JP2020133009A - Flat-knitting machine structure capable of changing needle bed gap size - Google Patents

Flat-knitting machine structure capable of changing needle bed gap size Download PDF

Info

Publication number
JP2020133009A
JP2020133009A JP2019023597A JP2019023597A JP2020133009A JP 2020133009 A JP2020133009 A JP 2020133009A JP 2019023597 A JP2019023597 A JP 2019023597A JP 2019023597 A JP2019023597 A JP 2019023597A JP 2020133009 A JP2020133009 A JP 2020133009A
Authority
JP
Japan
Prior art keywords
knitting
needle
section
carriage
cam
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP2019023597A
Other languages
Japanese (ja)
Other versions
JP6557430B1 (en
Inventor
裕盛 林
Yu-Sheng Lin
裕盛 林
志強 李
Shikyo Ri
志強 李
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Pai Lung Machinery Mill Co Ltd
Original Assignee
Pai Lung Machinery Mill Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Pai Lung Machinery Mill Co Ltd filed Critical Pai Lung Machinery Mill Co Ltd
Priority to JP2019023597A priority Critical patent/JP6557430B1/en
Application granted granted Critical
Publication of JP6557430B1 publication Critical patent/JP6557430B1/en
Publication of JP2020133009A publication Critical patent/JP2020133009A/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Knitting Machines (AREA)

Abstract

To provide a flat-knitting machine capable of knitting a three-dimensional structure knitted fabric having different thickness, which could not be knitted by the prior art due to a fixed size of needle bed gap.SOLUTION: A flat-knitting machine structure capable of changing a size of a needle bed gap 10 includes two needle beds 11 and 12 and a cam system 13 that is disposed so as to face either of the two needle beds. Each needle bed has multiple knitting needles 15 and a control butt 161 on which multiple carriages 16 corresponding to one of the knitting needles are disposed on the same side as each butt provided to each knitting needle. As two needle beds are spaced away from each other, the distance between the needle bed gap, which is set by the carriages facing each other, is the same as the distance between two carriages facing each other. Each cam system receives the butt and the knitting needle cam, which guides the knitting needles to move toward the needle bed gap during the knitting process, and the carriage cam that receives the control butt are controlled so as to have a displacement process to change the needle bed gap size by interlocking the carriage.SELECTED DRAWING: Figure 2

Description

本発明は、横編機構造に関し、より詳しくは、キャリッジが可動で歯口隙間の大きさが変更可能な横編機構造に関する。 The present invention relates to a flat knitting machine structure, and more particularly to a flat knitting machine structure in which a carriage is movable and the size of a tooth opening gap can be changed.

従来、厚みの異なる立体構造編物を編成するためには一般的に、経編機を用いる。関連技術としては、中国特許公開第CN102704180A号、中国特許公開第CN102978823A号、中国特許公開第CN105220347A号等がある。 Conventionally, a warp knitting machine is generally used to knit three-dimensional knitted fabrics having different thicknesses. Related technologies include China Patent Publication No. CN102704180A, China Patent Publication No. CN1029788823A, China Patent Publication No. CN105220347A, and the like.

しかしながら、従来の横編機を使用する場合、立体構造編物の編成を実現できない。その理由は、横編機の歯口隙間が固定されたキャリッジにより決まるため、厚みが同一の編物の編成にしか対応できないためである。 However, when a conventional flat knitting machine is used, knitting of a three-dimensional structure knitting cannot be realized. The reason is that since the gap between the teeth of the flat knitting machine is determined by the fixed carriage, it can only be used for knitting knits having the same thickness.

本発明は、従来の横編機を使用する場合において、歯口隙間の大きさが一定であるため生じている一連の課題を解決することを目的としている。 An object of the present invention is to solve a series of problems caused by a constant size of a tooth opening gap when a conventional flat knitting machine is used.

上記目的を達成するためになされた本発明は、歯口隙間の大きさが変更可能な横編機構造を提供する。当該横編機構造は、2つの針床と、そのうち1つの当該針床に向くようにそれぞれ設けられるカムシステムとを含み、各当該針床は、複数の編針と、そのうち1つの当該編針に対応して設けられる複数のキャリッジとを含み、各当該編針は、バットを備え、各当該キャリッジは、各当該バットと同じ側に設けられる制御バットを備え、当該2つの針床は、間隔を隔てて設けられることにより、互いに対向するキャリッジにより歯口隙間が設定され、当該歯口隙間の間隔は、互いに対向する2つの当該キャリッジの間隔に等しく、各当該編針により編針の延伸線が設定され、各当該バットは、そのうち1つの当該編針の延伸線上にそれぞれ配置され、各当該制御バットは、そのうち1つの当該編針に対応して当該編針の延伸線上に配置され、各当該キャリッジは、当該制御バットが成形された延伸区間と、当該延伸区間に接続される湾曲区間と、当該湾曲区間に接続されるとともにそのうち1つの当該編針の先端に並列して設けられる編目進入区間とを備える。各当該カムシステムは、これらのバットを受け入れるとともに各当該編針が当該歯口隙間に向かって編成行程にて移動するようにガイドする編針カムと、これらの制御バットを受け入れるキャリッジカムとを備え、当該キャリッジカムは、これらのキャリッジを連動させて当該歯口隙間の大きさを変更する変位行程を有するように制御される。 The present invention made to achieve the above object provides a flat knitting machine structure in which the size of the tooth opening gap can be changed. The flat knitting machine structure includes two needle beds and a cam system provided so as to face one of the needle beds, and each needle bed corresponds to a plurality of knitting needles and one of the knitting needles. Each of the knitting needles has a butt, each carriage has a control bat provided on the same side as each of the bats, and the two needle beds are spaced apart from each other. By being provided, the gap between the tooth openings is set by the carriages facing each other, the distance between the gaps between the tooth openings is equal to the distance between the two carriages facing each other, and the extension line of the knitting needle is set by each of the knitting needles. The bats are respectively arranged on the extension line of one of the knitting needles, each control bat is arranged on the extension line of the knitting needle corresponding to one of the knitting needles, and each carriage is provided with the control bat. It includes a formed stretched section, a curved section connected to the stretched section, and a stitch approach section connected to the curved section and provided in parallel with the tip of one of the knitting needles. Each cam system comprises a knitting cam that accepts these bats and guides each knitting needle to move toward the tooth opening gap in the knitting stroke, and a carriage cam that accepts these control bats. The carriage cam is controlled so as to have a displacement stroke in which these carriages are interlocked to change the size of the tooth opening gap.

本発明に係る横編機構造の一実施形態において、各当該キャリッジは、当該編目進入区間に配置される編目脱出ワイヤ取付け孔と、当該延伸区間に配置される少なくとも1つの規制ワイヤ取付け孔とを備える。 In one embodiment of the flat knitting machine structure according to the present invention, each carriage has a stitch escape wire attachment hole arranged in the stitch entry section and at least one regulation wire attachment hole arranged in the extension section. Be prepared.

本発明に係る横編機構造の一実施形態において、各当該針床は、針床座にそれぞれ設けられる複数のスライド溝を備え、各当該キャリッジは、当該編目進入区間に配置されるとともに当該キャリッジカムが当該変位行程にて移動する時、当該スライド溝内で摺動する底部を備える。 In one embodiment of the flat knitting machine structure according to the present invention, each needle bed is provided with a plurality of slide grooves provided in the needle bed seat, and each carriage is arranged in the stitch entry section and the carriage is provided. It includes a bottom that slides in the slide groove when the cam moves in the displacement stroke.

本発明に係る横編機構造の一実施形態において、各当該キャリッジカムは、第1の遷移区間と、当該第1の遷移区間に接続される直線区間と、当該直線区間に接続される第2の遷移区間とを備え、当該第1の遷移区間及び当該第2の遷移区間は、当該直線区間の方に向かってそれぞれ漸次縮小し、当該直線区間の寸法は同一である。 In one embodiment of the flat knitting machine structure according to the present invention, each of the carriage cams has a first transition section, a straight section connected to the first transition section, and a second straight section connected to the straight section. The first transition section and the second transition section are gradually reduced toward the straight section, and the dimensions of the straight section are the same.

本発明に係る横編機構造の一実施形態において、各当該キャリッジカムは、そのうち1つの当該カムシステムの当該歯口隙間に向く側にそれぞれ設けられる。 In one embodiment of the flat knitting machine structure according to the present invention, each carriage cam is provided on the side of one of the cam systems facing the tooth opening gap.

本発明の概要にて記載されている内容から分かるように、本発明に係る横編機構造は、従来技術に比べ以下の利点を有する。本発明に係る横編機構造において、カムシステムはキャリッジカムを含んで構成されることにより、キャリッジは編成時のニーズに応じて移動して、当該横編機構造の当該歯口隙間の大きさを変更できるため、厚みの異なる立体構造編物の編成にも対応できる。 As can be seen from the contents described in the outline of the present invention, the flat knitting machine structure according to the present invention has the following advantages as compared with the prior art. In the flat knitting machine structure according to the present invention, the cam system is configured to include a carriage cam, so that the carriage moves according to the needs at the time of knitting, and the size of the tooth opening gap of the flat knitting machine structure. Can be changed, so it is possible to knit three-dimensional knitted fabrics with different thicknesses.

本発明に係る横編機構造の一実施形態を概略的に示す図である。It is a figure which shows roughly one Embodiment of the flat knitting machine structure which concerns on this invention. 本発明に係る横編機構造の一実施形態における歯口隙間が小さい場合の針床部分の構造を概略的に示す図である。It is a figure which shows typically the structure of the needle bed part when the tooth opening gap is small in one Embodiment of the flat knitting machine structure which concerns on this invention. 本発明に係る横編機構造の一実施形態における歯口隙間が大きい場合の針床部分の構造を概略的に示す図である。It is a figure which shows schematic the structure of the needle bed part in the case where the tooth opening gap is large in one embodiment of the flat knitting machine structure which concerns on this invention. 本発明に係る横編機構造の一実施形態におけるキャリッジの構造を概略的に示す図である。It is a figure which shows schematic structure of the carriage in one Embodiment of the flat knitting machine structure which concerns on this invention. 本発明に係る横編機構造の一実施形態におけるキャリッジと編針の構造関係を概略的に示す図である。It is a figure which shows schematic the structural relationship of the carriage and the knitting needle in one Embodiment of the flat knitting machine structure which concerns on this invention. 本発明に係る横編機構造の一実施形態におけるキャリッジと編針の構造関係について、部分的に拡大して概略的に示す図である。It is a figure which shows partially enlarged and schematic about the structural relationship of a carriage and a knitting needle in one Embodiment of the flat knitting machine structure which concerns on this invention. 本発明に係る横編機構造の一実施形態におけるカムシステムの構造を概略的に示す図である。It is a figure which shows schematic structure of the cam system in one Embodiment of the flat knitting machine structure which concerns on this invention. 本発明に係る横編機構造の一実施形態におけるカムシステムの動作を概略的に示す図である。It is a figure which shows schematic operation of the cam system in one Embodiment of the flat knitting machine structure which concerns on this invention. 厚みの異なる立体構造編物の構造を概略的に示す図である。It is a figure which shows schematic structure of the three-dimensional structure knitting with different thickness.

以下、関連する各図を参照しながら、本発明に係る横編機構造を詳細に説明する。 Hereinafter, the flat knitting machine structure according to the present invention will be described in detail with reference to the related drawings.

図1及び図9に示すように、本発明は、横編機構造100を提供する。横編機構造100は、編成プロセスにおいて編成時のニーズに応じて、歯口隙間10の大きさを変更することにより、立体構造編物90(Spacer Fabric)を編成する過程で立体構造編物90の厚みを変更することができる。横編機構造100は、2つの針床11、12と、そのうち1つの針床11(12)に向くようにそれぞれ設けられるカムシステム13(14)とを含む。なお、2つの針床11、12とは、従来技術でいう前針床及び後針床を指す。2つの針床11、12は、一定の角度にて傾斜するようにそれぞれ設けられ、且つ間隔を隔てて設けられることにより両者の間に隙間を形成する。各針床11はそれぞれ複数の編針15と、そのうち1つの編針15に対応するようにそれぞれ設けられるキャリッジ16とを備える。本発明に係る横編機構造において、これらのキャリッジ16はシンカー以外のものとし、これらのキャリッジ16は、可動的に構成されるが、対応するそのうち1つの編針15が動作する時には動作しない。また、本発明に係る横編機構造において、歯口隙間10は、2つの針床11、12における互いに対向して設けられるこれらのキャリッジ16により設定される。歯口隙間10の間隔は、互いに対向するように設けられる2つのキャリッジ16の間隔に等しい(図中101を参照する)。図3から図6に示すように、各編針15はそれぞれバット151を備え、各キャリッジ16は、各バット151と同じ側に設けられる制御バット161を備える。さらに、本発明に係る横編機構造において、各キャリッジ16は、対応するそのうち1つの編針15にそれぞれ載置される。バット151は、編針15の針床座17から離隔する側に設けられ、制御バット161は、キャリッジ16の針床座17から離隔する側に設けられる。図6に示すように、本発明に係る横編機構造において、各編針15により編針の延伸線152が設定される。編針15におけるバット151は、編針の延伸線152上に配置され、編針15に対応するように設けられるキャリッジ16における制御バット161も、編針の延伸線152上に配置される。また、制御バット161及びバット151が同一の編針の延伸線152上に位置するように、各キャリッジ16の長さは編針15の全長より短いように構成される。 As shown in FIGS. 1 and 9, the present invention provides a flat knitting machine structure 100. The flat knitting machine structure 100 has a thickness of the three-dimensional structure knitting 90 in the process of knitting the three-dimensional structure knitting 90 (Spacer Fabric) by changing the size of the tooth opening gap 10 according to the needs at the time of knitting in the knitting process. Can be changed. The flat knitting machine structure 100 includes two needle beds 11 and 12 and a cam system 13 (14) provided so as to face one of the needle beds 11 (12), respectively. The two needle beds 11 and 12 refer to the front needle bed and the rear needle bed in the prior art. The two needle beds 11 and 12 are provided so as to be inclined at a constant angle, and are provided at intervals to form a gap between them. Each needle bed 11 includes a plurality of knitting needles 15 and a carriage 16 provided so as to correspond to one of the knitting needles 15. In the flat knitting machine structure according to the present invention, these carriages 16 are other than sinkers, and these carriages 16 are movably configured, but do not operate when one of the corresponding knitting needles 15 operates. Further, in the flat knitting machine structure according to the present invention, the tooth opening gap 10 is set by these carriages 16 provided on the two needle beds 11 and 12 so as to face each other. The distance between the tooth opening gaps 10 is equal to the distance between the two carriages 16 provided so as to face each other (see 101 in the figure). As shown in FIGS. 3 to 6, each knitting needle 15 includes a butt 151, and each carriage 16 includes a control bat 161 provided on the same side as each butt 151. Further, in the flat knitting machine structure according to the present invention, each carriage 16 is mounted on one of the corresponding knitting needles 15. The butt 151 is provided on the side of the knitting needle 15 away from the needle bed seat 17, and the control butt 161 is provided on the side of the carriage 16 separated from the needle bed seat 17. As shown in FIG. 6, in the flat knitting machine structure according to the present invention, the extension line 152 of the knitting needle is set by each knitting needle 15. The butt 151 in the knitting needle 15 is arranged on the extension line 152 of the knitting needle, and the control butt 161 in the carriage 16 provided so as to correspond to the knitting needle 15 is also arranged on the extension line 152 of the knitting needle. Further, the length of each carriage 16 is configured to be shorter than the total length of the knitting needle 15 so that the control butt 161 and the butt 151 are located on the extension line 152 of the same knitting needle.

図4及び図6に示すように、本発明に係る横編機構造の一実施形態において、キャリッジ16は、制御バット161が成形された延伸区間162と、延伸区間162に接続される湾曲区間163と、湾曲区間163に接続されるとともにそのうち1つの編針15の先端に並列して設けられる編目進入区間164とを備える。さらに、延伸区間162は、編針15の上方に載置され、湾曲区間163により編目進入区間164と延伸区間162は、異なる延伸線上に配置されるとともに、編目進入区間164と編針15が並列することにより編針15が動作すると、編目に入れる動作を行う。また、各キャリッジ16は、編目進入区間164に配置される編目脱出ワイヤ取付け孔165と、延伸区間164に配置される少なくとも1つの規制ワイヤ取付け孔166とをさらに備える。図5及び図6に示すように、本発明に係る横編機構造の一実施形態において、キャリッジ16は、編目進入区間164において厚みが同一でないように、キャリッジ16の編目進入区間164における厚みは、その他の部分における厚みより小さいように構成されてもよい(図6を参照)。図2及び図4に示すように、各針床11は、針床座17にそれぞれ成形された複数のスライド溝171を備え、各キャリッジ16は、編目進入区間164に配置されるとともにスライド溝171内に設けられる底部167を備える。 As shown in FIGS. 4 and 6, in one embodiment of the flat knitting machine structure according to the present invention, the carriage 16 has a stretched section 162 in which the control butt 161 is formed and a curved section 163 connected to the stretched section 162. And a stitch entry section 164 connected to the curved section 163 and provided in parallel with the tip of one of the knitting needles 15. Further, the stretched section 162 is placed above the knitting needle 15, and the stitch approach section 164 and the stretched section 162 are arranged on different drawing lines by the curved section 163, and the stitched approach section 164 and the knitting needle 15 are arranged in parallel. When the knitting needle 15 operates, the operation of inserting into the stitch is performed. Further, each carriage 16 further includes a stitch escape wire attachment hole 165 arranged in the stitch entry section 164 and at least one regulation wire attachment hole 166 arranged in the extension section 164. As shown in FIGS. 5 and 6, in one embodiment of the flat knitting machine structure according to the present invention, the thickness of the carriage 16 in the stitch entry section 164 of the carriage 16 is not the same in the stitch entry section 164. , It may be configured to be smaller than the thickness in other parts (see FIG. 6). As shown in FIGS. 2 and 4, each needle bed 11 includes a plurality of slide grooves 171 formed in the needle bed seat 17, and each carriage 16 is arranged in the stitch entry section 164 and the slide groove 171. It is provided with a bottom portion 167 provided inside.

図2、図7及び図8に示すように、さらに、各カムシステム13(14)は、そのうち1つの針床11(12)に向くようにそれぞれ設けられる。各カムシステム13(14)は、これらのバット151を受け入れる編針カム131と、これらの制御バット161を受け入れるキャリッジカム132とを備える。各編針カム131及び各キャリッジカム132は、少なくとも1つのカムユニットを備えて構成され、編針カム131には連続する***部及び陥没部を備えることにより、その中に設けられたバット151は、各カムシステム13(14)が動作する時、歯口隙間10に向かって編成行程153にて移動する。また、本発明に係る横編機構造の一実施形態において、各キャリッジカム132は、第1の遷移区間134と、第1の遷移区間134に接続される直線区間135と、直線区間135に接続される第2の遷移区間136とを備え、第1の遷移区間134及び第2の遷移区間136は、直線区間135の方に向かってそれぞれ漸次縮小し、直線区間135の寸法は同一である。さらに、第1の遷移区間134及び第2の遷移区間136が漸次縮小する構成とするのは、キャリッジカム132が変位後も、これらの制御バット161をガイドできるようにするためである。各キャリッジカム132は、そのうち1つのカムシステム13(14)の歯口隙間10に向く側にそれぞれ設けられる。 Further, as shown in FIGS. 2, 7 and 8, each cam system 13 (14) is provided so as to face one of the needle beds 11 (12). Each cam system 13 (14) includes a knitting cam 131 that accepts these butt 151 and a carriage cam 132 that accepts these control butt 161. Each knitting needle cam 131 and each carriage cam 132 are configured to include at least one cam unit, and the knitting needle cam 131 is provided with a continuous raised portion and a depressed portion, so that the butt 151 provided therein is provided with each. When the cam system 13 (14) operates, it moves toward the tooth opening gap 10 in the knitting stroke 153. Further, in one embodiment of the flat knitting machine structure according to the present invention, each carriage cam 132 is connected to the first transition section 134, the straight section 135 connected to the first transition section 134, and the straight section 135. The second transition section 136 is provided, and the first transition section 134 and the second transition section 136 are gradually reduced toward the straight section 135, and the dimensions of the straight section 135 are the same. Further, the first transition section 134 and the second transition section 136 are configured to be gradually reduced so that the carriage cam 132 can guide these control butt 161 even after the displacement. Each carriage cam 132 is provided on the side of one of the cam systems 13 (14) facing the tooth opening gap 10.

さらに、本発明に係る横編機構造において、キャリッジカム132により各キャリッジ16の位置が決まり、そして歯口隙間10の大きさを変更させる。キャリッジカム132は、編針カム131のように、明らかな起伏を有する当該***部及び当該陥没部を備えるものではなく、キャリッジカム132における各キャリッジ16をガイドするための部位は、その大半が平面である。本発明に係る横編機構造において、キャリッジカム132は変位行程133を有するように制御される。変位行程133において、キャリッジカム132がカム載置座137に対して線形移動を行うとともに、各キャリッジ16を連動して変位させて、各キャリッジ16の位置を変更することにより、歯口隙間10の大きさを変更する。キャリッジカム132の変位については、図2及び図3に示すとおりである。 Further, in the flat knitting machine structure according to the present invention, the position of each carriage 16 is determined by the carriage cam 132, and the size of the tooth opening gap 10 is changed. Unlike the knitting needle cam 131, the carriage cam 132 does not include the raised portion and the depressed portion having obvious undulations, and most of the portions of the carriage cam 132 for guiding each carriage 16 are flat. is there. In the flat knitting machine structure according to the present invention, the carriage cam 132 is controlled to have a displacement stroke 133. In the displacement stroke 133, the carriage cam 132 linearly moves with respect to the cam mounting seat 137, and the carriages 16 are interlocked and displaced to change the position of each carriage 16 so that the tooth opening gap 10 is formed. Change the size. The displacement of the carriage cam 132 is as shown in FIGS. 2 and 3.

さらに、本発明に係る横編機構造において、各キャリッジカム132には、移動機構が接続されてもよい。当該移動機構は、制御信号を受信することでキャリッジカム132を連動して変位行程133にて移動させることができ、当該制御信号は、プログラムにより生成されるものであってもよい。これにより、立体構造編物90を編成する過程で、立体構造編物90の厚みを変更したり、さらには立体構造編物90を起伏を有する構造にしたりすることが可能である。 Further, in the flat knitting machine structure according to the present invention, a moving mechanism may be connected to each carriage cam 132. The moving mechanism can move the carriage cam 132 in conjunction with the displacement stroke 133 by receiving the control signal, and the control signal may be generated by a program. Thereby, in the process of knitting the three-dimensional structure knit 90, the thickness of the three-dimensional structure knit 90 can be changed, and further, the three-dimensional structure knit 90 can be made into a structure having undulations.

100 横編機構造
10 歯口隙間
101 間隔
11、12 針床
13、14 カムシステム
131 編針カム
132 キャリッジカム
133 変位行程
134 第1の遷移区間
135 直線区間
136 第2の遷移区間
137 カム載置座
15 編針
151 バット
152 編針の延伸線
153 編成行程
16 キャリッジ
161 制御バット
162 延伸区間
163 湾曲区間
164 編目進入区間
165 脱出ワイヤ取付け孔
166 規制ワイヤ取付け孔
167 底部
17 針床座
171 スライド溝
90 立体構造編物
100 Flat knitting machine structure 10 Tooth opening gap 101 Interval 11, 12 Needle bed 13, 14 Cam system 131 Knitting needle cam 132 Carriage cam 133 Displacement stroke 134 First transition section 135 Straight section 136 Second transition section 137 Cam mounting seat 15 Knitting needle 151 Bat 152 Knitting needle extension line 153 Knitting stroke 16 Carriage 161 Control bat 162 Extension section 163 Curved section 164 Knitting entry section 165 Escape wire mounting hole 166 Restriction wire mounting hole 167 Bottom 17 Needle floor seat 171 Sliding groove 90

Claims (5)

2つの針床であって、それぞれバットを備える複数の編針と、そのうち1つの前記編針に対応して設けられ、各前記バットと同じ側に設けられる制御バットを備える複数のキャリッジとを有し、当該2つの針床が互いに間隔を隔てて設けられることにより、互いに対向するキャリッジにより歯口隙間が設定され、前記歯口隙間の間隔は、互いに対向する2つの前記キャリッジの間隔に等しく、各前記編針により編針の延伸線が設定され、各前記バットは、そのうち1つの前記編針の延伸線上にそれぞれ配置され、各前記制御バットは、そのうち1つの前記編針に対応して前記編針の延伸線上に配置され、各前記キャリッジは、前記制御バットが成形された延伸区間と、前記延伸区間に接続される湾曲区間と、前記湾曲区間に接続されるとともにそのうち1つの前記編針の先端に並列して設けられる編目進入区間とを備える2つの針床と、
そのうち1つの前記針床に向くようにそれぞれ設けられ、且つ、これらのバットを受け入れるとともに各前記編針が前記歯口隙間に向かって編成行程にて移動するようにガイドする編針カムと、これらの制御バットを受け入れるキャリッジカムとを備え、前記キャリッジカムは、これらのキャリッジを連動させて前記歯口隙間の大きさを変更する変位行程を有するように制御される2つのカムシステムとを含むことを特徴とする歯口隙間の大きさが変更可能な横編機構造。
It has two needle beds, each having a plurality of knitting needles having a butt, and a plurality of carriages having a control bat provided corresponding to one of the knitting needles and provided on the same side as each of the bats. By providing the two needle beds at intervals from each other, a tooth opening gap is set by carriages facing each other, and the distance between the tooth opening gaps is equal to the distance between the two carriages facing each other. An extension line of the knitting needle is set by the knitting needle, each of the bats is arranged on the extension line of one of the knitting needles, and each control bat is arranged on the extension line of the knitting needle corresponding to one of the knitting needles. Each of the carriages is connected to a stretched section in which the control butt is formed, a curved section connected to the stretched section, and connected to the curved section, and is provided in parallel with the tip of one of the knitting needles. Two needle beds with a stitch entry section and
A knitting cam, which is provided so as to face one of the needle beds, receives these bats, and guides each knitting needle to move toward the tooth opening gap in the knitting stroke, and controls thereof. The carriage cam comprises a carriage cam that accepts a butt, and the carriage cam includes two cam systems that are controlled to have a displacement stroke that interlocks these carriages to resize the tooth gap. A flat knitting machine structure in which the size of the tooth opening gap can be changed.
各前記キャリッジは、前記編目進入区間に配置される編目脱出ワイヤ取付け孔と、前記延伸区間に配置される少なくとも1つの規制ワイヤ取付け孔とを備えることを特徴とする請求項1に記載の歯口隙間の大きさが変更可能な横編機構造。 The tooth opening according to claim 1, wherein each carriage includes a stitch escape wire attachment hole arranged in the stitch entry section and at least one regulation wire attachment hole arranged in the extension section. Weft knitting machine structure that can change the size of the gap. 各前記針床は、針床座にそれぞれ設けられる複数のスライド溝を備え、各前記キャリッジは、前記編目進入区間に配置されるとともに前記キャリッジカムが前記変位行程にて移動する時、前記スライド溝内で摺動する底部を備えることを特徴とする請求項2に記載の歯口隙間の大きさが変更可能な横編機構造。 Each of the needle beds is provided with a plurality of slide grooves provided on the needle bed seats, and each carriage is arranged in the stitch entry section and when the carriage cam moves in the displacement stroke, the slide grooves are provided. The flat knitting machine structure according to claim 2, wherein the size of the tooth opening gap can be changed, which comprises a bottom that slides inside. 各前記キャリッジカムは、第1の遷移区間と、前記第1の遷移区間に接続される直線区間と、前記直線区間に接続される第2の遷移区間とを備え、前記第1の遷移区間及び前記第2の遷移区間は、前記直線区間に向かってそれぞれ漸次縮小し、前記直線区間の寸法は同一であることを特徴とする請求項1に記載の歯口隙間の大きさが変更可能な横編機構造。 Each of the carriage cams includes a first transition section, a straight section connected to the first transition section, and a second transition section connected to the straight section, and includes the first transition section and the first transition section. The lateral width of the tooth opening gap according to claim 1, wherein the second transition section is gradually reduced toward the straight section, and the dimensions of the straight section are the same. Knitting machine structure. 各前記キャリッジカムは、そのうち1つの前記カムシステムの前記歯口隙間に向く側にそれぞれ設けられることを特徴とする請求項1又は請求項4に記載の歯口隙間の大きさが変更可能な横編機構造。 The lateral size of the tooth opening gap according to claim 1 or 4, wherein each of the carriage cams is provided on the side of one of the cam systems facing the tooth opening gap. Knitting machine structure.
JP2019023597A 2019-02-13 2019-02-13 Flat knitting machine structure that can change the gap gap Active JP6557430B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2019023597A JP6557430B1 (en) 2019-02-13 2019-02-13 Flat knitting machine structure that can change the gap gap

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2019023597A JP6557430B1 (en) 2019-02-13 2019-02-13 Flat knitting machine structure that can change the gap gap

Publications (2)

Publication Number Publication Date
JP6557430B1 JP6557430B1 (en) 2019-08-07
JP2020133009A true JP2020133009A (en) 2020-08-31

Family

ID=67539839

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2019023597A Active JP6557430B1 (en) 2019-02-13 2019-02-13 Flat knitting machine structure that can change the gap gap

Country Status (1)

Country Link
JP (1) JP6557430B1 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2022164286A (en) * 2021-04-16 2022-10-27 佰龍機械廠股▲ふん▼有限公司 Method for knitting weft knitted fabric having change in thickness with weft knitting machine and weft knitted fabric

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0931806A (en) * 1995-07-14 1997-02-04 Shima Seiki Mfg Ltd Flat knitting machine equipped with movable sinker apparatus
JPH1161604A (en) * 1997-08-11 1999-03-05 Shima Seiki Mfg Ltd Flat knitting machine with movable loop-forming plate
JP2002020952A (en) * 2000-06-29 2002-01-23 H Stoll Gmbh & Co Flat knitting machine
WO2002046508A1 (en) * 2000-12-04 2002-06-13 Shima Seiki Mfg.,Ltd. Flatbed knitting machine
JP2004316063A (en) * 2003-04-11 2004-11-11 H Stoll Gmbh & Co Flat knitting machine having at least two needle beds
JP2006183181A (en) * 2004-12-27 2006-07-13 Shima Seiki Mfg Ltd Flatbed knitting machine with mobile sinker
WO2007074944A1 (en) * 2005-12-27 2007-07-05 Shima Seiki Mfg., Ltd. Needle selecting device for weft knitting machine
JP2007231447A (en) * 2006-02-28 2007-09-13 Shima Seiki Mfg Ltd Knitting cam device of flat knitting machine

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0931806A (en) * 1995-07-14 1997-02-04 Shima Seiki Mfg Ltd Flat knitting machine equipped with movable sinker apparatus
JPH1161604A (en) * 1997-08-11 1999-03-05 Shima Seiki Mfg Ltd Flat knitting machine with movable loop-forming plate
JP2002020952A (en) * 2000-06-29 2002-01-23 H Stoll Gmbh & Co Flat knitting machine
WO2002046508A1 (en) * 2000-12-04 2002-06-13 Shima Seiki Mfg.,Ltd. Flatbed knitting machine
JP2004316063A (en) * 2003-04-11 2004-11-11 H Stoll Gmbh & Co Flat knitting machine having at least two needle beds
JP2006183181A (en) * 2004-12-27 2006-07-13 Shima Seiki Mfg Ltd Flatbed knitting machine with mobile sinker
WO2007074944A1 (en) * 2005-12-27 2007-07-05 Shima Seiki Mfg., Ltd. Needle selecting device for weft knitting machine
JP2007231447A (en) * 2006-02-28 2007-09-13 Shima Seiki Mfg Ltd Knitting cam device of flat knitting machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2022164286A (en) * 2021-04-16 2022-10-27 佰龍機械廠股▲ふん▼有限公司 Method for knitting weft knitted fabric having change in thickness with weft knitting machine and weft knitted fabric

Also Published As

Publication number Publication date
JP6557430B1 (en) 2019-08-07

Similar Documents

Publication Publication Date Title
EP1867768B1 (en) Method of knitting cylindrical fabric in weft knitting machine and weft knitting machine
JP5955197B2 (en) Knitting method of knitted fabric
US6857294B2 (en) Method for knitting intarsia pattern knitting fabric and knitting program producing device therefor
US5279133A (en) Circular knitting machine for making plush fabric
US6799443B2 (en) Flatbed knitting machine
JP7089126B1 (en) Circular knitting machine structure
EP1942216B1 (en) Weft knitting machine having movable yarn guide
EP2025785A1 (en) Knitting method of intersia pattern fabric and weft knitting machine
US5275022A (en) Process for the fully-fashioned knitting of intarsia jacquard fabric
JP2020133009A (en) Flat-knitting machine structure capable of changing needle bed gap size
JP6416341B2 (en) Warp knitting machine and method for producing warp knitted fabric
JP6696035B1 (en) Weft knitting machine structure in which the position of knitting yarn can be changed
TWI707074B (en) Flat knitting machine structure with variable mouth
JP2002020952A (en) Flat knitting machine
JP2004332191A (en) Circular knitting machine
JP5881412B2 (en) Method and apparatus for generating knitting data for flat knitting machines
JP6557432B1 (en) Method for knitting a three-dimensional knitted fabric having different thicknesses using a flat knitting machine
EP3702501B1 (en) Method for knitting three-dimensional fabric with variable thickness through a flat knitting machine
KR102220400B1 (en) Flat knitting machine structure with adjustable gap between two knock-over bits
US11781253B1 (en) Circular knitting machine structure
EP4286577A1 (en) Circular knitting machine structure
US4516412A (en) Cambox for a flat knitting machine
KR102232288B1 (en) Weft knitting machine knitting structure with changeable yarn positions
US11313058B2 (en) Flat knitting machine structure with adjustable gap between two knock-over bits
US3979927A (en) Knitting machines

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20190213

A871 Explanation of circumstances concerning accelerated examination

Free format text: JAPANESE INTERMEDIATE CODE: A871

Effective date: 20190320

A975 Report on accelerated examination

Free format text: JAPANESE INTERMEDIATE CODE: A971005

Effective date: 20190402

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20190703

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20190711

R150 Certificate of patent or registration of utility model

Ref document number: 6557430

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250