Computerized flat knitting machine frame

By setting drive wheel clearance holes and positioning block holes on the computerized flat knitting machine frame, the frame can be detachably connected, solving the problem of excessive frame length and achieving convenient transportation and space saving.

CN224313806UActive Publication Date: 2026-06-02SUZHOU MAIDUNBAO TECH CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SUZHOU MAIDUNBAO TECH CO LTD
Filing Date
2025-07-04
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

The existing frame structure of computerized flat knitting machines results in a long overall length, which is inconvenient for container transportation and occupies production space.

Method used

By setting drive wheel clearance holes and positioning block holes on the yarn board support, the drive wheel can be partially inserted into the support, and the frame length can be reduced by the detachable positioning block. Combined with the design of the needle bed seat, the frame can be detachably connected.

Benefits of technology

It effectively reduces the overall length of the flat knitting machine, making it easier to transport and saving space. It is suitable for container transport and efficient use of production sites.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a computerized flat knitting machine frame, including a base, a needle bed seat on the base, and a crossbeam on the base behind the needle bed seat. A left yarn board support and a left drive wheel are located at the left end of the crossbeam, and a right yarn board support and a right drive wheel are located at the right end of the crossbeam. The left drive wheel and the right drive wheel are located between the left and right yarn board supports. The right yarn board support has a right drive wheel clearance hole, and part of the right drive wheel is located within the right drive wheel clearance hole; alternatively, the left yarn board support has a left drive wheel clearance hole, and part of the left drive wheel is located within the left drive wheel clearance hole. This utility model reduces the overall length of the flat knitting machine by allowing part of the drive wheel to extend into the yarn board support plate, thus reducing the space occupied by the machine. Furthermore, the removable positioning block on the outer end face of the yarn board support further reduces the overall length of the machine, facilitating maintenance and transportation.
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Description

Technical Field

[0001] This utility model belongs to the field of textile machinery technology, specifically relating to a computerized flat knitting machine frame. Background Technology

[0002] The computerized flat knitting machine includes a base, a needle bed mount on the base, a needle bed on the needle bed, and a knitting head on the needle bed. Behind the needle bed mount, the base connects to two yarn tray supports. Between the two yarn tray supports is a drive mechanism that moves the knitting head on the needle bed. The drive mechanism includes two drive wheels and a timing belt. One drive wheel is located inside the left yarn tray support, and the other is located inside the right yarn tray support. The timing belt drives the knitting head to move on the needle bed. However, this structure and installation method not only makes the entire computerized flat knitting machine relatively long, making container transportation inconvenient, but also occupies more production space. Utility Model Content

[0003] The purpose of this invention is to provide a computerized flat knitting machine frame that can reduce the overall length of the flat knitting machine.

[0004] To achieve the above-mentioned technical objectives, the technical solution of this utility model is as follows:

[0005] A computerized flat knitting machine frame includes a base, on which a needle bed is mounted. A crossbeam is mounted on the base behind the needle bed. A left yarn board support and a left drive wheel are mounted on the left end of the crossbeam, and a right yarn board support and a right drive wheel are mounted on the right end of the crossbeam. The left drive wheel and the right drive wheel are located between the left and right yarn board supports. The right yarn board support has a right drive wheel clearance hole, and part of the right drive wheel is located within the right drive wheel clearance hole. Alternatively, the left yarn board support has a left drive wheel clearance hole, and part of the left drive wheel is located within the left drive wheel clearance hole.

[0006] To further reduce the overall length of the flat knitting machine, the left end face of the left yarn board support and / or the right end face of the right yarn board support have positioning block holes. Positioning blocks are installed within these holes, with their heads extending out of the holes. The positioning blocks extending out of the holes can be used to connect to the aluminum alloy housing (or other components on the connected yarn frame support plates). When the entire machine needs to be transported as a unit, the components (aluminum alloy housing) and the positioning blocks can be disassembled, reducing the length of the flat knitting machine and facilitating its transport.

[0007] To facilitate the positioning and connection of the aluminum alloy shell or other components to the yarn plate bracket, the positioning block has multiple holes.

[0008] The left and right end faces of the needle bed are provided with a right needle bed hole, which facilitates the insertion of the rocker bed nut into the needle bed.

[0009] This invention reduces the overall length of the flat knitting machine and its space occupation by extending the transmission wheel into the yarn frame support plate. Furthermore, the detachable positioning block on the outer end face of the yarn frame support further reduces the overall length of the flat knitting machine, making it easier to maintain and transport. Attached Figure Description

[0010] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0011] Figure 1 This is a first-person view structural diagram of the computerized flat knitting machine frame.

[0012] Figure 2 This is a schematic diagram of the second-view structure of a computerized flat knitting machine frame.

[0013] Figure 3 This is a schematic diagram of the yarn board support structure on the right side. Detailed Implementation

[0014] like Figure 1-3 As shown, the computerized flat knitting machine frame includes a base 1, a needle bed 2 is mounted on the top of the base 1, and a crossbeam 3 is mounted on the base 1 behind the needle bed 2. A left yarn plate support 6 and a left drive wheel 7 are mounted on the left end of the crossbeam 3, and a right yarn plate support 4 and a right drive wheel 5 are mounted on the right end of the crossbeam 3. The left drive wheel 7 and the right drive wheel 5 are located between the left yarn plate support 6 and the right yarn plate support 4. The right yarn plate support 4 has a right drive wheel clearance hole 42, and part of the right drive wheel 5 is located in the right drive wheel clearance hole 42. The right drive wheel clearance hole 42 of the right yarn plate support 4 allows the right drive wheel 5 to partially extend into the right drive wheel clearance hole 42 of the right yarn plate support 4, which can reduce the length of the flat knitting machine.

[0015] Of course, the left yarn board support 6 may also have a clearance hole for the left drive wheel, and the left drive wheel 7 may be partially located in the clearance hole to further reduce the length of the flat knitting machine. Alternatively, only the left yarn board support 6 may have a clearance hole for the left drive wheel.

[0016] To further reduce the overall length of the flat knitting machine, the right end face of the right yarn board support 4 has two (or more than three) positioning block holes 41. Positioning blocks 8 are installed within the positioning block holes 41, with their heads extending out of the holes 41. The positioning blocks 8 extending out of the holes 41 can be used to connect the aluminum alloy shell (or other components on the connected yarn frame support plate) to the right yarn board support 4. When the entire machine needs to be transported, the components (aluminum alloy shell) and positioning blocks 8 can be removed, reducing the length of the flat knitting machine and facilitating its transport. Similarly, the right end face of the left yarn board support 6 can also have positioning block holes, with positioning blocks also installed within these holes, extending out of the holes to connect the aluminum alloy shell (or other components on the connected yarn frame support plate) to the left yarn board support 6. Alternatively, positioning block holes and positioning blocks can be provided only on the left yarn board support 6.

[0017] The left and right end faces of the needle bed 2 are provided with a right needle bed hole 21, which facilitates the insertion of the rocker bed nut into the needle bed.

[0018] The above embodiments do not limit the present invention in any way. All technical solutions obtained by equivalent substitution or equivalent transformation fall within the protection scope of the present invention.

Claims

1. A computerized flat knitting machine frame, comprising a base, a needle bed seat mounted on the base, a crossbeam mounted on the rear side of the base behind the needle bed seat, a left yarn plate support and a left drive wheel mounted on the left end of the crossbeam, a right yarn plate support and a right drive wheel mounted on the right end of the crossbeam, the left and right drive wheels being located between the left and right yarn plate supports, characterized in that: The right-side yarn plate bracket has a right-side drive wheel clearance hole, and the right-side drive wheel portion is located within the right-side drive wheel clearance hole; or the left-side yarn plate bracket has a left-side drive wheel clearance hole, and the left-side drive wheel portion is located within the left-side drive wheel clearance hole.

2. The computerized flat knitting machine frame according to claim 1, characterized in that: The left end face of the left yarn board bracket and / or the right end face of the right yarn board bracket have positioning block holes, and a positioning block is provided in the positioning block holes, with the head end of the positioning block extending out of the positioning block holes.

3. The computerized flat knitting machine frame according to claim 2, characterized in that: The positioning block has multiple holes.

4. The computerized flat knitting machine frame according to claim 1, characterized in that: The left and right end faces of the needle bed are provided with a right needle bed hole.