Clip type rapid insertion piece feeding device
By designing a clip-type insert rapid feeding device, the inserts are pushed out one by one using a drive component and a locking slot, which solves the problem of low insert feeding efficiency in the existing technology and realizes orderly and accurate insert feeding.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2026-03-13
AI Technical Summary
In existing insert feeding methods, manual feeding is inefficient, while automatic feeding cannot achieve orderly, one-by-one feeding of inserts.
Design a clip-type insert rapid feeding device. Utilize a belt conveyor and feeding mechanism. Drive the push plate and square plate to move back and forth through the drive component. Use the locking groove to push out the open insert one by one and deliver it to the designated position by the belt conveyor.
This enables orderly, sequential feeding of inserts, improving feeding efficiency and ensuring that inserts are accurately delivered to their designated positions.
Smart Images

Figure CN223990551U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of insert processing technology, specifically a clip-type insert rapid feeding device. Background Technology
[0002] An open insert is typically a sheet-like component with a specific shape and function. In the mechanical field, open inserts serve as positioning or limiting devices. For example, in the assembly of some mechanical parts, it is a thin sheet of metal with an opening that mates with protrusions or grooves of other parts to achieve accurate installation and positioning between parts, limit the range of movement of parts, and ensure the stability and accuracy of the mechanical structure. In the electronics field, such as in the assembly of electronic devices, an open insert may be a connecting or fixing element, its shape possibly resembling a rectangular or circular sheet with one or more openings. In industrial production processes, it is necessary to transport insert-type materials to specific processing or assembly positions.
[0003] Based on the above, the inventors have discovered the following problems: Current insert feeding methods include manual feeding and automatic feeding. Manual feeding refers to workers manually placing inserts into the conveying device or directly sending them to the feeding position of the processing equipment, while automatic feeding uses a linear vibrator to transport inserts to a designated position. Manual feeding is slow, resulting in low feeding efficiency, while using a linear vibrator to transport inserts cannot achieve orderly feeding of inserts one by one.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and provided a clip-type insert rapid feeding device in order to achieve a more practical value. Utility Model Content
[0005] The purpose of this invention is to provide a clip-type insert rapid feeding device to solve the problems mentioned in the background art.
[0006] In view of the above problems, the technical solution proposed by this utility model is as follows:
[0007] A clip-on type insert rapid feeding device includes a belt conveyor and a feeding mechanism. The feeding mechanism includes a first placement platform, a storage seat is installed on one side of the top surface of the first placement platform, the storage seat has a plurality of open inserts inside, and a square groove is opened inside the bottom end of the storage seat. A push plate is installed inside the square groove, and a locking groove is opened inside the push plate. A square plate is installed on the outer side wall of the push plate. A second placement platform is installed on the outer side wall of the first placement platform. Sliding grooves are opened on both sides of the upper end surface of the first placement platform. Sliding seats are slidably connected inside the two sliding grooves. The upper ends of the two sliding seats are fixedly connected to the bottom end of the push plate. An installation groove is opened inside the second placement platform. The belt conveyor is disposed on one side of the second placement platform, and one end of the belt conveyor extends into the interior of the installation groove.
[0008] Furthermore, one of the opening inserts is located inside the engaging groove, the outer wall of the opening insert is in clearance fit with the inner wall of the engaging groove, the outer wall of the push plate is in clearance fit with the inner wall of the square groove, and the thickness of the push plate, the square plate and the opening insert are the same.
[0009] The beneficial effect of adopting the above-mentioned further solution is that, since one of the open inserts is located inside the locking groove, and the outer wall of the open insert is in clearance fit with the inner wall of the locking groove, when the push plate moves towards the second placement platform to move it out of the square groove, the push plate pushes one of the open inserts out of the storage seat under the action of the locking groove, so that the open insert in the locking groove contacts the top surface of the belt conveyor in the installation groove of the second placement platform. At the same time, the square plate will be located inside the square groove. The square plate is solid. At this time, the top surface of the square plate is in contact with the bottom end of the open insert at the bottom of the storage seat.
[0010] Furthermore, the first placement platform has an internal cavity, and a drive assembly is provided inside the cavity. The drive assembly includes a pair of reciprocating lead screws. One end of each pair of reciprocating lead screws is connected to the inner wall of the cavity via a bearing. The ends of each pair of reciprocating lead screws away from the inner wall of the cavity pass through the first placement platform and extend into the interior of two slides respectively. The ends of each pair of reciprocating lead screws away from the inner wall of the cavity pass through two slides respectively and extend to the outside, and are connected to the inner wall of the slides via bearings. The pair of reciprocating lead screws are threadedly connected to the two slides respectively.
[0011] The beneficial effect of adopting the above-mentioned further solution is that by setting two reciprocating screws, when the two reciprocating screws rotate, the slide block connected to its external thread is facilitated to move in a reciprocating linear motion under the sliding limit action with the slide groove. Since the upper end of the slide block is fixed to the bottom end of the push plate, the push plate and the square plate are driven to move reciprocally.
[0012] Furthermore, the interior of the first placement platform is rotatably connected to a transmission rod located directly below a pair of reciprocating lead screws. Synchronous pulleys are fitted around the outside of both the two reciprocating lead screws and the two transmission rods, and a synchronous belt is wound between a pair of synchronous pulleys on the same side.
[0013] The beneficial effect of adopting the above-mentioned further solution is that, by setting two transmission rods, when the two transmission rods rotate, the rotation of the two reciprocating lead screws will be realized under the transmission action of the synchronous pulley and the synchronous belt.
[0014] Furthermore, the first placement platform is equipped with a worm gear inside, and the two ends of the worm gear are respectively connected to the inner wall of the first placement platform through bearings. Both of the two transmission rods are fitted with worm wheels, and the worm gear meshes with the two worm wheels.
[0015] The beneficial effect of adopting the above-mentioned further solution is that, through the cooperative use of the worm and worm wheel, when the worm rotates, it is easy to drive the two worm wheels to rotate, thereby realizing the rotation of the two transmission rods.
[0016] Furthermore, a motor is mounted on the back of the first placement platform, and the output end of the motor is connected to the worm gear for transmission.
[0017] The beneficial effect of adopting the above-mentioned further solution is that by installing a motor, it is easy to drive the worm gear to rotate when the motor is started.
[0018] Furthermore, observation slots are provided on both the front and back of the storage base.
[0019] The advantage of adopting the above-mentioned further solution is that by opening observation slots on the front and back of the storage seat, it is convenient to observe the number of open inserts inside the storage seat.
[0020] Furthermore, the top surface of the belt conveyor is flush with the top surfaces of the first and second placement platforms. The advantage of this further solution is that, since the top surface of the belt conveyor is flush with the top surfaces of the first and second placement platforms, when the push plate moves forward, it pushes one of the open inserts out of the storage seat, causing the open insert in the engaging groove to contact the top surface of the belt conveyor in the mounting groove of the second placement platform. Then, the belt conveyor is started to transport the open insert.
[0021] Compared with the prior art, the beneficial effects of this utility model are as follows: This clip-type insert quick feeding device starts the motor, which drives the worm gear to rotate, thereby driving the two worm wheels to rotate, and then realizing the rotation of the two transmission rods. Under the transmission action of the synchronous pulley and synchronous belt, the two reciprocating screws are rotated. When the two reciprocating screws rotate, the externally threaded slide block is made to move in a reciprocating linear motion under the sliding limit action of the slide groove. Since the upper end of the slide block is fixed to the bottom end of the push plate, the push plate and the square plate are driven to move reciprocally. The storage seat stores several open inserts. The push plate moves in the square groove. When the push plate and the square plate move reciprocally, the engaging groove is used so that the push plate brings out an open insert each time it moves out of the square groove, realizing the orderly and sequential feeding of open inserts. The first placement platform and the second placement platform are set adjacent to each other. The belt conveyor extends into the mounting groove of the second placement platform, which makes it easy for the push plate to push out the open inserts and accurately send them to the belt conveyor. Attached Figure Description
[0022] Figure 1 A three-dimensional structural diagram of a clip-type insert rapid feeding device provided by this utility model;
[0023] Figure 2 A three-dimensional structural diagram of the feeding mechanism of a clip-type insert rapid feeding device provided by this utility model;
[0024] Figure 3 Exploded three-dimensional structural diagram of the feeding mechanism of the clip-type insert rapid feeding device provided by this utility model. Figure 1 ;
[0025] Figure 4 Exploded three-dimensional structural diagram of the feeding mechanism of the clip-type insert rapid feeding device provided by this utility model. Figure 2 ;
[0026] Figure 5 A side cross-sectional view of the first placement platform of a clip-type insert rapid feeding device provided by this utility model.
[0027] In the diagram: 100, belt conveyor; 200, feeding mechanism; 2001, first placement platform; 2002, storage seat; 2003, open insert; 2004, push plate; 2005, locking groove; 2006, square plate; 2007, second placement platform; 2008, chute; 2009, slide block; 2010, observation slot; 2011, mounting slot; 300, drive assembly; 3001, reciprocating screw; 3002, transmission rod; 3003, synchronous pulley; 3004, synchronous belt; 3005, worm gear; 3006, worm; 400, motor. Detailed Implementation
[0028] 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.
[0029] Please see Figures 1-5 This utility model provides a technical solution: a rapid feeding device for clip-type inserts, including a belt conveyor 100 and a feeding mechanism 200. The feeding mechanism 200 includes a first placement platform 2001, a storage seat 2002 installed on one side of the top surface of the first placement platform 2001, a plurality of open inserts 2003 inside the storage seat 2002, and a square groove opened inside the bottom end of the storage seat 2002. A push plate 2004 is provided inside the square groove, and a locking groove 2005 is opened inside the push plate 2004. A square plate 2006 is installed on the outer side wall of the push plate 2004. A second placement platform 2007 is installed on the outer side wall of the first placement platform 2001. Sliding grooves 2008 are opened on both sides of the upper end surface of the first placement platform 2001. Sliding seats 2009 are slidably connected inside the two sliding grooves 2008. The upper ends of the two sliding seats 2009 are connected to the push plate 200. The bottom end of 4 is fixedly connected. The interior of the second placement platform 2007 is provided with an installation groove 2011. The belt conveyor 100 is set on one side of the second placement platform 2007, and one end of the belt conveyor 100 extends into the interior of the installation groove 2011. The storage seat 2002 stores several open inserts 2003. The push plate 2004 moves in the square groove. When the push plate 2004 and the square plate 2006 move back and forth, the engaging groove 2005 is used to make the push plate 2004 bring out an open insert 2003 each time it moves out of the square groove, so as to realize the orderly and sequential feeding of the open inserts 2003. The first placement platform 2001 and the second placement platform 2007 are arranged adjacent to each other. The belt conveyor 100 extends into the installation groove 2011 of the second placement platform 2007, so that the push plate 2004 can push out the open inserts 2003 and accurately send them to the belt conveyor 100.
[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] Please see Figures 1-5This utility model provides a technical solution: one of the open inserts 2003 is located inside the engaging groove 2005, the outer wall of the open insert 2003 is in clearance fit with the inner wall of the engaging groove 2005, the outer wall of the push plate 2004 is in clearance fit with the inner wall of the square groove, the thickness of the push plate 2004, the square plate 2006 and the open insert 2003 are the same, the first placement platform 2001 has a cavity inside, and a drive assembly 300 is provided inside the cavity. The drive assembly 300 includes a pair of reciprocating lead screws 3 001, one end of each pair of reciprocating lead screws 3001 is connected to the inner wall of the cavity via bearings. The ends of each pair of reciprocating lead screws 3001 away from the inner wall of the cavity pass through the first placement platform 2001 and extend into the interior of the two slide grooves 2008. The ends of each pair of reciprocating lead screws 3001 away from the inner wall of the cavity pass through the two slide blocks 2009 and extend to the outside, and are connected to the inner wall of the slide grooves 2008 via bearings. The two reciprocating lead screws 3001 are screwed between themselves and the two slide blocks 2009. The threaded connection is achieved because one of the open inserts 2003 is located inside the engaging groove 2005, and the outer wall of the open insert 2003 is clearance-fitted with the inner wall of the engaging groove 2005. When the two reciprocating screws 3001 rotate, the slide block 2009, which facilitates its external threaded connection, moves reciprocally under the sliding limit action of the slide groove 2008, causing the slide block 2009 to drive the push plate 2004 and the square plate 2006 to move reciprocally. When the push plate 2004 moves towards the second placement platform 2007, it moves from the square plate 2006... As the groove moves out, the push plate 2004, under the action of the engaging groove 2005, pushes one of the open inserts 2003 out of the storage seat 2002, so that the open insert 2003 in the engaging groove 2005 contacts the top surface of the belt conveyor 100 in the mounting groove 2011 of the second placement platform 2007. At the same time, the square plate 2006 will be located inside the square groove. The square plate 2006 is solid. At this time, the top surface of the square plate 2006 is in contact with the bottom end of the open insert 2003 at the bottom of the storage seat 2002.
[0032] 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.
[0033] Please see Figures 1-5This utility model provides a technical solution: Inside the first placement platform 2001, directly below a pair of reciprocating lead screws 3001, are rotatably connected transmission rods 3002. Synchronous pulleys 3003 are fitted around the outside of both the two reciprocating lead screws 3001 and the two transmission rods 3002. A synchronous belt 3004 is wound between a pair of synchronous pulleys 3003 on the same side. Inside the first placement platform 2001, a worm gear 3006 is provided. The two ends of the worm gear 3006 are respectively connected to the inner wall of the first placement platform 2001 via bearings. Worm wheels 3005 are fitted around the outside of both transmission rods 3002. The worm gear 3006 meshes with the two worm wheels 3005. The first placement platform 2001… A motor 400 is installed on the back of the storage base 2002. The output end of the motor 400 is connected to the worm gear 3006. Observation slots 2010 are provided on both the front and back of the storage base 2002. The top surface of the belt conveyor 100 is flush with the top surfaces of the first placement platform 2001 and the second placement platform 2007. Starting the motor 400 facilitates the rotation of the worm gear 3006, which in turn drives the two worm wheels 3005 to rotate, thereby realizing the rotation of the two transmission rods 3002. Under the transmission action of the synchronous pulley 3003 and the synchronous belt 3004, the two reciprocating screws 3001 are rotated. By opening the observation slots 2010, the number of open inserts 2003 inside the storage base 2002 can be observed.
[0034] Specifically, the working principle of this type of clip-on insert rapid feeding device is as follows: When in use, the motor 400 is started, which drives the worm gear 3006 to rotate, thereby rotating the two worm wheels 3005, which in turn rotates the two transmission rods 3002. Under the transmission action of the synchronous pulley 3003 and the synchronous belt 3004, the two reciprocating screws 3001 rotate. This allows the externally threaded slide block 2009 to move reciprocally under the sliding limit action of the slide groove 2008, causing the slide block 2009 to drive the push plate 2004 and the square plate 2006 to move reciprocally. When the push plate 2004 and the square plate 2006 move reciprocally, the engaging groove 2005 ensures that the push plate 2004 moves reciprocally each time. When moving out of the square groove, each piece brings out an open insert 2003. At the same time, the square plate 2006 will be located inside the square groove. The square plate 2006 is solid. At this time, the top surface of the square plate 2006 is in contact with the bottom end of the open insert 2003 at the bottom of the storage seat 2002, so as to realize the orderly and sequential feeding of the open insert 2003. The first placement platform 2001 and the second placement platform 2007 are set adjacent to each other. The belt conveyor 100 extends into the mounting groove 2011 of the second placement platform 2007, so that after the push plate 2004 pushes out the open insert 2003, it is accurately delivered to the belt conveyor 100. The belt conveyor 100 is started to transport the open insert 2003.
Claims
1. A quick feeding device for clips, characterized in that, The utility model relates to a belt conveyor (100) and loading mechanism (200), the loading mechanism (200) includes first placement platform (2001), the top side of first placement platform (2001) is equipped with storage seat (2002), the inside of storage seat (2002) is equipped with a plurality of open inserts (2003), and the bottom inside of storage seat (2002) is equipped with square groove, the inside of square groove is equipped with push plate (2004), the inside of push plate (2004) is equipped with engaging groove (2005), and the outside wall of push plate (2004) is equipped with square plate (2006), the outside wall of first placement platform (2001) is equipped with second placement platform (2007), both sides of the upper end surface of first placement platform (2001) are equipped with sliding groove (2008), both the inside of two sliding grooves (2008) are slidably connected with slide (2009), the bottom of two slide (2009) is fixedly connected with push plate (2004) on the upper end, the inside of second placement platform (2007) is equipped with mounting groove (2011), the belt conveyor (100) is set up to one side of second placement platform (2007), and one end of belt conveyor (100) extends to the inside of mounting groove (2011).
2. The quick loading device of the magazine type according to claim 1, characterized in that, One of the open inserts (2003) is located in the engaging groove (2005), the outer wall of the open insert (2003) is in clearance fit with the inner wall of the engaging groove (2005), the outer wall of the push plate (2004) is in clearance fit with the inner wall of the square groove, the thickness of the push plate (2004), the square plate (2006) and the open insert (2003) is consistent.
3. The quick loading device of the magazine type according to claim 2, characterized in that, The inside of the first placement platform (2001) is provided with a cavity, the inside of the cavity is provided with a driving assembly (300), the driving assembly (300) includes a pair of reciprocating lead screws (3001), one end of the pair of reciprocating lead screws (3001) is connected with the inner wall of the cavity through a bearing, one end of the pair of reciprocating lead screws (3001) away from the inner wall of the cavity penetrates the first placement platform (2001) and extends into the two sliding grooves (2008) respectively, and one end of the pair of reciprocating lead screws (3001) away from the inner wall of the cavity penetrates the two slides (2009) and extends to the outside respectively, and is connected with the inner wall of the sliding groove (2008) through a bearing, the pair of reciprocating lead screws (3001) is threadedly connected with the two slides (2009) respectively.
4. The quick loading device of the magazine type according to claim 3, characterized in that, The inside of the first placement platform (2001) is located directly below the pair of reciprocating lead screws (3001) and is rotatably connected with a transmission rod (3002), the outside of the two reciprocating lead screws (3001) and the two transmission rods (3002) is sleeved with a synchronous wheel (3003), and a pair of the synchronous wheels (3003) on the same side is wound with a synchronous belt (3004).
5. The quick loading device of the magazine type according to claim 4, characterized in that, The first placement table (2001) is internally provided with a worm (3006), both ends of the worm (3006) are connected with the inner wall of the first placement table (2001) through bearings, the outer part of both the transmission rods (3002) is sleeved with a worm gear (3005), and the worm (3006) and the two worm gears (3005) are in mesh with each other.
6. The quick loading device of the magazine type according to claim 5, characterized in that, The back surface of the first placement table (2001) is provided with a motor (400), and the output end of the motor (400) is in transmission connection with the worm (3006).
7. The quick loading device of a magazine type insert sheet according to claim 6, wherein The front surface and the back surface of the storage seat (2002) are both provided with an observation groove (2010).
8. The quick loading device of the magazine type according to claim 7, characterized in that, The top surface of the belt conveyor (100) is flush with the top surfaces of the first placement table (2001) and the second placement table (2007).