Right adjustable head assembly of hosiery knitter

By setting an alarm sensor component on the right movable head mechanism of the hosiery machine, the problem of the right movable head being unable to reach the specified position due to a malfunction is solved, thereby ensuring product quality and safety.

CN223458501UActive Publication Date: 2025-10-21ZHEJIANG YEXIAO KNITTING MACHINERY
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Patent Information

Application Number
CN202422992012.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-10-21
Estimated Expiration
2034-12-05

AI Technical Summary

Technical Problem

When the right movable head of an existing hosiery knitting machine fails in the transmission system or electrical control system, it cannot accurately reach the specified position, resulting in knitting errors, mechanical failures and safety hazards.

Method used

An alarm sensing component is set on the right movable head mechanism, and the movement is monitored by the sensing column and sensor to ensure that the movable head reaches the specified position, and an alarm is issued in time to avoid continuing to work.

Benefits of technology

Avoids weaving errors, prevents mechanical failures, and ensures product quality and operational safety.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223458501U_ABST
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Abstract

The utility model provides a right adjustable head assembly of a hosiery knitter, which comprises a base, a right adjustable head mechanism and a first cover plate, the right adjustable head mechanism is arranged on the base, the first cover plate is connected with the base, the first cover plate is provided with a first through hole, the right adjustable head mechanism is connected with a first sensing column, and the first sensing column is provided with a second through hole. The first induction column penetrates through the first through hole, an alarm induction assembly is arranged on the first cover plate, and one end of the alarm induction assembly is close to the first through hole. The alarm sensing assembly is arranged on the first cover plate, the movement condition of the right adjustable head mechanism is sensed when socks are knitted, and the situation that the product quality is affected due to the fact that the socks are knitted mistakenly is avoided; meanwhile, mechanical faults of the hosiery machine are avoided; and the problem that great potential safety hazards exist on operators is also avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to textile equipment technical field, specifically, relate to a right cam head subassembly of hosiery knitting machine. BACKGROUND

[0002] Socks are essential in people's life, not only play the role of anti-abrasion, anti-skid, but also play the role of warm, absorb sweat, it is mainly composed of toe, sock sole, sock heel, sock tube and sock mouth, when a row of socks is woven, prepare for the next row of knitting, must first retreat the completed loop, make the knitting needle rise to a certain height let the loop retreat below the latch, therefore, complete this process needs left and right cam head and left and right corner and other multiple mechanisms.

[0003] The utility model discloses a right cam head structure for sock knitting and sewing head integrated machine, including right cam head seat, sliding block and right cam head, the right cam head seat is opened with the slide groove, the sliding block is slipped in the slide groove, and the sliding block one end stretches out the slide groove, and the right cam head sets up on the end of the sliding block stretch out the slide groove, right cam head seat is provided with right needle lifting stopper, right cam head seat and right needle lifting stopper between the drive piece that drives right needle lifting stopper and moves up when sewing head is provided. The cam head structure in the prior art has the following defects: when the right cam head works, if the transmission system or electrical control system of the hosiery machine fails, and then the right cam head cannot accurately reach the specified position, if the right cam head continues to work, it is easy to weave error when socks are woven, these errors will cause socks to have defects, such as uneven texture, missing needle or excess loop, affect product quality, and moreover, since the right cam head fails to reach the specified position, it will cause the hosiery machine to have mechanical failure due to jamming or collision with other components, finally, since the right cam head fails to reach the specified position, the operator will touch other components around, which has great safety hazards. UTILITY MODEL CONTENTS

[0004] Therefore, the utility model aims at providing a right cam head subassembly of hosiery knitting machine to solve the problems in the prior art that when the right cam head works, if the transmission system or electrical control system of the hosiery machine fails, and then the right cam head cannot accurately reach the specified position, if the right cam head continues to work, it is easy to weave error when socks are woven, affect product quality, and moreover, since the right cam head fails to reach the specified position, it will cause the hosiery machine to have mechanical failure due to jamming or collision with other components, finally, since the right cam head fails to reach the specified position, the operator will touch other components around, which has great safety hazards.

[0005] To achieve the above purpose, the technical scheme of the utility model is as follows:

[0006] A right looper head assembly of a hosiery machine, comprising a base, a right looper head mechanism, a first cover plate, the right looper head mechanism is arranged on the base, the first cover plate is connected with the base, the first cover plate is provided with a first through hole, the right looper head mechanism is connected with a first induction column, the first induction column passes through the first through hole, the first cover plate is provided with an alarm induction assembly, one end of the alarm induction assembly is close to the first through hole.

[0007] The alarm induction assembly in the arrangement senses the movement of the right looper head mechanism during hosiery knitting, avoids errors in hosiery knitting, and affects product quality; at the same time, it avoids mechanical failure of the hosiery machine; and it also avoids the problem of great safety hazards to the operator.

[0008] Further, the base is provided with a first sliding groove, the right looper head mechanism comprises a right looper head, a first sliding block and a first limiting block, the first sliding block is connected with the first limiting block, the first sliding block is slidingly connected in the first sliding groove, and one end of the first sliding block extends out of the first sliding groove, and the right looper head is arranged on the end of the first sliding block extending out of the first sliding groove.

[0009] Further, the first induction column is arranged on the first sliding block.

[0010] Further, the alarm induction assembly comprises an alarm induction device and a fixing part, the alarm induction device is connected with the fixing part, and the fixing part is connected with the first cover plate.

[0011] The fixing part in the arrangement improves the connection stability of the alarm induction assembly, so that the data test is more accurate.

[0012] Further, the alarm induction assembly further comprises a protection part, and the protection part is connected with the fixing part.

[0013] The protection part in the arrangement is used for protecting the alarm induction device, avoiding other dust or foreign impurities from being absorbed on the alarm induction part, and improving the accuracy of data test.

[0014] Further, the alarm induction device is provided with two.

[0015] The arrangement can reduce errors and improve the accuracy of test data.

[0016] Further, the alarm induction device comprises an induction part and a connecting part, and the induction part is connected with the connecting part.

[0017] Further, the fixing part is provided with a through hole, and the alarm induction device passes through the through hole.

[0018] Further, the two induction parts are in a horn structure.

[0019] The setting facilitates the friction between the sensing part and the first sensing column when the first sensing column moves into the two sensing parts, avoids dust remaining on the alarm sensor, improves the service life of the first alarm sensor, and improves the accuracy of measurement data.

[0020] Further, the first cover plate is connected with the side end of the base.

[0021] Further, the first cover plate is connected with the side end of the base.

[0022] 1) The alarm sensing assembly is arranged to sense the movement of the right live roller head mechanism during sock weaving, so as to avoid errors in sock weaving and affect product quality, avoid mechanical failure of the sock machine, and avoid great safety hazards for the operator.

[0023] 2) The two sensing parts are designed in a horn-shaped structure, which facilitates the friction between the sensing part and the first sensing column when the first sensing column moves into the two sensing parts, avoids dust remaining on the alarm sensor, improves the service life of the first alarm sensor, and improves the accuracy of measurement data. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 Structure diagram of the right live roller head assembly of the sock machine Figure 1 ;

[0025] Figure 2 Structure diagram of the right live roller head assembly of the sock machine Figure 2 ;

[0026] Figure 3 Structure diagram of the first perspective of the base of the utility model;

[0027] Figure 4 Structure diagram of the second perspective of the base of the utility model;

[0028] Figure 5 Structure diagram of the alarm sensing assembly of the utility model (without setting the protection part);

[0029] Figure 6 Structure diagram of the alarm sensing assembly of the utility model.

[0030] BRIEF DESCRIPTION OF DRAWINGS

[0031] 1-base, 11-first slide, 12-second slide, 13-first cavity, 14-second cavity, 2-right movable head mechanism, 21-right movable head, 22-first slider, 221-first sensing column, 23-first limit block, 24-first moving axis, 3-upper right movable head mechanism, 31-upper right movable head, 32-second slider, 321-second sensing column, 33-second limit block, 34-second moving axis, 4-first cover, 41-first through hole, 5-second cover, 51-second through hole, 6-alarm sensing component, 61-alarm sensor, 611-sensing part, 612-connecting part, 62-fixing part, 63-protecting part. DETAILED DESCRIPTION

[0032] To make the above-mentioned objects, features, and advantages of the present invention more clearly understood, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings. In addition, a brief description is provided of the directions or positional relationships involved in the following specific embodiments: The directions or positional relationships indicated by the terms "front," "back," "up," "down," "left," and "right" mentioned in the embodiments refer to the directions or positional relationships shown in the accompanying drawings.

[0033] like Figures 1-6 As shown, a right movable head assembly of a hosiery knitting machine includes a base 1, a right movable head mechanism 2, and a first cover plate 4. The base is fixed on an intermediate plate (not shown in the figure), the right movable head mechanism 2 is arranged on the base 1, the first cover plate 4 is connected to the base 1, the first cover plate 4 is provided with a first through hole 41, the right movable head mechanism 2 is connected to a first sensing column 221, the first sensing column 221 passes through the first through hole 41, and an alarm sensing component 6 is provided on the first cover plate 4, and one end of the alarm sensing component 6 is close to the first through hole 41.

[0034] In the present invention, the first sensing column of the right movable head mechanism moves in the first through hole, and the alarm sensing component is connected to the computer. The first sensing column is moved to a specified position through a computer setting program. When the first sensing column of the right movable head mechanism cannot reach the specified position when moving, the alarm sensing component will alarm. This can avoid errors in sock knitting when the right movable head continues to work, thereby affecting product quality; at the same time, it can avoid mechanical failure of the sock machine; and also avoid the problem of great safety hazards for operators.

[0035] Preferably, the first cover plate 4 is connected to the right side end of the base 1 by bolt connection.

[0036] Preferably, the structure of the first through hole 41 is a playground runway structure, allowing the first sensing column to move back and forth.

[0037] More specifically, the base 1 is provided with a first sliding groove 11, and the first cover plate covers the first sliding groove. The first sliding groove and the first cover plate form a cavity for the right articulated head mechanism to move. The right articulated head mechanism 2 comprises a right articulated head 21, a first sliding block 22 and a first limiting block 23. The first sliding block is connected with the first limiting block, and the first limiting block is located outside the base. The first sliding block is slidingly connected in the first sliding groove, and one end of the first sliding block extends out of the first sliding groove. The right articulated head is arranged on the end of the first sliding block extending out of the first sliding groove.

[0038] Preferably, the first sensing column 221 is arranged on the first sliding block 22.

[0039] More specifically, a through hole is arranged on the first sliding groove, and preferably, the through hole is the same as the first through hole structure. The base 1 is provided with a first cavity 13, and the first cavity 13 is in communication with the through hole on the first sliding groove. A driving member (not shown in the figure), preferably a pneumatic cylinder, is arranged in the cavity. The first sliding block 22 is connected with a first moving shaft 24.

[0040] More specifically, one end of the first moving shaft 24 is connected with the first sliding block 22, and the other end of the first moving shaft passes through the through hole of the first sliding groove and is located in the first cavity. The driving member is connected with the first moving shaft. The driving member drives the first moving shaft to move, thereby realizing the movement of the first sliding block.

[0041] Specifically, the alarm sensing assembly 6 comprises an alarm sensor 61, a fixing part 62 and a protection part 63. The alarm sensor 61 is connected with the fixing part 62. The fixing part 62 is connected with the first cover plate 4. The protection part 63 is connected with the fixing part 62.

[0042] Preferably, the fixing part 62 is connected with the first cover plate 4 by bolts.

[0043] More specifically, one end of the alarm sensor 61 is connected with a computer, and the other end of the alarm sensor is connected with the fixing part 62. The specified position of the first sensing column is measured by setting a program on the computer. When the alarm sensor sends an alarm, it indicates that the moving position of the first sensing column is inaccurate. The equipment is checked in time to avoid product quality problems, affect product efficiency and have an adverse effect on operation.

[0044] Preferably, the protection part 63 is connected with the fixing part 62 and the end away from the first cover plate 4.

[0045] More specifically, the fixing part 62 is provided with a through hole, and the alarm sensor passes through the through hole. One end of the alarm sensor 61 passing through the through hole is located at the right end of the first through hole.

[0046] Preferably, the alarm sensor is 2. This setting can reduce errors and improve the accuracy of test data. The alarm sensor is an existing product, which only needs to be set according to the computer program. The first sensing column does not alarm when moving to the designated position, and needs to alarm when not in the designated position. Details are not described here.

[0047] Preferably, the protection part is an insulating plate body structure.

[0048] Specifically, the alarm sensor 61 comprises a sensing part 611 and a connecting part 612, the sensing part is connected with the connecting part, the sensing part is located at the right end of the first through hole, and the connecting part penetrates through the through hole of the fixing part.

[0049] More specifically, the two sensing parts are in a horn structure, which facilitates the friction between the sensing part and the first sensing column when the first sensing column moves into the two sensing parts, avoids dust remaining on the alarm sensor, improves the service life of the alarm sensor, and improves the accuracy of the measurement data.

[0050] Preferably, the fixing part is a U-shaped structure, and the fixing part is made of insulating material.

[0051] Specifically, the right upper joint head assembly further comprises a right upper joint head mechanism 3 and a second cover plate 5, the right upper joint head mechanism 3 is arranged on the base 1, preferably, the second cover plate is connected to the left end of the base, the second cover plate is parallel to the first cover plate, the second cover plate 5 is provided with a second through hole 51, the right upper joint head mechanism 3 is connected with a second sensing column 321, the second sensing column 321 penetrates through the second through hole 51, and the second cover plate 5 is provided with an alarm sensing assembly close to the second through hole 51. The structure of the alarm sensing assembly on the second cover plate is the same as that on the first cover plate, and the structure of the alarm sensing assembly is not described in detail.

[0052] In the utility model, the second sensing column of the right upper joint head mechanism moves in the second through hole, the alarm sensing assembly is connected with the computer, and the second sensing column is moved to the designated position through the computer setting program. When the second sensing column of the right upper joint head mechanism moves, the alarm sensing assembly will alarm, which can avoid errors in sock knitting when the right upper joint head continues to work, and affect the product quality; meanwhile, mechanical failure of the hosiery machine is avoided; and the problem of great safety hidden danger for the operator is also avoided.

[0053] Preferably, the second cover plate 5 is connected with the base 1 through bolts.

[0054] Preferably, the structure of the second through hole 51 is a playground runway structure, which can be used for the back-and-forth movement of the second sensing column.

[0055] Specifically, the base 1 is provided with a second sliding groove 12, the second cover plate covers the second sliding groove, the second sliding groove and the second cover plate form a cavity for the right upper articulated head mechanism to move, the first sliding groove and the second sliding groove are opposite in opening direction, and the first sliding groove is located at the lower right end of the second sliding groove, the right upper articulated head mechanism 3 comprises a right upper articulated head 31, a second sliding block 32 and a second limiting block 33, the second sliding block is connected with the second limiting block, the second limiting block is located outside the base, the second sliding block is slidingly connected in the second sliding groove, one end of the second sliding block extends out of the second sliding groove, and the right upper articulated head is arranged on the end of the second sliding block extending out of the second sliding groove.

[0056] Preferably, the second sensing column 321 is arranged on the second sliding block 32.

[0057] More specifically, the second sliding groove is provided with a through hole, preferably, the through hole is the same as the second through hole structure; the base 1 is provided with a second cavity 14, the second cavity is communicated with the through hole of the second sliding groove, a driving member (not shown in the figure) is arranged in the cavity, preferably, the driving member is a pneumatic cylinder, and the second sliding block 32 is connected with a second moving shaft 34.

[0058] More specifically, one end of the second moving shaft 34 is connected with the second sliding block, the other end of the second moving shaft passes through the through hole of the second sliding groove and is located in the second cavity, the driving member is connected with the second moving shaft, the second moving shaft is driven to move by the driving member, and then the movement of the second sliding block is realized.

[0059] Although the utility model discloses as above, the utility model is not limited to this. Any person skilled in the art, without departing from the spirit and scope of the utility model, can make various changes and modifications, therefore the protection scope of the utility model should be the range limited by the claims.

Claims

1. A right looper assembly for a hosiery knitting machine, characterized in that, The utility model provides a right and left adjusting head mechanism, first cover plate, first induction column, alarm induction assembly, first sliding slot, first sliding block, first limiting block, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, first cover plate, first induction column, 2. A right-hand knitcher assembly for a hosiery knitting machine as claimed in claim 1, wherein, ​ 3. A right-hand knitcher assembly for a hosiery knitting machine as claimed in claim 2, wherein, ​ 4. A right-hand knurling head assembly for a hosiery knitting machine as defined in claim 1, wherein: ​ 5. A right-hand knitcher assembly for a hosiery knitting machine as claimed in claim 4, wherein, ​ 6. A right-hand knurling head assembly for a hosiery knitting machine as defined in claim 4, wherein: ​ 7. A right-hand knurling head assembly for a hosiery knitting machine as defined in claim 4, wherein: ​ 8. A right-hand knurling head assembly for a hosiery knitting machine as defined in claim 4, wherein: ​ 9. A right-hand knurling head assembly for a hosiery knitting machine as defined in claim 7, wherein: ​ 10. A right instep head assembly for a hosiery knitting machine as claimed in claim 1, wherein, ​

Citation Information

Patent Citations

  • Right adjustable head structure for sock knitting and sewing all-in-one machine

    CN212983203U