Displacement-preventing crystal resonator flattening device

By designing a crystal resonator flattening device to prevent displacement, and utilizing a processing mechanism and a fixing mechanism driven by a motor and a hydraulic cylinder, the obstacles of traditional devices in automation integration have been overcome, achieving efficient and stable crystal resonator flattening processing, and improving production efficiency and product quality.

CN223693891UActive Publication Date: 2025-12-19RIZHAO HUIDA ELECTRONICS CO LTD
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Patent Information

Application Number
CN202423262196.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-12-19
Estimated Expiration
2034-12-30

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    Figure CN223693891U_ABST
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Abstract

The utility model discloses an anti-displacement crystal resonator flattening device, which comprises a processing mechanism, the processing mechanism comprises an L-shaped plate fixedly connected to the top of a processing table, and the top of the L-shaped plate is fixedly connected with a motor. A crystal resonator is flattened through the machining mechanism, accurate control can be achieved by means of parameters such as the rotating speed of a motor and the size of a crank, construction and propelling of an automatic process are greatly facilitated, the speed of a working stroke and the speed of a return stroke can be flexibly adjusted according to needs, the overall working efficiency of flattening operation is greatly improved, and meanwhile the machining efficiency of the crystal resonator is greatly improved. In the aspect of maintenance, operation is easy and convenient to implement, complicated professional knowledge storage is not needed, special tools are not needed, stable operation of the resonator can be guaranteed only by completing basic work such as regular lubrication and abrasion inspection in daily life, and consistency and stability of resonator flattening work are powerfully guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to resonator processing technical field, especially, relate to a crystal resonator flattening device of displacement prevention. BACKGROUND

[0002] Crystal resonator is a kind of high-precision frequency control element, it utilizes the piezoelectric effect of quartz crystal, presents stable resonant frequency in circuit, with high frequency stability, high precision, quality factor big advantage, widely used in communication, computer, electronic instrument etc. Field, provides accurate and stable clock signal for various electronic equipment, is the indispensable key component in modern electronic technology.

[0003] Traditional crystal resonator flattening device mostly relies on relatively simple mechanical structure or complex and unstable hydraulic drive system, and the flattening device of hydraulic drive may exist obstacles in automation integration, its movement law is difficult to be flexibly adjusted by simple parameter, cannot be conveniently integrated into automated production line, leading to too much manual intervention in production process, further reduce production efficiency, increase production cost. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a crystal resonator flattening device of displacement prevention, by being provided with processing mechanism, the flattening device of hydraulic drive may exist obstacles in automation integration, its movement law is difficult to be flexibly adjusted by simple parameter, cannot be conveniently integrated into automated production line, leading to too much manual intervention in production process, further reduce production efficiency, increase production cost problem.

[0005] To solve the above technical problems, the utility model is realized by the following technical schemes:

[0006] The utility model is a kind of crystal resonator flattening device of displacement prevention, including processing table, be provided with processing mechanism and fixed mechanism on the processing table,

[0007] The processing mechanism includes the L-shaped plate fixedly connected at the top of processing table, the top of L-shaped plate is fixedly connected with motor, the output shaft of motor is fixedly connected with the rotating shaft through the shaft connector, the front end of rotating shaft is fixedly connected with the rotating disc, the front side of rotating disc is fixedly connected with fixed rod one, the front end of fixed rod one is rotatably connected with connecting plate one, the side away from fixed rod one of connecting plate one is hinged with connecting rod, the bottom end of connecting rod is fixedly connected with fixed plate, the bottom of fixed plate is fixedly connected with elastic pad, the bottom of elastic pad is fixedly connected with flattening block, the inner top of L-shaped plate is fixedly connected with limit board, connecting rod and limit board are slidingly connected.

[0008] Further, the top of the processing table is fixedly connected with a positioning seat, the top of the positioning seat is provided with a positioning groove, and the inner wall of the positioning groove is slidably connected with a crystal resonator.

[0009] Further, the fixing mechanism comprises two supporting plates fixedly connected to the bottom of the processing table, two slide rods fixedly connected between the two supporting plates, and a fixing seat fixedly connected to the two slide rods.

[0010] Further, the top of the fixing seat is fixedly connected with a second fixing rod, and the top end of the second fixing rod is rotatably connected with a Z-shaped plate.

[0011] Further, the two slide rods are slidably connected with a first sliding block and a second sliding block.

[0012] Further, the first sliding block and the second sliding block are hingedly connected with a second connecting plate between the Z-shaped plate and the fixing seat, the bottom of the fixing seat is fixedly connected with a hydraulic cylinder, and the output shaft of the hydraulic cylinder is fixedly connected with the first sliding block.

[0013] Further, the top of the processing table is provided with two sliding grooves, the top of the first sliding block and the second sliding block is fixedly connected with a moving plate, and the top of the two moving plates extends to the top of the processing table and is slidably connected with the corresponding sliding groove.

[0014] Further, the top of the two moving plates is fixedly connected with a U-shaped clamping plate, the top of the processing table is fixedly connected with two limiting rods, and the two U-shaped clamping plates are slidably connected with the two limiting rods.

[0015] The utility model has the following beneficial effects:

[0016] 1. By setting up the processing mechanism, starting the motor, the motor mobilizes the rotation of the shaft, the rotation of the shaft drives the rotation of the disc, the rotation of the disc drives the movement of the first fixed rod, the movement of the first fixed rod drives the movement of the first connecting plate, the movement of the first connecting plate drives the up-down movement of the connecting rod, the up-down movement of the connecting rod drives the movement of the fixed plate, the movement of the fixed plate drives the up-down movement of the flattening block through the elastic pad, the flattening processing of the crystal resonator is carried out through the processing mechanism, the speed of the motor, the size of the crank and other parameters are used to realize accurate control, which greatly facilitates the construction and promotion of automatic process, and the speed of work stroke and return stroke can be flexibly adjusted as needed, greatly improving the overall working efficiency of the flattening operation, and in the aspect of maintenance, the operation is simple and easy to operate, without professional knowledge reserve and special tools, only by doing basic work such as regular lubrication and checking wear, the stable operation can be ensured, and the continuity and stability of the resonator flattening work are effectively guaranteed.

[0017] 2、By setting the fixed mechanism, the hydraulic cylinder is started, the sliding block one is driven to slide on the slide rod, the sliding block one drives the connecting plate two connected with the sliding block one to move when sliding, the connecting plate two connected with the sliding block one drives the Z-shaped plate to rotate when moving, the Z-shaped plate drives the connecting plate two connected with the sliding block two to move when rotating, the connecting plate two connected with the sliding block two drives the sliding block two to move when moving, the sliding block one and the sliding block two drive the moving plate to move when moving, the moving plate drives the Z-shaped clamping plate to move when moving, the fixed mechanism can accurately maintain the position stability of the crystal resonator in the machining, effectively ensures the machining precision, makes the force point and direction of the flattening operation constant, avoids the uneven flattening thickness and shape deviation caused by displacement, ensures the size precision at a high standard, greatly improves the product quality and consistency, at the same time, helps to greatly improve the production efficiency, reduces the machining interruption and position adjustment time after fixing, significantly increases the machining quantity in unit time, and is beneficial to the smooth progress of the automatic process, and ensures the continuity of the machining.

[0018] Of course, any product implementing the present application does not necessarily need to achieve all the advantages described above at the same time. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0020] Figure 1 It is the overall structure schematic diagram of the present application;

[0021] Figure 2 It is the structure schematic diagram of the support plate of the present application;

[0022] Figure 3 It is the structure schematic diagram of the hydraulic cylinder of the present application;

[0023] Figure 4 It is the structure schematic diagram of the motor of the present application;

[0024] Figure 5 It is the structure schematic diagram of the positioning seat of the present application.

[0025] In the drawings, the component list represented by each sign is as follows:

[0026] 1, processing platform; 2, processing mechanism; 3, fixed mechanism; 21, L-shaped plate; 22, motor; 23, rotating shaft; 24, rotating disc; 25, fixed rod one; 26, connecting plate one; 27, fixed plate; 28, elastic pad; 29, flattening block; 210, positioning seat; 211, positioning groove; 212, crystal resonator; 213, connecting rod; 214, limiting plate; 31, support plate; 32, sliding rod; 33, fixed seat; 34, fixed rod two; 35, Z-shaped plate; 36, sliding block one; 37, sliding block two; 38, connecting plate two; 39, sliding groove; 310, moving plate; 311, U-shaped clamping plate; 312, limiting rod; 313, hydraulic cylinder. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0028] Please refer to Figures 1-5As shown, the utility model is a kind of anti -displacement crystal resonator flattening device, including processing table 1, is provided with processing mechanism 2 and fixed mechanism 3 on processing table 1, processing mechanism 2 includes the L-shaped plate 21 fixedly connected in the top of processing table 1, the top of L-shaped plate 21 is fixedly connected with motor 22, the output shaft of motor 22 is fixedly connected with rotating shaft 23 by shaft coupling, the front end of rotating shaft 23 is fixedly connected with rotating disc 24, the front side of rotating disc 24 is fixedly connected with fixed link one 25, the front end of fixed link one 25 is rotatably connected with connecting plate one 26, the side of connecting plate one 26 away from fixed link one 25 is hinged with connecting rod 213, the bottom end of connecting rod 213 is fixedly connected with fixed plate 27, the bottom of fixed plate 27 is fixedly connected with elastic pad 28, the bottom of elastic pad 28 is fixedly connected with flattening block 29, the inner top of L-shaped plate 21 is fixedly connected with limit plate 214, connecting rod 213 is slidably connected with limit plate 214, the top of processing table 1 is fixedly connected with positioning seat 210, the top of positioning seat 210 is provided with positioning groove 211, the inner wall of positioning groove 211 is slidably connected with crystal resonator 212, flattening processing is carried out to crystal resonator 212 by processing mechanism 2, can realize accurate control by the speed of motor 22, crank size and other parameters, greatly facilitate the construction and promote of automation process, also can be needed Flexible deployment of work stroke and return speed, greatly improve the overall work efficiency of flattening operation, simultaneously, in maintenance aspect, easy to operate, need not to have complicated professional knowledge reserve, also need not to rely on special tool, only need to do such as regular lubrication, check wear and tear Basic work, can ensure its stable operation, effectively guarantee the coherence and stability of resonator flattening work.

[0029] The fixing mechanism 3 comprises two supporting plates 31 fixedly connected to the bottom of the machining table 1, two slide rods 32 fixedly connected between the two supporting plates 31, a fixing seat 33 fixedly connected to the two slide rods 32, a fixing rod two 34 fixedly connected to the top of the fixing seat 33, a Z-shaped plate 35 rotationally connected to the top end of the fixing rod two 34, a sliding block one 36 slidingly connected to the two slide rods 32, a sliding block two 37 slidingly connected to the two slide rods 32, a connecting plate two 38 hingedly connected between the sliding block one 36 and the sliding block two 37 and the Z-shaped plate 35, a hydraulic cylinder 313 fixedly connected to the bottom of the fixing seat 33, an output shaft of the hydraulic cylinder 313 fixedly connected to the sliding block one 36, two sliding grooves 39 formed in the top of the machining table 1, a moving plate 310 fixedly connected to the top of each of the sliding block one 36 and the sliding block two 37, the top of each of the two moving plates 310 extending to the top of the machining table 1 and slidingly connected to a corresponding sliding groove 39, a Z-shaped clamping plate 311 fixedly connected to the top of each of the two moving plates 310, and two limiting rods 312 fixedly connected to the top of the machining table 1 and slidingly connected to the two Z-shaped clamping plates 311. The fixing mechanism 3 can accurately maintain the position stability of the crystal resonator 212 during processing, effectively guarantee the processing precision, make the force point and direction of flattening operation constant, avoid uneven flattening thickness and shape deviation caused by displacement, ensure the size precision at a high standard, greatly improve the product quality and consistency, and help to greatly improve the production efficiency, reduce processing interruption and position adjustment time after fixing, significantly increase the processing quantity per unit time, and facilitate smooth progress of the automatic process and guarantee the processing continuity.

[0030] One specific application of the embodiment is that the crystal resonator 212 is placed in the positioning groove 211 on the positioning seat 210, the positioning groove 211 is used for positioning the crystal resonator 212, the motor 22 is started, the motor 22 drives the rotating shaft 23 to rotate, the rotating shaft 23 drives the rotating disc 24 to rotate when rotating, the rotating disc 24 drives the fixing rod one 25 to move when rotating, the fixing rod one 25 drives the connecting plate one 26 to move when moving, the connecting plate one 26 drives the connecting rod 213 to move up and down when moving, the connecting rod 213 is limited by the limiting plate 214 when moving up and down, the connecting rod 213 drives the fixed plate 27 to move when moving up and down, the fixed plate 27 drives the flattening block 29 to move up and down through the elastic pad 28 when moving, so as to perform flattening processing on the crystal resonator 212, and the elastic pad 28 is used for buffering the impact force that the flattening block 29 may receive during flattening processing.

[0031] After the crystal resonator 212 is placed in the positioning groove 211, the hydraulic cylinder 313 is started, the sliding block one 36 is driven to slide on the slide rod 32, the sliding block one 36 drives the connecting plate two 38 connected with the sliding block one 36 to move when sliding, the connecting plate two 38 connected with the sliding block one 36 drives the Z-shaped plate 35 to rotate when moving, the Z-shaped plate 35 drives the connecting plate two 38 connected with the sliding block two 37 to move when rotating, the connecting plate two 38 connected with the sliding block two 37 drives the sliding block two 37 to move when moving, so that the sliding block one 36 and the sliding block two 37 move synchronously, the sliding block one 36 and the sliding block two 37 drive the moving plate 310 to move when moving, the moving plate 310 is limited by the sliding groove 39 when moving, the moving plate 310 drives the Z-shaped clamping plate 311 to move when moving, so that the Z-shaped clamping plate 311 clamps and fixes the crystal resonator 212, the Z-shaped clamping plate 311 limits the moving path of the Z-shaped clamping plate 311 by the limiting rod 312 when moving.

[0032] In the description of the present specification, the description of the terms "one embodiment", "example", "specific example" and the like means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are contained in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0033] The preferred embodiments of the above disclosed application are only used to help explain the application. The preferred embodiments do not describe all the details, nor limit the application to the specific embodiments described. Obviously, according to the content of the present specification, many modifications and changes can be made. The present specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the application, so that those skilled in the art can well understand and utilize the application. The application is limited by the claims and their entire scope and equivalents.

Claims

1. A displacement-resistant crystal resonator flattening device, comprising a processing table (1), a processing mechanism (2) and a fixing mechanism (3) are arranged on the processing table (1), characterized in that: the processing mechanism (2) comprises an L-shaped plate (21) fixedly connected to the top of the processing table (1), a motor (22) is fixedly connected to the top of the L-shaped plate (21), the output shaft of the motor (22) is fixedly connected with a rotating shaft (23) through a shaft coupling, the front end of the rotating shaft (23) is fixedly connected with a rotating disc (24), the front side of the rotating disc (24) is fixedly connected with a fixed rod one (25), the front end of the fixed rod one (25) is rotatably connected with a connecting plate one (26), the side away from the fixed rod one (25) of the connecting plate one (26) is hingedly connected with a connecting rod (213), the bottom end of the connecting rod (213) is fixedly connected with a fixed plate (27), the bottom of the fixed plate (27) is fixedly connected with an elastic pad (28), the bottom of the elastic pad (28) is fixedly connected with a flattening block (29), the inner top of the L-shaped plate (21) is fixedly connected with a limiting plate (214), and the connecting rod (213) is slidably connected with the limiting plate (214).

2. The anti-displacement crystal resonator flattening device according to claim 1, wherein, The top of the processing table (1) is fixedly connected with a positioning seat (210), the top of the positioning seat (210) is provided with a positioning groove (211), and the inner wall of the positioning groove (211) is slidably connected with a crystal resonator (212).

3. The anti-displacement crystal resonator flattening device according to claim 2, wherein The bottom of the processing table (1) is fixedly connected with two support plates (31), two support plates (31) are fixedly connected with two slide rods (32), and two slide rods (32) are fixedly connected with a fixing seat (33).

4. The anti-displacement crystal resonator flattening device according to claim 3, wherein The top of the fixing seat (33) is fixedly connected with a fixed rod two (34), and the top end of the fixed rod two (34) is rotatably connected with a Z-shaped plate (35).

5. The anti-displacement crystal resonator flattening device according to claim 4, wherein, Two slide rods (32) are slidably connected with a slide block one (36), and two slide rods (32) are slidably connected with a slide block two (37).

6. The anti-displacement crystal resonator flattening device according to claim 5, wherein, The slide block one (36) and the slide block two (37) are hingedly connected with a connecting plate two (38) between the Z-shaped plate (35), the bottom of the fixing seat (33) is fixedly connected with a hydraulic cylinder (313), and the output shaft of the hydraulic cylinder (313) is fixedly connected with the slide block one (36).

7. The device according to claim 6, wherein The top of the processing table (1) is provided with two sliding grooves (39), the top of the slide block one (36) and the slide block two (37) is fixedly connected with a moving plate (310), and the top of two moving plates (310) extends to the top of the processing table (1) and is slidably connected with the corresponding sliding groove (39).

8. The anti-displacement crystal resonator flattening device according to claim 7, wherein, The top of two moving plates (310) is fixedly connected with a Z-shaped clamping plate (311), the top of the processing table (1) is fixedly connected with two limiting rods (312), and two Z-shaped clamping plates (311) are slidably connected with two limiting rods (312).