Automatic loading equipment for a package of glass fiber cloth

By designing the stacking structure, blocking unit, and unloading structure of the automatic feeding equipment, the problems of high manual labor intensity and lack of equipment coordination in the production of fiberglass cloth were solved, realizing the orderly stacking, single roll release, and continuous conveying of cloth rolls, thereby improving production efficiency and stability.

CN120736046BActive Publication Date: 2025-11-04TAIXING YONGSHENG FLUOROPLASTIC PROD CO LTD
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Patent Information

Application Number
CN202511258082.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-04
Publication Date
2025-11-04
Estimated Expiration
2045-09-04

AI Technical Summary

Technical Problem

The existing fiberglass cloth production and packaging process suffers from high labor intensity, low efficiency, and lack of equipment coordination, making it difficult to meet the pace requirements of large-scale production. Furthermore, the stacking, buffering, and unloading of cloth rolls lack precise linkage control.

Method used

An automatic feeding device including a stacking structure and a feeding structure was designed. The stacking structure is adapted to fabric rolls of different lengths through tilting design and electric slide rail adjustment. The blocking unit achieves precise positioning through electric slide rail and blocking arm. The feeding structure achieves buffered lowering through a motor-driven feeding frame to ensure orderly release of single rolls. The conveyor belt body achieves continuous conveying.

Benefits of technology

It improved the equipment's versatility and adaptability, reduced manual intervention, ensured the integrity of fabric rolls and production cycle time, reduced material loss, and improved production efficiency and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of glass fiber cloth packaging, and specifically discloses an automatic feeding equipment for glass fiber cloth packaging, which comprises a base, a conveying belt main body is arranged at the left end of the base, a stacking structure is fixedly arranged at the right end of the base, a discharging structure is fixedly arranged on the stacking structure, and the discharging structure is located above the rear end of the conveying belt main body. The present application has strong adaptability, is compatible with multiple specifications of cloth rolls, can meet diversified production requirements without replacing equipment components, improves the universality of the equipment, realizes orderly feeding of single rolls, improves process stability, forms a stable "release, receiving and release" cycle, reduces the collision and dumping risk of cloth rolls during the transfer process, improves the integrity of cloth rolls before packaging, forms a beat feeding, and improves production efficiency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of glass fiber cloth packaging, in particular to an automatic feeding equipment for glass fiber cloth packaging. BACKGROUND

[0002] In the production and packaging process of glass fiber cloth, the glass fiber cloth usually exists in the form of a roll, and the roll needs to be moved to the packaging station by a feeding equipment for subsequent packaging, packaging, and other operations. The traditional feeding method relies on manual carrying, which not only has high labor intensity, but also has limited carrying capacity at a time, which cannot meet the rhythm demand of large-scale production, and is prone to cause material supply interruption or accumulation in the packaging link, affecting the overall production efficiency.

[0003] The existing equipment lacks coordination. In the existing equipment, the stacking, buffering, and discharging of the cloth roll lack precise linkage control, and it is difficult to achieve orderly discharging of a single roll. SUMMARY

[0004] The technical problem to be solved by the present application is to overcome the defects of high labor intensity, low efficiency, and inability to coordinate the packaging rhythm of the prior art, and to provide an automatic feeding equipment for glass fiber cloth packaging.

[0005] To achieve the above purpose, the present application provides the following technical scheme: an automatic feeding equipment for glass fiber cloth packaging, comprising a base, a conveyor belt main body is arranged at the left end of the base, a stacking structure is fixedly arranged at the right end of the base, a discharging structure is fixedly arranged on the stacking structure, and the discharging structure is located above the rear end of the conveyor belt main body; wherein the stacking structure is used for stacking and buffering, the discharging structure is used for receiving the cloth in the stacking structure and completing the discharging, and the discharging structure moves through the conveyor belt main body; the stacking structure and the discharging structure can be adjusted according to the length of the cloth roll.

[0006] Preferably, the stacking structure comprises a rack, a first material seat, a first electric sliding rail, a second material seat, and a material blocking unit; one end of the rack is fixedly arranged at the rear end of the base and located on the right side of the conveyor belt main body, the first material seat is concave, the first material seat is arranged on the other end of the rack in an inclined manner, and the other end of the first material seat is inclined to the left, the first material seat is provided with a feeding port near the side wall of one end, the first electric sliding rail is fixedly arranged on the upper wall of one end of the first material seat, the second material seat is fixedly arranged on the first electric sliding rail and symmetrical to the first material seat, the second material seat is the same as the first material seat, and the material blocking unit is fixedly arranged on the lower wall of the other end of the first material seat.

[0007] Preferably, the material blocking unit comprises a second electric sliding rail, an axle bracket, a gear, a blocking arm, an electric push rod and a rack; the second electric sliding rail is fixedly arranged on the lower wall of the other end of the first material seat and is parallel to the first material seat; the axle bracket is F-shaped and is fixedly arranged on the second electric sliding rail and has the other two ends located between the first material seat and the second material seat; the gear is movably arranged on one end of the axle bracket through an axle and can rotate; the blocking arm is fixedly arranged on the axle of the gear and has the other end capable of being flipped to the middle part of the first axle bracket and the second axle bracket; the electric push rod is fixedly arranged on the other end of the axle bracket; and the rack is fixedly arranged on the telescopic end of the electric push rod and is engaged with the lower wall of the gear.

[0008] Preferably, the electric push rod is retracted to drive the rack to move towards the electric push rod, the rack is engaged to drive the gear to rotate clockwise, the blocking arm is flipped upwards to the middle part between the first material seat and the second material seat, the free end of the blocking arm is attached to the outer wall of the cloth roll, and the cloth roll is limited.

[0009] Preferably, the material feeding structure comprises an adjusting seat, a pair of adjusting brackets, a pair of adjusting screws and a material feeding assembly; the adjusting seat is T-shaped, one end of the adjusting seat is fixedly arranged on the material rack, the other end of the adjusting seat is located below the other end of the first material seat, the other end of the adjusting seat has a T-shaped adjusting groove arranged in the middle part, one end of each of the pair of adjusting brackets is movably inserted into the adjusting groove of the adjusting seat, the other end of each of the pair of adjusting brackets is located on the front and back sides of the other end of the first material seat and the other end of the second material seat, each of the pair of adjusting screws is movably screwed into the adjusting bracket and is abutted against the adjusting seat, and the material feeding assembly is movably arranged on the adjusting bracket.

[0010] Preferably, the material feeding assembly comprises a first material feeding bracket, a second material feeding bracket, a motor, a pair of pulleys and a belt; one end of the first material feeding bracket is movably penetrated through the other end of one of the adjusting brackets and is located on the left side of the other end of the first material seat, the other end of the first material feeding bracket is semicircular and has an arc-shaped telescopic groove arranged thereon, the first material feeding bracket is located above the rear end of the main body of the conveying belt, the second material feeding bracket is the same as the first material feeding bracket, one end of the second material feeding bracket is movably arranged on the other adjusting bracket, and the other end of the second material feeding bracket is movably inserted into the other end of the first material feeding bracket, the motor is fixedly arranged on one of the adjusting brackets, each of the pair of pulleys is fixedly arranged on the driving end of the motor and the one end of the first material feeding bracket, and the belt is movably sleeved on the pulleys.

[0011] Preferably, the motor drives the first material feeding bracket and the second material feeding bracket to rotate through the belt and the pulleys.

[0012] Preferably, the first material feeding bracket and the second material feeding bracket are opposite to the lower walls of the other ends of the first material seat and the second material seat.

[0013] Preferably, the first and second material racks rotate counterclockwise.

[0014] Preferably, after the motor is started, its driving end drives the corresponding pulley to rotate, which drives the pulley at one end of the first material rack to rotate synchronously through belt transmission, thereby causing the first material rack to rotate around its own axis.

[0015] Compared with the prior art, the present application has the following advantages:

[0016] 1. The spacing between the first and second material seats is adjusted by the first electric slide rail, the adjustment seat and the telescopic cooperation between the first and second material racks of the material release structure, which can adapt to different lengths of cloth rolls synchronously without the need to replace equipment components, thereby improving the versatility of the equipment; the shaft rack position is adjusted by the second electric slide rail, so that the blocking arm can accurately align cloth rolls of different lengths and within a certain diameter range, ensuring stable limiting effect and further enhancing the adaptation ability to different specifications of cloth rolls.

[0017] 2. The blocking unit accurately limits the cloth rolls stacked in the material stacking structure through the flipping action of the blocking arm, and only one cloth roll is released at a time, avoiding the chaos or jamming caused by multiple rolls sliding down at the same time, and ensuring the orderliness of the feeding process; the first and second material racks of the material release structure receive and buffer the cloth rolls by rotating, and cooperate with the single-roll release rhythm of the blocking unit to form a stable "release, reception and drop" cycle, reducing the collision and dumping risk of cloth rolls during transfer, and improving the integrity of the cloth rolls before packaging.

[0018] 3. The inclined design of the material stacking structure allows cloth rolls to automatically slide and stack by gravity, reducing manual intervention; the blocking unit and the material release structure work cooperatively to realize the continuous release and drop of single cloth rolls; the conveyor belt main body timely conveys the dropped cloth rolls to the next station, and the links are closely connected to form a rhythmic feeding process, avoiding material accumulation or supply interruption, and improving the overall production rhythm.

[0019] 4. The adjustment process of each adjustment component (such as the first and second electric slide rails, adjustment screws, etc.) is simple and intuitive, and the staff can quickly complete parameter setting according to the specifications of the cloth rolls, reducing the operation difficulty; the first and second material racks of the material release assembly adopt a semicircular structure and realize the buffer drop of the cloth rolls by counterclockwise rotation, avoiding the impact damage caused by the direct dropping of the cloth rolls onto the conveyor belt main body, especially suitable for the transfer of materials such as glass fiber cloth which are easily damaged, reducing material loss cost. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 is a schematic view of the assembly structure of the present application.

[0021] Figure 2 This is a diagram illustrating the material stacking structure and material unloading structure of the present invention;

[0022] Figure 3 This is a schematic diagram of the main structure of the conveyor belt of the present invention;

[0023] Figure 4 This is a schematic diagram of the disassembled structure of the material stacking structure of the present invention;

[0024] Figure 5 This is an enlarged schematic diagram of the material blocking unit of the present invention;

[0025] Figure 6 This is a schematic diagram of the dispensing structure of the present invention.

[0026] Figure 7 for Figure 6 A magnified schematic diagram of the structure at point A in the diagram.

[0027] In the diagram: 1. Base, 2. Conveyor belt body, 3. Stacking structure, 31. Material rack, 32. First material seat, 33. First electric slide rail, 34. Second material seat, 35. Material blocking unit, 351. Second electric slide rail, 352. Shaft bracket, 353. Gear, 354. Stop arm, 355. Electric push rod, 356. Rack, 4. Discharging structure, 41. Adjusting seat, 42. Adjusting frame, 43. Adjusting screw, 44. Discharging assembly, 441. First discharging frame, 442. Second discharging frame, 443. Motor, 444. Pulley, 445. Belt, 5. Adjusting groove, 6. Telescopic groove. Detailed Implementation

[0028] The following will refer to the appendices in the embodiments of the present invention. Figures 1-7 To provide further details.

[0029] like Figure 1 , Figure 2 and Figure 3 As shown, the present invention provides a technical solution: an automatic feeding device for packaging fiberglass cloth, including a base 1, a conveyor belt body 2 disposed at the left end of the base 1, a stacking structure 3 fixedly disposed at the right end of the base 1, and a discharging structure 4 fixedly disposed on the stacking structure 3, the discharging structure 4 being located above the rear end of the conveyor belt body 2; wherein the stacking structure 3 is used for placement and buffering, and the discharging structure 4 is used for receiving the cloth in the stacking structure 3 and completing the unloading, moving through the conveyor belt body 2; the stacking structure 3 and the discharging structure 4 can be adjusted according to the length of the cloth roll.

[0030] like Figure 4As shown, as a preferred solution, further, the stacking structure 3 comprises a rack 31, a first seat 32, a first electric slide rail 33, a second seat 34 and a blocking unit 35; the rack 31 is fixedly arranged at one end of the rear end of the base 1 and located at the right side of the conveyor belt body 2, the first seat 32 is concave, the first seat 32 is arranged on the other end of the rack 31 in an inclined manner, and the other end of the first seat 32 is inclined to the left, the first seat 32 is provided with a drop port near the side wall of one end, the first electric slide rail 33 is fixedly arranged on the upper wall of one end of the first seat 32, the second seat 34 is fixedly arranged on the first electric slide rail 33, and the second seat 34 is symmetrical to the first seat 32, the second seat 34 is the same as the first seat 32, and the blocking unit 35 is fixedly arranged on the lower wall of the other end of the first seat 32; the first seat 32 is supported at a certain height by the rack 31, so that the cloth roller can be automatically lowered and arranged under force, the distance between the second seat 34 and the first seat 32 is adjusted by the first driven slide rail, different width rollers are realized, and the blocking unit 35 limits the second cloth roller at the bottom, realizing single roll unloading.

[0031] More specifically, the blocking unit 35 is fixedly arranged on the lower wall of one end of the first seat 32 away from the drop port by bolts, which mainly limits the stacked cloth roll, ensures that only a single cloth roll is released each time, and specifically, when the cloth roll is put into the drop port, it slides to the bottom end of the first seat 32 and the second seat 34 under the action of gravity, the bottom cloth roll is blocked by the blocking unit 35, and the cloth roll above is stacked above it; when the cloth roll needs to be released, the blocking unit 35 is unblocked, so that the bottom cloth roll slides to the unloading structure 4, and then quickly resets to block the next cloth roll, realizing single roll orderly unloading, the stacking structure 3 can realize stable bearing, orderly stacking and accurate release of cloth rolls of different specifications, providing stable material supply for subsequent receiving of the unloading structure 4 and conveying of the conveyor belt body 2.

[0032] As shown in FIG. 4, the stacking structure 3 is arranged on the left side of the unloading structure 4, and the stacking structure 3 is arranged on the right side of the unloading structure 4. Figure 4 and Figure 5As shown, as a preferred solution, further, the material blocking unit 35 comprises a second electric sliding rail 351, an axle bracket 352, a gear 353, a blocking arm 354, an electric push rod 355 and a rack 356; the second electric sliding rail 351 is fixedly arranged on the lower wall of the other end of the first material seat 32, and the second electric sliding rail 351 is parallel to the first material seat 32; the axle bracket 352 is F-shaped, and the axle bracket 352 is fixedly arranged on the sliding rail of the second electric sliding rail 351, and the other two ends of the axle bracket 352 are located between the first material seat 32 and the second material seat 34; the gear 353 is movably arranged on one end of the axle bracket 352 through an axle, and the gear 353 can rotate; the blocking arm 354 is fixedly arranged on the axle of the gear 353, and the other end of the blocking arm 354 can be flipped to the middle part of the first axle bracket 352 and the second axle bracket 352; the electric push rod 355 is fixedly arranged on the other end of the axle bracket 352; and the rack 356 is fixedly arranged on the telescopic end of the electric push rod 355, and the rack 356 is engaged with the lower wall of the gear 353; the position of the axle bracket 352 is adjusted through the second electric sliding rail 351, so as to adjust the position of the blocking arm, so as to be suitable for different lengths and different diameters of cloth rolls within a certain range; the rack 356 is moved by the electric push rod 355, the gear 353 is driven by the rack 356, the flipping of the blocking arm 354 is realized, and the blocking arm 354 is flipped upward to fit the cloth roll.

[0033] More specifically, when it is necessary to block the cloth roll, the electric push rod 355 is retracted, the rack 356 is moved in the direction close to the electric push rod 355, the rack 356 engages to drive the gear 353 to rotate clockwise, the blocking arm 354 is flipped upward to the middle position between the first material seat 32 and the second material seat 34, the free end thereof is fitted with the outer wall of the cloth roll, the cloth roll is limited, and the cloth roll is released.

[0034] As Figure 6As shown, as a preferred solution, further, the discharging structure 4 comprises an adjusting seat 41, a pair of adjusting frames 42, a pair of adjusting screws 43 and a discharging assembly 44; the adjusting seat 41 is T-shaped, one end of the adjusting seat 41 is fixedly arranged on the rack 31, the other end of the adjusting seat 41 is located below the other end of the first material seat 32, a T-shaped adjusting groove 5 is arranged in the middle of the other end of the adjusting seat 41, one end of the pair of adjusting frames 42 is respectively movably inserted into the adjusting groove 5 of the adjusting seat 41, the other end of the pair of adjusting frames 42 is respectively located on the front and rear sides of the other end of the first material seat 32 and the second material seat 34, the pair of adjusting screws 43 are respectively movably screwed in the adjusting frames 42, and the adjusting screws 43 are abutted on the adjusting seat 41, and the discharging assembly 44 is movably arranged on the adjusting frame 42; the adjusting seat 41 can bear the adjusting frame 42, the distance between the adjusting frames 42 can be changed, the distance between the first material seat 32 and the second material seat 34 can be matched, the discharging assembly 44 can receive the cloth roll for buffering and discharging, the first discharging frame 441 and the second discharging frame 442 are opposite to the lower walls of the other ends of the first material seat 32 and the second material seat 34, and the first discharging frame 441 and the second discharging frame 442 rotate counterclockwise.

[0035] More specifically, according to the length specification of the cloth roll, the adjusting screws 43 are loosened first, the two adjusting frames 42 are pushed to slide along the adjusting groove 5 of the adjusting seat 41, the distance between the adjusting frames 42 is matched with the distance between the first material seat 32 and the second material seat 34, then the adjusting screws 43 are tightened to fix the adjusting frames 42; when the cloth roll is discharged by the stacking structure 3, the discharging assembly 44 receives the cloth roll and stably transports it to the conveyor main body 2 through the buffering action, and the discharging process is completed.

[0036] As shown in the drawings, Figure 6 and Figure 7As shown, as a preferred solution, further, the discharging assembly 44 comprises a first discharging frame 441, a second discharging frame 442, a motor 443, a pair of pulleys 444 and a belt 445; one end of the first discharging frame 441 is movably penetrated through one of the adjusting frames 42 and the other end of the first discharging frame 441 is located at the left side of the other end of the first material seat 32, the other end of the first discharging frame 441 is a semicircular structure, and the other end of the first discharging frame 441 is provided with an arc-shaped telescopic groove 6, the first discharging frame 441 is located above the rear end of the conveyor belt body 2, the second discharging frame 442 is the same as the first discharging frame 441, one end of the second discharging frame 442 is movably arranged on the other adjusting frame 42, and the other end of the second discharging frame 442 is movably inserted into the other end of the first discharging frame 441, the motor 443 is fixedly arranged on one of the adjusting frames 42, the pair of pulleys 444 are respectively fixedly arranged on the driving end of the motor 443 and one end of the first discharging frame 441, and the belt 445 is movably sleeved on the pulleys 444; through the starting of the motor 443, the transmission of the pulleys 444 and the belt 445, the rotation of the first discharging frame 441 is driven, and the rotation of the second discharging frame 442 is also driven, the cloth roll is received by the first discharging frame 441 and the second discharging frame 442, and the cloth roll is discharged by the rotation,

[0037] More specifically, after the motor 443 is started, the corresponding pulley 444 on the driving end of the motor 443 is rotated, the pulley 444 on one end of the first discharging frame 441 is synchronously rotated through the transmission of the belt 445, and then the first discharging frame 441 is rotated around its own axis; since the second discharging frame 442 is inserted and matched with the first discharging frame 441 and the structures of the two are the same, the first discharging frame 441 will drive the second discharging frame 442 to synchronously rotate when the first discharging frame 441 is rotated; when the cloth roll falls from the stacking structure 3, the semicircular structure of the first discharging frame 441 and the second discharging frame 442 catches the cloth roll, and the cloth roll gradually descends under the support of the semicircular structure with the counterclockwise rotation of the two, and finally is stably placed on the conveyor belt body 2, realizing the buffer discharging and avoiding the damage of the cloth roll due to direct falling.

[0038] Working principle:

[0039] Buffering and limiting of the cloth roll of the stacking structure 3:

[0040] The stacking structure 3 supports the first material seat 32 and the second material seat 34 by the rack 31, and the cloth roll automatically slides along the inclined surface and is orderly stacked by gravity; the cloth roll can be carried and rolled by the concave shape of the first material seat 32 and the second material seat 34; wherein the first electric sliding rail 33 can adjust the distance between the second material seat 34 and the first material seat 32, and adapt to cloth rolls of different lengths; the worker puts the cloth roll into the space between the two material seats through the first material seat 32, and the cloth roll slides to the bottom end under the action of gravity, and the bottommost cloth roll is temporarily limited by the blocking unit 35 to ensure the stability of the stacking state;

[0041] Single-roll release control of the blocking unit 35:

[0042] The blocking unit 35 adjusts the position of the shaft frame 352 through the second electric sliding rail 351, so that the blocking arm 354 is aligned with the blocking point of the cloth roll and fits cloth rolls of different diameters; when it is necessary to release the cloth roll, the electric push rod 355 is extended to drive the rack 356 to move, the rack 356 engages the driving gear 353 to rotate, so that the blocking arm 354 is turned down to release the blocking of the bottommost cloth roll; after the cloth roll slides out, the electric push rod 355 is retracted, the blocking arm 354 is turned up to reset and block the next cloth roll, realizing the orderly release of single roll;

[0043] Buffering reception and discharging of the discharging structure 4:

[0044] The adjusting frame 42 of the discharging structure 4 can adjust the distance through the T-shaped adjusting groove 5 of the adjusting seat 41 to adapt to the length of the cloth roll, and after adjustment, it is fixed by the adjusting screw 43 to realize the fit of the distance between the first material seat 32 and the second material seat 34; and the distance adjustment of the adjusting frame 42 will drive the second discharging frame 442 to extend out of the telescopic groove 6 of the first discharging frame 441, realizing the butt joint length of the first discharging frame 441 and the second discharging frame 442;

[0045] When the cloth roll slides out of the stacking structure 3, that is, the cloth slides out from the bottom of the first material seat 32, the first discharging frame 441 and the second discharging frame 442 of the discharging assembly 44 are inserted and matched through the telescopic groove 6 to adapt to the length change and receive the cloth roll; the motor 443 drives the first discharging frame 441 to rotate counterclockwise through the belt wheel 444 and the belt 445, and drives the second discharging frame 442 to rotate synchronously, and the cloth roll rotates with the second discharging frame 442 and gradually falls on the conveyor belt body 2, completing the buffering feeding corresponding to the packaging rhythm.

[0046] Transfer coordination of the conveyor belt body 2:

[0047] The conveyor belt body 2 on the base 1 receives the cloth roll falling from the discharging structure 4 and conveys it to the subsequent packaging station, at the same time triggers the blocking unit 35 to release the next cloth roll, enters the next cycle, realizes continuous automatic feeding, and fits the packaging rhythm.

[0048] In summary, the device realizes flexible adaptation, orderly stacking, single-roll release and stable conveying of the glass fiber cloth roll through linkage of the mechanical structure and automatic control, thereby improving the efficiency and stability of the packaging loading.

[0049] Finally, it should be pointed out that the above embodiments are only used to illustrate the technical solutions of the present application but not limit the present application, and other modifications or functional replacements of the technical solutions of the present application made by those skilled in the art should be covered in the scope of the claims of the present application as long as they do not deviate from the spirit and scope of the technical solutions of the present application.

Claims

1. An automatic loading apparatus of a package of a glass fiber cloth, characterized by, Including the base (1), the base (1) left end is provided with the conveyor belt body (2), the base (1) right end is fixedly provided with the stacking structure (3), the stacking structure (3) is fixedly provided with the material placing structure (4), the material placing structure (4) is located above the rear end of the conveyor belt body (2); Wherein the stacking structure (3) is used for placing and buffering, the material placing structure (4) is used for receiving cloth in the stacking structure (3), and the unloading is completed, which moves through the conveyor belt body (2); The stacking structure (3) and the material placing structure (4) can be adjusted according to the length of the cloth roll; The stacking structure (3) includes a rack (31), a first material seat (32), a first electric sliding rail (33), a second material seat (34) and a material blocking unit (35); The rack (31) is fixedly arranged at one end of the rear end of the base (1), and is located on the right side of the conveyor belt body (2), the first material seat (32) is concave, the first material seat (32) is arranged on the other end of the rack (31) in an inclined manner, and the other end of the first material seat (32) is inclined to the left, the first material seat (32) is provided with a feeding port near the side wall of one end, the first electric sliding rail (33) is fixedly arranged on the upper wall of one end of the first material seat (32), the second material seat (34) is fixedly arranged on the first electric sliding rail (33), and the second material seat (34) is symmetrical to the first material seat (32), the second material seat (34) is the same as the first material seat (32), and the material blocking unit (35) is fixedly arranged on the other end of the lower wall of the first material seat (32); The material blocking unit (35) includes a second electric sliding rail (351), a shaft bracket (352), a gear (353), a blocking arm (354), an electric push rod (355) and a rack (356); The second electric sliding rail (351) is fixedly arranged on the lower wall of the other end of the first material seat (32), and the second electric sliding rail (351) is parallel to the first material seat (32), the shaft bracket (352) is F-shaped, the shaft bracket (352) is fixedly arranged on the sliding rail of the second electric sliding rail (351), and the other two ends of the shaft bracket (352) are located between the first material seat (32) and the second material seat (34), the gear (353) is movably arranged on one end of the shaft bracket (352) through an axle, and the gear (353) can rotate, the blocking arm (354) is fixedly arranged on the axle of the gear (353), the other end of the blocking arm (354) can be turned to the middle part of the first shaft bracket (352) and the second shaft bracket (352), the electric push rod (355) is fixedly arranged on the other end of the shaft bracket (352), and the rack (356) is fixedly arranged on the telescopic end of the electric push rod (355), and the rack (356) is engaged with the lower wall of the gear (353); The material placing structure (4) includes an adjusting seat (41), a pair of adjusting racks (42), a pair of adjusting screws (43) and a material placing assembly (44); The adjusting seat (41) is T-shaped, one end of the adjusting seat (41) is fixedly arranged on the rack (31), the other end of the adjusting seat (41) is located below the other end of the first material seat (32), a T-shaped adjusting groove (5) is arranged in the middle of the other end of the adjusting seat (41), one end of a pair of the adjusting frames (42) is movably inserted into the adjusting groove (5) of the adjusting seat (41) respectively, the other end of the pair of the adjusting frames (42) is located on the front and rear sides of the other end of the first material seat (32) and the second material seat (34) respectively, a pair of the adjusting screw rods (43) are movably screwed into the adjusting frames (42) respectively, and the adjusting screw rods (43) are tightly arranged on the adjusting seat (41), and the discharging assembly (44) is movably arranged on the adjusting frame (42).

2. The automatic loading apparatus of a glass fiber cloth package according to claim 1, wherein The electric push rod (355) is retracted, the rack (356) is driven to move towards the electric push rod (355), the rack (356) is engaged with the driving gear (353) to rotate clockwise, the blocking arm (354) is turned up to the middle position between the first material seat (32) and the second material seat (34), the free end of the blocking arm (354) is attached to the outer wall of the cloth roll, and the cloth roll is limited.

3. The automatic loading apparatus of a glass fiber cloth package according to claim 2, wherein The discharging assembly (44) comprises a first discharging frame (441), a second discharging frame (442), a motor (443), a pair of pulleys (444) and a belt (445). One end of the first discharging frame (441) is movably penetrated through the other end of one of the adjusting frames (42), the first discharging frame (441) is located on the left side of the other end of the first material seat (32), the other end of the first discharging frame (441) is a semicircular structure, an arc-shaped telescopic groove (6) is arranged at the other end of the first discharging frame (441), the first discharging frame (441) is located above the rear end of the conveyor belt body (2), the second discharging frame (442) is the same as the first discharging frame (441), one end of the second discharging frame (442) is movably arranged on the other adjusting frame (42), the other end of the second discharging frame (442) is movably inserted into the other end of the first discharging frame (441), the motor (443) is fixedly arranged on one of the adjusting frames (42), a pair of the pulleys (444) are fixedly arranged on the driving end of the motor (443) and one end of the first discharging frame (441) respectively, and the belt (445) is movably sleeved on the pulleys (444).

4. The automatic loading apparatus for a glass fiber cloth package according to claim 3, wherein The motor (443) drives the first discharging frame (441) and the second discharging frame (442) to rotate through the belt (445) and the pulleys (444).

5. The automatic loading apparatus for a package of glass fiber cloth according to claim 4, wherein The first discharging frame (441) and the second discharging frame (442) are opposite to the lower walls of the other ends of the first material seat (32) and the second material seat (34).

6. The automatic loading apparatus of a glass fiber cloth package according to claim 5, wherein The first discharging frame (441) and the second discharging frame (442) rotate counterclockwise.

7. The automatic loading apparatus of a glass fiber cloth package according to claim 6, wherein After the motor (443) is started, the driving end of the motor (443) drives the corresponding pulley (444) to rotate, the pulley (444) at one end of the first discharging frame (441) is driven to rotate synchronously through the belt (445), and then the first discharging frame (441) rotates around its own axis.

Citation Information

Patent Citations

  • Mushroom stick box filling machine

    CN116692135A

  • Thermoplastic machine for packaging Teflon adhesive tape

    CN120553230A