Logistics line
By setting up a first and second conveyor line arranged in a cross pattern in the logistics line, and setting a cutting module between the fixed modules of the two, the rapid line change of the moving module is realized, which solves the problem of long line change time in the logistics line and improves production cycle and conveying efficiency.
Patent Information
- Application Number
- CN202520427308.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-12
AI Technical Summary
The logistics line has a long changeover time and a low changeover frequency, resulting in a shorter production cycle.
The first and second conveyor lines are arranged in an alternating pattern, with a disconnection module between them. After the moving module reaches the stationary module, it can be directly connected to another conveyor line through the disconnection module, thus avoiding line switching operations during the entire conveying process.
It effectively reduced the changeover time of the moving module, increased the changeover frequency, and improved the production cycle adaptability and conveying efficiency of the logistics line.
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Figure CN223851716U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to magnetic drive conveying technical field, especially relates to a logistics line. BACKGROUND
[0002] The logistics line is a system for conveying the mover module, and the mover module can carry goods and can turn at crossroads or three-way line intersections. Specifically, the magnetic drive conveying line is used for reversing the mover module. The magnetic drive conveying line is a multi-mover module intelligent conveying system based on the principle of linear motor. Each mover module does not need to be dragged by a cable and can be independently controlled, and can adapt to different production stations to realize production line flexibility.
[0003] In the related art, the logistics line includes a first conveying line, a second conveying line and a transfer module. The transfer module is arranged at the end of the first conveying line. When the line is changed, the first conveying line first conveys the mover module from the first end to the end, and the transfer module then connects the mover module from the end of the first conveying line to the second conveying line to change the line. However, the mover module needs to go through the complete conveying process of the first conveying line and then change the line through the connection module, which results in a long time for changing the line of the mover module and a low frequency of changing the line, i.e. the production rhythm that the logistics line can adapt to is less. SUMMARY
[0004] The main purpose of the utility model is to provide a logistics line, which aims to solve the technical problem that the production rhythm that the logistics line can adapt to is less.
[0005] To achieve the above-mentioned purpose, the utility model embodiment provides a logistics line for conveying a mover module. The logistics line comprises:
[0006] The first conveying line comprises first and second fixed modules arranged opposite and spaced apart along a first direction, and further comprises a first separation module.
[0007] The second conveying line is arranged spaced apart from the first conveying line along a second direction, and the second direction intersects the first direction.
[0008] The first separation module is adapted to be arranged between the first and second fixed modules and connected to the first and second fixed modules, so as to connect the mover module on the first conveying line to the second conveying line.
[0009] In some embodiments, the second conveying line comprises third and fourth fixed modules arranged opposite and spaced apart along the first direction, and the first separation module can move between the third and fourth fixed modules and be connected to the third and / or fourth fixed modules.
[0010] In some embodiments, the second conveying line comprises a second parting module adapted to be disposed between the third and fourth stationary modules and to interface the third and fourth stationary modules to interface the mover module on the second conveying line to the first conveying line.
[0011] In some embodiments, the first conveying line has a first end in the first direction and the second conveying line has a second end in the first direction;
[0012] The logistics line comprises a shuttle module movable to and interface with an end of the first end distal from the first stationary module and movable to and interface with an end of the second end distal from the third stationary module.
[0013] In some embodiments, the first conveying line comprises a fifth stationary module spaced from the second stationary module in the first direction, the fifth stationary module being distal from the first stationary module from the second stationary module;
[0014] The second parting module is movable to and interface with the second and fifth stationary modules.
[0015] In some embodiments, the first conveying line comprises a third parting module adapted to be disposed between the second and fifth stationary modules and to interface the second and fifth stationary modules to interface the mover module on the first conveying line to the second conveying line.
[0016] In some embodiments, the second conveying line comprises a sixth stationary module spaced from the fourth stationary module in the first direction, the sixth stationary module being distal from the third stationary module from the fourth stationary module;
[0017] The third parting module is movable to and interface with the fourth and sixth stationary modules.
[0018] In some embodiments, the second conveying line comprises a fourth parting module adapted to be disposed between the fourth and sixth stationary modules and to interface the fourth and sixth stationary modules to interface the mover module on the second conveying line to the first conveying line.
[0019] In some embodiments, the first conveying line comprises a first guide rail and a first coil, the first guide rail is arranged along the first direction, and the first coil is used to drive the mover module to move along the first guide rail.
[0020] And / or,
[0021] The second conveying line comprises a second guide rail and a second coil, the second guide rail is arranged along the first direction, and the second coil is used to drive the mover module to move along the second guide rail.
[0022] In some embodiments, the mover module comprises a base plate, a permanent magnet, and a slider, the slider and the permanent magnet are arranged at the bottom of the base plate, and the slider is adapted to be slidingly connected to the first conveying line or the second conveying line.
[0023] Compared with the prior art, the beneficial effects of the present application include:
[0024] In the technical scheme of the present application, the logistics line comprises a first conveying line and a second conveying line. The first conveying line comprises a first fixed mold module and a second fixed mold module arranged relatively and spaced apart along a first direction. The second conveying line is arranged spaced apart from the first conveying line along a second direction, and the second direction is arranged transversely to the first direction. In the prior art, the transfer module needs to go through the complete conveying process of the first conveying line and then change lines through the connection module, resulting in a long line changing time of the mover module and a low line changing frequency, i.e. a small number of production rhythms that the logistics line can adapt to. The first conveying line of the present scheme comprises a first cutting-off mold module, which is adapted to be placed between the first fixed mold module and the second fixed mold module and connected to the first fixed mold module and the second fixed mold module, i.e. the mover module on the first conveying line can be connected to the second conveying line, in other words, after being conveyed to the first fixed mold module or the second fixed mold module, the mover module can be connected to the second conveying line through the first cutting-off mold module. Therefore, the mover module does not need to go through the complete conveying process of the first conveying line before changing lines, and the present scheme can effectively reduce the line changing time of the mover module, improve the line changing frequency, and make the mover module have multiple conveying paths, i.e. the logistics line can adapt to multiple complex production rhythms and ensure the conveying efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0025] In order to more clearly illustrate the technical scheme in the embodiments of the present application or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained from the structures shown in these drawings without creative labor for those skilled in the art.
[0026] Figure 1It is the schematic view of the logistics line in one embodiment of the utility model, wherein, the first fixed die module, the second fixed die module, the third fixed die module, the fourth fixed die module and the first cut-off die module are shown;
[0027] Figure 2 It is the schematic view of the logistics line in one embodiment of the utility model, wherein, the first cut-off die module moves along the second direction towards the second conveying line;
[0028] Figure 3 It is the structural schematic view of the logistics line in one embodiment of the utility model, wherein, the mover module and the second guide rail are shown;
[0029] Figure 4 It is Figure 3 It is the local enlarged schematic view of A in the utility model, wherein, the slider and the first guide rail are shown;
[0030] Figure 5 It is the top view schematic view of the logistics line in one embodiment of the utility model;
[0031] Figure 6 It is the schematic view of the mover module in one embodiment of the utility model, wherein, the substrate, the permanent magnet, the slider and the magnetic grid are shown.
[0032] Explanation of figure mark number:
[0033] Logistics line 10;
[0034] First conveying line 100;First fixed die module 110;Second fixed die module 120;First cut-off die module 130;
[0035] First end 140;Fifth fixed die module 150;Third cut-off die module 160;First guide rail 170;
[0036] Second conveying line 200;Third fixed die module 210;Fourth fixed die module 220;Second cut-off die module 230;
[0037] Second end 240;Sixth fixed die module 250;Fourth cut-off die module 260;Second guide rail 270;
[0038] Ferry module 300;
[0039] Mover module 20;Substrate 201;Permanent magnet 202;Slider 203;Magnetic grid 204;
[0040] First direction X;Second direction Y.
[0041] The realization of the utility model, functional characteristics and advantages will be further explained with reference to the drawings in combination with embodiments. Specific implementation
[0042] The technical solutions in the embodiments of the present application will be clearly and completely described 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 of the present application, all other embodiments obtained by those skilled in the art without creative efforts fall within the scope of the present application.
[0043] The embodiment of the present application provides a logistics line 10, which is used for conveying a sub-module 20 and can adapt to various production tempos. The logistics line 10 of the embodiment of the present application will be introduced below with reference to Figures 1 to 6 Specifically, the logistics line 10 comprises a first conveying line 100 and a second conveying line 200.
[0044] With reference to Figures 3 to 5 , the first conveying line 100 is used for conveying the sub-module 20. The first conveying line 100 comprises a first fixed mold group 110 and a second fixed mold group 120. In order to facilitate the description and understanding of the specific arrangement of the first conveying line 100, a first direction X is defined, the first fixed mold group 110 and the second fixed mold group 120 are arranged oppositely and at intervals along the first direction X, and with reference to Figure 1 , the first direction X can be directed upward and downward, the fixed mold group on the lower side of the first conveying line 100 can be the first fixed mold group 110, and the fixed mold group on the upper side of the first conveying line 100 can be the second fixed mold group 120.
[0045] It should be noted that in some embodiments, the first fixed mold group 110 can be a starting section of the first conveying line 100. In other embodiments, the first fixed mold group 110 can also be a middle section of the first conveying line 100. In other embodiments, the first fixed mold group 110 can also be an end section of the first conveying line 100. The position of the second fixed mold group 120 on the first conveying line 100 can be different from that of the first fixed mold group 110. The embodiment of the present application takes the first fixed mold group 110 as the starting section of the first conveying line 100 and the second fixed mold group 120 as the middle section of the first conveying line 100 as an example for description.
[0046] With reference to Figures 3 to 5 , the second conveying line 200 is used for conveying the sub-module 20. The structure of the second conveying line 200 can be the same as or different from that of the first conveying line 100, and the specific structure of the second conveying line 200 can be determined according to actual conditions. The second conveying line 200 and the first conveying line 100 are arranged at intervals along a second direction Y, and the second direction Y is arranged transversely to the first direction X. In some embodiments, the second direction Y can be perpendicular to the first direction X. In other embodiments, the second direction Y can also be at other inclined angles other than perpendicular to the first direction X, and the embodiment of the present application takes the second direction Y perpendicular to the first direction X as an example for description.
[0047] With reference to Figure 1 and Figure 2 , the first conveying line 100 comprises a first cut-off module 130, the first cut-off module 130 is used for realizing line changing conveying. Specifically, the first cut-off module 130 can be arranged between the first fixed mold module 110 and the second fixed mold module 120, the first cut-off module 130 can connect the first fixed mold module 110 and the second fixed mold module 120, that is, the movable mold module 20 on the first fixed mold module 110 and the second fixed mold module 120 can be connected to the first cut-off module 130, and then connected to the second conveying line 200 through the first cut-off module 130 to realize line changing operation.
[0048] In the technical scheme of the utility model, the logistics line 10 comprises a first conveying line 100 and a second conveying line 200. The first conveying line 100 comprises a first fixed mold module 110 and a second fixed mold module 120 which are oppositely and intervally arranged along a first direction X. The second conveying line 200 is intervally arranged with the first conveying line 100 along a second direction Y, and the second direction Y is crossly arranged with the first direction X. In the prior art, the transfer module needs to pass through the complete conveying process of the first conveying line and then change line through the connecting module, which leads to a long line changing time of the movable mold module and a low line changing frequency, that is, the production rhythm that the logistics line can adapt is less. The first conveying line 100 of the present scheme comprises a first cut-off module 130, the first cut-off module 130 is suitable to be arranged between the first fixed mold module 110 and the second fixed mold module 120 and connect the first fixed mold module 110 and the second fixed mold module 120, that is, the movable mold module 20 on the first conveying line 100 can be connected to the second conveying line 200, in other words, after being conveyed to the first fixed mold module 110 or the second fixed mold module 120, the movable mold module 20 can be connected to the second conveying line 200 through the first cut-off module 130, therefore, the movable mold module 20 does not need to pass through the complete conveying process of the first conveying line 100 and then change line, the present scheme can effectively reduce the line changing time of the movable mold module 20, improve the line changing frequency, and make the movable mold module 20 have multiple conveying paths, that is, the logistics line 10 can adapt to multiple complex production rhythms and guarantee conveying efficiency.
[0049] With reference to Figure 1 and Figure 2 , the specific arrangement of the second conveying line 200 will be introduced below. In some embodiments, the second conveying line 200 comprises a third fixed mold module 210 and a fourth fixed mold module 220, the third fixed mold module 210 and the fourth fixed mold module 220 are oppositely and intervally arranged along the first direction X. With reference to Figure 1 direction, the first direction X can refer to the up-down direction, the fixed mold module on the lower side of the second conveying line 200 can be the third fixed mold module 210, and the fixed mold module on the upper side of the second conveying line 200 can be the fourth fixed mold module 220.
[0050] It should be noted that in some embodiments, the third mold positioning assembly 210 can be the starting section of the second conveying line 200. In other embodiments, the third mold positioning assembly 210 can also be the middle section of the second conveying line 200. In other embodiments, the third mold positioning assembly 210 can also be the end section of the second conveying line 200. The position of the fourth mold positioning assembly 220 on the second conveying line 200 can be different from that of the third mold positioning assembly 210. The embodiments of the present application take the third mold positioning assembly 210 as the starting section of the second conveying line 200 and the fourth mold positioning assembly 220 as the middle section of the second conveying line 200 as an example for description.
[0051] With reference to Figure 2 , the connection position of the second conveying line 200 and the first cut-off mold assembly 130 will be introduced below. In some embodiments, the first cut-off mold assembly 130 can move to between the third mold positioning assembly 210 and the fourth mold positioning assembly 220 and connect to the third mold positioning assembly 210, i.e., the first cut-off mold assembly 130 can deliver the movable mold assembly 20 to the third mold positioning assembly 210. In other embodiments, the first cut-off mold assembly 130 can move to between the third mold positioning assembly 210 and the fourth mold positioning assembly 220 and connect to the fourth mold positioning assembly 220, i.e., the first cut-off mold assembly 130 can deliver the movable mold assembly 20 to the fourth mold positioning assembly 220. In other embodiments, the second conveying line 200 further includes other mold assemblies, and the first cut-off mold assembly 130 can deliver the movable mold assembly 20 to the other mold assemblies, and the specific arrangement can be determined according to actual conditions.
[0052] With reference to Figure 1 In some embodiments, the second conveying line 200 includes a second cut-off mold assembly 230, and the second cut-off mold assembly 230 is used to realize line changing conveying, and the structure of the second cut-off mold assembly 230 can be the same as that of the first cut-off mold assembly 130. Specifically, the second cut-off mold assembly 230 can be arranged between the third mold positioning assembly 210 and the fourth mold positioning assembly 220, and the second cut-off mold assembly 230 can connect to the third mold positioning assembly 210 and the fourth mold positioning assembly 220, i.e., the movable mold assemblies 20 on the third mold positioning assembly 210 and the fourth mold positioning assembly 220 can be connected to the second cut-off mold assembly 230, and then the movable mold assemblies 20 can be connected to the first conveying line 100 through the second cut-off mold assembly 230 to realize line changing operation. The present scheme can effectively improve the line changing frequency of the movable mold assembly 20, so that the logistics line 10 can adapt to various production tempos and ensure conveying efficiency.
[0053] It should be noted that in some embodiments, the first cut-off module 130 can connect the mover module 20 on the first conveying line 100 to the second conveying line 200, or connect the mover module 20 on the second conveying line 200 to the first conveying line 100. In another embodiment, the second cut-off module 230 can connect the mover module 20 on the second conveying line 200 to the first conveying line 100, or connect the mover module 20 on the first conveying line 100 to the second conveying line 200. This scheme can further improve the line changing efficiency of the mover module 20.
[0054] Referring to Figure 1 , the specific arrangement of the logistics line 10 will be described below. In some embodiments, the first conveying line 100 has a first end portion 140 in the first direction X. The first end portion 140 can be the beginning of the first conveying line 100, or the end of the first conveying line 100. The second conveying line 200 has a second end portion 240 in the first direction X, and the second end portion 240 can be the beginning of the second conveying line 200, or the end of the second conveying line 200. The embodiments of the present application take the end of the first conveying line 100 as the first end portion 140 and the end of the second conveying line 200 as the second end portion 240 as an example for description.
[0055] Referring to Figure 1 , the logistics line 10 includes a transfer module 300, which can move to an end of the first end portion 140 away from the first positioning module 110, and the transfer module 300 can be connected to the first end portion 140, that is, the mover module 20 at the first end portion 140 can be connected to the transfer module 300. The transfer module 300 can move to an end of the second end portion 240 away from the third positioning module 210, and the transfer module 300 can be connected to the second end portion 240, that is, the mover module 20 on the transfer module 300 can be connected to the second end portion 240. It should be noted that the transfer module 300 can also connect the mover module 20 at the second end portion 240 to the first end portion 140. It can be understood that the transfer module 300 can also be provided in plurality, and the specific arrangement of the transfer module 300 can be determined according to actual conditions.
[0056] Referring to Figures 3 to 5 , in some embodiments, the first conveying line 100 includes a fifth positioning module 150, which is arranged in the first direction X away from the second positioning module 120, and the fifth positioning module 150 is located at an end of the second positioning module 120 away from the first positioning module 110, referring to Figure 5 , the fifth positioning module 150 is located on the upper side of the second positioning module 120.
[0057] The second logistics line 10 comprises a second parting die set 230, which can be arranged between the third stationary die set 210 and the fourth stationary die set 220 and can be connected to the third stationary die set 210 and the fourth stationary die set 220. In addition, the second parting die set 230 can be moved to between the second stationary die set 120 and the fifth stationary die set 150 and can be connected to the second stationary die set 120 and the fifth stationary die set 150, that is, the second parting die set 230 can transport the movable die set 20 on the third stationary die set 210 or the fourth stationary die set 220 to the second stationary die set 120 or the fifth stationary die set 150. The specific connection of the second parting die set 230 can be determined according to actual conditions.
[0058] With reference to Figures 3 to 5 In some embodiments, the first conveying line 100 comprises a third parting die set 160, which can have the same structure as the first parting die set 130. The third parting die set 160 can be arranged between the second stationary die set 120 and the fifth stationary die set 150 and can be connected to the second stationary die set 120 and the fifth stationary die set 150, that is, the third parting die set 160 can transport the movable die set 20 on the second stationary die set 120 or the fifth stationary die set 150 to the second conveying line 200. This scheme can effectively improve the line-changing frequency of the movable die set 20, so that the logistics line 10 can adapt to various production tempos and ensure the conveying efficiency.
[0059] With reference to Figures 3 to 5 In some embodiments, the second conveying line 200 comprises a sixth stationary die set 250, which is arranged along the first direction X and spaced apart from the fourth stationary die set 220. The sixth stationary die set 250 is located at one end of the fourth stationary die set 220 away from the third stationary die set 210. With reference to Figure 5 With reference to
[0060] The third parting die set 160 can be arranged between the second stationary die set 120 and the fifth stationary die set 150 and can be connected to the second stationary die set 120 and the fifth stationary die set 150. The third parting die set 160 can be moved to between the fourth stationary die set 220 and the sixth stationary die set 250 and can be connected to the fourth stationary die set 220 and the sixth stationary die set 250, that is, the third parting die set 160 can transport the movable die set 20 on the second stationary die set 120 or the fifth stationary die set 150 to between the fourth stationary die set 220 and the sixth stationary die set 250. This scheme can effectively improve the line-changing frequency of the movable die set 20, so that the logistics line 10 can adapt to various production tempos and ensure the conveying efficiency.
[0061] With reference to Figures 3 to 5In some embodiments, the second conveyor line 200 includes a fourth cutting-off module 260, which can be located between the fourth fixed module 220 and the sixth fixed module 250. The fourth cutting-off module 260 can connect to both the fourth fixed module 220 and the sixth fixed module 250, meaning that the moving part module 20 on either the fourth fixed module 220 or the sixth fixed module 250 can be connected by the fourth cutting-off module 260 and conveyed to the first conveyor line 100 for line changing. It should be noted that in other embodiments, both the first conveyor line 100 and the second conveyor line 200 can be equipped with multiple cutting-off modules. The specific location and number of cutting-off modules can be determined according to the actual situation. This solution can effectively increase the line changing frequency of the moving part module 20, enabling the logistics line 10 to adapt to various production cycles and ensuring conveying efficiency.
[0062] Reference Figure 4 In some embodiments, the first conveyor line 100 includes a first guide rail 170 and a first coil. Specifically, the first fixed module 110, the second fixed module 120, and the first cutting-off module 130 can all be equipped with the first guide rail 170 and the first coil. It is understood that the first guide rail 170 can be single or multiple. This embodiment uses two first guide rails 170 as an example. Each first guide rail 170 can extend along a first direction X, and the two first guide rails 170 can be spaced apart along a second direction Y. The first coil is used to drive the moving sub-module 20 to move along the first guide rail 170. It should be noted that the first conveyor line 100 can be equipped with multiple first coils, and the specific number and position of the first coils can be determined according to the actual situation. In other embodiments, the first conveyor line 100 also includes a position feedback component.
[0063] Reference Figure 3 and Figure 5 In some embodiments, the second conveyor line 200 includes a second guide rail 270 and a second coil. Specifically, the third fixed module 210, the fourth fixed module 220, and the second cutting-off module 230 can all be equipped with a second guide rail 270 and a second coil. It is understood that the second guide rail 270 can be single or multiple. This embodiment uses two second guide rails 270 as an example. Each second guide rail 270 can extend along a first direction X, and the two second guide rails 270 can be spaced apart along a second direction Y. The second coil is used to drive the actuator module 20 to move along the second guide rail 270. It should be noted that the second conveyor line 200 can be equipped with multiple second coils, and the specific number and position of the second coils can be determined according to the actual situation. In other embodiments, the second conveyor line 200 also includes a position feedback component.
[0064] Reference Figure 6The specific configuration of the mover module 20 is described below. In some embodiments, the mover module 20 includes a substrate 201, a permanent magnet 202, and a slider 203. The substrate 201 is used to support the object to be transported, and both the slider 203 and the permanent magnet 202 can be disposed at the bottom of the substrate 201. The slider 203 can be slidably connected to the first conveyor line 100 or the second conveyor line 200. Specifically, the slider 203 can slide along the first direction X on the first guide rail 170 of the first conveyor line 100, and can also slide along the first direction X on the second guide rail 270 of the second conveyor line 200. It should be noted that in some other embodiments, the mover module 20 includes a magnetic grating 204, which can perform high-precision position detection and closed-loop control feedback, etc.
[0065] Reference Figure 5 The specific movement process of the first cutting module 130 is described below. In some embodiments, the first cutting module 130 can reciprocate along a single direction to achieve the switching operation between the first conveyor line 100 and the second conveyor line 200. Specifically, the first cutting module 130 can reciprocate along the second direction Y. In other embodiments, the first cutting module 130 can also move along multiple directions. For example, the first cutting module 130 can first move along the first direction X, and then move along the second direction Y and the reverse direction of the first direction X, thereby achieving the switching operation between the first conveyor line 100 and the second conveyor line 200. The specific movement settings of the first cutting module 130 can be determined according to the actual situation.
[0066] It should be noted that if the embodiments of this utility model involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.
[0067] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or," "and / or," or "and / or" throughout the text implies three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where A and B are simultaneously satisfied. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0068] The above are only preferred embodiments of the present application, and do not limit the patent range of the present application, and any equivalent structural transformation made by using the present application specification and drawings contents, or directly / indirectly applied in other related technical fields are included in the patent protection range of the present application.
Claims
1. A logistics line for conveying a mobile module, characterized in that, The logistics line comprises: a first conveying line comprising a first mold set and a second mold set arranged opposite and spaced apart along a first direction, the first conveying line further comprising a first cut-off mold set; a second conveying line arranged spaced apart from the first conveying line along a second direction intersecting the first direction; wherein the first cut-off mold set is adapted to be disposed between the first mold set and the second mold set and to connect the first mold set and the second mold set, so as to connect the mover mold set on the first conveying line to the second conveying line.
2. The logistics line of claim 1, wherein: the second conveying line comprises a third mold set and a fourth mold set arranged opposite and spaced apart along the first direction, the first cut-off mold set being movable to between the third mold set and the fourth mold set and to connect the third mold set and / or the fourth mold set.
3. The logistics line of claim 2, wherein: the second conveying line comprises a second cut-off mold set adapted to be disposed between the third mold set and the fourth mold set and to connect the third mold set and the fourth mold set, so as to connect the mover mold set on the second conveying line to the first conveying line.
4. The logistics line of claim 3, wherein: the first conveying line has a first end portion along the first direction, and the second conveying line has a second end portion along the first direction; the logistics line comprises a transfer mold set movable to an end of the first end portion facing away from the first mold set and to connect the first end portion, and movable to an end of the second end portion facing away from the third mold set and to connect the second end portion.
5. The logistics line of claim 3, wherein: the first conveying line comprises a fifth mold set arranged spaced apart from the second mold set along the first direction, the fifth mold set being located at an end of the second mold set facing away from the first mold set; the second cut-off mold set is movable to between the second mold set and the fifth mold set and to connect the second mold set and the fifth mold set.
6. The logistics line of claim 5, wherein: the first conveying line comprises a third cut-off mold set adapted to be disposed between the second mold set and the fifth mold set and to connect the second mold set and the fifth mold set, so as to connect the mover mold set on the first conveying line to the second conveying line.
7. The logistics line of claim 6, wherein: the second conveying line comprises a sixth mold set arranged spaced apart from the fourth mold set along the first direction, the sixth mold set being located at an end of the fourth mold set facing away from the third mold set; the third cut-off mold set is movable to between the fourth mold set and the sixth mold set and to connect the fourth mold set and the sixth mold set.
8. The logistics line of claim 7, wherein: The second conveying line comprises a fourth cutting-off module, which is adapted to be arranged between the fourth fixed mold module and the sixth fixed mold module and connected with the fourth fixed mold module and the sixth fixed mold module, so as to connect the mover mold module on the second conveying line to the first conveying line.
9. The logistics line according to claim 1, wherein, the first conveying line comprises a first guide rail and a first coil, the first guide rail is arranged to extend along the first direction, and the first coil is used to drive the mover mold module to move along the first guide rail; and / or, the second conveying line comprises a second guide rail and a second coil, the second guide rail is arranged to extend along the first direction, and the second coil is used to drive the mover mold module to move along the second guide rail.
10. The logistics line according to claim 1, wherein, the mover mold module comprises a base plate, a permanent magnet and a sliding block, the sliding block and the permanent magnet are arranged at the bottom of the base plate, and the sliding block is adapted to be slidingly connected to the first conveying line or the second conveying line.