Winding equipment for carrier tape
By introducing a rotary locking and press-fit cutting assembly into the carrier tape winding equipment, the problems of carrier tape loosening and slot misalignment are solved, and an efficient and continuous carrier tape winding process is achieved.
Patent Information
- Application Number
- CN202423151084.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Existing carrier tape slitting equipment is inefficient and lacks continuity. Furthermore, the carrier tape is prone to loosening and slot misalignment during the winding process, affecting subsequent winding results.
The mounting shaft assembly with rotation locking function and the press-fit cutting assembly prevent the carrier tape reel from rotating, and the carrier tape is pressed and limited by the baffle bending part to ensure that the carrier tape is tightly wound.
It improves the slitting efficiency of the carrier belt, prevents the carrier belt from becoming loose and the slot from shifting, and ensures that the carrier belt can be smoothly inserted and tightly wound.
Smart Images

Figure CN223813175U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of bearing tape, especially to a winding equipment for bearing tape. BACKGROUND
[0002] The bearing tape, short for bearing tape, is a kind of belt-shaped product applied to the field of electronic packaging, which has a specific thickness and equidistantly distributed holes (also called pockets) for bearing electronic components and positioning holes for indexing positioning along the length direction.
[0003] The bearing tape needs to be divided and stored for convenient storage and transportation after production. In the prior art, the bearing tape is usually divided by placing a winding drum on a winding roller and rotating the winding roller and the winding drum to divide the bearing tape. After division, the wound bearing tape needs to be removed and replaced with a new winding drum for division and storage. This division method is low in efficiency and poor in continuity.
[0004] The prior art 202323396011.X discloses a bearing tape division tool, which solves the above problems. However, the winding pipe is rotatably connected with the turntable, so that the winding pipe rotates during operation, causing the clamping groove to deviate, so that the pressure head cannot insert the bearing tape into the clamping groove, affecting the subsequent winding. The cut bearing tape is easy to loosen in the winding drum, affecting subsequent storage. UTILITY MODEL CONTENTS
[0005] The utility model aims at overcoming the deficiencies of the prior art and provides a winding equipment for bearing tape.
[0006] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of a winding equipment for bearing tape, which comprises a mounting plate, a driving turntable rotatably arranged on one side of the middle part of one side of the mounting plate, a plurality of mounting shaft assemblies rotatably arranged on the driving turntable and spaced along the circumference of the driving turntable and provided with a rotating locking function for preventing rotation during operation, a plurality of bearing tape reels arranged on the plurality of mounting shaft assemblies, two pieces of baffle arranged in the baffle on both sides of the bearing tape reel and extending out of the baffle on one end and located in the baffle on one end and curved for preventing the bearing tape from loosening, a pressure cutting assembly arranged on the mounting plate above the driving turntable for pressing the bearing tape on the bearing tape reel, cutting the bearing tape and bending the baffle and pressing out, a driving assembly arranged on the other side of the mounting plate for driving the driving turntable to rotate and driving the uppermost mounting shaft assembly of the driving turntable to rotate, and a guide roller assembly arranged on one side of the mounting plate for adjusting the height of the guide roller for guiding and pressing the bearing tape to the driving turntable.
[0007] Preferably, the installation shaft assembly includes a drive shaft rotatably arranged in the drive disc, a first telescopic slot arranged in the drive shaft at one end of the drive disc, a drive rod telescopically arranged in the first telescopic slot, a spring arranged in the telescopic slot for pushing the drive rod to move out of the first telescopic slot, a second telescopic slot arranged in the drive disc at one end of the drive disc back surface, two first limiting slots arranged in the second telescopic slot at both sides of the drive disc back surface, two second limiting slots arranged in the inner wall of the first telescopic slot at both sides, two first limiting long blocks arranged on both sides of the drive rod for sliding in the two first limiting slots and the two second limiting slots, a placement rod arranged at the other end of the drive shaft for clamping into the carrier tape disc, and a plurality of second limiting long blocks arranged on the placement rod for being inserted into the middle gap of the carrier tape disc to limit the rotation of the carrier tape disc.
[0008] Preferably, the press-fitting and cutting assembly includes a fixed plate arranged on the mounting plate and located directly above the drive disc, a drive cylinder arranged on the top surface of the fixed plate and having an output end penetrating through the fixed plate to the bottom surface to face the uppermost carrier tape disc of the drive disc, a pressing plate arranged on one surface of the output end of the drive cylinder and facing the uppermost carrier tape disc of the drive disc, a pressing head arranged on the bottom surface of the pressing plate and located at the middle part for pressing the carrier tape into the clamping slot of the carrier tape disc, a blade arranged on the end surface of the pressing plate away from the guide roller assembly for cutting the carrier tape, a drive plate sleeved on the output end of the drive cylinder, and a pressing block arranged on the bottom surface of the drive plate and located at the position of the next rotation of the drive disc for pressing out the two bent parts of the blocking piece.
[0009] Preferably, the drive assembly includes a disc motor arranged on one side of the middle part of the back surface of the mounting plate for driving the rotation of the drive disc, an n-shaped connecting plate arranged on the back surface of the mounting plate and located above the disc motor, an electric telescopic rod arranged on one end of the connecting plate parallel to the mounting plate, a telescopic jack arranged in the mounting plate and having one end penetrating through the mounting plate to face the second telescopic slot at the uppermost end of the drive disc and the other end penetrating through the mounting plate and connected to the driving end of the electric telescopic rod through a bearing, a cross-shaped protrusion arranged on the end surface of the telescopic jack facing the mounting plate, a groove arranged on one end of the telescopic jack facing the protrusion for the protrusion to be inserted into the groove, a driven gear arranged on the connecting end of the telescopic jack, a driving gear rotatably arranged on one side of the mounting plate of the telescopic jack and located at the position after the movement of the driven gear for engaging with the driven gear after the movement, and a gear motor arranged on the connecting plate for driving the rotation of the driving gear.
[0010] Preferably, the guide roller assembly comprises two guide plates arranged on the mounting plate in parallel and upward and downward, two threaded rods rotatably arranged in the middle of the two guide plates and penetrating the two guide plates at one end and facing each other, two pressing guide rollers respectively arranged on the two ends of the threaded rods opposite to the two threaded rods through bearings, and two guide rods penetrating the two guide plates and the two pressing guide rollers at one end and located on the two sides of the two threaded rods.
[0011] Compared with the prior art, the utility model has the following advantages due to the use of the above technical scheme:
[0012] The mounting shaft assembly with the rotating locking function can effectively prevent the carrier tape disc from rotating during operation, avoids the carrier tape from being unable to be inserted into the clamping groove of the carrier tape disc, and limits the carrier tape through the pressing and cutting assembly to press out the baffle bending part, so that the carrier tape on the carrier tape disc after winding is prevented from loosening. BRIEF DESCRIPTION OF DRAWINGS
[0013] The technical scheme of the utility model will be further described below with reference to the drawings:
[0014] ATTACHED Figure 1 It is a front structure schematic view of the winding equipment for the carrier tape.
[0015] ATTACHED Figure 2 It is a side sectional structure schematic view of the winding equipment for the carrier tape.
[0016] ATTACHED Figure 3 It is a winding equipment for the carrier tape. Figure 3 A partial enlarged structure schematic view of the winding equipment for the carrier tape.
[0017] ATTACHED Figure 4 It is a top structure schematic view of the winding equipment for the carrier tape.
[0018] ATTACHED Figure 5 It is a front structure schematic view of the driving turntable of the winding equipment for the carrier tape.
[0019] Wherein: 1, mounting plate; 2, drive rotary table; 3, mounting shaft assembly; 3a, drive shaft; 3b, first telescopic slot; 3c, drive rod; 3d, spring; 3e, second telescopic slot; 3f, first limiting slot; 3g, second limiting slot; 3h, first limiting long strip block; 3i, placing rod; 3l, second limiting long strip block; 4, carrier tape reel; 5, baffle; 6, press-fitting cutting assembly; 61, fixed plate; 62, drive cylinder; 63, lower pressing plate; 64, lower pressing head; 65, blade; 66, drive plate; 67, lower pressing block; 7, drive assembly; 71, rotary table motor; 72, connecting plate; 73, electric telescopic rod; 74, telescopic ejector rod; 75, protruding block; 76, recess; 77, driven gear; 78, driving gear; 79, gear motor; 8, guide roller assembly; 81, guide plate; 82, threaded rod; 83, compression guide roller; 84, guide rod. DETAILED DESCRIPTION
[0020] The utility model will be made further detailed explanation in combination with the specific embodiment and the drawings.
[0021] The drawings Figures 1-5The utility model discloses a winding equipment for bearing tape contains installation board 1, the drive turntable 2 of rotating setting in the middle one side of installation board 1 one side, rotating setting on the drive turntable 2 and along the length interval distribution of drive turntable 2 periphery have the rotating locking function for preventing the rotation of several sets of installation shaft subassembly 3 in the operation process, the several tape carrier tape 4 of setting on several sets of installation shaft subassembly 3, the two pieces of baffle 5 of setting in the baffle of tape carrier tape 4 both sides and one end extends out two baffle and is located in two baffle inside one end curved for preventing tape carrier tape loose, the pressure equipment cutting assembly 6 of setting in installation board 1 on the upper side of drive turntable 2 for the tape carrier tape 4 on pressure equipment, cutting tape carrier tape and the baffle 5 bending and pressure out, the drive assembly 7 of setting on the other side of installation board 1 for driving drive turntable 2 rotation and drive turntable 2 uppermost end one set of installation shaft subassembly 3 rotation, the guide roller assembly 8 of setting in installation board 1 one side for the adjustable height of pressure tight guide tape to drive turntable 2 place, several sets of installation shaft subassembly 3 all include the drive shaft 3a of rotating setting in drive turntable 2, the first telescopic groove 3b of setting in drive shaft 3a upper end at drive plate, the drive rod 3c of telescopic setting in the first telescopic groove 3b, the spring 3d of setting in telescopic groove for the drive rod 3c is moved to the first telescopic groove 3b outside push, the second telescopic groove 3e of corresponding setting in drive plate and one end penetrates drive turntable 2 back, the two first limit slots 3f of setting in the second telescopic groove 3e both sides in drive turntable 2 back one end, the two second limit slots 3g of setting in the inner wall of first telescopic groove 3b both sides, the two first limit long strip blocks 3h of corresponding setting in the both sides for the first limit slots 3f and the second limit slots 3g sliding of drive rod 3c, the placement rod 3i of setting in drive shaft 3a other end for the card of tape carrier tape 4, the second limit long strip block 3l of corresponding setting in the placement rod 3i for inserting to the middle gap of tape carrier tape 4 and limiting tape carrier tape 4 rotation, the fixed plate 61 of setting in installation board 1 and located in drive turntable 2 top, the drive cylinder 62 of setting in fixed plate 61 top and output end penetrates fixed plate 61 to the bottom and is opposite drive turntable 2 uppermost end tape carrier tape 4, the lower plate 63 of setting in drive cylinder 62 output one side and opposite drive turntable 2 uppermost end tape carrier tape 4, the lower pressure head 64 of setting in lower plate 63 bottom middle for the tape carrier tape 4 card slot of being pressed into to, the blade 65 of setting in lower plate 63 away from guide roller assembly 8 one end end face for cutting tape carrier tape, the drive plate 66 of sleeve setting in drive cylinder 62 output, the lower pressure block 67 of setting in drive plate 66 bottom and opposite drive turntable 2 next rotating position tape carrier tape 4 for the baffle 5 bending part pressure out of two pieces.The driving assembly 7 comprises a rotating disc motor 71 arranged on one side of the middle part of the back of the mounting plate 1 for driving the rotation of the rotating disc 2, an n-shaped connecting plate 72 arranged on the back of the mounting plate 1 above the rotating disc motor 71, an electric telescopic rod 73 arranged on one end of the connecting plate 72 parallel to the mounting plate 1, a telescopic jacking rod 74 telescopically arranged in one end of the mounting plate 1, penetrating through a second telescopic groove 3e on the mounting plate 1 opposite to the uppermost end of the driving rotating disc 2, and penetrating through the mounting plate 1 at the other end and connected with the driving end of the electric telescopic rod 73 through a bearing, a cross-shaped protrusion 75 arranged on the end face of one end of the telescopic jacking rod 74 opposite to the mounting plate 1, a groove 76 arranged on the end face of one end of the driving rod 3c opposite to the telescopic jacking rod 74 for the insertion of the cross-shaped protrusion 75, a driven gear 77 arranged on one end of the telescopic jacking rod 74 opposite to the connecting end of the electric telescopic rod 73, a driving gear 78 rotatably arranged on one side of the mounting plate 1 of the telescopic jacking rod 74 and located at the position moved behind the driven gear 77 for engaging with the driven gear 77 after the movement, a gear motor 79 arranged on the connecting plate 72 for driving the rotation of the driving gear 78.
[0022] In use: First, the carrier tape 4 is installed on the placement rod 3i, and is installed from the placement rod 3i where the driving turntable 2 is located at the position of the pressing block 67, and the disc is opposite to the pressing block 67 during installation, after the installation of one, the turntable motor 71 is started to drive the driving turntable 2 to rotate clockwise by one position, and then the next carrier tape 4 is installed, and so on, when the last second carrier tape 4 is installed and the driving turntable 2 is rotated, the last carrier tape 4 is installed first, then the carrier tape is passed through the two compression guide rollers 83, then the threaded rod 82 is rotated, the threaded rod 82 drives the two compression guide rollers 83 to move towards the carrier tape and compress the carrier tape, then the carrier tape is placed on the carrier tape 4 at the upper end of the driving turntable 2, then the driving cylinder is started, the driving cylinder 62 drives the pressing plate 63 to move towards the carrier tape 4, the pressing plate 63 drives the pressing head 64 to move towards the carrier tape 4, then the pressing head 64 clamps the carrier tape into the clamping groove of the carrier tape 4, then the driving cylinder 62 is reset, then the last carrier tape 4 is installed, then the electric telescopic rod 73 is started, the electric telescopic rod 73 drives the telescopic jack 74 to move, one end of the telescopic jack 74 drives the protrusion 75 to insert into the groove 76 at one end of the driving rod 3c, and the telescopic jack 74 drives one end of the driving rod 3c located in the second telescopic groove 3e to move towards the first telescopic groove 3b of the driving shaft 3a, then the first limiting long strip block 3h on both sides of the driving rod 3c is separated from the first limiting groove 3f, and the other end of the telescopic jack 74 drives the driven gear 77 to move towards the mounting plate 1, then the driven gear 77 is engaged with the driving gear 78 on one side, then the electric telescopic rod 73 is stopped, then the gear motor 79 is started, the gear motor 79 drives the driving gear 78 to rotate, the driving gear 78 drives the driven gear 77 to rotate, the driven gear 77 drives the telescopic jack 74 to rotate, the telescopic jack 74 drives the driving rod 3c to rotate through the protrusion 75, and since the first limiting long strip block 3h of the driving cylinder slides in the second limiting groove in the driving shaft 3a, the driving rod 3c rotates while driving the driving shaft 3a to rotate, the driving shaft 3a rotates while driving the placement rod 3i to rotate, the placement rod 3i rotates while driving the carrier tape 4 to rotate, then the carrier tape 4 starts to wind the carrier tape, after the winding of the carrier tape 4 is completed, the electric telescopic rod 73 is reset, then the driven gear 77 is separated from the driving gear 78 and is retracted to the original position, and since the spring 3d loses the resistance, the spring 3d drives the driving rod 3c to move towards the second telescopic groove 3e, the driving rod 3c drives the first limiting long strip block 3h to insert into the first limiting groove 3f to limit the rotation of the driving shaft 3a again, then the turntable motor 71 is started, the turntable motor 71 drives the driving turntable 2 to rotate clockwise, the driving turntable 2 drives the uppermost wound carrier tape 4 to rotate to the next position, then the next empty carrier tape 4 is rotated to the uppermost end, then the driving cylinder 62 is started, the driving cylinder 62 drives the driving plate 66 and the pressing plate 63 to move, the pressing plate 63 drives the pressing head 64 and the blade 65 to move,Then the pressing head 64 will press the tape into the new tape reel 4 card slot and the blade 65 will cut the tape, while the drive plate 66 drives the pressing block 67 to move towards the wound tape reel 4, and then the pressing block 67 will press the flapper 5 on the tape reel 4 downward. Since the flapper 5 is located in the tape reel 4 in a curved shape, when the other end of the flapper 5 is pressed, the curved part will extend and block the tape, preventing the tape from loosening. Then reset the drive cylinder 62, then reset the pressing head 64 and the pressing block 67, then start the electric telescopic rod 73 to drive the telescopic rod 74 to extend, so that the drive shaft 3a is in contact and locked again. Finally, start the gear motor 79 to drive the drive shaft 3a to rotate, and the drive shaft 3a drives the placement rod 3i to rotate, and the placement rod 3i drives the tape reel 4 to wind. Repeat the above operation to perform sequentially. When the subsequent tape reel 4 is wound, the wound tape reel 4 can be removed and replaced with a new tape reel 4.
Claims
1. A winding apparatus for carrying a tape, characterized by: The mounting plate, the drive disc rotatingly arranged at the middle of one side of the mounting plate, the several groups of mounting shaft assemblies with rotation locking function rotatingly arranged on the drive disc and spaced along the circumference of the drive disc to prevent rotation during operation, the several carrier discs arranged on the several groups of mounting shaft assemblies, the two pieces of blocking pieces arranged in the two side baffles of the carrier disc and extending out of the two baffles and located in the end of the two baffles, the pressing and cutting assembly arranged on the mounting plate above the drive disc to press the carrier tape on the carrier disc, cut the carrier tape and bend and press out the blocking pieces, the drive assembly arranged on the other side of the mounting plate to drive the rotation of the drive disc and the rotation of the uppermost group of mounting shaft assemblies of the drive disc, and the guide roller assembly arranged on one side of the mounting plate to adjust the height of the guide roller for pressing and guiding the carrier tape to the drive disc.
2. The take-up apparatus for a carrier tape according to claim 1, characterized by: Each of the several groups of mounting shaft assemblies comprises a drive shaft rotatingly arranged in the drive disc, a first telescopic slot arranged in the drive shaft at the end in the drive disc, a drive rod telescopically arranged in the first telescopic slot, a spring arranged in the telescopic slot to push the drive rod to move out of the first telescopic slot, a second telescopic slot arranged in the drive disc at the end penetrating through the back of the drive disc, two first limiting grooves arranged at the two sides of the second telescopic slot at the end in the back of the drive disc, two second limiting grooves arranged on the inner walls of the first telescopic slot at the two sides, two first limiting long blocks arranged at the two sides of the drive rod to slide in the two first limiting grooves and the two second limiting grooves, a placement rod arranged at the other end of the drive shaft to be clamped into the carrier disc, and several second limiting long blocks arranged on the placement rod to be inserted into the middle gap of the carrier disc to limit the rotation of the carrier disc.
3. The take-up apparatus for a carrier tape according to claim 1, characterized by: The pressing and cutting assembly comprises a fixed plate arranged on the mounting plate above the drive disc, a drive cylinder arranged on the top surface of the fixed plate and having the output end penetrating through the fixed plate to the bottom to face the uppermost carrier disc of the drive disc, a pressing plate arranged on one side of the output end of the drive cylinder to face the uppermost carrier disc of the drive disc, a pressing head arranged on the bottom surface of the pressing plate at the middle to press the carrier tape into the clamping groove of the carrier disc, a blade arranged on the end face of the pressing plate away from the guide roller assembly to cut the carrier tape, a drive plate sleeved on the output end of the drive cylinder, and a pressing block arranged on the bottom surface of the drive plate to face the carrier disc at the next rotation position of the drive disc to press out the two bent parts of the blocking pieces.
4. The take-up apparatus for a carrier tape according to claim 1, characterized by: The driving assembly comprises a rotating disc motor arranged on one side of the middle part of the back of the mounting plate for driving the rotating disc to rotate, an n-shaped connecting plate arranged on the back of the mounting plate above the rotating disc motor, an electric telescopic rod arranged on one end of the connecting plate parallel to the mounting plate, a telescopic jack rod telescopically arranged in one end of the mounting plate, penetrating a second telescopic groove on the mounting plate opposite to the uppermost end of the driving rotating disc, and having the other end penetrating the mounting plate and connected with the driving end of the electric telescopic rod through a bearing, a cross-shaped protrusion arranged on the end face of the telescopic jack rod opposite to the mounting plate, a groove corresponding to the protrusion and arranged on the end face of the driving rod opposite to the telescopic jack rod, a driven gear arranged on the connecting end of the telescopic jack rod, a driving gear rotatably arranged on one side of the mounting plate of the telescopic jack rod and located at the position after the driven gear moves for engaging with the driven gear after moving, and a gear motor arranged on the connecting plate for driving the driving gear to rotate.
5. The take-up apparatus for a carrier tape according to claim 1, characterized by: The guide roller assembly comprises two guide plates arranged on the mounting plate in parallel and in an up-down manner, two threaded rods rotatably arranged in the middle parts of the two guide plates and having one end penetrating the two guide plates and facing each other, two pressing guide rollers respectively connected with the two threaded rods through bearings and arranged on the ends of the two threaded rods opposite to each other, and two guide rods respectively penetrating the two guide plates and the two pressing guide rollers on one end and located on the two sides of the two threaded rods.
Citation Information
Patent Citations
Carrier tape roll dividing tool
CN221396553U