Winding and compressing packaging machine for cashmere bagging

By designing a rolling and compression packaging machine for cashmere bagging, and using structures such as clamping racks and deflectors, the problem of inefficiency in traditional manual bagging is solved, and the uniform bagging and efficient packaging of cashmere is achieved, which improves production efficiency and product quality.

CN120397432AActive Publication Date: 2025-08-01ZHEJIANG TIANSHAN CASHMERE PRODUCTS CO LTD
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Patent Information

Application Number
CN202510914003.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-03
Publication Date
2025-08-01
Estimated Expiration
2045-07-03

AI Technical Summary

Technical Problem

The traditional manual bagging method has high labor intensity, low efficiency and inaccurate quantification, which leads to uneven cashmere bagging, affecting production efficiency and product quality.

Method used

A cashmere bag-loading compressed packaging machine is designed, which adopts a clamping frame, positioning lifting plate, and deflector. Through negative pressure adsorption and reciprocating movement, it ensures stable transmission and uniform loading of the packaging bag, prevents the fluff from flying, and realizes rotating compression and uniform material of the packaging bag.

Benefits of technology

It improves bagging efficiency and quality, reduces the fluff of frosty, ensures the even distribution of cashmere in the packaging bag, and facilitates subsequent stacking and transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The rolling and compressing packaging machine comprises a feeding machine, a supporting frame is arranged on one side of the feeding machine, a material conveying pipe penetrating through the supporting frame is movably inserted into the feeding machine, a clamping frame and a positioning lifting plate are movably arranged on one side of the supporting frame and used for limiting packaging bags, and a conduction frame is arranged on the outer side of the clamping frame and used for conveying the packaging bags; the conveying frame is inserted into a packaging bag and used for cashmere feeding and conveying, the clamping frame is composed of a metal shaft and a pair of baffles, a pair of hinge shafts is movably arranged on the metal shaft, a conveying end block is inserted into the conveying block on the outer sides of the hinge shafts, an edge folding plate used for clamping the packaging bag is movably arranged in the conveying end block, and a lifting arm is arranged at the top end of the conveying block. The pair of lifting arms is provided with telescopic rods connected to the conduction frame. Compared with the prior art, packaging bags are accurately positioned through the clamping frame and the conduction frame, catkins are prevented from flying through the flow guide plate, material uniformizing is achieved through the reciprocating sliding block, compression is completed through the rotating shaft, and efficient bagging and sealing are achieved.
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Description

Technical Field

[0001] The invention relates to the technical field of textile processing, in particular to a winding and compression packaging machine for cashmere bagging. Background Art

[0002] The bagging process after cashmere combing is a key link affecting production efficiency and product quality. The traditional manual bagging method has problems such as high labor intensity, low efficiency, and inaccurate quantity, which makes it difficult to meet the needs of modern continuous production lines.

[0003] After the cashmere is loosened by the cashmere carding machine, it is packed into bags and enters the next processing link. Traditional enterprises generally use manual bagging. During the transmission and feeding process, cashmere is prone to flying hair due to various factors. In the production process, manual bagging is inefficient, labor-intensive, and has poor consistency. It is not convenient for the subsequent stacking and stacking after the bagging is completed. It is also easy for the cashmere to be fed unevenly during the bagging process, resulting in difficulty in subsequent closing. For this reason, we propose a cashmere bagging winding and compression packaging machine to solve the above problems. Summary of the Invention

[0004] The object of the present invention is to provide a cashmere bagging and rolling compression packaging machine to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a cashmere bagging and rolling compression packaging machine, comprising:

[0006] The feeder has a support frame on one side, a feed pipe penetrating the support frame is movably inserted on the feeder, a clamping frame and a positioning lifting plate are movably provided on one side of the support frame for limiting the position of the packaging bag, a conducting frame is provided on the outside of the clamping frame, and the conducting frame is inserted into the packaging bag for feeding and transporting cashmere;

[0007] Among them, the clamping frame is composed of a metal shaft and a pair of baffle plates. A pair of hinge shafts are movably arranged on the metal shaft. A conduction block with a conveying end block inserted therein is arranged outside the hinge shaft. A hemming plate for clamping the packaging bag is movably arranged inside the conveying end block. A lifting arm is arranged at the top of the conduction block. A telescopic rod connected to the conduction frame is arranged on each of the pair of lifting arms. A conveying seat for clamping the bottom of the packaging bag is arranged on the positioning and lifting plate. A positioning rod is slidably arranged on the conveying seat. A pair of transmission slide rails are movably arranged outside the conveying seat. A rotating and lifting frame connected to a rotating shaft is arranged outside the transmission slide rail. When it is necessary to transport cashmere, under the action of the feeder, the cashmere can be transported along the feeding pipe. At this time, the packaging bag can be clamped between the clamping frame and the positioning and lifting plate at the bottom. The top of the packaging bag can be hemmed and reserved. The bottom can also pass through the bottom of the rotating shaft and be clamped between the positioning clips, so as to position the packaging bag, facilitate the feeding and bagging of cashmere. And the conduction frame can be inserted into the packaging bag with an open mouth, which can play an auxiliary conduction role and quickly introduce the cashmere and the like into the packaging bag.

[0008] Preferably, a pair of clamping sliders slidably arranged on the support frame are connected to the clamping frame. A reset insertion rod is arranged inside the conduction block, and the reset insertion rod is connected to one end of the conveying end block to control the position of the conveying end block.

[0009] A group of compression rods are arranged at both ends of the hemming plate. A pressing shaft is connected to the outside of the compression rod. A rubber tube is sleeved outside the pressing shaft. A positioning shaft is connected to the surface of the hemming plate. A buffer backing plate is installed at the bottom of the positioning shaft. A plurality of rubber blocks are arranged on one side of the buffer backing plate close to the pressing shaft to cooperate with the pressing shaft to clamp the edge of the packaging bag. The hemming plate is turned over to reserve the sewing position of the packaging bag. The hemming plate can be turned over to reserve the sewing position. The rubber parts of the pressing shaft and the buffer backing plate provide frictional force to prevent falling off and protect the bag mouth.

[0010] Preferably, a pair of sliding shafts are slidably clamped at the bottom end of the buffer backing plate. The sliding shafts are used to abut against both ends of the packaging bag for open-mouth support. The sliding shafts support the open mouth after hemming, ensuring that the bag mouth is opened and the position is accurately aligned with the feeding pipe, greatly improving the bagging efficiency and the accuracy of subsequent sewing.

[0011] Preferably, a plurality of groups of inclined pressing plates are arranged at the rear end of the conduction frame. A clamping shaft provided with a plurality of arc grooves is installed on the inclined surface at the bottom of the inclined pressing plate. An arc-shaped transmission plate located between the inclined pressing plates is movably clamped inside the arc grooves. A fixed shaft parallel to the arc-shaped transmission plate is arranged at the top of the arc-shaped transmission plate. A hinge roller is arranged on the surface of the fixed shaft. A guide plate is movably arranged at the top outside the hinge roller.

[0012] A plurality of reset shafts are inserted into the bottom of the flow guide plate in an interactive manner. The reset shafts are elliptical and are abutted in the gaps of the inclined pressing plates. The flow guide plate is inserted into the inner part of the bag mouth to form a channel, which effectively guides the flow of cashmere and forms a physical barrier to block flying fluffs.

[0013] Preferably, the top end of the fixed shaft is provided with a bent extension plate, and an adsorption plate is connected to the outside of the extension plate. A plurality of adsorption grooves are provided on the side of the adsorption plate close to the inclined pressing plate, and a grid plate is provided inside the adsorption grooves. The adsorption plate is hollow and is connected with an air extraction pipe communicating with the adsorption grooves at one end. The small reciprocating motion of the flow guide plate and the reset shafts driven by the swing of the packaging bag, combined with the extrusion effect formed by the gaps of the inclined pressing plates, can break up large masses of cashmere, prevent blockage, and ensure smooth and uniform feeding.

[0014] Preferably, a reset cushion plate is provided at the bottom of the inclined pressing plate, and a plurality of metal shafts are provided at the bottom of the reset cushion plate.

[0015] Preferably, a set of sliding grooves are opened on one side of the positioning rod, and reciprocating sliders are provided inside the sliding grooves. A rubber pressing plate connected with a plurality of pushing shafts is provided on the outside of the reciprocating slider; a pair of reset plates are slidably provided on the side of the rotating shaft corresponding to the positioning rod;

[0016] A transmission frame is inserted into the positioning rod, and a plurality of rubber rollers are provided inside the transmission frame for abutting against the outside of the packaging bag. The packaging bag swings slightly left and right under negative pressure adsorption (driven by the reciprocating slider), and combined with the action of the rubber rollers, the cashmere in the bag can be shaken off and evenly distributed to the bottom.

[0017] Preferably, one end of the rotating shaft is provided with a plurality of groups of positioning clips for connecting the bottom edge of the packaging bag. The design of the rotating shaft, the rotating lifting frame and the positioning rod realizes the rotating compression function of the packaging bag at the end of bagging, and has the effects of material leveling and smooth and flat sticking.

[0018] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0019] 1. Through the clamping frame cooperating with structures such as the positioning lifting plate, the baffle plate, the metal shaft and the hemming plate, the present invention can reliably clamp and fix the packaging bag mouth. The hemming plate can be turned over to reserve a sewing position, and the rubber parts of the pressing shaft and the buffer cushion plate provide friction force to prevent falling off and protect the bag mouth;

[0020] 2. By inserting the flow guide plate into the inner part of the bag mouth to form a channel, the present invention effectively guides the flow of cashmere and forms a physical barrier to block flying fluffs. The small reciprocating motion of the flow guide plate and the reset shafts driven by the swing of the packaging bag, combined with the extrusion effect formed by the gaps of the inclined pressing plates, can break up large masses of cashmere, prevent blockage, ensure smooth and uniform feeding, and significantly reduce the phenomenon of fluff flying during the cashmere bagging process;

[0021] 3. In the present invention, the packaging bag swings slightly left and right under negative pressure adsorption, driven by a reciprocating slider and cooperating with the action of a rubber roller, which can shake the cashmere in the bag and evenly distribute it to the bottom. At the same time, the reserved length of the clamping section allows for swinging, effectively preventing the cashmere from accumulating at the bag mouth or locally, avoiding uneven loading and overflow, improving the bagging quality and efficiency, and achieving active material leveling at the bottom of the packaging bag;

[0022] 4. In the present invention, negative pressure adsorption is used to ensure that one side of the bag body is closely attached to the adsorption plate to provide the main support. The clamping points at the bottom, namely with the help of the positioning rod, the reciprocating slider, the reset plate on the rotating shaft and the positioning clip, not only firmly fix the bottom of the bag, but also allow the left - right swing required for material leveling, and can be smoothly released during subsequent compression and rotation, while retaining the necessary freedom of movement, taking into account both stability and functionality;

[0023] 5. After bagging is completed in the present invention, the rotating shaft and the positioning rod are separated, and the rotating shaft makes a circular motion and rises uniformly under the drive of the rotating lifting frame. During this process, the packaging bag is rotated, wound and compressed, making the internal cashmere distribution more uniform, and squeezing the excess cashmere into the reserved space at the bottom of the bag. The positioning clip, the reciprocating slider and the clamping section of the reset plate finally result in a packaging bag with a compact volume, a flat and smooth surface, which greatly facilitates subsequent stacking, transportation and storage. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 is the overall structural schematic diagram of the present invention;

[0025] Figure 2 is the structural schematic diagram of the support frame of the present invention;

[0026] Figure 3 is the structural schematic diagram of the clamping frame of the present invention;

[0027] Figure 4 is the structural schematic diagram of the conduction block of the present invention;

[0028] Figure 5 is the present invention Figure 4 partial enlarged schematic diagram at A in;

[0029] Figure 6 is the exploded split structural schematic diagram of the conduction frame of the present invention;

[0030] Figure 7 is the present invention Figure 6 partial enlarged schematic diagram at B in;

[0031] Figure 8 is the structural schematic diagram of the positioning lifting plate of the present invention;

[0032] Figure 9 is the present invention Figure 8 partial enlarged schematic diagram at C in;

[0033] In the figure: 1, feeding machine; 2, support frame; 3, conduction frame; 4, positioning and lifting plate; 11, material conveying pipe; 21, clamping frame; 211, clamping slider; 22, hinge shaft; 23, conduction block; 231, conveying end block; 24, flanging plate; 25, positioning shaft; 26, buffer backing plate; 261, sliding shaft; 27, pressing shaft; 31, lifting arm; 32, inclined pressing plate; 33, reset backing plate; 34, clamping shaft; 35, guide plate; 351, reset shaft; 36, adsorption plate; 37, arc transmission plate; 371, fixed shaft; 41, conveying seat; 42, transmission slide rail; 43, rotating and lifting frame; 44, positioning rod; 45, reciprocating slider; 451, rubber pressing plate; 46, transmission frame; 461, rubber roller; 47, rotating shaft; 471, positioning clip. Detailed implementation manners

[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0035] Please refer to Figures 1-9 , the present invention provides a technical solution: a coiling, compressing and packaging machine for cashmere bagging, including,

[0036] a feeding machine 1, with a support frame 2 provided on one side thereof. A material conveying pipe 11 penetrating through the support frame 2 is movably inserted on the feeding machine 1. On one side of the support frame 2, a clamping frame 21 and a positioning and lifting plate 4 are respectively movably provided for limiting the packaging bag. A conduction frame 3 is provided outside the clamping frame 21 and is inserted into the interior of the packaging bag for feeding and conveying cashmere;

[0037] Among them, the clamping frame 21 is composed of a metal shaft and a pair of baffles. A pair of hinge shafts 22 are movably arranged on the metal shaft. A conduction block 23 with a conveying end block 231 inserted therein is arranged outside the hinge shaft 22. A hemming plate 24 for clamping the packaging bag is movably arranged inside the conveying end block 231. A lifting arm 31 is arranged at the top of the conduction block 23. Telescopic rods connected to the conduction frame 3 are arranged on both of the pair of lifting arms 31. A conveying seat 41 for clamping the bottom of the packaging bag is arranged on the positioning and lifting plate 4. A positioning rod 44 is slidably arranged on the conveying seat 41. A pair of transmission slide rails 42 are movably arranged outside the conveying seat 41. A rotating and lifting frame 43 connected to a rotating shaft 47 is arranged outside the transmission slide rails 42. When it is necessary to transport cashmere, under the action of the feeder 1, the cashmere can be transported along the feeding pipe 11. At this time, the packaging bag can be clamped between the clamping frame 21 and the bottom positioning and lifting plate 4. The top of the packaging bag can be hemmed and reserved. The bottom can also pass through the bottom of the rotating shaft 47 and be clamped between the positioning clips 471, so as to position the packaging bag, which is convenient for feeding and bagging the cashmere. Moreover, the conduction frame 3 can be inserted into the packaging bag with an open mouth, which can play an auxiliary conduction role and quickly introduce the cashmere and the like into the packaging bag.

[0038] As Figure 4 and Figure 5 shown, in order to clamp and position the top of the bag, a pair of clamping sliders 211 slidably arranged on the support frame 2 are connected to the clamping frame 21. A reset insertion rod is arranged inside the conduction block 23, and the reset insertion rod is connected to one end of the conveying end block 231, which is used to control the position of the conveying end block 231 and can control the open position of the packaging bag to make it correspond to the position of the feeding pipe 11.

[0039] A set of compression rods are arranged at both ends of the hemming plate 24, and a pressing shaft 27 is connected to the outside of the compression rods. A rubber tube is sleeved outside the pressing shaft 27, which is used to press against the packaging bag to increase the friction force and reduce the occurrence of detachment. A positioning shaft 25 is connected to the surface of the hemming plate 24. A buffer backing plate 26 is installed at the bottom of the positioning shaft 25. A plurality of rubber blocks are arranged on the side of the buffer backing plate 26 close to the pressing shaft 27. Both the rubber blocks and the rubber tube can be replaced to reduce the friction force affected by wear during long-term use and to cooperate with the pressing shaft 27 to clamp the edge of the packaging bag. The hemming plate 24 is flipped to reserve the sewing position of the packaging bag. The hemming plate 24 can be flipped to fold the clamped packaging bag outwards by one layer, which can reserve the position of the subsequent sealing stitch and reduce the difficulty of sealing caused by uneven distribution of the internal cashmere.

[0040] As Figure 5As shown, a pair of sliding shafts 261 are slidably clamped at the bottom end of the buffer backing plate 26. The sliding shafts 261 are used to abut against both ends of the packaging bag for open support. After the folding plate 24 is flipped, it plays a supporting role by means of the sliding shafts 261, enabling the packaging bag to be set with an open mouth. At this time, the feeding and transmission of the lifting arm 31 and the conduction frame 3 can insert the diversion plate 35 into the packaging bag along the gap reserved by the sliding shafts 261.

[0041] As Figure 6 and Figure 7 shown, in order to reduce the stability of the feeding and reduce the situation of fluff flying, multiple groups of inclined pressing plates 32 are provided at the rear end of the conduction frame 3. A clamping shaft 34 with multiple arc-shaped grooves is installed on the bottom inclined surface of the inclined pressing plate 32. And an arc-shaped transmission plate 37 located between the inclined pressing plates 32 is interlocked and clamped inside the arc-shaped grooves. A fixed shaft 371 parallel to the arc-shaped transmission plate 37 is provided at the top end of the arc-shaped transmission plate 37. A hinge roller is provided on the surface of the fixed shaft 371. And a diversion plate 35 is movably provided at the outer top of the hinge roller. The diversion plate 35 can be inserted into the interior of the packaging bag with an open mouth, which can play a role in guiding the cashmere, and the diversion plate 35 can also play a blocking role, reducing the situation of the cashmere entering the interior of the packaging bag flying under the action of external force and reducing the impact on the processing environment;

[0042] A plurality of reset shafts 351 are inserted into the bottom of the diversion plate 35 in an interactive manner. The reset shafts 351 are elliptical and abut against the gaps between the inclined pressing plates 32. During the small reciprocating movement of the diversion plate 35, the arcs of the reset shafts 351 can continuously squeeze and deform with the edges of the inclined pressing plates 32 on both sides, squeezing and conveying the cashmere during the feeding process, reducing the blockage caused by large masses of cashmere during the feeding process, and enabling the cashmere after feeding to be evenly distributed in the packaging bag;

[0043] In addition, it should be noted that during the left-right swinging of the packaging bag, it can drive the adsorption plate 36 and the fixed shaft 371 to move, so that the arc-shaped transmission plate 37 reciprocates inside the arc-shaped groove, which can drive the top diversion plate 35 to follow its movement. And during the small reciprocating movement of the diversion plate 35, the arcs of the reset shafts 351 can continuously squeeze and deform with the edges of the inclined pressing plates 32 on both sides, squeezing and conveying the cashmere during the feeding process, reducing the blockage caused by large masses of cashmere during the feeding process.

[0044] As Figure 6As shown, the top of the fixed shaft 371 is provided with a bent extension plate, and an adsorption plate 36 is connected to the outside of the extension plate. A plurality of adsorption grooves are provided on the side of the adsorption plate 36 close to the inclined pressing plate 32, and a grid plate is provided inside the adsorption grooves. The adsorption plate 36 is hollow and one end is connected to an air extraction pipe communicating with the adsorption grooves. An external air pressure device can form a negative pressure at the adsorption plate 36 through the air extraction pipe, and can attach one side of the packaging bag to the adsorption plate 36. At this time, the reciprocating slider 45 and the reset plate at the bottom clamp the bottom of the packaging bag and start reciprocating motion, which can drive the packaging bag to swing slightly from side to side, facilitating the shaking of the cashmere to the bottom, reducing the situation of local accumulation during the cashmere feeding process, resulting in uneven internal distribution, and reducing the situation of overflow during the feeding process, which affects the subsequent packaging and sealing.

[0045] As Figure 6 , a reset cushion plate 33 is provided at the bottom of the inclined pressing plate 32, and a plurality of metal shafts are provided at the bottom of the reset cushion plate 33.

[0046] As Figure 8 and Figure 9 shown, a set of chutes are provided on one side of the positioning rod 44, and reciprocating sliders 45 are provided inside the chutes. A rubber pressing plate 451 connected with a plurality of pushing shafts is provided on the outside of the reciprocating slider 45. A pair of reset plates are slidably provided on the side of the rotating shaft 47 corresponding to the positioning rod 44, and by adjusting the position of the conveying seat 41, the packaging bag can be inclined, enabling the cashmere to feed along the inclined plane;

[0047] A transmission frame 46 is inserted into the positioning rod 44, and a plurality of rubber rollers 461 are provided inside the transmission frame 46 for abutting against the outside of the packaging bag. The bottom of the packaging bag can be clamped by means of the reciprocating slider 45 and the reset plate, and during the movement of the reciprocating slider 45, the packaging bag can be driven to swing slightly, which is used to assist in feeding and reduce the situation of local accumulation.

[0048] As Figure 9As shown, multiple groups of positioning clips 471 are provided at one end of the rotating shaft 47 for connecting the bottom edge of the packaging bag. The packaging bag swings slightly left and right, facilitating the shaking of the cashmere to the bottom. And a certain length of the packaging bag is reserved in the clamping area formed by the positioning clip 471, the reciprocating slider 45 and the reset plate, which does not affect the left and right swing of the bottom of the packaging bag. After completing the subsequent packaging stitching, the rotating shaft 47 and the positioning rod 44 can be separated. At this time, the rotating shaft 47 makes a circular motion, and at the same time, it can move upward uniformly under the action of the rotating lifting frame 43, capable of rotating the packaging bag. With the help of the rotating shaft 47, the packaging bag can be rotationally compressed, which can play a role in even material distribution. And the excess cashmere inside can enter the packaging bag with a certain length reserved in the clamping area formed by the positioning clip 471, the reciprocating slider 45 and the reset plate, and there will be no situation of excessive accumulation inside the packaging bag. The operator can reversely rotate and remove the wound and compressed packaging bag. At this time, the packaging bag is relatively flat and adherent, facilitating subsequent stacking and transportation.

[0049] Working principle: First, when it is necessary to transfer cashmere, under the action of the feeder 1, the cashmere can be transferred along the feeding pipe 11. At this time, the packaging bag can be clamped between the clamping frame 21 and the bottom positioning lifting plate 4, and the top of the packaging bag can be folded and reserved. The bottom can also pass through the bottom of the rotating shaft 47 and be clamped between the positioning clips 471, capable of positioning the packaging bag, facilitating the feeding and bagging of cashmere. And the conduction frame 3 can be inserted into the packaging bag with an open mouth, capable of playing an auxiliary conduction role, quickly introducing cashmere and the like into the packaging bag. And during the process of limiting the packaging bag, its two side edges can be clamped between the buffer cushion plate 26 and the pressing shaft 27. And at this time, the sliding shaft 261 can be stretched towards both ends. After the folding plate 24 is flipped, with the help of the sliding shaft 261 to play a supporting role, the packaging bag can be set with an open mouth, and with the help of the folding plate 24 to reserve the corresponding stitching position. At this time, the feeding and transmission of the lifting arm 31 and the conduction frame 3 can insert the deflector 35 into the packaging bag along the gap reserved by the sliding shaft 261, capable of further stretching the opening width of the packaging bag, facilitating subsequent feeding.

[0050] Then, after the clamping frame 21 is lifted, the packaging bag can be against the bottom position of the feeding pipe 11, and at this time, the external air pressure device can form a negative pressure at the adsorption plate 36 with the help of the exhaust pipe, so that one side of the packaging bag can be attached to the adsorption plate 36. At this time, the reciprocating slider 45 and the reset plate at the bottom clamp the bottom of the packaging bag and start reciprocating movement, which can drive the packaging bag to swing slightly left and right, so as to shake the cashmere to the bottom. The clamping interval formed by the positioning clip 471, the reciprocating slider 45 and the reset plate is reserved for a certain length of the packaging bag, which does not affect the left and right swinging of the bottom of the packaging bag. In the feeding process, the position of the conveying seat 41 can be controlled, so that the packaging bag can be tilted, so that the cashmere can be fed along the inclined surface, and the guide plate 35 can play a certain dust-blocking role, thereby reducing the flying of the cashmere entering the interior during the continuous feeding process.

[0051] Finally, when the packaging bag swings left and right, it can drive the adsorption plate 36 and the fixed shaft 371 to move, so that the arc transmission plate 37 can reciprocate inside the arc groove, and can drive the guide plate 35 at the top to follow its movement. In the process of the small reciprocating movement of the guide plate 35, the arc of the reset shaft 351 can continue to be squeezed with the edges of the inclined pressure plates 32 on both sides, thereby deforming and moving, squeezing and conveying the cashmere in the feeding process, and reducing the blockage caused by large clumps of cashmere during the feeding process.

[0052] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A coiling, compressing and packaging machine for cashmere bagging, characterized in that: Including, a feeder (1) with a support frame (2) provided on one side thereof. A material conveying pipe (11) penetrating through the support frame (2) is movably inserted on the feeder (1). On one side of the support frame (2), a clamping frame (21) and a positioning and lifting plate (4) are respectively movably provided for limiting the packaging bag. A conduction frame (3) is provided outside the clamping frame (21), and the conduction frame (3) is inserted into the interior of the packaging bag for feeding and transmitting cashmere; Wherein, the clamping frame (21) is composed of a metal shaft and a pair of baffle plates, and a pair of hinge shafts (22) are movably provided on the metal shaft. A conduction block (23) with a conveying end block (231) inserted therein is provided outside the hinge shaft (22). A folding edge plate (24) for clamping the packaging bag is movably provided inside the conveying end block (231). A lifting arm (31) is provided at the top of the conduction block (23). A telescopic rod connected to the conduction frame (3) is provided on each of the pair of lifting arms (31). A conveying seat (41) for clamping the bottom of the packaging bag is provided on the positioning and lifting plate (4). A positioning rod (44) is slidably provided on the conveying seat (41). A pair of transmission sliding rails (42) are movably provided outside the conveying seat (41). A rotating and lifting frame (43) connected to a rotating shaft (47) is provided outside the transmission sliding rail (42).

2. The winding, compressing and packaging machine for cashmere bagging according to claim 1, wherein: A pair of clamping sliders (211) slidably provided on the support frame (2) are connected to the clamping frame (21). A reset insertion rod is provided inside the conduction block (23), and the reset insertion rod is connected to one end of the conveying end block (231) for controlling the position of the conveying end block (231); A set of compression rods are provided at both ends of the folding edge plate (24), and a pressing shaft (27) is connected to the outside of the compression rods. A rubber tube is sleeved outside the pressing shaft (27). A positioning shaft (25) is connected to the surface of the folding edge plate (24). A buffer backing plate (26) is installed at the bottom of the positioning shaft (25). A plurality of rubber blocks are provided on one side of the buffer backing plate (26) close to the pressing shaft (27) for cooperating with the pressing shaft (27) to clamp the edge of the packaging bag. The folding edge plate (24) is flipped to reserve a sewing position for the packaging bag.

3. A coiling, compressing and packaging machine for cashmere bagging according to claim 2, characterized in that: A pair of sliding shafts (261) are slidably clamped at the bottom end of the buffer backing plate (26), and the sliding shafts (261) are used to abut against both ends of the packaging bag for open-mouth support.

4. A coiling, compressing and packaging machine for cashmere bagging, characterized in that: A plurality of inclined pressing plates (32) are provided at the rear end of the conduction frame (3). A clamping shaft (34) with a plurality of arc-shaped grooves opened thereon is installed on the bottom inclined surface of the inclined pressing plate (32). An arc-shaped transmission plate (37) located between the inclined pressing plates (32) is movably clamped inside the arc-shaped groove. A fixed shaft (371) parallel to the arc-shaped transmission plate (37) is provided at the top of the arc-shaped transmission plate (37). A hinge roller is provided on the surface of the fixed shaft (371), and a diversion plate (35) is movably provided at the top outside the hinge roller; A plurality of reset shafts (351) are movably inserted at the bottom of the diversion plate (35), and the reset shafts (351) are elliptical and abut against the gaps between the inclined pressing plates (32).

5. A coiling, compressing and packaging machine for cashmere bagging, according to claim 4, characterized in that: The top end of the fixed shaft (371) is provided with a bent extension plate, and an adsorption plate (36) is connected to the outside of the extension plate. A plurality of adsorption grooves are provided on one side of the adsorption plate (36) close to the inclined pressing plate (32), and a grid plate is provided inside the adsorption grooves. The adsorption plate (36) is hollow and is connected to an air extraction pipe communicating with the adsorption grooves at one end.

6. A coiling, compressing and packaging machine for cashmere bagging, according to claim 4, characterized in that: A reset cushion plate (33) is provided at the bottom of the inclined pressing plate (32), and a plurality of metal shafts are provided at the bottom of the reset cushion plate (33).

7. A coiling, compressing and packaging machine for cashmere bagging, according to claim 1, characterized in that: A set of sliding grooves are formed on one side of the positioning rod (44), and reciprocating sliders (45) are provided inside the sliding grooves. A rubber pressing plate (451) connected with a plurality of pushing shafts is provided on the outside of the reciprocating slider (45). A pair of reset plates are slidably provided on the side of the rotating shaft (47) corresponding to the positioning rod (44). A transmission frame (46) is inserted into the positioning rod (44), and a plurality of rubber rollers (461) are provided inside the transmission frame (46) for abutting against the outer side of the packaging bag.

8. A coiling, compressing and packaging machine for cashmere bagging, according to claim 1, characterized in that: A plurality of groups of positioning clips (471) are provided at one end of the rotating shaft (47) for connecting the bottom edge of the packaging bag.

Citation Information

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