Wire arranging and arranging device and processing equipment

The cable management system addresses cable interference during electronic component processing by using a pivot mechanism to move cables out of the processing area, improving yield and efficiency.

CN223102417UActive Publication Date: 2025-07-15思灵(深圳)智能机器人科技有限责任公司
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Patent Information

Application Number
CN202422137517.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-15
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

During product processing, the wiring is prone to deformation and leads to shading interference, affecting processing yield and efficiency.

Method used

A wire-training device is designed, including a base, a vehicle and wire-training assembly, toggle the drive component and the lever to avoid the processing area, and combine the conveying component and the hoisting assembly to achieve continuous processing.

Benefits of technology

Reduce the occlusion interference of the wiring on the processing area, improve processing yield and efficiency, and ensure high-precision and efficient processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a flat cable arrangement device and processing equipment, and relates to the technical field of product processing. The flat cable arranging device comprises a base table, the base table is provided with a carrier and a cable arranging assembly, the cable arranging assembly comprises a stirring driving part and a stirring rod arranged at the tail end of the stirring driving part, the carrier is located in a stirring area of the stirring rod, and the stirring rod is used for stirring flat cables of a to-be-machined workpiece borne on the carrier. The machining equipment comprises a machining device and the wire arranging and arranging device, a base table of the wire arranging and arranging device is provided with a conveying assembly and a jacking assembly, the number of carriers of the wire arranging and arranging device is multiple, the multiple carriers are all borne by the conveying assembly and arranged at intervals in the conveying direction of the conveying assembly, and the conveying assembly is used for conveying the carriers to machining stations; the jacking assembly is used for jacking the carrier located at the machining station to the shifting area, and the machining device is used for machining the to-be-machined part located at the shifting area. The wire arranging and arranging device is applied to processing equipment and can effectively improve the processing yield and efficiency of workpieces to be processed.
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Description

Technical Field

[0001] The utility model relates to the technical field of product processing, in particular to a wire arrangement and management device and processing equipment. Background Art

[0002] BTB cables and FPC cables are widely used as connecting bridges for electrical connection between two electronic components. At the same time, based on their soft and deformable characteristics, the cables can be arranged to adapt to the shape of the product, and are easy to use and have good layout fit. However, while the cables are soft and easy to deform, while having the above advantages, during the product processing, when the workpiece to be processed has been connected to one end of the cable for subsequent assembly, welding and other processing operations, the cables can easily cause obstruction and interference to the processing area of the workpiece to be processed, thereby affecting the processing operation of the workpiece to be processed, resulting in low processing yield and processing efficiency of the workpiece to be processed. Utility Model Content

[0003] The utility model aims to provide a wire arrangement and processing device to solve the technical problem that the processing yield and processing efficiency of the existing workpiece with wire arrangement are low.

[0004] In order to solve the above problems, the utility model provides a wire arrangement and management device, including a base, the base is provided with a carrier and a wire management assembly, the wire management assembly includes a toggle drive component and a lever arranged at the end of the toggle drive component, the carrier is located in the toggle area of the lever, and the lever is used to move the wires of the workpiece to be processed carried by the carrier.

[0005] Optionally, the extension direction of the lever is perpendicular to the driving direction of the toggle drive component, and the end of the lever facing the toggle drive component is fixedly connected to a first connecting arm extending upward, the top of the first connecting arm is connected to a second connecting arm extending toward the toggle drive component, and one of the end of the second connecting arm facing the toggle drive component and the driving end of the toggle drive component is provided with a first connecting hole, and the other is provided with a first waist-shaped hole extending in a direction perpendicular to the driving direction of the toggle drive component, and the first connecting hole and the first waist-shaped hole are detachably fixed by a first connecting member.

[0006] Optionally, the shift rod includes a first rod segment having one end connected to the bottom end of the first connecting arm and extending away from the shifting drive component, an end of the first rod segment away from the first connecting arm is fixedly connected to a second rod segment extending downward, and the bottom end of the second rod segment is fixedly connected to a third rod segment extending away from the shifting drive component.

[0007] Optionally, the vehicle includes a carrier base and a limiting mechanism. The carrier base is provided with a limiting groove. The limiting mechanism includes a first limiting buckle and a second limiting buckle located at opposite side edges of the limiting groove. Among them, the first limiting buckle is fixedly arranged on the carrier base, and the second limiting buckle is connected to the carrier base through an elastic member and can move towards or away from the first limiting buckle.

[0008] Optionally, the carrier base is provided with a guiding groove communicating with the limiting groove and a gland detachably covering the notch of the guiding groove; the second limiting buckle includes a guiding body and a buckling body. The guiding body is received in the guiding groove and slidably inserted into the guiding groove in a direction towards or away from the first limiting buckle. The buckling body is fixedly arranged on one side of the guiding body facing the limiting groove; the elastic member is received in the guiding groove and connected between the groove side wall of the guiding groove and the second limiting buckle.

[0009] Optionally, the guiding groove includes a first guiding section and a second guiding section along the direction towards the first limiting buckle. The groove width of the second guiding section is greater than that of the first guiding section, and an outwardly expanding groove body is formed on both sides of the first guiding section. A first stopping protrusion is provided at one end of the outwardly expanding groove body facing the first limiting buckle.

[0010] The guiding body includes a first guiding portion slidably inserted into the first guiding section and a second guiding portion slidably inserted into the second guiding section. The groove side wall of the outwardly expanding groove body facing the first limiting buckle is a first connecting wall, and one side wall of the second guiding portion facing the first connecting wall is a second connecting wall. One of the first connecting wall and the second connecting wall is provided with a plugging hole. One end of the elastic member is plugged into the plugging hole, and the other end abuts against the other of the first connecting wall and the second connecting wall.

[0011] Optionally, a second stopping protrusion is provided on the top of the guiding body. The second stopping protrusion is higher than the bottom surface of the gland. When the second stopping protrusion abuts against the gland in a direction away from the first limiting buckle, a stopping pressure gap exists between the first connecting wall and the second connecting wall.

[0012] Optionally, there are two first limiting buckles. The two first limiting buckles are arranged at intervals along the extending direction of the edge of the limiting groove, and a first avoiding groove penetrating through the limiting groove is provided on the carrier base between the two first limiting buckles; there are two buckling bodies of the second limiting buckle. A second avoiding groove is formed between the two buckling bodies, and the second avoiding groove is arranged opposite to the first avoiding groove.

[0013] The utility model also provides a processing equipment, including a processing device and the above-mentioned wire arranging and managing device, the base of the wire arranging and managing device is provided with a conveying component and a lifting component, the wire arranging and managing device has a plurality of carriers, the plurality of carriers are all carried by the conveying component and are arranged at intervals along the conveying direction of the conveying component, the conveying component is used to transport each of the carriers to a processing station; the lifting component is used to lift the carrier located at the processing station to reach the shifting area, and the processing device is used to process the workpiece to be processed located in the shifting area.

[0014] Optionally, the cable management assembly of the cable arrangement and management device includes a carrier frame, the carrier frame includes a carrier beam and two support beams, the carrier beam spans the conveying assembly, and both ends of the carrier beam are provided with second waist-shaped holes extending along the length direction of the carrier beam, the bottom ends of the two support beams are fixed to the base, and the top ends are connected to the two second waist-shaped holes one by one through second connecting members; the toggle drive component of the cable management assembly is arranged on the carrier beam.

[0015] The cable arrangement and management device provided by the utility model is applied to processing equipment. The cable management component can cooperate with the carrier to move the cables of the workpiece to be processed carried on the carrier to avoid the processing area of the workpiece to be processed, thereby reducing the obstruction of the processing area caused by the cables, and correspondingly reducing the obstruction and interference caused by the cables to the processing device when performing processing operations in the processing area of the workpiece to be processed, thereby ensuring the processing yield and efficiency of the processing device on the workpiece to be processed. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the specific implementation methods of the utility model or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0017] Figure 1 A schematic axial view of the cable arrangement and management device provided by an embodiment of the utility model when it is in a first form;

[0018] Figure 2 A schematic top view of the cable arrangement and management device provided by an embodiment of the utility model when it is in a first form;

[0019] Figure 3 A schematic axial view of the cable arrangement and management device provided by an embodiment of the utility model when it is in the second form;

[0020] Figure 4 for Figure 3 Schematic diagram of the medium carrier after removing the pressure cover.

[0021] Description of reference numerals:

[0022] 10-workpiece to be processed; 11-arrangement cable; 100-carrier; 110-carrier; 111-limiting groove; 112-guide groove; 112a-first guide section; 112b-second guide section; 112c-outward expansion groove body; 112d-first connecting wall; 113-pressure cover; 114-first stop convex; 100A-limiting mechanism; 120-first limiting buckle; 130-second limiting buckle; 131-guide body; 131a-first guide part; 131b-second guide part; 131c-second connecting wall; 131d-plug hole ;132- buckle body;133- second stop convex;134- second avoidance groove;140- elastic member;160- first avoidance groove;200- cable management assembly;210- toggle drive component;211- first connecting hole;220- toggle rod;221- first rod section;222- second rod section;223- third rod section;230- first connecting arm;240- second connecting arm;241- first waist-shaped hole;300- load frame;310- load beam;311- second waist-shaped hole;320- support beam;321- second connecting hole. DETAILED DESCRIPTION

[0023] The technical solution of the utility model will be described clearly and completely below in conjunction with the accompanying drawings. Obviously, the described embodiments are part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0024] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.

[0025] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installation", "connection" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0026] This embodiment provides a cable arrangement and management device, such as Figures 1 - 3 As shown, it includes a base, the base is provided with a carrier 100 and a cable management assembly 200, the cable management assembly 200 includes a toggle drive component 210 and a lever 220 arranged at the end of the toggle drive component 210, the carrier 100 is located in the toggle area of the lever 220, and the lever 220 is used to toggle the cable 11 of the workpiece 10 to be processed carried by the carrier 100.

[0027] The present embodiment also provides a processing equipment, including a processing device and the above-mentioned wire arranging and managing device. The base of the wire arranging and managing device is provided with a conveying component and a lifting component. The wire arranging and managing device has multiple carriers 100, and the multiple carriers 100 are all carried by the conveying component and arranged at intervals along the conveying direction of the conveying component. The conveying component is used to transport each carrier 100 to the processing station; the lifting component is used to lift the carrier 100 located at the processing station to reach the shifting area, and the processing device is used to process the workpiece 10 to be processed located in the shifting area.

[0028] The cable arrangement and processing equipment provided in this embodiment are used for processing a workpiece 10 to be processed with a cable arrangement 11, wherein the cable arrangement and processing equipment is used to move the cable arrangement 11 of the workpiece 10 to be processed to a position away from the processing area, so as to reduce the blocking interference caused by the cable arrangement 11 when the processing device performs processing operations in the processing area of the workpiece 10 to be processed. The specific use is as follows:

[0029] Initially, the top bearing surface of the conveying assembly overlaps and carries multiple carriers 100, and the multiple carriers 100 are arranged in sequence along the conveying direction, and the multiple carriers 100 all carry workpieces 10 to be processed, and the workpieces 10 to be processed have a processing area and are provided with a wiring arrangement 11; the jacking assembly and the wire management assembly 200 are both located at the processing station of the base, and the conveying path of the conveying assembly passes through the processing station, and the jacking assembly is located below the conveying assembly and is in a lowered and retracted state.

[0030] When in use, the conveying assembly conveys one of the workpieces 10 to be processed to the processing station and stops conveying, then the lifting end of the lifting assembly rises to press against the carrier 100 and carries the carrier 100 to move upward a predetermined distance, the carrier 100 is separated from the conveying assembly and rises to the moving area where the cable 11 can be moved by the lever 220, and then the lever 220 located on one side of the cable 11 is driven by the moving driving component 210 to move the cable 11 away from the processing area of the workpiece 10, and then the processing device performs processing operations such as assembly and gluing on the processing area of the workpiece 10; processing After the operation is completed, the driving component 210 is driven to drive the lever 220 to return to the initial position, and the lifting assembly carrying the carrier 100 is lowered to the initial position. The carrier 100 is overlapped with the conveying assembly. The lifting assembly is located below the conveying assembly and no longer interferes with the carrier 100. The conveying assembly conveys the processed workpiece to leave the processing station and move to the next station, and at the same time conveys the next workpiece 10 to be processed to the processing station, and continues to lift, move the wiring 11, process and return to the original position of the workpiece 10 to be processed, and repeats this process to achieve continuous processing operations on multiple workpieces 10 to be processed.

[0031] The cable arrangement and management device provided in this embodiment is applied to processing equipment, and the cable management component 200 can cooperate with the carrier 100 to move the cables 11 of the workpiece 10 to be processed carried on the carrier 100 to avoid the processing area of the workpiece 10 to be processed, thereby reducing the obstruction of the processing area caused by the cables 11, and correspondingly reducing the obstruction and interference caused by the cables 11 to the processing device when performing processing operations in the processing area of the workpiece 10 to be processed, thereby ensuring the processing yield and efficiency of the processing device on the workpiece 10 to be processed.

[0032] At the same time, the processing equipment provided in this embodiment adopts the above-mentioned wire arranging and managing device. In addition to having all the beneficial effects of the wire arranging and managing device, it can realize continuous processing of the workpiece to be processed through the coordinated use of the conveying component and the jacking component with the carrier 100 and the wire managing component 200, thereby further improving the processing efficiency of the workpiece 10 to be processed.

[0033] Specifically, the processing device, conveying component, lifting component and toggle drive component 210 are all communicatively connected to the control component of the processing equipment. The control component can control the start, stop and operation of the above-mentioned devices, components and parts according to the feedback signal, so as to achieve their coordination and complete the processing of the workpiece 10 with high precision and efficiency.

[0034] Specifically, in this embodiment, Figure 2 and Figure 3As shown, the extension direction of the lever 220 is perpendicular to the driving direction of the toggle drive component 210, and the end of the lever 220 facing the toggle drive component 210 is fixedly connected with a first connecting arm 230 extending upward, and the top of the first connecting arm 230 is connected with a second connecting arm 240 extending toward the toggle drive component 210, and one of the end of the second connecting arm 240 facing the toggle drive component 210 and the driving end of the toggle drive component 210 is provided with a first connecting hole 211, and the other is provided with a first waist-shaped hole 241 extending in a direction perpendicular to the driving direction of the toggle drive component 210, and the first connecting hole 211 and the first waist-shaped hole 241 are detachably fixed by a first connecting member.

[0035] The extension direction of the lever 220 is defined as the first direction, and the shifting direction of the shifting driving component 210 is defined as the second direction. The first direction and the second direction are vertically arranged. When in use, the shifting driving component 210 drives the lever 220 to sweep the shifting area along the second direction, thereby shifting the cable 11 away from the processing area. Exemplarily, the first direction is consistent with the conveying direction of the conveying component, and the second direction is consistent with the width direction of the conveying component.

[0036] Among them, one end of the lever 220 is connected to the top of the toggle driving component 210 through the first connecting arm 230 and the second connecting arm 240 in the shape of an angle. The first connecting arm 230 and the lever 220 extend along the first direction. On the basis of ensuring that the lever 220 is located in the area where the cable 11 is located and can toggle the cable 11, the second connecting arm 240 and the carrier 100 are spaced relatively large in the height direction, thereby reducing the interference between the area where the first connecting arm 230 is located and the carrier 100 and the workpiece 10 to be processed, thereby ensuring the processing operation of the processing device in the processing area and improving the application range of the cable management device.

[0037] In addition, the toggle drive component 210 is connected to the second connecting arm 240 through the first connecting hole 211, the first waist-shaped hole 241 and the first connecting piece. During installation, the corresponding positions of the first connecting hole 211 and the first waist-shaped hole 241 can be adjusted according to the distance between the toggle drive component 210 and the area where the cable 11 is located, and then the first connecting piece such as bolts and nuts are used to connect and fix the first connecting hole 211 and the first waist-shaped hole 241, so as to adjust the position of the toggle rod 220 along the first direction, ensure the effective toggle of the cable 11 by the toggle rod 220, correspondingly increase the toggle range of the toggle rod 220, and further improve the application range of the cable management device.

[0038] Optionally, in this embodiment, if Figure 3As shown, the lever 220 includes a first rod section 221, one end of which is connected to the bottom end of the first connecting arm 230 and extends away from the toggle driving component 210. The first rod section 221 is fixedly connected to the end away from the first connecting arm 230 with a second rod section 222 extending downward. The bottom end of the second rod section 222 is fixedly connected to a third rod section 223 extending away from the toggle driving component 210. The third rod section 223, as an effective toggle rod section, can ensure the toggle operation of the cable 11 when in use. When in use, the lever 220 with the corresponding third rod section 223 can be selected according to the specific form of the cable 11, thereby improving the applicability of the cable management assembly 200 and the cable management device; at the same time, the first rod section 221 and the workpiece 10 to be processed have a large distance in the height direction to reduce the interference caused by the area where the first rod section 221 is located and the workpiece 10 to be processed and the processing device.

[0039] In this embodiment, Figures 1 - 3 As shown, the cable management component 200 of the cable management device can be specifically in the following form: the cable management component 200 includes a carrier frame 300, the carrier frame 300 includes a carrier beam 310 and two support beams 320, the carrier beam 310 spans the conveying component, and the two ends of the carrier beam 310 are provided with second waist-shaped holes 311 extending along the length direction of the carrier beam 310, the bottom ends of the two support beams 320 are fixed to the base, and the top ends are connected to the two second waist-shaped holes 311 one by one through second connecting members; the toggle drive component 210 of the cable management component 200 is provided on the carrier beam 310.

[0040] The carrier beam 310 and the second waist-shaped hole 311 thereon both extend along the width direction of the conveying component, and the top ends of the two support beams 320 are each provided with a second connecting hole 321. During installation, the installation positions of the two support beams 320 can be adjusted according to the width of the conveying component, and the second connecting hole 321 at the top end of the support beam 320 corresponds to the corresponding position of the second waist-shaped hole 311 at the corresponding end of the carrier beam 310, and then the second connecting hole 321 and the second waist-shaped hole 311 are connected and fixed using a second connecting member such as a bolt or a nut, so that the width of the carrier frame 300 is adjustable and can be adapted to conveying components of different widths, thereby correspondingly improving the applicability of the cable management component 200.

[0041] When in use, the carrying beam 310 carries the toggle drive assembly above the conveying assembly to ensure that the conveying assembly conveys the carrier 100 and the workpiece 10 to be processed, and realizes the toggle drive assembly drives the toggle lever 220 to toggle the cable 11. Specifically, the toggle drive assembly can use a telescopic drive component, such as a telescopic cylinder, a push rod motor, etc.

[0042] In this embodiment, Figures 1 - 4As shown in the figure, the vehicle 100 may specifically adopt the following form: The vehicle 100 includes a carrier 110 and a limiting mechanism 100A. The carrier 110 is provided with a limiting groove 111 for placing the workpiece 10 to be processed. The limiting mechanism 100A includes a first limiting buckle 120 and a second limiting buckle 130 located on opposite side edges of the limiting groove 111. Among them, the first limiting buckle 120 is fixed to the carrier 110, and the second limiting buckle 130 is connected to the carrier 110 through an elastic member 140 and can move towards or away from the first limiting buckle 120. The shape of the limiting groove 111 is similar to that of the workpiece 10 to be processed, and the size is larger than that of the workpiece 10 to be processed. The limiting end of the first limiting buckle 120 facing the limiting groove 111 extends into the limiting groove 111. When the elastic member 140 is in a free state, the limiting end of the second limiting buckle 130 facing the limiting groove 111 extends into the limiting groove 111, and the distance between the limiting ends of the first limiting buckle 120 and the second limiting buckle 130 is smaller than the width of the workpiece 10 in the corresponding direction. When installing the workpiece 10 to be processed, first, the side of the workpiece 10 to be processed facing the second limiting buckle 130 is abutted against the limiting end of the second limiting buckle 130, and then the second limiting buckle 130 is squeezed towards the direction where the second limiting buckle 130 is located, and the side of the workpiece 10 to be processed facing the first limiting buckle 120 is placed in the limiting groove 111. Subsequently, the workpiece 10 to be processed is abutted against the limiting end of the first limiting buckle 120, and the elastic member 140 pushes the second limiting buckle 130 to tightly press against the workpiece 10, and the workpiece 10 is clamped on both opposite sides by the first limiting buckle 120 and the second limiting buckle 130, so as to realize the clamping and fixing of the workpiece 10 to be processed, improve the stability of the workpiece 10 to be processed carried on the vehicle 100, and reduce the occurrence of the situation that the workpiece 10 to be processed deviates or even falls off during the conveying process or the processing process.

[0043] Optionally, in this embodiment, as Figure 3 and Figure 4 shown, the carrier 110 is provided with a guiding groove 112 communicating with the limiting groove 111 and a gland 113 detachably covering the notch of the guiding groove 112; the second limiting buckle 130 includes a guiding body 131 and a buckling body 132. The guiding body 131 is accommodated in the guiding groove 112 and is slidably inserted into the guiding groove 112 in the direction towards or away from the first limiting buckle 120, and the buckling body 132 is fixed to the side of the guiding body 131 facing the limiting groove 111; the elastic member 140 is accommodated in the guiding groove 112 and is connected between the groove side wall of the guiding groove 112 and the second limiting buckle 130.

[0044] On the one hand, the guiding groove 112 is open, which is highly convenient for processing. Moreover, the second limiting buckle 130 can be inserted into the guiding groove 112 from top to bottom, with high installation convenience, thus improving the assembly convenience of the carrier 100. After the second limiting buckle 130 is inserted into the guiding groove 112, the gland 113 is used to cover the guiding groove 112, thereby restricting the guiding body 131 within the guiding groove 112, enabling the guiding body 131 to move only in the direction towards or away from the first limiting buckle 120, ensuring the connection and guiding effect of the guiding groove 112 on the guiding body 131. The buckle body 132 extending out of the guiding groove 112 can stably press and limit the workpiece 10 to be processed along the guiding direction. On the other hand, the elastic member 140 and the second limiting buckle 130 are both accommodated in the guiding groove 112 and partially blocked by the gland 113, thereby improving the overall appearance neatness of the carrier 100.

[0045] Specifically, in this embodiment, as Figure 3 and Figure 4 shown, the guiding groove 112 includes a first guiding section 112a and a second guiding section 112b along the direction towards the first limiting buckle 120. The groove width of the second guiding section 112b is larger than that of the first guiding section 112a, and outer expansion groove bodies 112c are formed on both sides of the first guiding section 112a. A first stop protrusion 114 is provided at one end of the outer expansion groove body 112c facing the first limiting buckle 120. The guiding body 131 includes a first guiding portion 131a slidably inserted into the first guiding section 112a and a second guiding portion 131b slidably inserted into the second guiding section 112b. The groove side wall of the outer expansion groove body 112c facing the first limiting buckle 120 is the first connecting wall 112d, and one side wall of the second guiding portion 131b facing the first connecting wall 112d is the second connecting wall 131c. One of the first connecting wall 112d and the second connecting wall 131c is provided with a plug hole 131d. One end of the elastic member 140 is inserted into the plug hole 131d, and the other end abuts against the other of the first connecting wall 112d and the second connecting wall 131c.

[0046] When the guiding body 131 slides guidingly within the guiding groove 112, the first guiding section 112a can guide the first guiding portion 131a. At the same time, the second guiding section 112b can guide the second guiding portion 131b, thereby improving the guiding accuracy and stability of the guiding groove 112 for the guiding body 131, and correspondingly ensuring the stable clamping and fixing of the clamping body 132 of the second limiting buckle 130 and the clamping body 132 of the first limiting buckle 120 for the workpiece 10 to be processed; at the same time, one end of the elastic member 140 is inserted through the insertion hole 131d into the first connecting arm 230 of the outwardly expanding groove body 112c or the second connecting wall 131c of the second guiding portion 131b, thereby realizing a stable elastic restoring effect on the second guiding portion 131b and ensuring the pressing and limiting stability of the second limiting buckle 130 for the workpiece 10 to be processed; and during use, the elastic member 140 and the first connecting wall 112d can act with the second connecting wall 131c to realize the limiting of the movement stroke of the second guiding portion 131b in the direction away from the first limiting buckle 120. Similarly, the first stop protrusion 114 can act with the second guiding portion 131b to realize the limiting of the movement stroke of the second guiding portion 131b in the direction towards the first limiting buckle 120, thereby effectively reducing the occurrence of the situation where the guiding body 131 moves away from or towards the first limiting buckle 120 and disengages from the guiding groove 112.

[0047] In this embodiment, as Figure 3 shown, a second stop protrusion 133 is provided on the top of the guiding body 131. The second stop protrusion 133 is higher than the bottom surface of the gland 113, and when the second stop protrusion 133 abuts against the gland 113 in the direction away from the first limiting buckle 120, there is a stop pressure gap between the first connecting wall 112d and the second connecting wall 131c. The second stop protrusion 133 is located on the side of the gland 113 close to the first limiting buckle 120, and when the workpiece 10 to be processed is not installed, the elastic member 140 pushes the second guiding portion 131b to abut against the first stop protrusion 114. At this time, there is an activity gap between the second stop protrusion 133 and the gland 113 for the guiding body 131 to slide along the guiding groove 112 away from the first limiting buckle 120. During the process of installing the workpiece 10 to be processed, the workpiece 10 to be processed squeezes the guiding body 131 to move away from the first limiting buckle 120, and the second stop protrusion 133 moves synchronously with the guiding body 131. When the second stop protrusion 133 abuts against the gland 113, the movement stroke of the guiding body 131 away from the first limiting buckle 120 reaches the maximum stroke. At this time, there is a stop pressure gap between the first connecting wall 112d and the second connecting wall 131c to reduce the occurrence of the situation where the elastic member 140 is damaged due to excessive compression, thereby ensuring the normal use of the elastic member 140 and the cable management assembly 200.

[0048] In this embodiment, as Figure 3 and Figure 4As shown, there are two first limit buckles 120, and the two first limit buckles 120 are arranged at intervals along the extension direction of the edge of the limit groove 111, and the carrier 110 is provided with a first avoidance groove 160 that passes through the limit groove 111 between the two first limit buckles 120; there are two buckle bodies 132 of the second limit buckle 130, and a second avoidance groove 134 is formed between the two buckle bodies 132, and the second avoidance groove 134 is arranged opposite to the first avoidance groove 160. On the one hand, the two buckle bodies 132 of the two first limit buckles 120 and the second limit buckles 130 can press and limit different positions of the workpiece 10 on the opposite sides, thereby improving the stability and firmness of the carrier 100 in carrying the workpiece 10; on the other hand, the first avoidance groove 160 and the second avoidance groove 134 are arranged relative to each other, which can reduce the interference between the picking and placing components and the carrier 100 when installing or removing the workpiece 10, thereby improving the applicability of the carrier 100 and the convenience of picking and placing the workpiece 10.

[0049] Optionally, in this embodiment, if Figures 1 - 4 As shown, there are two groups of limiting mechanisms 100A, one of which is arranged at the edge areas at both ends of the limiting groove 111 in the width direction, and the other is arranged at the edge areas at both ends of the limiting groove 111 in the length direction. When the workpiece 10 to be processed is carried on the carrier 100, the two groups of limiting mechanisms 100A can press and limit the four sides of the workpiece 10 to be processed, thereby further improving the stability of the workpiece 10 to be processed on the carrier 100, ensuring the effectiveness of the subsequent movement of the cable 11 and the accuracy of processing, and correspondingly improving the processing efficiency and yield of the processing equipment.

[0050] In this embodiment, Figure 1 and Figure 2 As shown, the carrier 100 may include two carriers 110 arranged in parallel, each carrier 110 is provided with a limiting groove 111 and a limiting mechanism 100A, and accordingly, there are two wire management assemblies 200, and the two wire management assemblies 200 are arranged at intervals and correspond one to one to the two carriers 110; when in use, the two wire management assemblies 200 can simultaneously arrange the wires 11 and move the workpieces 10 to be processed carried by the corresponding carriers 110, and the processing device can then process the two workpieces 10 to be processed at the same time, thereby further improving the processing efficiency of the processing equipment.

[0051] Finally, it should be noted that the above embodiments are only used to illustrate the technical solution of the utility model, rather than to limit it. Although the utility model has been described in detail with reference to the aforementioned embodiments, ordinary technicians in the field should understand that they can still modify the technical solutions recorded in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. However, these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the utility model.

Claims

1. A wire arranging device for flexible printed circuits, characterized in that, The invention comprises a base, wherein the base is provided with a carrier (100) and a cable management component (200), wherein the cable management component (200) comprises a toggle drive component (210) and a lever (220) arranged at the end of the toggle drive component (210), wherein the carrier (100) is located in a toggle area of the lever (220), and the lever (220) is used to toggle a cable (11) of a workpiece (10) to be processed and carried on the carrier (100).

2. The wire arranging device for flexible flat cables according to claim 1, wherein The extension direction of the shifting rod (220) is perpendicular to the driving direction of the toggle driving component (210), and one end of the shifting rod (220) facing the toggle driving component (210) is fixedly connected with a first connecting arm (230) extending upward, and the top end of the first connecting arm (230) is connected with a second connecting arm (240) extending toward the toggle driving component (210), and one of the end of the second connecting arm (240) facing the toggle driving component (210) and the driving end of the toggle driving component (210) is provided with a first connecting hole (211), and the other is provided with a first waist-shaped hole (241) extending in a direction perpendicular to the driving direction of the toggle driving component (210), and the first connecting hole (211) and the first waist-shaped hole (241) are detachably fixedly connected via a first connecting member.

3. The wire arranging device for the flexible flat cable according to claim 2, characterized in that, The shifting rod (220) comprises a first rod section (221) having one end connected to the bottom end of the first connecting arm (230) and extending away from the shifting driving component (210); an end of the first rod section (221) away from the first connecting arm (230) is fixedly connected to a second rod section (222) extending downward; and a bottom end of the second rod section (222) is fixedly connected to a third rod section (223) extending away from the shifting driving component (210).

4. The wire arranging device for flexible flat cables according to any one of claims 1-3, characterized in that, The carrier (100) comprises a carrier (110) and a limiting mechanism (100A), wherein the carrier (110) is provided with a limiting groove (111), and the limiting mechanism (100A) comprises a first limiting buckle (120) and a second limiting buckle (130) located at two opposite side edges of the limiting groove (111), wherein the first limiting buckle (120) is fixed to the carrier (110), and the second limiting buckle (130) is connected to the carrier (110) via an elastic member (140) and can move toward or away from the first limiting buckle (120).

5. The wire arranging device for flexible printed circuit according to claim 4, wherein The carrier base (110) is provided with a guiding groove (112) communicating with the limiting groove (111) and a gland (113) detachably covering the notch of the guiding groove (112); the second limiting buckle (130) includes a guiding body (131) and a buckling body (132), the guiding body (131) is received in the guiding groove (112) and slidably inserted into the guiding groove (112) in a direction towards or away from the first limiting buckle (120), and the buckling body (132) is fixedly arranged on one side of the guiding body (131) facing the limiting groove (111); the elastic member (140) is received in the guiding groove (112) and connected between the groove side wall of the guiding groove (112) and the second limiting buckle (130).

6. The wire arranging device for flexible flat cables according to claim 5, wherein, The guiding groove (112) includes a first guiding section (112a) and a second guiding section (112b) in a direction towards the first limiting buckle (120), the groove width of the second guiding section (112b) is greater than that of the first guiding section (112a), and outer expansion groove bodies (112c) are formed on both sides of the first guiding section (112a), and a first stopping convex (114) is arranged at one end of the outer expansion groove body (112c) facing the first limiting buckle (120). The guiding body (131) includes a first guiding portion (131a) slidably inserted into the first guiding section (112a) and a second guiding portion (131b) slidably inserted into the second guiding section (112b), the groove side wall of the outer expansion groove body (112c) facing the first limiting buckle (120) is a first connecting wall (112d), one side wall of the second guiding portion (131b) facing the first connecting wall (112d) is a second connecting wall (131c), one of the first connecting wall (112d) and the second connecting wall (131c) is provided with a plugging hole (131d), one end of the elastic member (140) is plugged into the plugging hole (131d), and the other end abuts against the other one of the first connecting wall (112d) and the second connecting wall (131c).

7. The wire arranging device for flexible flat cables according to claim 6, wherein, A second stopping convex (133) is arranged at the top of the guiding body (131), the second stopping convex (133) is higher than the bottom surface of the gland (113), and when the second stopping convex (133) abuts against the gland (113) in a direction away from the first limiting buckle (120), a stopping pressure gap exists between the first connecting wall (112d) and the second connecting wall (131c).

8. The wire arranging device for flexible flat cables according to claim 5, characterized in that, There are two first limiting buckles (120), and the two first limiting buckles (120) are arranged at intervals along the extension direction of the edge of the limiting groove (111), and the carrier (110) is provided with a first avoidance groove (160) penetrating the limiting groove (111) between the two first limiting buckles (120); there are two buckle bodies (132) of the second limiting buckle (130), and a second avoidance groove (134) is formed between the two buckle bodies (132), and the second avoidance groove (134) is arranged opposite to the first avoidance groove (160).

9. A processing device, characterized in that, It comprises a processing device and the wire arrangement and management device as claimed in any one of claims 1 to 8, wherein the base of the wire arrangement and management device is provided with a conveying component and a lifting component, the wire arrangement and management device has a plurality of carriers (100), the plurality of carriers (100) are all carried on the conveying component and are arranged at intervals along the conveying direction of the conveying component, the conveying component is used to transport each of the carriers (100) to a processing station; the lifting component is used to lift the carrier (100) located at the processing station to reach a shifting area, and the processing device is used to process the workpiece (10) to be processed located in the shifting area.

10. The processing equipment according to claim 9, characterized in that, The cable management component (200) of the cable arrangement and management device comprises a carrier frame (300), wherein the carrier frame (300) comprises a carrier beam (310) and two support beams (320), wherein the carrier beam (310) spans across the conveying component, and both ends of the carrier beam (310) are provided with second waist-shaped holes (311) extending along the length direction of the carrier beam (310), and the bottom ends of the two support beams (320) are fixed to the base, and the top ends are connected to the two second waist-shaped holes (311) one by one through second connecting members; the toggle drive component (210) of the cable management component (200) is provided on the carrier beam (310).