A ring spinning machine traveller setter
By designing a ring spinning machine traveler installer, and utilizing the cooperation of the handle mechanism and the upper traveler mechanism, the problems of low traveler installation efficiency and plastic deformation were solved, achieving efficient and reliable traveler installation.
Patent Information
- Application Number
- CN202311581660.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-24
- Publication Date
- 2025-12-09
- Estimated Expiration
- 2043-11-24
AI Technical Summary
The existing ring spinning machine has a low efficiency in the installation process of the steel traveler. Uneven installation force can lead to plastic deformation or damage of the steel traveler, and it requires a lot of manual operation.
Design a ring spinning machine wire ring installer, including a feeding mechanism, a handle mechanism, and a ring mounting mechanism. The handle mechanism pushes the wire ring to open, and the limiting component and return spring ensure stable installation after the opening increases. Magnets assist in positioning the wire ring to ensure that the wire ring is successfully installed on the ring.
It improves the reliability and efficiency of wire ring installation, reduces the impact of manual force on the installation effect, reduces the requirements for manual operation force, avoids deformation and damage of the wire ring, and simplifies the reset process.
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Figure CN117385507B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of spinning equipment, in particular to a ring spinning machine traveler installer. BACKGROUND
[0002] The ring spinning machine is a classic spinning equipment, widely used in the cotton textile industry. Its main structure includes roller, spindle, bobbin and other components, through mechanical movement to gradually thin the cotton and wind it on the bobbin. Ring spinning machine has the characteristics of high efficiency, high precision and high yield, suitable for large-scale production. The working principle of ring spinning machine is that the cotton is fed through the roller, the roller rotates to thin the cotton and through the twisting action of the twister to wind it on the bobbin. The spindle rotates at a certain speed, so that the twisted yarn forms a ring around the spindle. With the formation of the yarn, the ring spinning machine can also change the twist, linear density and other indicators of the yarn through the adjustment of the control mechanism. The advantages of ring spinning machine include high efficiency, high precision and high yield. Its production process is highly automated, which can save labor costs and improve production efficiency. At the same time, the structure of ring spinning machine is simple and easy to maintain, which also reduces the use cost. In addition, ring spinning machine can produce high-quality yarn to meet the needs of various textiles.
[0003] The traveler is an important accessory of the ring spinning machine, its service life is affected by many factors, such as the linear density of the yarn, the type of fiber, the processing speed, the material and heat treatment process of the traveler, etc. Generally speaking, the service life of the traveler is between 1-3 months. If the traveler is severely worn or broken during use, it needs to be replaced in time. At the same time, during use, the wear of the traveler should be checked regularly, if severe wear or cracks are found, the traveler should also be replaced in time. When replacing the traveler, the old traveler needs to be removed, and then the new traveler is installed. During installation, the traveler should be in good contact with the bobbin and should not be stuck in the bobbin. Finally, the traveler is fixed on the spindle, the position and tension are adjusted to ensure its normal operation.
[0004] Since the ring spinning machine bobbin replacement is generally in manual mode, a large number of workers are needed to operate. Workers usually install the bobbin with the help of tweezers, bamboo sticks and steel fibers. The replacement process requires certain skills and experience, and improper installation may cause yarn jamming or uneven running. Therefore, workers need to have certain skills and experience to complete the task. There is only one relevant patent for bobbin installation tool: ZL201811528329.X. The installer invented in the patent pushes the push rod manually to push the bobbin opening into the edge of the ring, and then installs it on the ring through the elastic deformation of the bobbin. If the bobbin opening and the outer edge of the ring cannot be aligned, the installation is difficult to succeed. In addition, the bobbin is pushed manually, and the force is difficult to control. If the force is too small, the bobbin will not deform sufficiently, the opening will be small, and the bobbin cannot be successfully installed on the ring. If the force is too large, the bobbin may be plastically deformed, thereby causing damage to the bobbin. Therefore, the above bobbin installer has great disadvantages. SUMMARY
[0005] The present application provides a ring spinning machine bobbin installer, which solves the problems of low efficiency of installing the bobbin, plastic deformation and damage of the bobbin caused by uneven force during installation of the bobbin in the prior art.
[0006] The technical scheme adopted is as follows: a ring spinning machine bobbin installer, comprising a feeding mechanism preloaded with a plurality of bobbins with openings, a handle mechanism for pushing the bobbins into the ring one by one, an upper ring mechanism for increasing the opening of the bobbin to facilitate the insertion of the ring to complete the installation of the bobbin, and a casing for fixing the feeding mechanism, the handle mechanism and the upper ring mechanism as a whole; the upper ring mechanism comprises two symmetrical opening blocks, the two opening blocks are respectively hinged to the casing, and a distance-adjustable insertion port for the ring is formed between the two opening blocks, the insertion port is enlarged in distance under the action of the handle mechanism; a reset spring is arranged between the opening block and the casing.
[0007] The present application increases the opening of the bobbin through the cooperation of the handle mechanism and the upper ring mechanism, facilitates the installation of the bobbin on the ring, and improves the reliability of the operation. The present application does not have high requirements for manual force, and reduces the influence of manual force on the installation effect.
[0008] Further optimization of the technical scheme of the present application is that the top of the opening block is provided with a limiting component for preventing the bobbin from falling off, which prevents the bobbin from falling off when the opening of the bobbin is increased.
[0009] Further preferably, the two opening blocks are respectively hinged to the casing through the symmetrical moving mechanisms arranged on the casing, the two opening blocks rotate on the two moving mechanisms respectively, and the two moving mechanisms drive the two sliders to move horizontally, and the two opening blocks move left and right respectively under the cooperation of the moving mechanisms to increase the opening of the wire ring.
[0010] Further preferably, the two moving mechanisms each include a slider, one end of the slider is connected with a reset spring, the other end is hinged to the opening block, the slider drives the opening block to move under the cooperation of the reset spring through a fixed guide rail, the fixed guide rail is arranged on the casing to drive the opening block to move horizontally in the casing, and the fixed guide rail limits the moving distance of the opening block.
[0011] Further preferably, the handle mechanism 1 includes a push rod and a push rod reset spring, the push rod is arranged in the casing in a vertical direction to push the wire rings into the ring winding mechanism one by one, and the push rod reset spring is sleeved on the push rod to push the wire rings into the ring winding mechanism.
[0012] Further preferably, the feeding mechanism further includes a box, a magnet and a feeding assembly, the plurality of wire rings and the feeding assembly are arranged in the box, the plurality of wire rings abut against the feeding assembly, the magnet is arranged on the outer end face of the box to adsorb the wire rings one by one under the action of the feeding assembly, and the magnet is used to provide the wire rings for the ring winding mechanism one by one to improve the ring winding efficiency.
[0013] Further preferably, a rectangular through hole is formed in the box to facilitate the push rod to push the wire rings into the ring winding mechanism, and the rectangular through hole is used to move the wire rings from the feeding mechanism into the ring winding mechanism.
[0014] Further preferably, the casing between the feeding mechanism and the ring winding mechanism is respectively and symmetrically provided with a limiting block for limiting the position of the wire ring to avoid displacement.
[0015] Compared with the prior art, the present application has the following advantages:
[0016] 1. The present application increases the opening of the wire ring under the cooperation of the handle mechanism and the ring winding mechanism, avoids accidental falling of the wire ring when the opening of the wire ring is deformed through the limiting assembly, clamps the ring when the ring moves out of the installation device under the rotation of the opening block to complete the installation, and improves the reliability of operation.
[0017] 2. The present application adsorbs the wire ring on the end face of the box through the magnet, pushes the wire ring into the ring winding mechanism one by one in order under the cooperation of the rectangular through hole, the push rod and the feeding mechanism, and limits the position of the wire ring through the limiting block to facilitate subsequent installation of the wire ring on the ring. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 is an axonometric view of a ring spinning machine traveller setter;
[0019] Figure 2 is a full section view of a ring spinning machine traveller setter;
[0020] Figure 3 is a partial enlarged view of the full section view;
[0021] Figure 4 is a partial structure view of a ring spinning machine traveller setter (remove handle body, shell, magazine);
[0022] Figure 5 is a partial section view of a ring spinning machine traveller setter (remove handle body, shell, magazine);
[0023] Figure 6 is an installation schematic view of a ring spinning machine traveller setter;
[0024] Figure 7 is a structure view of an opening block;
[0025] Figure 8 is a schematic view of the installation of an opening block and a sliding block (left is an elevation view, right is a side view);
[0026] Figure 9 is a partial structure enlarged view of a ring spinning machine traveller setter;
[0027] Figure 10 is a schematic view of a traveller installation process;
[0028] Figure 11 is a successful effect view of traveller installation;
[0029] Figure 12 is a schematic view of a feeding mechanism structure;
[0030] Explanation of reference signs: handle mechanism 1, ring setting mechanism 2, feeding mechanism 3, ring traveller 4, handle body 101, push rod 102, gasket 103, screw 104, push rod return spring 105, shell 201, left limit block 202, left opening block 203, left fixed guide rail 204, left sliding block 205, left return spring 206, left torsion spring 207, left spindle 208, right fixed guide rail 209, right limit block 210, right sliding block 211, right return spring 212, right torsion spring 213, right spindle 214, right opening block 215, limit assembly 216, magnet 301, traveller 302, guide column 303, feeding block 304, feeding spring 305, magazine 306, rectangular through hole 3061, trapezoidal baffle 2161, connecting plate 2162. DETAILED DESCRIPTION
[0031] The technical solution of the present invention will be described in detail below, but the scope of protection of the present invention is not limited to the embodiments described.
[0032] To make the content of this invention clearer and easier to understand, the following description is in conjunction with the appendix. Figure 1 - 12 and specific implementation methods are further described. Example 1
[0033] like Figures 1-12 As shown, a ring spinning machine traveler 302 installer according to this embodiment includes a feeding mechanism 3 pre-loaded with a plurality of travelers 302 with openings, a handle mechanism 1 for pushing the travelers 302 one by one into the ring 4 for assembly, an upper ring mechanism 2 for increasing the opening of the traveler to facilitate the insertion of the ring 4 to complete the installation of the traveler, and a housing for fixing the feeding mechanism 3, the handle mechanism 1 and the upper ring mechanism 2 into a whole.
[0034] like Figure 1 , Figure 2 As shown, in this embodiment, the housing of the installer consists of three parts: the handle body 101 in the handle mechanism 1, the housing 201 in the upper ring mechanism 2, and the material box 306 in the feeding mechanism. The housing 201 is fixed to the handle body 101 by bolts, the feeding mechanism 3 is fixed in the inner cavity of the upper ring mechanism 2, and the material box 306 is fixed to the housing 201 by bolts.
[0035] like Figure 3 As shown, the handle mechanism 1 includes a handle body 101, a push rod 102 and a push rod return spring 105. The push rod 102 is mounted vertically on the handle body 101 to push the wire ring 302 to move into the upper ring mechanism 2. The push rod return spring 105 is sleeved on the push rod 102.
[0036] One end of the push rod 102 has a rectangular plate that passes through a rectangular through hole 3061 to push the wire ring 302. The other end is fixedly connected to the washer 103. The washer 103 is threadedly connected to the push rod 102 by a screw 104 to limit the distance of pushing the push rod 102 and avoid excessive pushing of the wire ring 302.
[0037] The push rod return spring 105 is sleeved on the push rod 102. The push rod 102 is also provided with a shoulder to limit the position of the push rod 102 on the handle body 101. One end of the push rod return spring 105 is connected to the housing 201, and the other end is connected to the shoulder of the push rod 102 to limit the compression distance of the push rod return spring 105. At the same time, the push rod return spring 105 will reset the push rod 102 to its initial state after being pressed, so that it can be pressed again during the next installation.
[0038] The feeding mechanism 3 comprises a box 306, a magnet 301, a feeding mechanism and a wire ring 302. The box 306 is fixedly connected with the shell 201. The feeding mechanism and the wire ring 302 are arranged in the box. The magnet 301 is arranged on the outer end face of the box 306 and is magnetically connected with the wire ring 302. The wire ring 302 abuts against the feeding mechanism.
[0039] The box 306 is provided with a rectangular through hole 3061 near one end in the shell 201. As shown in the figure, the rectangular through hole 3061 is also provided with a through hole in the opposite position of the shell 201, so that the handle mechanism 1 is communicated with the box 306, thereby facilitating the push rod 102 to push the wire ring 302 through the rectangular through hole 3061 and move the wire ring 302 to the installation position. Figure 12
[0040] The feeding mechanism comprises a guide column 303, a feeding block 304 and a feeding spring 305. The guide column 303 is erected in the box 306. The feeding block 304 and the feeding spring 305 are sleeved on the guide column 303. The feeding spring 305 is connected with the feeding block 304 and the box 306 respectively. A plurality of wire rings 302 are placed in the box 306 and are sleeved on the guide column 303. The feeding block 304 facilitates the wire ring 302 to be pushed to the rectangular through hole 3061 in the horizontal direction under the cooperation of the feeding spring 305, so that the push rod 102 subsequently pushes the wire ring 302 to the opening block, thereby facilitating the opening block to hold the wire ring 302. The outer end face of the end of the box 306 close to the rectangular through hole 3061 is fixedly provided with a magnet for adsorbing the wire ring 302, so that the wire ring 302 is not easy to fall off.
[0041] The box 306 is provided with a left limiting block 202 and a right limiting block 210 between the left opening block 203 and the right opening block 215 respectively. The channel formed between the left limiting block 202 and the right limiting block 210 is consistent in size and shape with the rectangular through hole 3061, so that when the push rod 102 pushes the wire ring 302 downward, the wire ring 302 moves into the channel and the position of the wire ring 302 is limited, thereby facilitating the opening block to hold the wire ring 302.
[0042] As shown in the figure, the installation position of the installer in the embodiment is in the channel formed by the left limiting block 202 and the right limiting block 203, and the opening block holds the wire ring 302 when the wire ring 302 is at the installation position. Figure 4 As shown in the figure, the shape of the opening block is inverted triangular, and the opening block is provided with a limiting assembly 216 for avoiding the wire ring 302 from falling off.
[0043] Figure 7
[0044] The limiting component 216 includes trapezoidal baffles 2161 symmetrically arranged on the front and rear sides of the slider. The trapezoidal baffles 2161 limit the front and rear positions of the wire ring 302, and their length does not conflict with the slider installation. The two trapezoidal baffles 2161 are connected by a connecting plate 2162. The connecting plate 2162 is located on the side near the opening of the wire ring 302 when it is in the installation position. A triangular protrusion is provided near the top of the connecting plate 2162 to prevent the wire ring 302 from sliding out of the limiting component 216. Figure 8 , Figure 9 As shown, both the left opening block 205 and the right opening block 2015 are equipped with limiting components 216.
[0045] like Figure 9 As shown, the opening blocks are symmetrically arranged on the housing 201, and are divided into a left opening block 203 and a right opening block 215. The left opening block is connected to the left moving mechanism, and the right opening block 215 is connected to the right moving mechanism. A left return spring 206 is provided between the left opening block 205 and the housing 201, and a right return spring 212 is provided between the right opening block 215 and the housing 201.
[0046] The left-side moving mechanism includes a left slider 205. One end of the left slider 205 is hinged to the left open block 203, and the other end is connected to the housing 201 through the left return spring 206. The left slider 205 moves horizontally through the left fixed guide rail 204 with the cooperation of the left return spring, thereby driving the left slider 205 to move.
[0047] like Figure 8 As shown, the left opening block 203 is connected to the left slider via the left spindle 208, and the left torsion spring 207 is sleeved on the left spindle 208 and connected to the left opening block 203 and the left slider 205 respectively.
[0048] When the left opening block 203 is squeezed by the steel collar 4 under the action of the handle 1, the left opening block 203 moves to the left, thereby moving the left slider 205 to the left and compressing the left return spring 206. When the external force disappears, the left slider 205 returns to its original position and moves to the right under the action of the left return spring 206, thereby driving the left opening block 203 to move to the right.
[0049] The right-side moving mechanism includes a right slider 211. One end of the right slider 211 is hinged to the right open block 215, and the other end is connected to the housing 201 through the right return spring 212. The right slider 211 moves horizontally through the right fixed guide rail 209 with the cooperation of the right return spring 212, thereby driving the right slider 211 to move.
[0050] like Figure 8As shown, the right opening block 215 is connected with the right slider 211 through the right shaft 214, and the right torsion spring 213 is sleeved on the right shaft 214 and connected with the right opening block 215 and the right slider 211 respectively.
[0051] When the right opening block 215 is extruded by the ring 4 under the action of the handle 1, the right opening block 215 moves rightward, so that the right slider 211 moves rightward to compress the right reset spring 212, and when the external force disappears, the right slider 211 resets and moves rightward under the action of the right reset spring 212, thereby driving the right opening block 215 to move rightward.
[0052] The right opening block 215 is connected with the right slider 211 through the right shaft 214, and the right torsion spring 213 is sleeved on the right shaft 214 and connected with the right opening block 215 and the right slider 211 respectively.
[0053] When the left opening block 203 and the right opening block 204 are in the initial state, the insertion port formed by the left opening block 203 and the right opening block 204 for inserting the ring 4 is in an inverted V shape.
[0054] The installation positions of the left torsion spring 207 and the right torsion spring 213 with the left opening block 203 and the left slider 205 and the right opening block 215 and the right slider 211 respectively are set to meet the following conditions: when the left opening block 203 and the right opening block 215 are subjected to an upward force, the left opening block 203 moves leftward under the action of the left moving mechanism, and the right opening block 215 moves rightward under the action of the right moving mechanism, without rotating upward, so that the distance between the left opening block 203 and the right opening block 215 increases, and the insertion port for inserting the ring 4 becomes larger; and when the ring 4 with the wire ring 302 is removed from the upper coiling mechanism 3 and subjected to a downward force, the left opening block 203 and the right opening block 215 can respectively rotate downward under the action of the left shaft 208 and the right shaft 214, so as to increase the distance between the left opening block 203 and the right opening block 215, and simultaneously, the limiting assembly 216 moves out of the opening of the wire ring 302 with the rotation of the left opening block 203 and the right opening block 215, so as to be clamped on the ring 4, thereby completing the installation and removing the ring 4.
[0055] In the embodiment, the installer is as shown in Figure 4 As shown, the left fixed guide rail 204 and the right fixed guide rail 209 are symmetrically arranged and fixed on the shell 201 by screws respectively, and the left limiting block 202 and the right limiting block 210 are fixed on the left fixed guide rail 204 and the right fixed guide rail 209 by screws respectively.
[0056] The use method of the ring traveler installer of the ring spinning machine of the embodiment is as follows: in the initial state, the feeding block 304 pushes the ring traveler 302 in the feeding box to the rectangular through hole 3061 under the action of the feeding spring 305, and the ring traveler 302 is adsorbed at the end face of the feeding box 306 by the magnet 301, so as to avoid free falling of the ring traveler 302; in use, the handle mechanism 101 is held by hand, the big thumb presses the push rod 102, the ring traveler 302 is pushed to the installation position, at this time, the left opening block 203 and the right opening block 215 hold the ring traveler 302, and the openings of the ring traveler 302 are respectively located at the connection positions of the left opening block 203 and the limiting assembly 216 thereof and the right opening block 215 and the limiting assembly 216 thereof, then the inverted V-shaped socket formed by the left opening block 203 and the right opening block 215 under the ring traveler installing mechanism 2 is aligned with the ring 4, as shown in Fig. 10(1).
[0057] The handle mechanism 101 is pressed down, the left opening block 203 pushes the left sliding block 205 to move leftwards in the left fixed guide rail 204 under the extrusion of the ring 4, the right opening block 215 pushes the right sliding block 211 to move rightwards in the right fixed guide rail 209, at the same time, the left opening block 203 and the right opening block 215 open the opening of the ring traveler 302, at this time, the opening of the ring traveler 302 is enlarged, the two sides of the opening of the ring traveler 302 move upwards along the connecting plates 2162 of the upper limiting assemblies 216 of the left and right opening blocks, at this time, the triangular protrusions on the connecting plates 2162 block the upward movement of the ring traveler 302 to avoid falling off of the ring traveler 302, as shown in Fig. 10(2).
[0058] After the ring 4 successfully enters the ring traveler installing mechanism 3, the left opening block 203 is reset under the action of the left reset spring 206, and the right opening block 215 is reset under the action of the right reset spring 212, at this time, the left opening block 203 and the right opening block 215 abut against the side wall of the ring 4, as shown in Fig. 10(3).
[0059] When the ring 4 moves out of the ring traveler installing mechanism 3 under the action of the handle mechanism 1, the left opening block 203 and the right opening block 215 are subjected to downward pulling force, at this time, the left opening block 203 rotates clockwise around the left shaft 208, and the right opening block 215 rotates counterclockwise around the right shaft 214, the distance between the left opening block 203 and the right opening block 215 is enlarged, and at the same time, in the rotating process of the left opening block 203 and the right opening block 215, the connecting plates 2162 in the limiting assemblies 216 on the left opening block 203 and the right opening block 215 are blocked, when the rotation reaches a certain angle, the opening of the ring traveler 302 is not hindered by the connecting plates 2162, and the ring traveler 302 is automatically clamped on the ring 4 to complete the installation, as shown in Fig. 10(4).
[0060] Fig. 10(5) and Figure 11As shown, the bead 302 is successfully mounted on the ring 4 and removed from the installer, at this time, the left and right open blocks 203 and 215 are reset under the action of the left and right torsion springs 207 and 213 respectively.
[0061] Push the push rod 102 to push the bead 302 in the magazine 306 to the mounting position for the next mounting, as shown in Fig. 10 (6).
[0062] The ring 4 in the embodiment is known to those skilled in the art; the parts not involved in the application are the same as or can be realized by the prior art.
[0063] As described above, although the application has been shown and described with reference to certain preferred embodiments, it is to be understood that such is by way of illustration and not of limitation; various changes in form and details can be made therein without departing from the spirit and scope of the application as defined in the appended claims.
Claims
1. A ring spinning machine traveller mounter characterised in that: The application relates to a device for assembling a ring on a ring carrier, comprising a feeding mechanism (3) preloaded with a plurality of ring wires (302) with openings, a handle mechanism (1) for pushing the ring wires (302) into assembly with the ring carrier (4) one by one, and a ring assembling mechanism (2) for increasing the opening of the ring wire to facilitate the insertion of the ring carrier (4) and the completion of the assembly of the ring wire, and a casing for fixing the feeding mechanism (3), the handle mechanism (1) and the ring assembling mechanism (2) as a whole. The ring assembling mechanism (2) comprises two symmetrical opening blocks, the two opening blocks are hingedly connected to the casing, a distance-adjustable insertion opening for the ring carrier (4) is formed between the two opening blocks, and the distance of the insertion opening is increased under the action of the handle mechanism (1); reset springs are arranged between the opening blocks and the casing; the two opening blocks are respectively hingedly connected to the casing through two moving mechanisms symmetrically arranged on the casing, the two opening blocks are respectively rotated on the two moving mechanisms, and the two moving mechanisms respectively drive the two opening blocks to horizontally move; the two moving mechanisms each comprise a sliding block, one end of the sliding block is connected with a reset spring, the other end of the sliding block is hingedly connected with the opening block, the sliding block drives the opening block to move under the cooperation of the reset spring through a fixed guide rail, and the fixed guide rail is arranged on the casing; the opening block is in the shape of an inverted triangle, and a limiting component (216) for preventing the ring wire (302) from falling off is arranged at the top of the opening block; the limiting component (216) comprises two trapezoidal baffles (2161) symmetrically arranged on the front and back of the sliding block, the trapezoidal baffles (2161) are used for limiting the front and back positions of the ring wire (302), the length of the trapezoidal baffles (2161) is not in conflict with the installation of the sliding block, the two trapezoidal baffles (2161) are connected through a connecting plate (2162), the connecting plate (2162) is arranged on the side close to the opening of the ring wire (302) when the ring wire (302) is in the installation position, a triangular protrusion is arranged on the side close to the top of the connecting plate (2162), and the triangular protrusion prevents the ring wire (302) from sliding out of the limiting component (216).
2. A traveller mount for a ring spinning frame as claimed in claim 1, characterised in that: The top of the opening block is provided with a limiting component (216) for preventing the ring wire (302) from falling off.
3. A traveller mount for a ring spinning frame as claimed in claim 1, characterised in that: The handle mechanism (1) comprises a push rod (102) and a push rod reset spring (105), the push rod (102) is erected in the casing in the vertical direction and pushes the ring wires (302) into the ring assembling mechanism (2) one by one, and the push rod reset spring (105) is sleeved on the push rod (102).
4. A traveller mount for a ring spinning frame as claimed in claim 1, characterised in that: The feeding mechanism (3) further comprises a box (306), a magnet (301) and a feeding component, a plurality of ring wires (302) and the feeding component are arranged in the box (306), the plurality of ring wires (302) abut against the feeding component, and the magnet (301) is arranged on the outer end face of the box (306) and adsorbs the ring wires (302) one by one under the action of the feeding component.
5. A traveller mount for a ring spinning frame as claimed in claim 4, characterised in that: Rectangular through holes (3061) are formed in the box (306) and facilitate the push rod (102) to push the ring wires (302) into the ring assembling mechanism (2).
6. A traveler mount for a ring spinning frame as claimed in claim 1, characterized in that: Limiting blocks for limiting the positions of the ring wires (302) are symmetrically arranged on the casing between the feeding mechanism (3) and the ring assembling mechanism (2).
Citation Information
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