Mountain plate weaving position debugging tool

By combining guide rails, carriages, and measuring devices, the precise installation of the shank on the knitting head is achieved, solving the problems of difficult installation and consistency, and improving knitting efficiency and quality.

CN224223772UActive Publication Date: 2026-05-12NINGBO MENGZHIXING KNITTING MACHINE TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NINGBO MENGZHIXING KNITTING MACHINE TECH
Filing Date
2024-12-26
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing technologies present challenges in assembling the mortise and aluminum cap, including difficulties in installation and ensuring consistency between the front and rear mortise panels, which negatively impacts the quality of knitted fabrics and weaving efficiency.

Method used

A tooling for adjusting the weaving position of a shank was designed, including a guide rail, a carriage, and a measuring device. The guide rail cooperates with the traveling bearing of the loom head, the carriage contacts the surface of the shank, and the measuring device and height adjustment device are set to achieve precise adjustment of the shank's lateral and height.

Benefits of technology

This reduces the difficulty of installing the shank on the knitting head, ensures the consistency of shank installation, and improves installation efficiency and the stability of the knitting process.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a mountain plate knitting position debugging tool which is used for assembling a loom head and a mountain plate and comprises a guide rail matched with a walking bearing of the loom head in a walking mode. The sliding frame extends out of the guide rail and is in lap joint with the hill-shaped plate, and the extending end of the sliding frame is provided with a measuring device which is in contact fit with the transverse plane of the hill-shaped plate; and a hill plate height adjusting device for adjusting the height position of the hill plate is also arranged on the loom head. A walking bearing of the loom head is utilized to be matched with a guide rail in a walking mode, and the guide rail forms a reference rail for conducting transverse translation on the loom head. The sliding frame is arranged and matched with the guide rail in a lap joint mode, the height position of the hill plate in the transverse direction is adjusted, the height of the hill plate in the transverse direction is consistent, and adjustment of the height position of the hill plate is achieved. The guide rail, the sliding frame and the hill-shaped plate height adjusting device are arranged to adjust the height of the hill-shaped plate, the needle turning position direction of the hill-shaped plate is adjusted, the manual measurement difficulty is reduced, and the installation efficiency is improved.
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Description

Technical Field

[0001] This utility model relates to the field of flat knitting machine technology, and more specifically, to a tooling for adjusting the knitting position of a shank. Background Technology

[0002] The knitting head is the main working part of the loom, containing the main moving parts in the weaving process. It is responsible for controlling the raising and lowering of the knitting needles, as well as the introduction of yarn and the process of weaving into fabric.

[0003] The aluminum cap serves as a support structure for the knitting head, used to fix the shank and bridge, and to support part of the knitting head's weight. The shank, on the other hand, is a key component that works in conjunction with the knitting head, supporting and guiding the movement of the knitting needles, controlling their rise and fall to form the knitted fabric, and together completing the weaving process.

[0004] For double-needle flat knitting machines, the shank consists of two opposing front and rear shanks mounted on an aluminum cover assembly. The shank's needle-turning position and yarn-feeding position play a crucial role in the flat knitting machine, jointly affecting the quality of the knitted fabric and the knitting efficiency. Therefore, when assembling the shank and aluminum cover, it is necessary to ensure both the flatness requirements of the shank and aluminum cover, as well as the consistency of the installation height and lateral position between the front and rear shanks. However, in the existing technology, the shank and aluminum cover are assembled using reserved mounting positions, and the position is adjusted by the installer, which increases the difficulty of shank installation.

[0005] Therefore, how to reduce the difficulty of installing the baffle plate on the machine head and ensure the consistency of baffle plate installation is a problem that urgently needs to be solved by those skilled in the art. Utility Model Content

[0006] In view of this, the present invention provides a tooling for adjusting the weaving position of the shank, so as to reduce the difficulty of installing the shank on the machine head and ensure the consistency of the shank installation.

[0007] To achieve the above objectives, this utility model provides the following technical solution:

[0008] A hob plate weaving position adjustment fixture for assembling a loom head and a hob plate, including a guide rail that travels in conjunction with the traveling bearing of the loom head;

[0009] A carriage extends out of the guide rail and overlaps the mountain plate, and the extended end of the carriage is provided with a measuring device that contacts and cooperates with the transverse plane of the mountain plate;

[0010] The loom head is also equipped with a shank height adjustment device for adjusting the height of the shank.

[0011] Preferably, in the above-mentioned hobplate weaving position adjustment fixture, the loom head is upside down, the hobplate overlaps the aluminum cover of the loom head, the hobplate height adjustment device is arranged on the side of the aluminum cover away from the traveling bearing, and the hobplate height adjustment device abuts against the side of the hobplate in the thickness direction.

[0012] Preferably, in the above-mentioned mountain board weaving position adjustment fixture, the slide is inclinedly arranged and overlaps the mountain board, and the slide includes a first sliding part that overlaps and cooperates with the guide rail, and a second sliding part that slides in contact with the surface of the mountain board;

[0013] The measuring device is fixedly mounted on the second sliding part.

[0014] Preferably, in the above-mentioned mountain board weaving position adjustment fixture, the measuring device is a contact measuring instrument fixed on the slide, and the transverse plane is the pointed mountain transverse plane provided on the mountain board.

[0015] Preferably, in the above-mentioned mountain board weaving position adjustment fixture, the pointed mountain is arranged in a transverse plane on the pointed mountain board, the pointed mountain board includes a first pointed mountain board and a second pointed mountain board arranged at intervals along the transverse direction of the mountain board, and the carriage includes a first carriage and a second carriage respectively corresponding to the positions of the first pointed mountain board and the second pointed mountain board;

[0016] A first measuring device for measuring the transverse plane of the first pointed plate is arranged on the first carriage;

[0017] A second measuring device for measuring the transverse plane of the second pointed plate is arranged on the second carriage.

[0018] Preferably, in the above-mentioned slab weaving position adjustment fixture, the slab height adjustment device includes an adjustment seat fixed on the aluminum cover, the adjustment seat has an adjustment frame extending to the end of the slab in the thickness direction, and the adjustment frame is provided with adjustment bolts for adjusting the height of the slab.

[0019] Preferably, the above-mentioned mountain board weaving position adjustment fixture further includes an end adjustment frame that is synchronously attached to the surface of the front mountain board and the rear mountain board. The end adjustment frame is arranged at the transverse end of the mountain board, and the end adjustment frame is respectively provided with a first end instrument that contacts and engages with the transverse end face of the front mountain board and a second end instrument that contacts and engages with the transverse end face of the rear mountain board.

[0020] Preferably, in the above-mentioned mountain board weaving position adjustment fixture, the first end of the end adjustment frame has a first leg that contacts and engages with the surface of the front mountain board, and the second end has a second leg that contacts and engages with the surface of the rear mountain board;

[0021] The first end also has an end overlap portion that overlaps with the transverse end face of the front mountain plate.

[0022] Preferably, in the above-mentioned mountain plate weaving position adjustment fixture, the included angle between the end faces of the first support and the second support is the same as the included angle between the front mountain plate and the rear mountain plate.

[0023] A method for adjusting the braiding position of a shank, using the braiding position adjustment fixture as described in any of the preceding claims, includes the following steps:

[0024] 1) Invert the machine head upside down and place the front and rear mountain plates on the corresponding aluminum covers. Install multiple mountain plate height adjustment devices on the aluminum covers to support the lateral ends of the front and rear mountain plates respectively, and pre-position the front mountain plate.

[0025] 2) Install the front guide rail on the front travel bearing corresponding to the front mountain plate, and install the rear guide rail on the rear travel bearing corresponding to the rear mountain plate;

[0026] 3) Place the two carriages on the front guide rail and make the measuring devices on the two carriages contact the transverse plane of the two pointed peaks respectively;

[0027] 4) Connect the two carriages to the rear guide rail, and make the measuring devices on the two carriages contact the transverse planes of the two pointed peaks on the rear mountain plate respectively;

[0028] 5) Adjust the height adjustment devices of the two mountain slabs corresponding to the front mountain slab so that the measurement results of the two measuring devices on the front mountain slab are consistent;

[0029] 6) Adjust the height adjustment devices of the two hillsides corresponding to the back hillside so that the measurement results of the two measuring devices on the back hillside are consistent with the measurement results of the measuring devices on the front hillside;

[0030] 7) Overlap the end adjustment frame onto the front and rear mountain plates, so that the overlapping part of the end adjustment frame abuts against the front mountain plate, and abut the first end instrument against the front mountain plate, and abut the second end instrument against the rear mountain plate;

[0031] 8) Adjust the lateral position of the back plate so that the measurement results of the second end instrument are consistent with those of the first end instrument, and position the back plate.

[0032] This utility model provides a shank weaving position adjustment fixture for assembling a loom head and a shank. It includes a guide rail that cooperates with the loom head's traveling bearing; a slide extending from the guide rail and overlapping the shank, with a measuring device at the extended end of the slide contacting the lateral plane of the shank; and a shank height adjustment device on the loom head for adjusting the shank's height. By utilizing the loom head's traveling bearing and setting up a guide rail that cooperates with the traveling bearing, the guide rail forms a reference track for the lateral translation of the loom head. A slide is installed, which overlaps with the guide rail and extends from the guide rail end to the upper surface of the gable plate. A measuring device is installed at the extended end of the slide. A transverse plane on the gable plate contacts the measuring device. When the slide slides laterally relative to the guide rail, if the height of the gable plate is inconsistent in the transverse direction, the transverse plane in contact with the measuring device will be tilted, causing the measuring device to produce measurement results outside the range. The height of the gable plate in the transverse direction (i.e., the guiding direction of the guide rail) is adjusted by a gable plate height adjustment device to ensure a consistent height of the gable plate in the transverse direction, thus achieving height adjustment of the gable plate. By using the guide rail, slide, and gable plate height adjustment device to adjust the height of the gable plate, accurate control of the height of the gable plate in the direction of the needle flipping position is achieved, reducing the difficulty of manual measurement and improving installation efficiency. Attached Figure Description

[0033] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0034] Figure 1 An assembly diagram of the adjustment fixture for the braiding position of the slab provided by this utility model;

[0035] Figure 2 for Figure 1 Schematic diagram of the front plate assembly of the Zhongshan board braiding position debugging fixture;

[0036] Figure 3 for Figure 1 Schematic diagram of the carriage structure in the debugging fixture for the braiding position of Zhongshan board;

[0037] Figure 4 for Figure 1 A schematic diagram of the pointed gable structure on the gable slab;

[0038] Figure 5 for Figure 1 A schematic diagram of the shank height adjustment device of the shank weaving position debugging fixture;

[0039] Figure 6 for Figure 1 Schematic diagram of the end adjustment frame structure of the Zhongshan board braiding position debugging fixture. Detailed Implementation

[0040] This utility model discloses a tooling for adjusting the weaving position of the shank, which reduces the difficulty of installing the shank on the machine head and ensures the consistency of the shank installation.

[0041] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0042] like Figures 1-6 As shown, Figure 1 An assembly diagram of the adjustment fixture for the braiding position of the slab provided by this utility model; Figure 2 for Figure 1 Schematic diagram of the front plate assembly of the Zhongshan board braiding position debugging fixture; Figure 3 for Figure 1 Schematic diagram of the carriage structure in the debugging fixture for the braiding position of Zhongshan board; Figure 4 for Figure 1 A schematic diagram of the pointed gable structure on the gable slab; Figure 5 for Figure 1 A schematic diagram of the shank height adjustment device of the shank weaving position debugging fixture; Figure 6 for Figure 1 Schematic diagram of the end adjustment frame structure of the Zhongshan board braiding position debugging fixture.

[0043] This application provides a shank weaving position adjustment fixture for assembling a loom head 1 and a shank 2. It includes a guide rail 3 that moves in conjunction with the travel bearing 11 of the loom head 1; a slide 4 extending from the guide rail 3 and connecting to the shank 2, with a measuring device 5 at the extended end of the slide 4 contacting the transverse plane of the shank 2; and a shank height adjustment device 6 on the loom head 1 for adjusting the height of the shank 2. By utilizing the travel bearing 11 of the loom head 1 and setting the guide rail 3 to move in conjunction with it, the guide rail 3 forms a reference track for the transverse translation of the loom head 1.

[0044] The adjustment fixture is used to adjust the mounting position of the bevel plate on the aluminum cap. Since the bevel plate is supported by the aluminum cap in the thickness direction, its adjustment direction includes the height direction along the vertical direction of the aluminum cap, and the lateral direction along the guide rail. At the same time, the purpose of adjusting the height of the bevel plate is to adjust the needle flip position, and the lateral adjustment is to adjust the yarn feed position of the loops on the horizontal feed of the bevel plate. Through the height and lateral directions, the consistency of the needle flip position and yarn feed position of the front and rear bevel plates is achieved.

[0045] The combination of guide rail 3 and carriage 4 enables the measurement of the height of the slab at different lateral positions. The carriage 4 overlaps with the guide rail 3 and extends from the guide rail 3 onto the upper surface of the slab 2. A measuring device 5 is installed at the extended end of the carriage 4. A lateral plane on the slab 2 contacts the measuring device 5. When the carriage 4 slides laterally relative to the guide rail 3, if the slab 2's lateral height is inconsistent, the lateral plane contacting the measuring device 5 may be tilted, causing the measurement result to exceed the range. The slab height adjustment device 6 adjusts the slab 2's lateral height (i.e., the guiding direction of the guide rail 3) to ensure a consistent lateral height, thus achieving height adjustment of the slab 2. By using the guide rail 3, carriage 4, and slab height adjustment device 6 to adjust the slab height, the lateral height of the slab 2 can be directly measured, allowing for accurate control of the needle-flipping position height, reducing the difficulty of manual measurement, and improving installation efficiency.

[0046] The working state of the loom head 1 on the flat knitting machine is that the front plate 21 and the rear plate 22 cooperate with the needle plate, and the loom head 1 slides laterally on the machine body. The front plate 21 and the rear plate 22 are adapted to the structure of the flat knitting machine, and are arranged at an angle of about 100°. Correspondingly, the aluminum cover 12 that installs the front plate 21 and the rear plate 22 also has an inclined arrangement structure, and the front and rear aluminum covers 12 are connected into one piece by the connecting frame 13.

[0047] When assembling the front mountain plate 21 and the rear mountain plate 22, the loom head 1 is inverted vertically, so that the front and rear aluminum covers 12 form an upward inclined surface that supports the mountain plate 2, thereby reducing the difficulty of installing the mountain plate 2 on the aluminum cover 12.

[0048] In this embodiment, the loom head 1 is inverted, and the shank 2 rests on the aluminum cover 12 of the loom head 1. The shank height adjustment device 6 is arranged on the side of the aluminum cover away from the traveling bearing 11, and the shank height adjustment device 6 abuts against the side of the shank 2 in the thickness direction. With the loom head 1 inverted, the traveling bearing 11 is positioned above the aluminum cover 12 at an angle, and the shank 2 rests against the surface of the aluminum cover 12 at an angle. The shank height adjustment device 6 is located on the side away from the traveling bearing 11 and abuts against the side of the shank 2 in the thickness direction. The shank height adjustment device 6 supports the shank 2, preventing it from slipping off the aluminum cover 12.

[0049] Furthermore, the carriage 4 is inclined and overlaps on the mountain plate 2. The carriage 4 includes a first sliding part 41 that overlaps and cooperates with the guide rail 3, and a second sliding part 42 that slides in contact with the surface of the mountain plate.

[0050] The measuring device 5 is fixedly mounted on the second sliding part 42.

[0051] By inverting the loom head 1 vertically, the traveling bearing 11 has been calibrated in the traveling structure of the loom head 1. A guide rail 3 is then set to cooperate with its travel. The traveling direction of the guide rail 3 is the reference rail for the lateral sliding of the loom head 1. A slide 4 is set to slide laterally on the guide rail 3. The slide 4 is inclined and overlaps the cam plate 2. The surface of the cam plate 2 and the slide 4 slide in sliding contact to form a second sliding part 42. The slide 4 and the guide rail 3 overlap to form a first sliding part 41. The lateral sliding of the slide 4 is constrained by the guide rail 3 and the cam plate 2. The measuring device 5 is arranged on the second sliding part 42, specifically on the top of the slide 4. The measuring device 5 can detect the lateral flatness at any position and correct the lateral position of the cam plate.

[0052] Specifically, the measuring device 5 is a contact measuring instrument fixed on the carriage, and the transverse plane is the transverse plane of the pointed mountain on the mountain plate 2. The transverse plane of the pointed mountain is the inner transverse surface 203 of the pointed mountain plate 201 on the mountain plate 2. Two pointed mountain plates 201 are arranged in the transverse direction of the mountain plate 2. The pointed mountain plates 201 are fixed on the mountain plate 2 and will not slide during the knitting process. Utilizing the fixed structure of the pointed mountain plates 201 on the mountain plate 2 and the transversely spaced arrangement on the mountain plate 2, theoretically, by measuring the positions of the two pointed mountain plates 201 separately through the measuring device, and using the principle that two points determine a line, when the positions of the two pointed mountain plates 201 are the same and the reading of the contact measuring instrument is within the error range, it can be determined that the mountain plate is installed in a horizontal position on the aluminum cover.

[0053] Specifically, the inner side of the pointed plate 201 in the thickness direction has a pointed structure 202, and the two sides of the pointed structure 202 are a planar structure. The contact measuring instrument contacts and cooperates with the transverse plane 203 of the pointed plate to perform position measurement.

[0054] In this embodiment, the pointed mountain board includes a first pointed mountain board and a second pointed mountain board arranged laterally along the mountain board, and the carriage includes a first carriage and a second carriage respectively corresponding to the positions of the first pointed mountain board and the second pointed mountain board.

[0055] A first measuring device for measuring the transverse plane of the first pointed plate is arranged on the first carriage;

[0056] A second measuring device for measuring the transverse plane of the second pointed plate is arranged on the second carriage.

[0057] Considering that the two pointed mountain plates are arranged at intervals in the transverse direction of the mountain plate, and there are multiple mountain plate triangles such as the flip needle guide block between the two pointed mountain plates 201, the carriage 4 cannot slide between the two pointed mountain plates 201. It needs to be removed from the mountain plate for position switching, and the repositioning increases the uncertainty of the lateral measurement.

[0058] Using the first and second pointed structures on the two pointed plate 201, the slide 4 is set up with a first slide and a second slide. Both the first and second slides are hung on the guide rail 3. The first slide measures the first flatness of the transverse plane of the pointed plate on both sides of the first pointed plate, and the second slide measures the second flatness of the transverse plane of the pointed plate on both sides of the second pointed plate. By measuring the first and second flatness values, it is determined whether the plate is in a horizontal position.

[0059] In this embodiment, the slab height adjustment device 6 includes an adjustment seat 61 fixedly mounted on the aluminum cover 12. The adjustment seat 61 has an adjustment frame 62 extending to the end in the thickness direction of the slab. The adjustment frame 62 is provided with an adjustment bolt 63 for adjusting the height of the slab 2. The slab 2 height adjustment device is fixedly mounted on the aluminum cover 12 via the adjustment seat 61. The adjustment frame 62 extends from the adjustment seat 61 to one side in the thickness direction of the slab. The adjustment frame 62 is equipped with the adjustment bolt 63. Preferably, the adjustment seat 61 and the adjustment frame 62 are an integral structure, divided into two parts by a stepped structure. The first part, the adjustment seat 61, is used to connect with the aluminum cover 12. There is an adjustment gap between the adjustment frame 62 and the slab 2 to meet the expansion and contraction space requirements of the adjustment bolt 63.

[0060] The hilltop height adjustment device 6 includes two devices, each corresponding to the position of the two pointed hilltops 201, to adjust the height of the hilltop 2 on both sides in the lateral direction. In the specific adjustment process, the height of the hilltop 2 on both sides in the lateral direction is adjusted by adjusting the extension length of the adjusting bolt 63, thereby satisfying the lateral horizontal height adjustment of the hilltop.

[0061] By using guide rail 3, carriage 4 and measuring device 5, with the pointed mountain plate 201 as the adjustment and measurement basis, the height of the mountain plate 2 in the height direction, that is, the needle turning position direction, can be adjusted so that the height of the front mountain plate 21 and the back mountain plate 22 in the needle turning position direction is consistent, thus ensuring the stability of the knitting process.

[0062] To adapt to the symmetrical structure of the needle plate on the flat knitting machine, the front and rear cutting plates 21 and 22 also need to be symmetrically positioned when arranged on the knitting machine head to ensure the stability and consistency of the knitting process. By setting guide rails 3, carriages 4, and cutting plate height adjustment devices 6, the height positions of the front and rear cutting plates 2 can be adjusted. In this embodiment, preferably, the two pointed cutting plates 201 on the front cutting plate and the two pointed cutting plates on the rear cutting plate are adjusted and measured using independent carriage structures. That is, two guide rails, two pairs of carriages, and two pairs of cutting plate height adjustment devices are arranged in pairs to independently measure the position of each pointed cutting plate, thereby improving the accuracy of the side beam.

[0063] By adjusting the height of the mountain plate, the front and rear mountain plates can be aligned in the same height direction. At the same time, considering that the mountain plate is free in the lateral direction, it is necessary to adjust the lateral symmetry of the front and rear mountain plates when installing them onto the aluminum cover.

[0064] In this embodiment, an end adjustment frame 7 is also included, which is synchronously attached to the surfaces of the front mountain plate 21 and the rear mountain plate 22. The end adjustment frame 7 is arranged at the transverse end of the mountain plate 2. The end adjustment frame 7 is respectively provided with a first end instrument 71 that contacts and engages with the transverse end face of the front mountain plate 21 and a second end instrument 72 that contacts and engages with the transverse end face of the rear mountain plate 22.

[0065] Furthermore, the first end of the end adjustment frame 7 has a first leg 701 that contacts and engages with the surface of the front mountain plate 21, and the second end has a second leg 702 that contacts and engages with the surface of the rear mountain plate.

[0066] The first end also has an end overlap portion 703 that overlaps with the transverse end face of the front plate.

[0067] The included angle between the end faces of the first support 701 and the second support 702 is the same as the included angle between the front plate 21 and the rear plate 22.

[0068] Both the front plate 21 and the rear plate 22 have corresponding mounting and positioning holes on the aluminum cover 12. When positioning the front plate 21 and the rear plate 22 laterally, taking the front plate as an example, the front plate is initially positioned. Based on the position of the front plate, the lateral position of the rear plate is adjusted to achieve lateral alignment of the two.

[0069] Specifically, an end adjustment frame 7 is provided. The end adjustment frame 7 is attached to the surfaces of the front slab 21 and the rear slab 22 via a first support 701 and a second support 702, respectively. This process is supported by a triangular block at the same position on the slab 2. The end adjustment frame 7 has an end overlap portion 703 that overlaps and engages with the thickness direction of the front slab 21, thus integrating the end adjustment frame 7 with the front slab 21 into a single structure. A first end instrument 71 that engages and engages with the end of the front slab in the thickness direction and a second end instrument 72 that engages and engages with the end of the rear slab in the thickness direction are arranged on the end adjustment frame 7. By reading the data from the first end instrument 71 and the second end instrument 72, the lateral position of the rear slab can be finely adjusted, thereby achieving the adjustment of the lateral position of the front and rear slabs.

[0070] By arranging the loom head in an inverted manner, using the traveling bearing as the reference bearing, and setting up guide rails, carriages, and a shank height adjustment device, the first position adjustment of the front and rear shanks in the needle-turning direction is achieved. Then, the second position adjustment of the front and rear shanks in the lateral direction is achieved through the end adjustment frame. This two-step position adjustment ensures that the front and rear shanks are symmetrically arranged on the front and rear aluminum covers, reducing the assembly difficulty of the loom head and ensuring consistency.

[0071] Based on the above-mentioned shank braiding position adjustment fixture, this application also provides a shank braiding position adjustment method, used for the shank braiding position adjustment fixture as described in any of the preceding claims, including the following steps:

[0072] 1) Invert the machine head upside down and place the front and rear mountain plates on the corresponding aluminum covers. Install multiple mountain plate height adjustment devices on the aluminum covers to support the lateral ends of the front and rear mountain plates respectively, and pre-position the front mountain plate.

[0073] The machine head 1 is inverted. In actual operation, a support base is set up to support the machine head 1, and the machine head 1 is stably supported by the support base. The two aluminum covers on the machine head 1 are in the same symmetrical position to ensure the symmetry of support for the front mountain plate 21 and the rear mountain plate 22.

[0074] Before the slab 2 is fixed, the slab height adjustment device 6 is pre-installed on the aluminum cover. Preferably, four devices are used, which are fixed at both ends of the front and rear aluminum covers. After the slab 2 is placed in place, the two ends of the slab 2 are supported by the slab height adjustment device.

[0075] The front plate 21 is first pre-positioned on the aluminum cover. Using the pre-installation holes on the aluminum cover, the position of the front plate 21 is first determined, and the position of the rear plate 22 is adjusted based on the front plate 21.

[0076] 2) Install the front guide rail on the front travel bearing corresponding to the front mountain plate, and install the rear guide rail on the rear travel bearing corresponding to the rear mountain plate;

[0077] After the mountain plate 2 is placed on the aluminum cover, the guide rail 3 is placed on the travel bearing. Corresponding to the front and rear aluminum covers, the guide rail 3 is placed on both the front and rear sets of travel bearings 11 on the machine head. The front mountain plate 21 and the rear mountain plate 22 are adjusted independently, and an independent travel structure is adopted. The adjustment data of the front mountain plate 201 is used to adjust the rear mountain plate 22 so that the positions of the two are adjusted in a consistent manner.

[0078] 3) Place the two carriages on the front guide rail and make the measuring devices on the two carriages contact the transverse plane of the two pointed peaks respectively;

[0079] The front slope 21 has two pointed slopes 201. Each pointed slope 201 is equipped with a set of carriages 4 and a measuring device 5. Each set of carriages 4 and measuring device 5 independently completes the transverse plane measurement of the pointed slope 201. The measuring device 5 can be a dial indicator or a more precise micrometer. The positions of the two pointed slopes 201 are adjusted to correspond to the positions of the two dial indicators. The height of the two ends of the slope 201 is adjusted by the slope height adjustment device 6. When the readings of the two dial indicators are consistent, it indicates that the two pointed slopes of the front slope 21 are at the same height and the front slope 21 is in a horizontal position.

[0080] 4) Connect the two carriages to the rear guide rail, and make the measuring devices on the two carriages contact the transverse planes of the two pointed peaks on the rear mountain plate respectively;

[0081] Two carriages 4 are also mounted on the rear guide rail 3. The height of the two peaks on the rear slope 22 is measured using two dial indicators. The height of the rear slope 22 is adjusted until the readings of the two dial indicators on it are the same as those on the front slope.

[0082] 5) Adjust the height adjustment devices of the two mountain slabs corresponding to the front mountain slab so that the measurement results of the two measuring devices on the front mountain slab are consistent;

[0083] 6) Adjust the height adjustment devices of the two hillsides corresponding to the back hillside so that the measurement results of the two measuring devices on the back hillside are consistent with the measurement results of the measuring devices on the front hillside;

[0084] Both the front mountain plate 21 and the rear mountain plate 22 are height-adjusted by the mountain plate height adjustment device. The tooling has been calibrated. The height of the pointed mountain plate 201 can be detected and adjusted by using the mountain plate height adjustment device 6, the measuring device 5 and the carriage 4. This will ensure the consistency of the height position of the front mountain plate 21 and the rear mountain plate 22.

[0085] 7) Overlap the end adjustment frame onto the front and rear mountain plates, so that the overlapping part of the end adjustment frame abuts against the front mountain plate, and abut the first end instrument against the front mountain plate, and abut the second end instrument against the rear mountain plate;

[0086] After the height of the mountain board 2 is adjusted, the heights of the front mountain board 21 and the rear mountain board 22 are the same. It is necessary to check the lateral seam position of the two and adjust their lateral end positions to be opposite each other and at the same seam position.

[0087] Similarly, based on the pre-positioned position of the front mountain plate 21, the end adjustment frame 7 abuts against the end of the front mountain plate 21 by the end overlap 703, at which time the end adjustment frame 7 and the front mountain plate 2 form an integral structure.

[0088] Two end gauges are installed on the end adjustment frame 7. The first end gauge 71 abuts against the side of the front mountain plate 21, and the second end gauge 72 abuts against the side of the rear mountain plate 22.

[0089] 8) Adjust the lateral position of the back plate so that the measurement results of the second end instrument are consistent with those of the first end instrument, and position the back plate.

[0090] Both the first end instrument 71 and the second end instrument 72 are dial indicators. Based on the reading obtained from the first end instrument 71, the lateral position of the rear plate 22 is adjusted so that the reading of the second end instrument 72 matches the reading of the first end instrument 71. This indicates that the rear plate has been adjusted to the same cutting position as the front plate, thus completing the positioning of the rear plate and completing the position adjustment of the front and rear plates. It is understandable that consistent dial indicator readings mean that the values ​​of the dial indicators used for comparison are within a given error range.

[0091] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A tooling for adjusting the weaving position of a shank, used for assembling the loom head and the shank, characterized in that, Includes a guide rail that travels in conjunction with the traveling bearing of the loom head; A carriage extends out of the guide rail and overlaps the mountain plate, and the extended end of the carriage is provided with a measuring device that contacts and cooperates with the transverse plane of the mountain plate; The loom head is also equipped with a shank height adjustment device for adjusting the height of the shank.

2. The adjustment fixture for the braiding position of the slab according to claim 1, characterized in that, The loom head is inverted, and the cam plate overlaps the aluminum cover of the loom head. The cam plate height adjustment device is arranged on the side of the aluminum cover away from the traveling bearing, and the cam plate height adjustment device abuts against the side of the cam plate in the thickness direction.

3. The adjustment fixture for the braiding position of the slab according to claim 2, characterized in that, The carriage is inclined and overlaps the mountain plate. The carriage includes a first sliding part that overlaps with the guide rail and a second sliding part that slides in contact with the surface of the mountain plate. The measuring device is fixedly mounted on the second sliding part.

4. The adjustment fixture for the braiding position of the slab according to claim 3, characterized in that, The measuring device is a contact measuring instrument fixed on the slide, and the transverse plane is the transverse plane of the pointed mountain on the mountain plate.

5. The adjustment fixture for the braiding position of the slab according to claim 4, characterized in that, The pointed mountain is arranged laterally on the pointed mountain plate, and the pointed mountain plate includes a first pointed mountain plate and a second pointed mountain plate arranged laterally at intervals along the mountain plate. The carriage includes a first carriage and a second carriage respectively corresponding to the positions of the first pointed mountain plate and the second pointed mountain plate. A first measuring device for measuring the transverse plane of the first pointed plate is arranged on the first carriage; A second measuring device for measuring the transverse plane of the second pointed plate is arranged on the second carriage.

6. The adjustment fixture for the braiding position of the slab according to claim 5, characterized in that, The height adjustment device for the slab includes an adjustment seat fixed to the aluminum cover. The adjustment seat has an adjustment frame extending to the end of the slab in the thickness direction. The adjustment frame is provided with an adjustment bolt for adjusting the height of the slab.

7. The adjustment fixture for the braiding position of the slab according to claim 6, characterized in that, The mountain slab includes a front mountain slab and a rear mountain slab, and also includes an end adjustment frame synchronously attached to the surface of the front mountain slab and the rear mountain slab. The end adjustment frame is arranged at the transverse end of the mountain slab, and the end adjustment frame is respectively provided with a first end instrument that contacts and engages with the transverse end face of the front mountain slab, and a second end instrument that contacts and engages with the transverse end face of the rear mountain slab.

8. The adjustment fixture for the braiding position of the slab according to claim 7, characterized in that, The first end of the end adjustment frame has a first leg that contacts and engages with the surface of the front mountain plate, and the second end has a second leg that contacts and engages with the surface of the rear mountain plate; The first end also has an end overlap portion that overlaps with the transverse end face of the front mountain plate.

9. The adjustment fixture for the braiding position of the slab according to claim 8, characterized in that, The included angle between the end faces of the first support and the second support is the same as the included angle between the front plate and the rear plate.