Carrier conveying assembly
By designing the fixed-side and moving-side guide rails and intermediate conveying components of the vehicle conveying assembly, and combining cylinder lifting and linear guide rails, the problem of the vehicle conveying assembly not being able to work continuously was solved, achieving efficient and stable vehicle transmission, reducing labor intensity and expanding the scope of application.
Patent Information
- Application Number
- CN202520087840.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-01-15
AI Technical Summary
Existing vehicle transport components cannot operate continuously, making them inconvenient to use and reducing their scope of application and practicality.
A vehicle transmission assembly was designed, including a fixed-side vehicle assembly, a moving-side guide rail assembly, and an intermediate transmission assembly. Through precise structural design and an efficient transmission system, the assembly achieves stable clamping, flexible adjustment, and uninterrupted transmission of the vehicle. A cylinder lifting connecting plate is used to lift the soft vehicle, and combined with linear guide rails and a slider moving plate, the assembly ensures efficient and stable transmission of the vehicle.
It enables uninterrupted and stable operation of the vehicle transmission component, improves work efficiency, reduces the need for manual operation, expands the scope of application, and enhances practicality and ease of operation.
Smart Images

Figure CN223962760U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of material feeding and conveying technology, and in particular to a carrier conveying assembly. Background Technology
[0002] Current vehicle transport components have certain shortcomings in use. They cannot work continuously and are inconvenient to use, which reduces the scope and practicality of vehicle transport. Therefore, we have made improvements to overcome the shortcomings of existing transport components, such as the inability to work continuously and the inconvenience of use, and proposed a vehicle transport lifting component. Utility Model Content
[0003] To overcome the above shortcomings, this utility model provides a vehicle conveying assembly, which aims to improve the current vehicle conveying lifting assembly, which cannot work continuously during use, is inconvenient to use, and reduces the scope of application and practicality of the vehicle conveying lifting assembly.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: a carrier conveying mechanism, comprising a fixed-side carrier assembly, characterized in that: the fixed-side carrier assembly is provided with multiple driven pulley tooth surfaces; the outer side of the carrier feeding-side upright plate is provided with a small-stroke push rod module, the outer side of the carrier feeding belt pressure plate, a conveyor belt pad, a carrier baffle, a sensor fixing bracket A, a roller fixing shaft, an adjustable block, a bearing sleeve, a main drive wheel, a drive shaft, a motor fixing strip, a guide block A, and a guide block B; the side of the moving-side guide rail assembly is equipped with a small-stroke push rod module; the outer wall of the movable side of the carrier feeding-side upright plate is provided with multiple driven pulley tooth surfaces; the movable side of the carrier feeding-side upright plate is provided with a slider moving plate, the outer side of the carrier feeding belt pressure plate, and a conveyor belt pad. The system includes a carrier baffle, roller fixing shaft, adjustable block, bearing sleeve, main drive wheel, drive shaft, motor fixing strip, guide block A, and guide block B. The intermediate conveyor assembly contains multiple driven pulley teeth. The main intermediate fixing plate includes a conveyor belt pad, roller fixing shaft, intermediate main drive wheel, intermediate tension fixing plate, intermediate tension top block, slider moving plate with fixing, and lifting connecting plate. The intermediate mounting base plate is connected to the main intermediate fixing plate via a cylinder. The fixed-side carrier assembly is mounted on the multi-functional carrier base plate. Two linear guide rails are also mounted on the multi-functional carrier base plate. The moving-side guide rail assembly and the intermediate conveyor assembly are mounted on the linear guide rails. The multi-functional carrier base plate is mounted on the linear guide rails and linear modules. The linear guide rails are mounted on the right-side guide rail pad.
[0005] As a further description of the above technical solution:
[0006] The fixed-side carrier assembly includes the outer side of the carrier feed side upright plate, the small stroke push rod module, the outer side of the carrier feed belt pressure plate, the conveyor belt pad, the carrier baffle, the sensor fixing frame A, the roller fixing shaft, the adjustable block, the bearing sleeve, the main drive wheel, the drive shaft, the motor fixing strip, the guide block A, the guide block B, the side deep groove ball bearing, the side deep groove bearing, and the stepper motor.
[0007] As a further description of the above technical solution:
[0008] A small-stroke push rod module is provided on the outer wall of the feed side upright plate of the carrier. Multiple driven pulley tooth surfaces are provided on the inner side of the feed side upright plate of the carrier. The outer side of the feed belt pressure plate of the carrier is installed on the outer side of the feed side upright plate of the carrier. The conveyor belt pad is provided on the outer side of the feed side upright plate of the carrier. The carrier baffle is installed on the outer end face of the feed side upright plate of the carrier.
[0009] As a further description of the above technical solution:
[0010] The sensor mounting bracket A is located on the lower outer side of the feed side upright plate of the carrier. The roller fixing shaft is fitted with the side rail deep groove ball bearing. The adjustable block is located on the inner side of the outer side of the feed side upright plate of the carrier. The bearing sleeve is fitted with the side rail deep groove bearing. The side rail deep groove bearing is fitted with the belt drive shaft. The belt drive shaft is fitted with the belt main drive wheel. The motor fixing strip is located on the inner side of the outer side of the feed side upright plate of the carrier and is connected to the stepper motor. The guide block A and guide block B are located on the upper outer side of the feed side upright plate of the carrier.
[0011] As a further description of the above technical solution:
[0012] The moving side guide rail assembly is provided with a movable side of the carrier feeding side upright plate. Multiple driven pulley tooth surfaces are provided inside the movable side of the carrier feeding side upright plate. A small stroke push rod module is provided on the outer wall of the movable side of the carrier feeding side upright plate. The outer side of the carrier feeding belt pressure plate is installed on the movable side of the carrier feeding side upright plate. The conveyor belt pad is provided on the movable side of the carrier feeding side upright plate. The carrier baffle is installed on the end face of the movable side of the carrier feeding side upright plate.
[0013] As a further description of the above technical solution:
[0014] The roller fixing shaft is fitted with the side retaining deep groove ball bearing. The adjustable block is located on the inner side of the movable side of the feed side upright plate of the carrier. The bearing sleeve is fitted with the side retaining deep groove bearing. The side retaining deep groove bearing is fitted with the belt drive shaft. The belt drive shaft is fitted with the belt main drive wheel. The motor fixing strip is located on the inner side of the movable side of the feed side upright plate of the carrier and is connected to the stepper motor. The guide block A and guide block B are located on the upper part of the movable side of the feed side upright plate of the carrier. The slider moving plate is located on the lower part of the movable side of the feed side upright plate of the carrier.
[0015] As a further description of the above technical solution:
[0016] The intermediate conveying assembly is provided with a main intermediate fixing plate, and multiple driven pulley tooth surfaces are provided on both sides of the main intermediate fixing plate. The conveyor belt pad is provided on both sides of the main intermediate fixing plate, the intermediate tension fixing plate is provided on both sides of the main intermediate fixing plate, the intermediate tensioning top block is provided on both sides of the main intermediate fixing plate, the lifting connecting plate is provided on the main intermediate fixing plate, the cylinder is connected to the lifting connecting plate, the intermediate mounting base plate is connected to the cylinder, the slider moving plate is fixedly connected to the intermediate mounting base plate, the guide rail clamp is fixedly connected to the slider moving plate, and the solenoid valve is connected to the intermediate mounting base plate.
[0017] As a further description of the above technical solution:
[0018] The linear guide rail is mounted on the base plate of the multi-functional vehicle. The moving side guide rail assembly is connected to the linear guide rail via a slider moving plate. The intermediate conveying assembly is fixed to the linear guide rail via a slider moving plate.
[0019] As a further description of the above technical solution:
[0020] The fixed-side vehicle assembly is mounted on the multi-functional vehicle base plate, which is also equipped with two linear guide rails.
[0021] As a further description of the above technical solution:
[0022] The multi-functional vehicle base plate is mounted on the linear guide rail and the linear module, and the linear guide rail is mounted on the right-side guide rail pad.
[0023] This utility model has the following beneficial effects:
[0024] In this invention, the carrier is first lifted and transported. The moving side guide rail assembly is positioned by adjusting the size of the carrier. If the carrier material is relatively soft, the middle conveying assembly is raised to support the carrier, thus achieving uninterrupted operation. This improves the working efficiency of the carrier lifting and transporting assembly while avoiding manual operation, reducing the labor intensity of workers, and increasing the scope of application and practicality of the carrier lifting and transporting assembly. Attached Figure Description
[0025] Figure 1 This is a perspective view of a vehicle transport assembly proposed in this utility model;
[0026] Figure 2 This is a schematic diagram of the fixed-side vehicle assembly structure of a vehicle conveying assembly proposed in this utility model;
[0027] Figure 3This is a schematic diagram of a linear guide rail structure for a vehicle transport assembly proposed in this utility model.
[0028] Legend:
[0029] 1. Fixed side carrier assembly; 2. Moving side guide rail assembly; 3. Intermediate conveyor assembly; 4. Multifunctional carrier base plate; 6. Right side guide rail pad; 8. Linear guide rail; 101. Driven pulley tooth surface; 102. Outer side of carrier feed side upright plate; 103. Small stroke push rod module; 104. Outer side of carrier feed belt pressure plate; 105. Conveyor belt pad; 106. Carrier baffle; 107. Sensor mounting bracket A; 108. Roller fixing shaft; 109. Adjustable block; 110. Bearing sleeve; 111. With main drive 112. Drive wheel; 113. With drive shaft; 114. Motor fixing strip; 115. Guide block A; 116. Guide block B; 117. Side deep groove ball bearing; 118. Side deep groove bearing; 119. Stepper motor; 201. Carrier feed side upright plate movable side; 202. Slider moving plate; 301. Main intermediate fixing plate; 302. Intermediate tension fixing plate; 303. Intermediate tension top block; 304. Slider moving plate with fixing; 305. Lifting connecting plate; 306. Intermediate mounting base plate; 307. Cylinder. Detailed Implementation
[0030] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0031] Reference Figures 1-3This utility model provides an embodiment of a carrier conveying and lifting assembly, including a fixed-side carrier assembly 1. The fixed-side carrier assembly 1 has multiple driven pulley tooth surfaces 101 precisely arranged within it, and the reasonable distribution of the driven pulley tooth surfaces 101 effectively ensures the smoothness of the transmission. The outer side 102 of the carrier feed side upright plate has a refined structural design, integrating a small-stroke push rod module 103. This module ensures smooth feeding of the carrier through a high-precision propulsion method. The outer side 104 of the carrier feed belt pressure plate is firmly installed on the upper part of the outer side 102 of the carrier feed side upright plate, providing strong pressing and fixing for the carrier's operation. The conveyor belt pad 105 is tightly disposed on the outer side 102 of the carrier feed side upright plate, and its wear resistance and pressure resistance significantly improve the durability of the assembly. The carrier baffle 106 is cleverly installed on the end face of the outer side 102 of the carrier feed side upright plate, providing reliable end protection during the conveying process. The sensor mounting bracket A107 is flexibly positioned below the outer side 102 of the carrier's feed-side upright plate, facilitating real-time monitoring of the carrier's position and status. The roller fixing shaft 108 precisely matches the high-performance sidewall deep groove ball bearing 116, providing efficient support for the overall transmission operation. The adjustable block 109 is rationally embedded inside the outer side 102 of the carrier's feed-side upright plate, ensuring the flexible adjustability of the component. The bearing sleeve 110 is tightly matched with the sidewall deep groove bearing 117, thereby achieving efficient transmission through the drive shaft 112 and the main drive wheel 111. The motor fixing strip 113 is securely installed inside the outer side 102 of the carrier's feed-side upright plate and directly connected to the high-precision stepper motor 118, providing strong power for the operation of the entire system. In addition, the design of the moving side guide rail assembly 2 is equally ingenious, with the moving side 201 of the carrier's feed-side upright plate on it, which can be flexibly adjusted according to needs. Multiple driven pulley tooth surfaces 101 are evenly arranged inside the movable side 201 of the carrier feeding side upright plate, while a small-stroke push rod module 103 is firmly installed on the outer wall, further enhancing the intelligence level of the component. The outer side 104 of the carrier feeding belt pressure plate is stably installed on the movable side plate, and the conveyor belt pad 105 and carrier baffle 106 are reasonably configured to effectively ensure applicability in multiple scenarios. The intermediate conveying component 3 organically combines multiple functional modules through the main intermediate fixing plate 301. The driven pulley tooth surfaces 101 and conveyor belt pad 105 on both sides are rigorously arranged, improving the smoothness of carrier conveying. The intermediate tension fixing plate 302 and tensioning top block 303 improve the tensioning performance of the component through scientific design. The lifting connecting plate 305 is connected to the intermediate mounting base plate 306 through the cylinder 307, realizing precise lifting. The stable connection between the slider moving plate belt fixing 304 and the guide rail clamping component 309 further enhances the overall stability of the component. The entire vehicle conveying and lifting assembly is installed on the multi-functional vehicle base plate 4. Two high-precision linear guide rails 11 are arranged on the base plate. They are connected to the moving side guide rail assembly 2 and the intermediate conveying assembly 3 through the slider moving plate 202, realizing efficient and stable transmission of the vehicle.When the vehicle arrives, the moving side guide rail assembly 2 can be flexibly adjusted according to the size or material of the vehicle; if the vehicle material is relatively soft, the intermediate conveying assembly 3 will automatically rise to support the vehicle, ensuring uninterrupted and stable operation. This design not only effectively improves the working efficiency of the vehicle conveying and lifting assembly, but also reduces the need for manual operation and labor intensity, significantly expanding the applicability and practicality of the assembly. The overall equipment demonstrates excellent flexibility and reliability in use, showcasing a very high level of technology.
[0032] Specifically, when the carrier arrives at the conveying equipment, the fixed-side carrier assembly 1 and the moving-side guide rail assembly 2 work together through a precise structural design to securely clamp the carrier. By adjusting the sliding of the slider moving plate 202 on the moving-side guide rail assembly 2 along the high-precision linear guide rail 11, the system can quickly adapt to carriers of various sizes, demonstrating great flexibility and adaptability. The driven pulley tooth surface 101 configured in the fixed-side carrier assembly 1 is reliably connected to the main drive wheel 111 via a drive shaft 112, and a stepper motor 118 provides strong driving force, driving the conveyor belt pad 105 to complete the carrier conveying task in a smooth and efficient manner. For carriers made of softer materials, the cylinder 307 inside the intermediate conveying assembly 3 precisely lifts the slider moving plate with the fixing 304 via the lifting connecting plate 305, thereby effectively supporting the carrier, significantly reducing the risk of deformation of the carrier during the conveying process, and ensuring the stability of the transmission and the integrity of the product. Meanwhile, the intermediate tension fixing plate 302 and the intermediate tension top block 303, through their reasonable design and distribution, further enhance the tension control capability of the conveyor belt, ensuring that the conveyor belt maintains stable and reliable operation even at high speeds. Furthermore, the small-stroke push rod module 103 is installed on the outer side 102 of the carrier feed side upright plate and the movable side 201, respectively, working in coordination with the outer side 104 of the carrier feed belt pressure plate and the carrier baffle 106 to provide precise carrier positioning and guidance, significantly improving the system's operational accuracy. The sensor mounting bracket A107 installed below the outer side 102 of the carrier feed side upright plate, working in conjunction with a high-sensitivity sensor, enables real-time monitoring and data feedback of the carrier's operating status, providing crucial support for the system's automated operation. The entire device is mounted on the multi-functional carrier base plate 4, and the overall structure's flexibility and stability are further optimized through the linear guide rail 8 and the linear module 15. The precisely laid-out linear guide rail not only provides a smoother sliding path for the device but also significantly improves the system's ease of operation in practical application scenarios. Thanks to the aforementioned optimized design, the device achieves highly reliable, uninterrupted, and stable operation, significantly reducing the need for manual intervention, greatly improving conveying efficiency, and substantially reducing the labor intensity of workers. With its superior versatility and flexibility, the equipment not only expands its application range but also provides users with a superior operating experience through its highly practical and meticulously designed features.
[0033] Working Principle: When using this carrier conveyor assembly, when the carrier arrives at the conveyor, the fixed-side carrier assembly 1 and the moving-side guide rail assembly 2 jointly clamp the carrier. By adjusting the movement of the slider moving plate 202 of the moving-side guide rail assembly 2 along the linear guide rail 11, it can accommodate carriers of different sizes. The driven pulley tooth surface 101 in the fixed-side carrier assembly 1 is connected to the main drive wheel 111 via the drive shaft 112, and is powered by a stepper motor 118 to drive the conveyor belt pad 105 to achieve carrier conveying. If the carrier material is relatively soft, the cylinder 307 in the intermediate conveyor assembly 3 lifts the slider moving plate and the fixed 304 via the lifting connecting plate 305, so that the intermediate conveyor assembly 3 supports the carrier and reduces its deformation during the conveying process. The design of the intermediate tensioning fixed plate 302 and the intermediate tensioning top block 303 further ensures the stable operation of the conveyor belt. In addition, the small-stroke push rod module 103 is installed on the outer side 102 of the feed side upright plate and the movable side 201 of the carrier, working in conjunction with the outer side 104 of the carrier feed belt pressure plate and the carrier baffle 106 to ensure the precise positioning and guidance of the carrier. The sensor mounting bracket A107 is installed below the outer side 102 of the feed side upright plate and can work in conjunction with relevant sensors to achieve real-time monitoring of the carrier status. The entire device further enhances its flexibility and stability through the linear guide rail 8 and linear module 15 installed on the multi-functional carrier base plate 4. With this design, the device achieves uninterrupted and stable operation, reduces manual intervention, improves conveying efficiency, expands the scope of application, and effectively reduces the labor intensity of workers, enhancing the practicality and convenience of the equipment.
[0034] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A carrier transfer assembly comprising a fixed side carrier assembly (1), a movable side guide rail assembly (2), an intermediate transfer assembly (3), characterized in that: The fixed side carrier assembly (1) is provided with a plurality of driven pulley tooth surfaces (101), the carrier feed side stand plate outer side (102) is provided with a small stroke push rod module (103), the carrier feed belt pressing plate outer side (104), the conveyor belt base plate (105), the carrier baffle (106), the sensor fixing frame A (107), the roller fixing shaft (108), the adjustable block (109), the bearing sleeve (110), the belt main drive wheel (111), the belt drive shaft (112), the motor fixing strip (113), the guide block A (114), the guide block B (115), the side of the movable side guide rail assembly (2) is provided with a small stroke push rod module (103), the outer wall of the movable side of the carrier feed side stand plate (201) is provided with a plurality of driven pulley tooth surfaces (101), the movable side of the carrier feed side stand plate (201) is provided with a slider moving plate (202), a carrier feed belt pressing plate outer side (104), a conveyor belt base plate (105), a carrier baffle (106), a roller fixing shaft (108), an adjustable block (109), a bearing sleeve (110), a belt main drive wheel (111), a belt drive shaft (112), a motor fixing strip (113), a guide block A (114), a guide block B (115), the middle conveying assembly (3) is provided with a plurality of driven pulley tooth surfaces (101), the main middle fixed plate (301) is provided with a conveyor belt base plate (105), a roller fixing shaft (108), a middle main drive wheel (308), a middle tensioning fixed plate (302), a middle tensioning top block (303), a slider moving plate belt fixing (304), a lifting connecting plate (305), the middle installation bottom plate (306) is connected with the main middle fixed plate (301) through the cylinder (307), the fixed side carrier assembly (1) is installed on the multifunctional carrier bottom plate (4), and the multifunctional carrier bottom plate (4) is also provided with two linear guide rails (8), and the movable side guide rail assembly (2) and the middle conveying assembly (3) are installed on the linear guide rails (8).
2. A carrier transport assembly as claimed in claim 1, wherein: The fixed side carrier assembly (1) is provided with a carrier feed side stand plate outer side (102), a small stroke push rod module (103), a carrier feed belt pressing plate outer side (104), a conveyor belt base plate (105), a carrier baffle (106), a sensor fixing frame A (107), a roller fixing shaft (108), an adjustable block (109), a bearing sleeve (110), a belt main drive wheel (111), a belt drive shaft (112), a motor fixing strip (113), a guide block A (114), a guide block B (115), a ribbed deep groove ball bearing (116), a ribbed deep groove bearing (117), and a stepping motor (118).
3. A carrier transport assembly as claimed in claim 1, wherein: The outer wall of the carrier feeding side vertical plate outside (102) is provided with a small stroke push rod module (103), a plurality of driven belt pulley tooth surfaces (101) are arranged in the carrier feeding side vertical plate outside (102), the carrier feeding belt pressing plate outside (104) is installed on the upper surface of the carrier feeding side vertical plate outside (102), the conveyor belt base plate (105) is arranged on the carrier feeding side vertical plate outside (102), and the carrier baffle (106) is installed on the end surface of the carrier feeding side vertical plate outside (102).
4. A carrier transport assembly as claimed in claim 1, wherein: The sensor fixing frame A (107) is arranged below the carrier feeding side vertical plate outside (102), the roller fixing shaft (108) is matched with the ribbed deep groove ball bearing (116), the adjustable block (109) is arranged on the inner side of the carrier feeding side vertical plate outside (102), the bearing sleeve (110) is matched with the ribbed deep groove bearing (117), the ribbed deep groove bearing (117) is matched with the belt driving shaft (112), the belt driving shaft (112) is matched with the belt main driving wheel (111), the motor fixing strip (113) is arranged on the inner side of the carrier feeding side vertical plate outside (102) and is connected with the stepping motor (118), the guide block A (114) and the guide block B (115) are arranged on the upper surface of the carrier feeding side vertical plate outside (102).
5. A carrier transport assembly as claimed in claim 1, wherein: The movable side guide rail assembly (2) is provided with a carrier feeding side vertical plate movable side (201), a plurality of driven belt pulley tooth surfaces (101) are arranged in the carrier feeding side vertical plate movable side (201), the outer wall of the carrier feeding side vertical plate movable side (201) is provided with a small stroke push rod module (103), the carrier feeding belt pressing plate outside (104) is installed on the upper surface of the carrier feeding side vertical plate movable side (201), the conveyor belt base plate (105) is arranged on the carrier feeding side vertical plate movable side (201), and the carrier baffle (106) is installed on the end surface of the carrier feeding side vertical plate movable side (201).
6. A carrier transport assembly as claimed in claim 1, wherein: The roller fixing shaft (108) is matched with the ribbed deep groove ball bearing (116), the adjustable block (109) is arranged on the inner side of the carrier feeding side vertical plate movable side (201), the bearing sleeve (110) is matched with the ribbed deep groove bearing (117), the ribbed deep groove bearing (117) is matched with the belt driving shaft (112), the belt driving shaft (112) is matched with the belt main driving wheel (111), the motor fixing strip (113) is arranged on the inner side of the carrier feeding side vertical plate movable side (201) and is connected with the stepping motor (118), the guide block A (114) and the guide block B (115) are arranged on the upper surface of the carrier feeding side vertical plate movable side (201), and the sliding block moving plate (202) is arranged below the carrier feeding side vertical plate movable side (201).
7. A carrier transport assembly as defined in claim 1, wherein: The intermediate transmission assembly (3) is provided with a main intermediate fixed plate (301), a plurality of driven pulley tooth surfaces (101) are arranged on both sides of the main intermediate fixed plate (301), the transmission belt base plate (105) is arranged on both sides of the main intermediate fixed plate (301), the intermediate tensioning fixed plate (302) is arranged on both sides of the main intermediate fixed plate (301), the intermediate tensioning top block (303) is arranged on both sides of the main intermediate fixed plate (301), the lifting connecting plate (305) is arranged on the main intermediate fixed plate (301), the air cylinder (307) is connected with the lifting connecting plate (305), the intermediate installation bottom plate (306) is connected with the air cylinder (307), the sliding block moving plate belt fixing (304) is connected with the intermediate installation bottom plate (306), the guide rail clamping piece (309) is connected with the sliding block moving plate belt fixing (304), and the electromagnetic valve (310) is connected with the intermediate installation bottom plate (306).
8. A carrier transport assembly as claimed in claim 1, wherein: The linear guide rail (8) is installed on the multifunctional carrier bottom plate (4), the movable side guide rail assembly (2) is connected with the linear guide rail (8) through the sliding block moving plate (202), and the intermediate transmission assembly (3) is connected with the linear guide rail (8) through the sliding block moving plate belt fixing (304).
9. A carrier transport assembly as claimed in claim 1, wherein: The fixed side carrier assembly (1) is installed on the multifunctional carrier bottom plate (4), and the multifunctional carrier bottom plate (4) is also provided with two linear guide rails (8).
10. A carrier transport assembly as claimed in claim 1, wherein: The multifunctional carrier bottom plate (4) is installed on the linear guide rail (8) and the linear module (15), and the linear guide rail (8) is installed on the right guide rail base plate (6).