New energy ceramic type semi-automatic assembly test line
Through the design of the new energy ceramic semi-automatic assembly and testing line, the problems of low efficiency and low precision of traditional manual operation have been solved, automated assembly and testing have been realized, production efficiency and product quality have been improved, and the production needs of products of various specifications have been adapted.
Patent Information
- Application Number
- CN202422978732.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-04
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-12-04
AI Technical Summary
The production of traditional new energy ceramic DC contactors relies on manual operation, which is inefficient, has low assembly precision, lacks systematic detection and testing, and is difficult to achieve large-scale production and quality control.
A new energy ceramic semi-automatic assembly and testing line is designed, including a moving contact assembly machine, a static iron core riveting machine, a moving iron core welding machine, a ceramic component polishing and coding machine, a semi-finished product inspection machine and other equipment. Through the coordinated work of a turntable mechanism and multiple workstations, combined with an intelligent control system, automated assembly and testing are achieved.
It improves production efficiency, ensures product quality, reduces defective rate, enhances the versatility and adaptability of equipment, reduces maintenance costs, and meets the needs of large-scale production.
Smart Images

Figure CN223441615U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the assembly and test technical field of new energy ceramic type product, especially relates to a new energy ceramic type semi -automatic assembly test line. BACKGROUND
[0002] With the rapid development of new energy technology, the market demand of new energy ceramic type DC contactor as the key control element is increasing day by day.However, the traditional ceramic component polishing production mode is mostly dependent on manual operation and simple mechanical tool combination, and there are many disadvantages.The manual assembly process is inefficient, the connection between each process is not close, a large amount of manpower and time cost is consumed, and large-scale production is difficult to realize.Moreover, manual operation is difficult to guarantee the assembly precision, and it is easy to cause the problems such as inaccurate position of parts assembly and inconsistent assembly force due to human factors, thereby affecting product performance and quality stability, and increasing the rate of defective products.In addition, the traditional production mode lacks systematic detection and test process, and it is difficult to comprehensively and accurately control product quality, which is not conducive to the standardized production and quality traceability of products.Therefore, it has extremely important practical significance to develop a new energy ceramic type semi-automatic assembly test line integrating efficient assembly and accurate test. SUMMARY
[0003] The utility model aims at providing a kind of for new energy ceramic type DC contactor's efficient, accurate assembly and test, and it has wide application prospect in new energy power system, electric automobile and other fields, can effectively improve product production efficiency, guarantee product quality, meet the needs of new energy ceramic type product automation production of industry new energy ceramic type semi-automatic assembly test line, to solve the above technical problems.
[0004] To realize the above technical scheme, the technical scheme of the utility model is as follows: a new energy ceramic type semi-automatic assembly test line includes dynamic contactor assembling machine, static iron core riveting machine, dynamic iron core welding machine, ceramic assembly polishing and coding machine, semi-finished product detection machine, magnetic cylinder pressing machine, coil yoke iron assembling machine, shell feeding and labeling machine, oven automatic feeding and discharging machine and maturation and comprehensive test machine which are connected in sequence. The ceramic assembly polishing and coding machine as one of key equipments is composed of a rack, a rotating disc mechanism rotatably installed on the rack and a clamping jig movably arranged on the rotating disc mechanism. A height measuring device, a grinding device, a marking device, a discharging device and a soot blowing cleaning device are sequentially arranged along the rotating disc mechanism. The height measuring device is used for accurately detecting the height of the DC contactor transported by the rotating disc mechanism, providing data basis for subsequent grinding. The grinding device can accurately grind the DC contactor to a specified height according to the height measurement result. The marking device can clearly and accurately mark the finished product after grinding. The discharging device is responsible for efficiently moving the finished product away from the rotating disc mechanism. The soot blowing cleaning device comprehensively cleans the clamping jig, ensuring that the clamping jig maintains a good working condition during the recycling process. The devices work cooperatively to realize the automatic polishing, coding and related processing procedures of the ceramic assembly.
[0005] Further, the height measuring device includes a height measuring support, a lower pressing assembly moving in a vertical direction is arranged on one side of the height measuring support, the lower pressing assembly can drive the clamping jig to move back and forth, so that the DC contactor contacts the detection component. A switching driving cylinder is horizontally arranged on one side of the height measuring support, a detection base is movably arranged on the height measuring support, the switching driving cylinder can drive the detection base to move back and forth horizontally, and a detection sensor is telescopically arranged on the detection base. This structure design enables the height measuring device to flexibly adjust the detection position and the telescopic state of the sensor, adapt to the height detection requirements of DC contactors of different specifications, obtain the height data of the DC contactor through accurate mechanical movement and sensor detection, provide accurate parameter basis for subsequent grinding process, ensure accurate control of the grinding amount, and improve the dimensional accuracy of the product.
[0006] Further, the grinding device includes a grinding base arranged on the rack, a pushing cylinder is arranged on one side of the grinding base, a grinding component is movably arranged on the grinding base, the pushing cylinder can drive the grinding component to move back and forth, and accurately control the grinding action. A grinding pressure assembly is arranged at the central position of the grinding component, which can apply stable pressure to the DC contactor during the grinding process, and ensure the uniformity of the grinding effect. Grinding side clamping assemblies are arranged below the grinding pressure assembly and can move close to or away from each other, which can be self-adaptively adjusted according to the size of the DC contactor, ensuring that the DC contactor is firmly clamped during the grinding process, avoiding the influence of shaking on the grinding accuracy, and through the synergistic effect of the components, the DC contactor can be efficiently and accurately ground, so that it meets the specified height requirement, and the quality consistency of the product is improved.
[0007] Further, the marking device comprises a marking machine, and a smoke suction hood is arranged along a marking light path of the marking machine. The marking machine can adopt advanced technologies such as laser marking, and can clearly and durably mark product information such as model, batch, production date, etc. on the surface of the DC contactor, facilitating the identification, tracing and management of the product. The arrangement of the smoke suction hood effectively absorbs smoke and waste gas generated in the marking process, improves the working environment, protects the health of the operator, avoids the adverse effects of smoke on the marking quality and equipment operation, and ensures the stable and reliable operation of the marking process.
[0008] Further, the blanking device comprises a blanking ZX transfer assembly, and a finished product blanking clamping finger is arranged at an output end of the blanking ZX transfer assembly. A collecting assembly is arranged in front of the blanking ZX transfer assembly. The blanking ZX transfer assembly can accurately move in a plane, and in combination with the clamping action of the finished product blanking clamping finger, the finished product after polishing and marking can be accurately grabbed from the clamping jig and transported to the collecting assembly. The collecting assembly can be designed in different forms such as a tray, a conveyor belt, etc. according to production requirements, and is used for orderly collecting the finished product, realizing automatic blanking and arrangement of the finished product, improving production efficiency, reducing manual operation links, and reducing labor intensity.
[0009] Further, the clamping jig comprises a clamping base fixedly installed on the rotating disc mechanism, and a placing seat is movably arranged on the clamping base. A spring is arranged between adjacent placing seats and the clamping base for floating driving. This floating design enables the placing seat to adaptively adjust the position within a certain range, effectively compensates for the size deviation of the DC contactor during clamping, ensures that the DC contactor can be stably and accurately clamped in each process, improves the compatibility of the clamping jig for different specifications of products, reduces the product machining error caused by improper clamping, and further improves the quality stability of the product.
[0010] Further, the moving contact assembly machine, the static core riveting machine, the moving core welding machine and other devices each have an important function in the assembly test line. The moving contact assembly machine can accurately assemble the moving contact to the corresponding part, the static core riveting machine realizes reliable riveting of the static core, and the moving core welding machine performs high-quality welding operation on the moving core. The devices cooperate in sequence to gradually complete the assembly process of the new energy ceramic type DC contactor, from the preliminary assembly of the parts to the formation of the final product. Each link is carefully designed and strictly controlled to ensure the assembly precision and performance quality of the product.
[0011] The entire assembly test line is managed and dispatched by an intelligent control system. The control system can accurately control the start, stop, running speed of each device and the connection sequence between each process according to the preset production process parameters. At the same time, the control system can also collect the running state information of each device and the data of each detection link, such as the detection height data of the height detection device and the detection results of the semi-finished product detection machine, to realize real-time monitoring and data recording of the entire production process, facilitating production management, quality traceability and subsequent production process optimization.
[0012] Compared with the prior art, the utility model has the following beneficial effects:
[0013] 1) Automatic assembly and test process: The entire new energy ceramic type semi-automatic assembly test line covers multiple key processes from component assembly to finished product testing, and each device is connected in turn to realize an automatic assembly and test process. The processes are closely connected, reducing manual intervention and material handling time, significantly improving production efficiency, meeting the needs of large-scale production, and effectively improving the production capacity and economic benefits of enterprises.
[0014] 2) Turntable mechanism and multi-station cooperation: The turntable mechanism in the ceramic assembly polishing and coding machine can rotate stably, and multiple stations such as height detection devices, grinding devices, marking devices, unloading devices and soot blowing cleaning devices are arranged on the side of the turntable to work cooperatively. During the rotation of the turntable, each station performs corresponding operations on the DC contactor in turn, realizing the organic combination of parallel processing and assembly line operation, further improving production efficiency and reducing production time.
[0015] 3) Accurate detection and processing means: The height detection device can accurately obtain the height information of the DC contactor through accurate mechanical structure and sensor detection, providing accurate processing parameters for the grinding device. The grinding device can grind the DC contactor to a specified height with its stable clamping assembly and precise grinding component motion control, ensuring the dimensional accuracy of the product. The marking device uses advanced marking technology to clearly and accurately mark product information on the product surface, facilitating product traceability and quality control. Through these accurate detection and processing means, product quality is effectively guaranteed and the rate of defective products is reduced.
[0016] 4) Stable clamping and material handling: The floating design of the clamping jig enables it to adaptively clamp DC contactors of different specifications, ensuring that the product is stably and accurately positioned in each process, avoiding processing errors caused by improper clamping. The unloading device can accurately transport the finished product to the collection assembly, and the soot blowing cleaning device can clean the clamping jig, ensuring the stability and cleanliness of the material during the entire production process, further improving the stability of product quality.
[0017] 5) Adjustable detection and processing components: the detection sensor in the height measuring device, the grinding component in the grinding device, etc. have certain adjustability, which can adjust the corresponding parameters according to different models and specifications of the DC contactor products. Such flexibility enables the equipment to be widely applicable to the production and processing of various new energy ceramic type DC contactor products, improving the versatility and adaptability of the equipment.
[0018] 6) Easy-to-maintain structure design: the structure design of each device of the entire assembly test line is reasonable, the installation and connection mode of each component is clear and easy to understand, and daily inspection, repair and maintenance are facilitated. For example, the modular design of each device facilitates the separate maintenance or replacement of its movement components, detection components, etc. The structure of the clamping jig is simple and easy to maintain. Such easy-to-maintain features reduce the maintenance cost and downtime of the equipment, improve the overall reliability and service life of the equipment, and ensure the stable operation of the production line. BRIEF DESCRIPTION OF DRAWINGS
[0019] To further illustrate the embodiments, the utility model provides the attached drawings. These drawings are part of the disclosure of the utility model, which mainly serves to illustrate the embodiments, and can be combined with the related description of the specification to explain the operating principle of the embodiments. With reference to these contents, those skilled in the art should be able to understand other possible implementations and the advantages of the utility model. The components in the drawings are not drawn to scale, and similar component symbols are usually used to represent similar components.
[0020] Fig. 1 Top view of the polishing and coding machine for ceramic components;
[0021] Fig. 2 Perspective view of the polishing and coding machine for ceramic components;
[0022] Fig. 3 Negative shaft side view of the polishing and coding machine for ceramic components. DETAILED DESCRIPTION
[0023] The technical solutions in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0024] In order to enable those skilled in the art to better understand the utility model solutions, the utility model will be further described in detail in combination with the drawings and specific embodiments.
[0025] Please refer to the attached Figs. 1 to 3The application discloses a new energy ceramic type semi-automatic assembly test line, which comprises a movable contact assembly machine, a static iron core riveting machine, a movable iron core welding machine, a ceramic assembly polishing and coding machine, a semi-finished product detection machine, a magnetic conducting cylinder pressing-in machine, a coil yoke iron assembly machine, a shell feeding and labeling machine, an oven automatic feeding and discharging machine and a maturation and comprehensive testing machine which are sequentially connected; the ceramic assembly polishing and coding machine comprises a rack 1, a rotating disc mechanism 2 rotatably arranged on the rack 1 and a clamping jig 3 movably arranged on the rotating disc mechanism 2; a height measuring device 4, a grinding device 5, a marking device 6, a discharging device 7 and a soot blowing and cleaning device 8 are sequentially arranged along the rotating side of the rotating disc mechanism 2; the height measuring device 4 is used for detecting the height of the DC contactor transported by the rotating disc mechanism 2; the grinding device 5 is used for grinding the DC contactor to a specified height; the marking device 6 is used for marking the finished product after polishing; the discharging device 7 is used for moving the finished product away from the rotating disc mechanism 2; and the soot blowing and cleaning device 8 is used for cleaning the clamping jig 3. The assembly test line integrates the movable contact assembly machine, the static iron core riveting machine and other key equipment, and forms a complete and continuous production process. The equipment is sequentially connected, so that the parts are transferred and the process is switched without too much manual intervention from the initial assembly to the final product testing, the production pause time is greatly reduced, the overall production efficiency is improved, the large market demand for new energy ceramic type DC contactors can be quickly met. The rotating disc mechanism in the ceramic assembly polishing and coding machine is one of the core components for realizing efficient production. The rotatable characteristic of the rotating disc mechanism enables the clamping jig to sequentially pass through the height measuring device, the grinding device, the marking device, the discharging device and the soot blowing and cleaning device and other stations. In the continuous rotating process of the rotating disc, the operations of the stations on the DC contactor are like the close cooperation of each link in the assembly line, parallel processing is realized, time waste caused by serial process in the traditional production mode is avoided, and the production efficiency is further improved. The movable contact assembly machine, the static iron core riveting machine, the movable iron core welding machine, the semi-finished product detection machine, the magnetic conducting cylinder pressing-in machine, the coil yoke iron assembly machine, the shell feeding and labeling machine, the oven automatic feeding and discharging machine and the maturation and comprehensive testing machine are all prior art and are well known to those skilled in the art, and will not be described here.
[0026] On the basis of the above embodiment, the height measuring device 4 comprises a height measuring support 41; one side of the height measuring support 41 is provided with a downward pressing assembly 42 moving in the vertical direction; the downward pressing assembly 42 can drive the clamping jig 3 to move back and forth; one side of the height measuring support 41 is provided with a switching drive cylinder 43 horizontally; the height measuring support 41 is movably provided with a detection base 44; the switching drive cylinder 43 can drive the detection base 44 to move back and forth horizontally; the detection base 44 is telescopically provided with a detection sensor 45. The structural design of the height measuring device provides a guarantee for accurate measurement of the height of the DC contactor. The downward pressing assembly on the height measuring support can stably drive the clamping jig to move up and down, so that the DC contactor contacts the detection sensor. The switching drive cylinder can control the detection base to move in the horizontal direction, and the detection sensor can be telescopically inserted, which can adapt to the detection needs of DC contactors of different specifications. Through this accurate mechanical movement and sensor detection, accurate height data of the DC contactor can be obtained, which provides accurate processing basis for the grinding device, thereby ensuring accurate control of the grinding amount, so that the DC contactor can be ground to a specified height, ensuring the dimensional accuracy of the product and effectively reducing the product quality problems caused by height deviation.
[0027] On the basis of the above embodiment, the grinding device 5 comprises a grinding base 51 arranged on the rack 1; one side of the grinding base 51 is provided with a pushing cylinder 52; the grinding base 51 is movably provided with a grinding component 53; the pushing cylinder 52 can drive the grinding component 53 to move back and forth; the grinding component 53 is provided with a grinding pressure assembly 54 at the central position; the grinding side clamping assembly 55 can be arranged close to or away from each other below the grinding pressure assembly 54. The cooperation of each component of the grinding device realizes efficient and accurate grinding. The pushing cylinder on the grinding base provides stable power for the grinding component, so that it can move back and forth according to the predetermined trajectory. The grinding pressure assembly in the middle of the grinding component can apply uniform and appropriate pressure to the DC contactor during grinding, ensuring the consistency of the grinding effect. The grinding side clamping assembly can be self-adapted according to the size of the DC contactor, so that it is firmly clamped during grinding, avoiding grinding errors caused by shaking, further improving the grinding accuracy, and thus improving the quality stability of the product.
[0028] On the basis of the above embodiment, the marking device 6 comprises a marking machine 61; a smoke suction hood 62 is arranged along the marking light path of the marking machine 61. The marking machine in the marking device adopts advanced technology, which can clearly and durably mark product information such as model, batch, production date, etc. on the surface of the direct current contactor. These marks not only facilitate the identification and tracing of products, but also help enterprises to manage and monitor product quality. The smoke suction hood arranged along the marking light path of the marking machine effectively absorbs the smoke and waste gas generated during the marking process. On the one hand, this improves the working environment and protects the health of the operators; on the other hand, it avoids the influence of smoke on the marking quality, such as the attachment of smoke on the product surface which may cause unclear marking or defects, etc., and also prevents the pollution of the optical components inside the marking machine, ensuring the long-term stable operation of the marking machine and guaranteeing the reliability and stability of the marking process, thereby indirectly protecting the product quality.
[0029] On the basis of the above embodiment, the blanking device 7 comprises a blanking ZX transplanting assembly 71; the output end of the blanking ZX transplanting assembly 71 is provided with a finished product blanking clamping finger 72; and the front of the blanking ZX transplanting assembly 71 is provided with a collecting assembly 73. The design of the blanking ZX transplanting assembly and the finished product blanking clamping finger in the blanking device is very ingenious. The blanking ZX transplanting assembly can move accurately in two dimensions in the plane, and the finished product blanking clamping finger can firmly grasp the finished product. The two work together to accurately remove the finished product after polishing and marking from the clamping fixture and transport it to the collecting assembly. This precise blanking mechanism not only improves the efficiency of finished product blanking, but also reduces damage to the finished product caused by improper blanking, ensuring the integrity and quality of the product.
[0030] On the basis of the above embodiment, an upper feeding station is arranged between the height measuring device 4 and the soot blowing and cleaning device 8 for manual feeding, and a detection grating is arranged directly in front of the upper feeding station. The arrangement of the upper feeding station facilitates manual feeding operation, and the detection grating directly in front of the upper feeding station can timely detect whether the material is placed correctly, ensuring the accuracy of feeding and avoiding the delay or failure of subsequent processes due to feeding errors. Once it is detected that the material is placed correctly, the turntable mechanism can quickly transport it to the height measuring device for the next processing, realizing seamless connection between the feeding link and the subsequent production process.
[0031] On the basis of the above-mentioned embodiment, the clamping jig 3 comprises a clamping base 31 fixedly installed on the turntable mechanism 2; the clamping base 31 is movably provided with a placing seat 32; and a spring 33 is arranged between the placing seat 32 and the clamping base 31 to perform floating driving. The clamping jig has a simple structure, and the connection mode of main components such as the clamping base, the placing seat and the spring is clear and explicit. In daily maintenance, an operator can easily check the elasticity of the spring, the moving flexibility of the placing seat and the like. If problems such as spring fatigue or damage, placing seat jamming and the like are found, the problems can be quickly replaced or repaired, the normal use of the clamping jig is ensured, the production interruption caused by the clamping jig failure is reduced, and the stable operation of the production line is further ensured.
[0032] At the start of production, at the loading station of the ceramic component grinding and coding machine, the DC contactor to be processed is manually placed on the material holder of the clamping jig. The holder, activated by a spring, adaptively adjusts its position to ensure a stable clamping of the DC contactor. A detection light barrier directly in front of the loading station verifies that the material is correctly placed. If so, the turntable mechanism rotates, transporting the clamping jig containing the DC contactor to the height measurement device. The height measurement device's downforce assembly descends, driving the clamping jig upward, bringing the DC contactor into contact with the detection sensor. The pneumatic cylinder then switches to move the detection base, which measures the DC contactor's height and transmits the data to the control system. After the measurement is complete, the downforce assembly ascends, and the turntable mechanism continues to rotate, transporting the DC contactor to the grinding device. The grinding side clamping components of the grinding device first converge to clamp the DC contactor according to its dimensions. Then, the grinding press assembly descends, applying pressure to the DC contactor, which in turn drives the pneumatic cylinder to grind the contactor. During the grinding process, the grinding depth is precisely controlled based on height data provided by the height measuring device, ensuring the DC contactor reaches the specified height. After grinding is complete, the grinding components retract, the grinding press assembly rises, the side clamping assembly releases, and the turntable mechanism rotates, transporting the DC contactor to the marking device. The marking machine in the marking device marks the surface of the DC contactor according to the preset information. During the marking process, a fume hood absorbs the generated smoke and exhaust gas. After marking is complete, the turntable mechanism transports the DC contactor to the unloading device. Driven by the ZX transfer assembly, the finished product unloading clamping fingers of the unloading device move over the DC contactor, clamp it, and then transport it to the collection assembly, completing the unloading operation. Simultaneously, the turntable mechanism transports the empty fixture to the soot blower, which cleans the fixture to remove residual dust and impurities, preparing it for the next round of production. Throughout the entire process, the turntable mechanism rotates continuously, and each device performs corresponding operations on the DC contactors on different fixtures in turn, achieving efficient, streamlined production. Key components such as the detection sensors in the height measuring device and the grinding components in the grinding device have a certain degree of adjustability. The detection sensors can adjust parameters according to the height measurement range and accuracy requirements of different types of DC contactors. The grinding components can also optimize the configuration of parameters such as grinding force and speed based on the material, shape and other characteristics of the product. This flexibility makes the entire assembly and testing line widely applicable to the production and processing of a variety of new energy ceramic DC contactor products, eliminating the need to customize new production equipment for different products. This greatly improves the versatility and adaptability of the equipment and reduces the company's equipment investment costs and production conversion costs. The design of the clamping fixture is unique. The movable material placement seat on the clamping base and the spring floating drive structure between the two enable the clamping fixture to adaptively clamp DC contactors of different specifications.No matter the product with slightly different diameter or height, the placement of the seat can automatically adjust the position under the action of the spring, ensuring the DC contactor is stably fixed during clamping. This self-adaptive clamping capability further enhances the compatibility of the production line for various products, improves the utilization rate of the equipment, and reduces the adjustment time and cost caused by product specification changes. In summary, the devices of the ceramic component polishing and coding machine are designed in a modular manner. The motion components and detection components of the height measuring device, grinding device, and marking device are relatively independent. When a component fails, it can be easily maintained or replaced without the need for large-scale disassembly and repair of the entire equipment. This modular design reduces the difficulty and time of equipment maintenance, improves the overall reliability and maintainability of the equipment.
[0033] The above is only a preferred embodiment of the present application, and does not limit the present application in any form. Although the present application has been disclosed as above with a preferred embodiment, it is not intended to limit the present application. Any person skilled in the art can make equivalent embodiments with slight changes or modifications within the scope of the technical solution of the present application without departing from the technical essence of the present application. Any modification, equivalent change and modification of the above embodiments made in accordance with the technical essence of the present application shall still fall within the scope of the technical solution of the present application.
Claims
1. A new energy ceramic semi-automatic assembly and testing line, comprising a moving contact assembly machine, a static iron core riveting machine, a moving iron core welding machine, a ceramic component polishing and coding machine, a semi-finished product inspection machine, a magnetic tube pressing machine, a wire yoke assembly machine, a shell loading and labeling machine, an oven automatic loading and unloading machine, and an aging and comprehensive testing machine connected in sequence; characterized in that: The ceramic component grinding and coding machine comprises a frame (1), a turntable mechanism (2) rotatably mounted on the frame (1), and a clamping fixture (3) movably arranged on the turntable mechanism (2); a height measuring device (4), a grinding device (5), a marking device (6), a feeding device (7), and a dust blowing cleaning device (8) are sequentially arranged along the rotating circumference of the turntable mechanism (2); the height measuring device (4) is used to detect the height of the DC contactor transported by the turntable mechanism (2); the grinding device (5) is used to grind the DC contactor to a specified height; the marking device (6) is used to mark the finished product after grinding; the feeding device (7) is used to move the finished product away from the turntable mechanism (2); and the dust blowing cleaning device (8) is used to clean the clamping fixture (3).
2. The new energy ceramic semi-automatic assembly and testing line according to claim 1, characterized in that: The height measuring device (4) comprises a height measuring bracket (41); a pressing assembly (42) movable in a vertical direction is provided on one side of the height measuring bracket (41); the pressing assembly (42) can drive the clamping fixture (3) to move back and forth; a switching driving cylinder (43) is provided on one side of the height measuring bracket (41) along the horizontal direction; a detection base (44) is movably provided on the height measuring bracket (41); the switching driving cylinder (43) can drive the detection base (44) to move back and forth in the horizontal direction; and a detection sensor (45) is retractably inserted on the detection base (44).
3. The new energy ceramic semi-automatic assembly and testing line according to claim 1, characterized in that: The grinding device (5) comprises a grinding base (51) arranged on the frame (1); a pushing cylinder (52) is provided on one side of the grinding base (51); a grinding component (53) is fixedly and movably provided on the grinding base (51); the pushing cylinder (52) can drive the grinding component (53) to move back and forth; a grinding press assembly (54) is provided in the center of the grinding component (53); a grinding side clamping assembly (55) is provided below the grinding press assembly (54) so that the grinding components can move closer to or farther away from each other.
4. The new energy ceramic semi-automatic assembly and testing line according to claim 1, characterized in that: The marking device (6) comprises a marking machine (61); a smoking hood (62) is provided along the marking light path of the marking machine (61).
5. The new energy ceramic semi-automatic assembly and testing line according to claim 1, characterized in that: The blanking device (7) comprises a blanking ZX transplanting assembly (71); a finished product blanking clamping finger (72) is provided at the output end of the blanking ZX transplanting assembly (71); and a collecting assembly (73) is provided in front of the blanking ZX transplanting assembly (71).
6. The new energy ceramic semi-automatic assembly and testing line according to claim 1, characterized in that: A loading station is provided between the height measuring device (4) and the soot blowing and cleaning device (8) for manual loading, and a detection grating is provided in front of the loading station; The clamping fixture (3) comprises a clamping base (31) fixedly mounted on a turntable mechanism (2); a material placement seat (32) is movably provided on the clamping base (31); and a spring (33) is used to drive the adjacent material placement seats (32) and the clamping base (31) to perform floating driving.