installed on the outside of the adjustment positioning plate. The integrated wax melting tank is used to melt wax, and the three-axis nozzle is used to apply wax for integrated control, thereby reducing manual intervention.
[0027] 2. The quartz substrates are placed on the processing panel through independent temperature control modules to ensure uniform heating of the substrates at each station. The three-axis nozzle is aligned with the surface of the quartz substrate. At the same time, the first electric slider and the third electric slide rail move horizontally and vertically under the movement of the X and Y axes to accurately apply wax on the surface of the quartz substrate. At the same time, the quartz substrates are installed on the processing panel. The quartz substrates are placed on the processing panel through independent temperature control modules. The independent temperature control modules ensure uniform heating of the substrates at each station. At this time, wax is bonded to the surface of the quartz substrate, thereby reducing manual operation and solving the problem of manual control of wax amount based on experience, which is prone to over- or under-application and increased costs. At the same time, the operation can be repeated in a high temperature environment.
[0028] 3. There are 8 groups of equal-angle meshing connections inside the pressing block through the connecting plate, and 4 groups of third connecting columns are staggered at equal angles on the upper end of the connecting plate. The 4 groups of connecting plates staggered with the connecting plate rotate in the same direction, so that the third connecting columns rotating in the same direction rotate along with the pressing block, which makes it inconvenient to rotate and press according to the position of the quartz part body, prevents uneven pressing, and thus performs multi-angle pressing. At the same time, a spring is installed to retract and retract during pressing, and the third connecting column is slid inside the second connecting column, thereby playing a role of pressing buffer, preventing the pressing block from being tightly connected and pressed too tightly, causing damage to the quartz part body. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0030] Figure 2 Schematic diagram of the overall cross-sectional structure of the first electric slide rail and the installation slide rail seat of the present invention;
[0031] Figure 3 This is a schematic diagram of the overall exploded structure of the third electric slide rail and the fourth electric slider connected to each other in the present invention;
[0032] Figure 4 For the present invention Figure 1 A in the middle is an enlarged structural diagram;
[0033] Figure 5 This is a schematic diagram of the overall cross-sectional structure of the connection between the second electric slide rail and the first electric slide block of the present invention;
[0034] Figure 6 For the present invention Figure 1 The enlarged structural diagram at B in the middle;
[0035] Figure 7 This is a schematic diagram of the overall explosion structure of the first connecting column and the press-fit block connected in the present invention;
[0036] Figure 8 For the present invention Figure 5 Enlarged structural diagram at point C in the middle.
[0037] In the figure: 1. Processing the bottom plate; 2. Processing the panel; 3. Connecting the support plate; 4. Installing the slide rail seat; 5. The first electric slide rail; 6. The spacer block; 7. The second electric slide rail; 8. Connecting the top block; 9. Installing the panel; 10. The quartz substrate; 11. The quartz part body; 12. The first electric slider; 13. The third electric slide rail; 14. The electric slide rail groove; 15. The third electric slider; 16. The first connecting block; 17. Connecting the telescopic rod; 18. The limit block; 19. The adjusting rod; 20. The three-axis nozzle; 21. Adjusting the positioning plate; 22. The bearing block; 23. The fourth electric slider; 24. The stable mounting plate; 25. The automatic operation block; 26. The first connecting column; 27. The pressing block; 28. The second connecting column; 29. Installing the spring; 30. The third connecting column; 31. Installing the motor; 32. The connecting plate. DETAILED DESCRIPTION
[0038] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0039] See also Figure 1-8 The present invention provides a technical solution: a batch wax coating process and device for quartz parts, firstly, Figure 1 、 Figure 2 and Figure 3In the embodiment, four groups of mounting panels 9 are provided on the surface of the processing panel 2, and a quartz substrate 10 is connected to the surface of the mounting panel 9. The quartz substrate 10 is sequentially mounted on the mounting panel 9. Since the upper end of the processing bottom plate 1 is connected to the processing panel 2, two groups of mounting slide rail seats 4 are connected in parallel to the outer side of the upper surface of the processing bottom plate 1, and the connecting support plate 3 at the end of the mounting slide rail seat 4 is connected to the processing bottom plate 1. The mounting slide rail seat 4 is connected to the processing bottom plate 1 through the setting of the connecting support plate 3. The first electric slide rail 5 on the outer side of the connecting support plate 3 is internally provided with a first electric slider 12, and the upper side of the first electric slider 12 is respectively connected with a spacer block 6 and a second electric slide rail 7. The interior of the second electric slide rail 7 is connected with a connecting top block 8. By starting PL The C main control module will slide the first electric slider 12 inside the first electric slide rail 5, thereby moving the first electric slider 12 in the Y-axis. When the first electric slider 12 moves in the Y-axis, since the upper side of the first electric slider 12 is connected to the spacer block 6 by bolts, and the lower side of the connecting top block 8 is connected to the third electric slide rail 13, the third electric slide rail 13 slides inside the second electric slide rail 7, thereby moving the third electric slide rail 13 in the X-axis. At the same time, the third electric slider 15 slides in the third electric slide rail 13 to move in the Z-axis. The sliding of the first electric slider 12, the third electric slide rail 13 and the third electric slider 15 can perform three-axis robot arm operations of X-axis, Y-axis and Z-axis movement, thereby improving the level of automation.
[0040] Specific examples Figure 4 、 Figure 5 and Figure 6The third electric slide 13 is connected to the third electric slider 15 by bolts, and the outer surface of the third electric slider 15 is connected to the first connecting block 16; the interior and the outer side of the first connecting block 16 are provided with two groups of connecting telescopic rods 17. When the connecting telescopic rods 17 are started, the adjusting positioning plate 21 is moved and adjusted to the appropriate wax coating position. Since the bottom of the first connecting block 16 is connected to the limiting block 18, a wax coating assembly is provided at the bottom of the connecting telescopic rod 17 on the outer side of the first connecting block 16. The wax coating assembly includes an adjusting positioning plate 21 arranged at the bottom of the connecting telescopic rod 17, and the lower side of the first connecting block 16 is connected to the limiting block 18, and the outer side of the adjusting positioning plate 21 is connected with an adjusting rod 19. The adjusting rod 19 is connected to the adjusting positioning plate 21 through a thread, which plays the role of disassembling and assembling the three-axis spray head 20. The interior of the adjusting positioning plate 21 is connected to the third electric slider 15 through a bearing block 22, and the outer side of the adjusting rod 19 is connected with a three-axis spray head 20 for spraying wax, which sets the integrated wax melting tank to a constant temperature of 60°C and a micro The flow accuracy of the metering pump is ±0.01ml and the three-axis nozzle 20 is installed on the outside of the adjustment positioning plate 21. The integrated wax melting tank is used to melt the wax while the three-axis nozzle 20 is integrated with the wax coating to reduce manual intervention. The path of the three-axis nozzle 20 is adaptively planned based on the QR code mark of the quartz substrate 10. At the same time, it is equipped with a visual positioning camera and installed on the third electric slide 13 axis for visual positioning. The three-axis nozzle 20 is aligned with the surface of the quartz substrate 10. At the same time, the first electric slider 12 and the third electric slide 13 are moved horizontally and vertically under the movement of the X and Y axes to accurately coat the surface of the quartz substrate 10. At the same time, the quartz substrate 10 is installed on the processing panel 2. The quartz substrates 10 are arranged on the processing panel 2 through independent temperature control modules. The independent temperature control module ensures the uniformity of heating of the substrates at each workstation. At this time, wax is bonded to the surface of the quartz substrate 10, thereby reducing manual operation and solving the problem of manual control of the amount of wax based on experience, which is prone to over- or under-application and increased cost. At the same time, the operation can be repeated in a high temperature environment.
[0041] Specific examples Figure 3 、 Figure 7 and Figure 8In the embodiment, when the wax is applied to the surface of the quartz substrate 10 and heated, the outer side of the third electric slide rail 13 is connected to the fourth electric slider 23 through the electric slide rail groove 14, and the pressing assembly includes a stable mounting plate 24 arranged on the outer side of the fourth electric slider 23 by bolts, and the outer side of the stable mounting plate 24 is connected to the automatic operation block 25, and the lower side of the automatic operation block 25 is connected to the first connecting column 26, and the bottom of the first connecting column 26 is connected to the pressing block 27. The quartz part body 11 is evenly arranged on the surface of the quartz substrate 10, and the fourth electric slider 23 is slid inside the electric slide rail groove 14. When the fourth electric slider 2 3 is moved, at this time, the fourth electric slider 23 is set by the stable mounting plate 24 and the automatic operation block 25, and the pressing block 27 presses the quartz part body 11 to the specified position. At this time, the quartz part body 11 is limited by the wax on the quartz substrate 10. Multiple quartz part bodies 11 are set on the quartz substrate 10 for parallel processing. Multiple products are bonded to facilitate batch processing and improve work efficiency. At the same time, the quartz part body 11 is bonded to the quartz substrate 10 to prevent the quartz part body 11 from loosening or offsetting, thereby increasing processing stability. The interior of the pressing block 27 is provided with a connecting plate 32 for equal angle rotation, and the connecting plate 32 is provided for connection. The upper side of the disk 32 is connected to the third connecting post 30, and the outer surface of the third connecting post 30 is connected to the mounting spring 29, and the interior of the third connecting post 30 is slidably connected to the second connecting post 28, and the mounting motor 31 inside the pressing block 27 is coaxially arranged with one of the connecting disks 32. When the mounting motor 31 is started, the mounting motor 31 drives one of the connecting disks 32 to rotate skillfully. Since the connecting disks 32 are connected at equal angles in 8 groups inside the pressing block 27, when one of the mounting motors 31 rotates, the third connecting post 30 is staggered at equal angles at the upper end of the connecting disk 32. At this time, the connecting The four groups of connecting plates 32 staggered on the plates 32 rotate in the same direction, thereby rotating the third connecting posts 30 on the same direction, causing the pressing block 27 to rotate. It is inconvenient to rotate and press according to the position of the quartz component body 11, preventing uneven pressing, thereby performing multi-angle pressing. At the same time, the spring 29 is installed to expand and contract while pressing, and the third connecting post 30 is slid inside the second connecting post 28, thereby playing a role of pressing buffer, preventing the pressing block 27 from being tightly connected and pressed too tightly, causing damage to the quartz component body 11. This is the batch wax coating process for quartz components and the method of using the device thereof.
[0042] The standard parts used in the present application can be purchased from the market, and the special-shaped parts can be ordered according to the description and the drawings, the specific connection mode of each part adopts the conventional means such as bolt, rivet and welding in the prior art, the machinery, parts and equipment adopt the conventional type in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, which will not be described in detail here. The contents not described in detail in the specification belong to the prior art known to those skilled in the art.
[0043] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacements for part of the technical features, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A device for batch wax coating of quartz parts, comprising: A processing bottom plate (1), a processing panel (2) arranged on the processing bottom plate (1), and a quartz part body (11) arranged on the processing panel (2), characterized in that it also includes: Two sets of mounting rail seats (4) are connected in parallel to the outer side of the upper surface of the processing bottom plate (1), and the connecting support plate (3) at the end of the mounting rail seat (4) is connected to the processing bottom plate (1), and a first electric slide block (12) is provided inside the first electric slide rail (5) outside the connecting support plate (3), and the upper side of the first electric slide rail (12) is respectively connected to a spacer block (6) and a second electric slide rail (7); The interior of the second electric slide rail (7) is connected to a connecting top block (8), and the lower side of the connecting top block (8) is connected to a third electric slide rail (13), and the outer side of the third electric slide rail (13) is connected to a fourth electric slider (23) through an electric slide rail groove (14), and a pressing component with a buffering function is provided on the outer side of the fourth electric slider (23), and the processing surface of the third electric slide rail (13) is connected to the third electric slider (15) through bolts, and the outer surface of the third electric slider (15) is connected to the first connecting block (16); Two groups of connecting telescopic rods (17) are provided inside and outside the first connecting block (16), and the bottom of the first connecting block (16) is connected to a limiting block (18), and a wax coating component is provided at the bottom of the connecting telescopic rod (17) outside the first connecting block (16); Four groups of mounting panels (9) are provided on the surface of the processing panel (2), and the surfaces of the mounting panels (9) are connected to a quartz substrate (10).
2. A quartz parts batch wax coating device according to claim 1, characterized in that: Wax is bonded to the surface of the quartz substrate (10) to perform position limiting processing on the quartz component body (11).
3. The device for batch wax coating of quartz parts according to claim 1, characterized in that: The quartz component body (11) is evenly arranged on the surface of the quartz substrate (10) to achieve the purpose of batch production.
4. The device for batch wax coating of quartz parts according to claim 1, characterized in that: The wax coating assembly comprises an adjustment positioning plate (21) arranged at the bottom of the connecting telescopic rod (17), the lower side of the first connecting block (16) is connected to the limiting block (18), and the outer side of the adjustment positioning plate (21) is connected to the adjustment rod (19), the interior of the adjustment positioning plate (21) is connected to the third electric slider (15) through a bearing block (22), and the outer side of the adjustment rod (19) is connected to a three-axis nozzle (20) for spraying wax.
5. The device for batch wax coating of quartz parts according to claim 1, characterized in that: The quartz substrates (10) are arranged on the processing panel (2) through independent temperature control modules, so as to achieve the effect of uniform heating of the substrates at each work station.
6. The device for batch wax coating of quartz parts according to claim 4, characterized in that: The regulating rod (19) is connected to the regulating positioning plate (21) via a thread and plays a role in disassembling and assembling the three-axis spray head (20).
7. The device for batch wax coating of quartz parts according to claim 1, characterized in that: The pressing assembly includes a stable mounting plate (24) arranged on the outside of the fourth electric slider (23) by means of bolts, and the outside of the stable mounting plate (24) is connected to an automatic operation block (25), and the lower side of the automatic operation block (25) is connected to a first connecting column (26), and the bottom of the first connecting column (26) is connected to a pressing block (27).
8. The device for batch wax coating of quartz parts according to claim 7, characterized in that: The interior of the pressing block (27) is provided with an adapter plate (32) which is rotated at an equal angle, and the upper side of the adapter plate (32) is connected to a third adapter column (30), and the outer surface of the third adapter column (30) is connected to a mounting spring (29), and the interior of the third adapter column (30) is slidably connected to a second adapter column (28), and the mounting motor (31) inside the pressing block (27) is coaxially arranged with one of the adapter plates (32).
9. The device for batch wax coating of quartz parts according to claim 8, characterized in that: The connecting disc (32) is connected in eight groups at equal angles inside the pressing block (27), and four groups of third connecting columns (30) are staggered and arranged at equal angles on the upper end of the connecting disc (32).
10. A wax coating process for a quartz component batch wax coating device according to claim 1, characterized in that: The specific process steps are as follows: Step 1: The quartz substrate (10) is individually mounted on the surface of the mounting panel (9) to form a single station. An independent temperature control module is provided at each individual station to heat the quartz substrate (10); Step 2: After starting the temperature control module, the first electric slider (12) is moved in the Y-axis direction by controlling the PLC main control module, and the third electric slide rail (13) is moved in the X-axis direction inside the second electric slide rail (7), and the third electric slider (15) is moved in the Z-axis direction by sliding inside the electric slide rail groove (14), and the molten wax liquid is quantitatively coated by a three-axis robotic arm equipped with a visual positioning camera; Step 3: The quartz component body (11) is evenly pressed to the designated wax-coated position by setting the pressing block (27), and the quartz component body (11) is bonded and limited; Step 4: After processing, the quartz part body (11) is cooled and solidified, and the quartz substrate (10) is transferred to a processing machine for the next step.
Citation Information
Patent Citations
Split type quartz ring waxing and bonding device
CN110204182A
Electric telescopic automatic waxing bonder
CN110240390A