Welding supporting device for machining piezoelectric quartz crystal resonator
By combining a rotating disk driven by a rotary motor with elastic support components, and using coolant spraying from a cooling assembly, the shortcomings of existing devices in terms of fixation and heat dissipation are solved, achieving high-quality welding and stability of the piezoelectric quartz crystal resonator.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-03-24
AI Technical Summary
Existing welding support devices for processing piezoelectric quartz crystal resonators have poor fixing and adjustment functions when fixing resonators of different sizes and shapes, resulting in welding position deviations that affect quality and consistency; the heat dissipation effect during welding is also poor, affecting the performance and stability of the resonator.
A rotating disk driven by a rotary motor and multiple elastic support components are used for initial fixation. Combined with a cooling component, coolant is sprayed through a liquid storage box and nozzles to achieve rapid and precise adjustment and effective heat dissipation, ensuring the accuracy of the welding position and the stability of the resonator performance.
It enables rapid and accurate fixing and precise adjustment of the welding position for resonators of different sizes and shapes, ensuring welding quality and stability, avoiding the phenomenon of high temperature affecting resonator performance, and improving production efficiency and product consistency.
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Figure CN224026848U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to resonator processing technical field, more specifically, relate to a kind of welding support device for piezoelectric quartz crystal resonator processing. BACKGROUND
[0002] As an important electronic component, piezoelectric quartz crystal resonator is widely used in communication, electronic equipment and many other fields. In its processing, welding is a key process, and the performance of the welding support device directly affects the welding quality and production efficiency. The existing welding support device for piezoelectric quartz crystal resonator processing has many shortcomings. On the one hand, for piezoelectric quartz crystal resonators of different sizes and shapes, the fixing and adjusting functions are poor, and many devices can only adapt to specific specifications of resonators. When different specifications of products need to be processed, it is difficult to quickly and accurately fix and adjust the resonators, resulting in welding position deviation, affecting the welding quality and product consistency. Moreover, during the welding process, the resonators are prone to displacement due to insecure fixing, further reducing the precision and stability of welding. On the other hand, a large amount of heat is generated during the welding process. If the heat cannot be effectively dissipated, the high temperature will have a serious impact on the performance of the piezoelectric quartz crystal resonator, such as changing the physical properties of the crystal, causing the resonant frequency to shift, and reducing the stability and reliability of the product. However, the existing welding support device often lacks effective cooling measures or has poor cooling effect, which cannot meet the actual production needs. SUMMARY
[0003] The utility model aims to provide a kind of welding support device for piezoelectric quartz crystal resonator processing, to solve the problems of the existing welding support device for piezoelectric quartz crystal resonator processing, such as poor fixing and adjusting functions for piezoelectric quartz crystal resonators of different sizes and shapes, difficult to quickly and accurately fix and adjust, insecure fixing and easy displacement, affecting welding quality, precision, stability and product consistency, poor heat dissipation and cooling effect during welding, affecting the performance of the resonator, reducing the stability and reliability of the product, and failing to meet the actual production needs.
[0004] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of providing a kind of welding support device for piezoelectric quartz crystal resonator processing, including fixing seat, mounting frame, support frame, adjusting and fixing assembly, cooling assembly and welding assembly. The mounting frame is fixedly arranged on the upper end of the fixing seat. The support frame is fixedly arranged above the mounting frame. The welding assembly is arranged on the support frame. The adjusting and fixing assembly and the cooling assembly are arranged on the mounting frame respectively.
[0005] The adjusting fixing assembly comprises a rotary motor, a rotary disc and a plurality of elastic supports, the rotary motor is arranged on the mounting frame, the rotary disc is arranged on the driving end of the upper part of the rotary motor and below the welding assembly, the plurality of elastic supports are arranged on the upper end surface of the rotary disc in a circumferential direction, and the elastic supports have elastic force from the outside to the inside along the radial direction of the rotary disc;
[0006] The cooling assembly comprises a liquid storage box, a cooling pipe and a power pump, the liquid storage box is arranged on the mounting frame, one end of the cooling pipe is communicated with the liquid storage box, the other end of the cooling pipe is connected with a nozzle facing the rotary disc, and the power pump is arranged on the mounting frame to provide power for the liquid transmission in the cooling pipe.
[0007] In a possible implementation, the mounting frame comprises a bottom plate and two side plates, the bottom plate is fixed to the upper end surface of the fixing base, the two side plates are fixed to the upper end surface of the bottom plate on both sides in a longitudinal direction, the rotary motor and the liquid storage box are respectively fixed to the upper end surface of the bottom plate, and the support frame is fixed to the upper end of the two side plates and above the rotary motor.
[0008] In a possible implementation, the support frame comprises two support plates and a fixing plate, the two support plates are respectively fixed to the upper end of the side plates one by one, the fixing plate is fixed between the two side plates, and the welding assembly is fixed to the fixing plate.
[0009] In a possible implementation, the welding assembly comprises a hydraulic machine and a welding head, the hydraulic machine is fixed to the fixing plate, the welding head is below the fixing plate and connected to the driving end of the lower part of the hydraulic machine, and the bottom end of the welding head is clamped with an electrode.
[0010] In a possible implementation, the upper end surface of the fixing base is fixedly provided with a fixed column, the upper end surface of the fixed column is fixedly provided with a motor box, the rotary motor is fixed in the motor box, the driving end of the upper part of the rotary motor is connected with a transmission rod, and the upper end of the transmission rod is connected with the rotary disc.
[0011] In a possible implementation, the elastic support comprises a fixed side plate, a compression spring and a clamping plate, the fixed side plate is fixed to the edge of the upper end surface of the rotary disc, the compression spring is arranged along the radial direction of the rotary disc and has elastic force from the outside to the inside, and the clamping plate is fixedly arranged at one end of the compression spring away from the fixed side plate.
[0012] In a possible implementation, a sliding sleeve and a sliding rod are arranged between the fixed side plate and the clamping plate, the sliding sleeve and the sliding rod are axially slidingly matched, and the compression spring is sleeved on the sliding sleeve and the sliding rod.
[0013] In a possible implementation, the rotating disc is radially provided with a plurality of chutes, and the lower ends of the plurality of clamping plates are correspondingly and slidably arranged in the plurality of chutes.
[0014] In a possible implementation, the top of the liquid storage box is fixed with a water pump box, and the power pump is fixedly arranged in the water pump box.
[0015] In a possible implementation, the top of the liquid storage box is throughly provided with a liquid inlet pipe, and the outer side of one end of the liquid inlet pipe is provided with a protective cover.
[0016] The piezoelectric quartz crystal resonator welding support device has the advantages that: compared with the prior art, when the piezoelectric quartz crystal resonator needs to be welded, the resonator to be welded is first placed above the rotating disc. Since the plurality of elastic supports circumferentially arranged on the rotating disc have elastic force along the radial direction of the rotating disc from the outside to the inside, the elastic supports can automatically adapt to the size and shape of the resonator, tightly fit the outer periphery of the resonator from different directions, and preliminarily fix resonators of different sizes and shapes. Even if the resonator has an irregular shape, it can also be stably clamped. The rotating motor is started, the rotating motor driving end drives the rotating disc to rotate, and then drives the fixed resonator thereon to rotate, so that the resonator is accurately adjusted to the optimal welding position below the welding assembly, the welding operation is facilitated, the accuracy of the welding position is ensured, and the problem that the resonator is difficult to be quickly and accurately fixed and adjusted in the prior art is solved. During the welding process, the power pump is started, the power pump provides power for the liquid transmission in the cooling pipe, the cooling liquid in the liquid storage box flows to the spray head through the cooling pipe under the action of the power pump, and the spray head uniformly sprays the cooling liquid to the rotating disc and the resonator being welded. The cooling liquid carries away a large amount of heat generated during welding, prevents the resonator from changing physical properties due to high temperature, ensures the performance stability of the resonator, and effectively solves the problem of poor heat dissipation and cooling effect during welding. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0018] Figure 1 The piezoelectric quartz crystal resonator welding support device provided by the present application has the advantages that: Figure 1 ;
[0019] Figure 2 The structure diagram of the support frame and the welding assembly provided by the present application.
[0020] Figure 3 The structural diagram of the adjusting and fixing assembly is provided in the utility model.
[0021] Figure 4 The three-dimensional view of the welding support device for piezoelectric quartz crystal resonator processing provided by the utility model Figure 2 ;
[0022] Figure 5 The side view of the welding support device for piezoelectric quartz crystal resonator processing provided by the utility model.
[0023] In the figure: 1, fixed seat; 2, mounting frame; 3, adjusting and fixing assembly; 301, fixed column; 302, motor box; 303, rotary motor; 304, transmission rod; 305, rotary disc; 306, fixed edge plate; 307, compression spring; 308, clamping plate; 4, cooling assembly; 401, liquid storage box; 402, water pump box; 403, power pump; 404, suction pipe; 405, spray pipe; 406, spray head; 407, liquid inlet pipe; 408, protective cover; 5, support plate; 6, fixed plate; 7, hydraulic box; 8, hydraulic machine; 9, welding head; 10, welding rod. DETAILED DESCRIPTION
[0024] In order to make the technical problems, technical solutions and beneficial effects of the utility model clearer and more apparent, the utility model will be further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and do not limit the utility model.
[0025] Unless otherwise explicitly defined, the terms such as "first", "second" or "third" are used only to distinguish different objects, and are not used to describe a specific order.
[0026] Unless otherwise explicitly defined, for the orientation words, such as the terms "center", "transverse", "longitudinal", "horizontal", "vertical", "top", "bottom", "inner", "outer", "upper", "lower", "front", "back", "left", "right", "clockwise", "counterclockwise", "high", "low" and the like indicate the orientation or positional relationship based on the orientation and positional relationship shown in the drawings, and are only used to facilitate the description of the utility model and simplify the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation or be constructed and operated in a particular orientation, so it cannot be understood as limiting the specific protection scope of the utility model.
[0027] Please refer to Figures 1 to 5The utility model provides a kind of piezoelectric quartz crystal resonator processing welding support device, compared with prior art, when piezoelectric quartz crystal resonator needs to be welded, first, the resonator to be welded is placed above rotating disc 305. Because the multiple elastic supports that are circumferentially arranged on rotating disc 305 have radial elasticity from outside to inside along rotating disc 305, these elastic supports will automatically adapt according to the size and shape of the resonator, tightly adhere to the outer periphery of the resonator from different directions, realize the preliminary fixation of resonators of different sizes and shapes, even if the resonator is irregular in shape, it can also be firmly clamped. Turn on rotating motor 303, the driving end of rotating motor 303 drives rotating disc 305 to rotate, and then drives the resonator fixed thereon to rotate, so that it is accurately adjusted to the optimal welding position below the welding assembly, facilitating welding operation and ensuring the accuracy of the welding position, solving the problem that the existing device is difficult to quickly and accurately fix and adjust the resonator. During the welding process, start power pump 403, and power pump 403 provides power for the liquid transmission in the cooling pipe. The coolant in liquid storage box 401 flows to spray head 406 through the cooling pipe under the action of power pump 403, and spray head 406 uniformly sprays the coolant to rotating disc 305 and the resonator being welded. The coolant carries away a large amount of heat generated during welding, prevents the resonator from changing physical properties due to high temperature, ensures the performance stability of the resonator, and effectively solves the problem of poor heat dissipation effect during welding.
[0028] The utility model provides a kind of piezoelectric quartz crystal resonator processing welding support device, compared with prior art, when piezoelectric quartz crystal resonator needs to be welded, first, the resonator to be welded is placed above rotating disc 305. Because the multiple elastic supports that are circumferentially arranged on rotating disc 305 have radial elasticity from outside to inside along rotating disc 305, these elastic supports will automatically adapt according to the size and shape of the resonator, tightly adhere to the outer periphery of the resonator from different directions, realize the preliminary fixation of resonators of different sizes and shapes, even if the resonator is irregular in shape, it can also be firmly clamped. Turn on rotating motor 303, the driving end of rotating motor 303 drives rotating disc 305 to rotate, and then drives the resonator fixed thereon to rotate, so that it is accurately adjusted to the optimal welding position below the welding assembly, facilitating welding operation and ensuring the accuracy of the welding position, solving the problem that the existing device is difficult to quickly and accurately fix and adjust the resonator. During the welding process, start power pump 403, and power pump 403 provides power for the liquid transmission in the cooling pipe. The coolant in liquid storage box 401 flows to spray head 406 through the cooling pipe under the action of power pump 403, and spray head 406 uniformly sprays the coolant to rotating disc 305 and the resonator being welded. The coolant carries away a large amount of heat generated during welding, prevents the resonator from changing physical properties due to high temperature, ensures the performance stability of the resonator, and effectively solves the problem of poor heat dissipation effect during welding.
[0029] Please refer to Figure 1, the mounting frame 2 includes a bottom plate and two side plates, the bottom plate is fixed to the upper end surface of the fixed seat 1, the two side plates are fixed to the upper end surface of the bottom plate, the rotary motor 303 and the liquid storage box 401 are fixed to the upper end surface of the bottom plate, and the support frame is fixed to the upper end of the two side plates and above the rotary motor 303. The bottom plate of the mounting frame 2 is fixed to the upper end surface of the fixed seat 1 to provide basic support for the whole device, and the rotary motor 303 and the liquid storage box 401 are stably arranged on the upper end surface of the bottom plate to ensure smooth operation of the two. The two longitudinally arranged side plates are fixed on both sides of the bottom plate, which not only enhances the stability of the overall structure of the mounting frame 2, but also expands the space for subsequent component connection. The support frame is fixed to the upper end of the two side plates and above the rotary motor 303, which not only provides a suitable work platform for the welding assembly, but also cooperates with the rotary motor 303, the bottom plate and other components below to ensure the reasonable layout and efficient cooperation between components during welding, thereby creating favorable conditions for precise welding of piezoelectric quartz crystal resonators.
[0030] Please refer to Figure 2 , the support frame includes two support plates 5 and a fixed plate 6, the two support plates 5 are fixed to the upper end of the side plate one by one, and the fixed plate 6 is fixed between the two side plates. The welding assembly is fixed to the fixed plate 6. The two support plates 5 are fixed to the upper end of the side plate one by one, which lays a solid foundation for the overall support frame structure and ensures the reliability of subsequent load bearing. The fixed plate 6 is fixed between the two side plates, which not only enhances the integrity of the support frame, but more importantly provides an ideal fixed point for the welding assembly. The welding assembly is firmly attached to the fixed plate 6 and can perform welding processes in a precise and stable position. The welding assembly cooperates with the rotating disc 305, the elastic support and other components below to provide a solid guarantee for high-quality welding of piezoelectric quartz crystal resonators.
[0031] Specifically, the welding assembly includes a hydraulic machine 8 and a welding head 9, the hydraulic machine 8 is fixed to the fixed plate 6 and enclosed in the hydraulic box 7, and the welding head 9 is located below the fixed plate 6 and connected to the driving end of the lower part of the hydraulic machine 8. The bottom end of the welding head 9 is clamped with an electrode 10. The hydraulic machine 8 is fixed to the fixed plate 6 of the support frame through the hydraulic box 7, and as the power core, it controls the rhythm and intensity of the welding operation. The welding head 9 connected to the lower driving end is located below the fixed plate 6, which ensures that the resonator placed on the rotating disc 305 can be precisely and forcefully welded. During the welding process, the electrode 10 can stably and accurately apply solder to the parts of the resonator that need to be welded by driving the welding head 9 to press down with the hydraulic machine 8. In combination with the stable clamping of the resonator by the adjusting and fixing assembly 3 and the temperature control guarantee of the cooling assembly 4, the welding process is fully assisted to achieve high-quality and efficient welding.
[0032] Please refer to Figure 3The upper end surface of the fixed seat 1 is fixedly provided with a fixed column 301, the upper end surface of the fixed column 301 is fixedly provided with a motor box 302, a rotary motor 303 is fixed in the motor box 302, a transmission rod 304 is connected to the driving end of the upper part of the rotary motor 303, and the upper end of the transmission rod 304 is connected to a rotating disc 305. Such a structure design is to lay a solid foundation for the operation of the device, which not only creates a stable environment for the rotary motor 303, but also ensures stable power transmission. When the rotary motor 303 is started, it can accurately drive the rotating disc 305 to rotate, drive the resonator to adjust the position, effectively improve the welding precision and stability, and make up for the short board of the existing device fixing and adjusting.
[0033] Please refer to Figure 3 The elastic support member includes a fixed edge plate 306, a compression spring 307, and a clamping plate 308. The fixed edge plate 306 is fixed to the upper end surface edge of the rotating disc 305. The compression spring 307 is arranged along the radial direction of the rotating disc 305 and has a self-outer-to-inner elastic force. The clamping plate 308 is fixedly arranged at one end of the compression spring 307 away from the fixed edge plate 306. The fixed edge plate 306 is fixed to the upper end surface edge of the rotating disc 305, providing a stable point of application for the entire elastic support structure. The compression spring 307 is cleverly arranged along the radial direction of the rotating disc 305 and has a self-outer-to-inner elastic force characteristic. This elastic force design allows the spring to adapt to different sizes of piezoelectric quartz crystal resonators. The clamping plate 308 is fixedly arranged at one end of the compression spring 307 away from the fixed edge plate 306. When a resonator is placed on the rotating disc 305, the clamping plate 308 tightly abuts against the resonator from different directions under the action of the elastic force of the compression spring 307. This not only quickly fixes resonators of different shapes and sizes, but also stabilizes the resonator during welding, effectively preventing displacement and ensuring welding quality and precision.
[0034] Specifically, a sliding sleeve and a sliding rod are arranged between the fixed edge plate 306 and the clamping plate 308, and the sliding sleeve and the sliding rod are axially slidingly matched. The compression spring 307 is sleeved on the sliding sleeve and the sliding rod. On the one hand, the compression spring 307 provides the clamping plate 308 with stable and continuous radial inward elastic force, ensuring that the resonator is tightly fixed. On the other hand, the sliding sleeve and the sliding rod limit and guide the compression spring 307, preventing the compression spring 307 from deviating or twisting during expansion and contraction, ensuring that the elastic force uniformly and stably acts on the clamping plate 308, and further improving the reliability of the elastic support member in fixing the resonator, laying a solid foundation for subsequent high-quality welding.
[0035] Specifically, the radial direction of the rotating disc 305 is provided with a plurality of grooves, and the lower ends of the plurality of clamping plates 308 are correspondingly and slidably arranged in the plurality of grooves. The clamping plate 308 can slide in the groove, automatically adjust the position according to the actual size of the resonator, make the compression spring 307 better exert the elastic force, and tightly fit the resonator. At the same time, the groove plays a guiding and limiting role on the clamping plate 308, ensures stable movement during the rotation of the rotating disc 305, avoids shaking and deviation, ensures accurate position and firm fixation of the resonator during welding, and improves the welding quality and stability.
[0036] Please refer to Figure 4 The top of the liquid storage box 401 is fixed with a water pump box 402, the power pump 403 is fixedly arranged in the water pump box 402, the cooling pipe penetrates the power pump 403, the lower part of the cooling pipe penetrating into the liquid storage box 401 is the suction pipe 404, and the upper part of the cooling pipe is the flexible spray pipe 405, which penetrates the fixed plate 6 and is bent downward to install the spray head 406. The suction pipe 404 penetrating into the liquid storage box 401 is responsible for sucking the cooling liquid, and the flexible feature of the upper part of the flexible spray pipe 405 enables it to flexibly adapt to the internal structure layout of the device, smoothly penetrate the fixed plate 6, bend downward, and finally accurately install the spray head 406. In this way, during the welding process, the power pump 403 is started, the cooling liquid in the liquid storage box 401 is sucked by the suction pipe 404, is pressurized by the power pump 403, and is delivered to the spray head 406 by the spray pipe 405, so that the spray head 406 can uniformly spray the cooling liquid to the rotating disc 305 and the resonator, efficiently take away the heat, effectively solve the heat dissipation problem during welding, and ensure that the performance of the resonator is not affected by high temperature.
[0037] Please refer to Figure 4 The top of the liquid storage box 401 is provided with the liquid inlet pipe 407, and the outer side of one end of the liquid inlet pipe 407 is provided with the protective cover 408. The liquid inlet pipe 407 provided at the top of the liquid storage box 401 plays a key role in supplementing liquid. It provides a convenient channel for the supplement of the cooling liquid, and when the cooling liquid in the liquid storage box 401 is consumed due to repeated use, it can be added in time through the liquid inlet pipe 407. The protective cover 408 provided at the outer side of one end of the liquid inlet pipe 407 effectively prevents dust, impurities and other foreign matters from entering the liquid storage box 401 to contaminate the cooling liquid, ensures the cleanliness of the cooling liquid, maintains the good performance of the cooling assembly 4, and further ensures that the piezoelectric quartz crystal resonator can continuously and stably provide efficient heat dissipation during the welding process, so that it is not damaged by high temperature, and the stability and reliability of the product are ensured.
[0038] The above only describes the preferred embodiments of the present application, and is not intended to limit the present application. Any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A welding support device for processing piezoelectric quartz crystal resonators, characterized in that, The application relates to a welding device, which comprises a fixing base (1), a mounting frame (2), a support frame, an adjusting and fixing assembly (3), a cooling assembly (4) and a welding assembly, the mounting frame (2) is fixedly arranged at the upper end of the fixing base (1), the support frame is fixedly arranged above the mounting frame (2), the welding assembly is arranged on the support frame, and the adjusting and fixing assembly (3) and the cooling assembly (4) are arranged on the mounting frame (2) respectively. The adjusting and fixing assembly (3) comprises a rotating motor (303), a rotating disc (305) and a plurality of elastic supporting pieces, the rotating motor (303) is arranged on the mounting frame (2), the rotating disc (305) is arranged on the driving end of the upper portion of the rotating motor (303) and is located below the welding assembly, and the plurality of elastic supporting pieces are circumferentially arranged on the upper end face of the rotating disc (305); the elastic supporting pieces have elastic force along the radial direction of the rotating disc (305) from the outside to the inside. The cooling assembly (4) comprises a liquid storage box (401), a cooling pipe and a power pump (403), the liquid storage box (401) is arranged on the mounting frame (2), one end of the cooling pipe is communicated with the liquid storage box (401), the other end of the cooling pipe is connected with a nozzle (406) facing the rotating disc (305), and the power pump (403) is arranged on the mounting frame (2) and is used for providing power for liquid transmission in the cooling pipe.
2. The soldering support device for processing a piezoelectric quartz crystal resonator as claimed in claim 1, wherein The mounting frame (2) comprises a bottom plate and two side plates, the bottom plate is fixed to the upper end face of the fixing base (1), the two side plates are fixed to the upper end face of the bottom plate on the two sides, the rotating motor (303) and the liquid storage box (401) are fixed to the upper end face of the bottom plate respectively, and the support frame is fixed to the upper ends of the two side plates and is located above the rotating motor (303).
3. The soldering support device for processing a piezoelectric quartz crystal resonator as claimed in claim 2, wherein The support frame comprises two support plates (5) and a fixing plate (6), the two support plates (5) are fixed to the upper ends of the side plates one by one, and the fixing plate (6) is fixed between the two side plates; and the welding assembly is fixed to the fixing plate (6).
4. The soldering support device for processing a piezoelectric quartz crystal resonator as claimed in claim 3, wherein The welding assembly comprises a hydraulic machine (8) and a welding head (9), the hydraulic machine (8) is fixed to the fixing plate (6), the welding head (9) is located below the fixing plate (6) and is connected to the driving end of the lower portion of the hydraulic machine (8), and a welding rod (10) is clamped to the bottom end of the welding head (9).
5. The soldering support device for processing a piezoelectric quartz crystal resonator as claimed in claim 1, wherein The upper end face of the fixing base (1) is fixedly provided with a fixed column (301), the upper end face of the fixed column (301) is fixedly provided with a motor box (302), the rotating motor (303) is fixed in the motor box (302), a transmission rod (304) is connected to the driving end of the upper portion of the rotating motor (303), and the upper end of the transmission rod (304) is connected with the rotating disc (305).
6. The soldering support apparatus for processing a piezoelectric quartz crystal resonator as claimed in claim 1, wherein The elastic support comprises a fixed edge plate (306), a compression spring (307) and a clamping plate (308), the fixed edge plate (306) is fixed to the upper end surface edge of the rotating disc (305), the compression spring (307) is arranged along the radial direction of the rotating disc (305) and has elastic force from outside to inside, and the clamping plate (308) is fixedly arranged at one end of the compression spring (307) away from the fixed edge plate (306).
7. The soldering support device for processing a piezoelectric quartz crystal resonator as claimed in claim 6, wherein A sliding sleeve and a sliding rod are arranged between the fixed edge plate (306) and the clamping plate (308), the sliding sleeve and the sliding rod are axially slidingly matched, and the compression spring (307) is sleeved on the sliding sleeve and the sliding rod.
8. The soldering support device for processing a piezoelectric quartz crystal resonator as claimed in claim 6, wherein A plurality of sliding grooves are arranged in the radial direction of the rotating disc (305), and the lower ends of the plurality of clamping plates (308) are slidingly arranged in the plurality of sliding grooves one by one.
9. The soldering support apparatus for processing a piezoelectric quartz crystal resonator as claimed in claim 1, wherein A water pump box (402) is fixed to the top of the liquid storage box (401), and the power pump (403) is fixedly arranged in the water pump box (402).
10. The soldering support device for processing a piezoelectric quartz crystal resonator as claimed in claim 1, wherein A liquid inlet pipe (407) is arranged through the top of the liquid storage box (401), and a protective cover (408) is arranged at the outer side of one end of the liquid inlet pipe (407).