A method for weaving palm leaves with a multi-strand structure
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-02
- Publication Date
- 2026-08-11
AI Technical Summary
[0006]本发明的目的在于提供一种多股结构棕叶编织方法,解决了现有的棕编手工艺品存在结构不稳固、适用作品少、作品精美度低的弊端的技术问题
[0027]本发明的一种多股结构棕叶编织方法,本发明通过采用单“股”编织技法在多条铁丝上进行多条棕叶的编织,让棕叶将所有的铁丝完全包裹住,从而完成一个多股结构的棕叶编织基础件的制作,该多股结构的棕叶编织基础件可用于特定外观作品(如大型动物躯干)的基底部件,开始自由创作,以保证作品能够适用于任何场合中,由于整个编织过程中,铁丝能够被棕叶紧密缠绕连接,从而能够保证整体结构的稳固性和美观性,解决了现有的棕编手工艺品存在结构不稳固、适用作品少、作品精美度低的弊端的技术问题。
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Figure CN118932597B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of anti-drone technology, and in particular to a method for weaving multi-strand palm leaves. Background Technology
[0002] Palm weaving originated in China and has a long history, dating back to the Han Dynasty. In ancient times, palm weaving was mainly used to make daily necessities such as raincoats and straw sandals, which were both practical and artistic. Over time, palm weaving gradually developed and spread throughout the country, becoming one of the traditional folk handicrafts.
[0003] Traditional palm weaving techniques mostly use palm leaf stems as a framework, and through specific steps, palm leaves are wrapped around the stems to produce handicrafts of limited and specific styles.
[0004] However, traditional palm weaving handicrafts have drawbacks such as unstable structure, limited applicability, and low quality.
[0005] This invention enhances product stability through a steel wire skeleton, expands the woven patterns through a multi-strand structure, and improves the fineness and aesthetics of the work by adopting the unique weaving techniques of Linjiang palm weaving, an intangible cultural heritage. It represents an iterative upgrade of traditional palm weaving techniques. Summary of the Invention
[0006] The purpose of this invention is to provide a multi-strand palm leaf weaving method, which solves the technical problems of existing palm weaving handicrafts, such as unstable structure, limited applicability, and low quality of finished products.
[0007] To achieve the above objectives, the present invention provides a method for weaving multi-strand palm leaves, comprising the following steps:
[0008] Step 1: Select 1 to n iron wires as the main body of weaving. Place all the iron wires side by side and regard them as weft Y. Arrange them according to their position and call them warp Y1, Y2, Y3...Yn;
[0009] Step 2: Select two palm leaves of suitable length, both regarded as warp threads X, and name them X1 and X2 according to whether they are woven in the forward or reverse direction;
[0010] Step 3: Starting from one side of X1, using the single-strand weaving technique, wrap the strands horizontally and tightly around Y1, Y2, Y3...Yn in a herringbone pattern from the front.
[0011] Step 4: Starting from one side of X2, repeat the steps in Step 3, wrapping the X2, Y3...Yn horizontally and tightly from the back.
[0012] Step 5: Repeat this operation until X1 and X2 tightly connect all the wires in the same horizontal direction;
[0013] Step Six: Select two more palm leaves, name them X3 and X4, and begin to tightly wrap and connect all the wires in another horizontal direction;
[0014] Step 7: Once all the palm leaves have completely wrapped the wire, the basic structure of a multi-strand palm leaf weaving is complete.
[0015] The wire used in step one is made of stainless steel, with a thickness of not less than 0.9 mm and a hardness controlled between 150-200 HBS.
[0016] In step two, the overall length of the palm leaf is not less than 0.5m and the width is not less than 1cm.
[0017] In step two, the palm leaves must undergo specific processing procedures such as soaking, steaming, drying, and air-drying before weaving to ensure that they meet the basic conditions for hand weaving.
[0018] The specific method of the single-strand weaving technique in step three is as follows:
[0019] Step 1: Select a wire as a frame and place it in the center of a palm leaf with the stem removed. Place the leaves on both sides of the palm leaf on either side of the wire.
[0020] Step 2: Wrap one side of the palm leaf tightly around the wire in a ribbon-like manner, and wrap the other side of the palm leaf in the opposite direction in the same ribbon-like manner, forming a "V" knot, thus completing a "knot".
[0021] Step 3: Repeat step 2 until a longitudinal arrangement is formed on the wire, resembling a cicada pupa shell, with the left and right sides closely symmetrical and completely enclosing the wire.
[0022] In steps three and four, X1 and X2 need to be alternated and performed simultaneously in accordance with the prescribed weaving order.
[0023] Specifically, X1 and X2 need to be alternated sequentially during the weaving process, and the specific method for simultaneous operation is as follows:
[0024] After weaving Y1 and Y2 from the front using X1, begin the weaving process for X2.
[0025] Starting from the back, weave Y1, Y2, and Y3 using X2, then start weaving from Y3 to Y5 using X2.
[0026] That is, each weaving of X1 and X2 leads by an additional weft Y.
[0027] This invention discloses a multi-strand palm leaf weaving method. By employing a single-strand weaving technique, multiple palm leaves are woven onto multiple wires, completely enveloping all the wires. This creates a multi-strand palm leaf weaving base component, which can be used as the base for specific designs (such as large animal torsos), allowing for free creation and ensuring the work is suitable for any occasion. Because the wires are tightly wrapped and connected by the palm leaves throughout the weaving process, the overall structure is stable and aesthetically pleasing. This invention solves the technical problems of existing palm weaving handicrafts, such as unstable structure, limited applicability, and low aesthetic quality. Attached Figure Description
[0028] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0029] Figure 1 This is a flowchart illustrating the multi-strand palm leaf weaving method according to the first embodiment of the present invention.
[0030] Figure 2 This is a flowchart illustrating the single-strand weaving process of the multi-strand palm leaf weaving method according to the first embodiment of the present invention.
[0031] Figure 3 This is a schematic diagram of single-strand weaving of the multi-strand palm leaf weaving method according to the first embodiment of the present invention. Detailed Implementation
[0032] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0033] First embodiment:
[0034] Please see Figures 1 to 3 ,in, Figure 1 This is a flowchart illustrating the multi-strand palm leaf weaving method according to the first embodiment of the present invention. Figure 2 This is a flowchart illustrating the single-strand weaving steps of the multi-strand palm leaf weaving method according to the first embodiment of the present invention. Figure 3 This is a single-strand weaving diagram of the multi-strand palm leaf weaving method according to the first embodiment of the present invention. The present invention provides a multi-strand palm leaf weaving method, including the following steps:
[0035] S101, Step 1: Select 1 to n iron wires as the main body of weaving, place all iron wires side by side, and regard them as weft Y. Arrange them according to their position and call them warp Y1, Y2, Y3...Yn;
[0036] S102, Step 2: Select two palm leaves of suitable length, both regarded as warp threads X, and name them X1 and X2 according to the direction of weaving (forward or reverse).
[0037] S103, Step 3: Starting from one side of X1, using the single "strand" weaving technique, wrap the strands horizontally and tightly around Y1, Y2, Y3...Yn in a "herringbone" pattern from the front.
[0038] S104, Step 4: Starting from one side of X2, repeat the steps of Step 3, and wrap the X2, Y3...Yn horizontally and tightly from the back.
[0039] S105, Step 5: Repeat this operation until X1 and X2 tightly wrap and connect all the wires in the same horizontal direction;
[0040] S106, Step Six: Select two more palm leaves, name them X3 and X4, and start tightly wrapping and connecting all the wires in another horizontal direction.
[0041] S107, Step Seven: Once all the palm leaves have completely wrapped the wire, the production of a multi-strand palm leaf weaving basic component is complete.
[0042] In this embodiment, the present invention employs a single-strand weaving technique to weave multiple palm leaves onto multiple wires, allowing the palm leaves to completely enclose all the wires, thereby completing the production of a multi-strand palm leaf woven base component. This multi-strand palm leaf woven base component can be used as the base component for works with specific appearances (such as large animal torsos), allowing for free creation and ensuring that the work is suitable for any occasion. Because the wires are tightly wrapped and connected by the palm leaves throughout the weaving process, the stability and aesthetics of the overall structure are guaranteed, solving the technical problems of existing palm weaving handicrafts, such as unstable structure, limited applicability to various works, and low level of exquisiteness.
[0043] The wire used in step one is made of stainless steel, with a thickness of not less than 0.9 mm and a hardness controlled between 150-200 HBS.
[0044] Secondly, the palm leaves in step two must be at least 0.5m in length and at least 1cm in width. Before weaving, the palm leaves in step two must undergo specific processing procedures such as soaking, steaming, drying, and air drying to ensure that they meet the basic conditions for hand weaving.
[0045] Furthermore, the specific method of the single-strand weaving technique in step three is as follows:
[0046] S108, Step 1: Select a wire as a frame and place it in the center of a palm leaf with the stem removed. Place the leaves on both sides of the palm leaf on either side of the wire.
[0047] S109, Step 2: Wrap one side of the palm leaf tightly around the wire in a ribbon-like manner, and wrap the other side of the palm leaf in the opposite direction in the same ribbon-like manner, forming a "V-shaped knot" to become a complete "knot".
[0048] S110, Step 3: Repeat step 2 until a longitudinal arrangement is formed on the wire, resembling a cicada pupa shell, with the left and right sides closely symmetrical and completely enclosing the wire.
[0049] Meanwhile, in step 2, after the palm leaf completes the two basic "knots" on both sides, before all the "V-shaped knots" steps, the palm leaf needs to be bent inward at 90° so that the bent part covers the previous "knot" so that the next "V-shaped knot" can be fastened directly, ensuring the stability and aesthetics of the overall structure.
[0050] In addition, X1 and X2 in steps three and four need to be carried out alternately and simultaneously in accordance with the prescribed weaving order during the weaving process.
[0051] Finally, X1 and X2 need to be knitted in a prescribed order, alternating sequentially, and simultaneously in the following manner:
[0052] After weaving Y1 and Y2 from the front using X1, begin the weaving process for X2.
[0053] Starting from the back, weave Y1, Y2, and Y3 using X2, then start weaving from Y3 to Y5 using X2.
[0054] That is, each weaving of X1 and X2 leads by an additional weft Y.
[0055] When using the multi-strand palm leaf weaving method of this embodiment, firstly, select 1 to n wires as the main weaving material, place all wires side by side, and regard them as weft Y. Arrange them according to their position and name them as warp Y1, Y2, Y3...Yn. Then, select two palm leaves of suitable length, and regard them as warp X. Name them X1 and X2 according to the direction of weaving. Then, starting from one side of X1, follow the single-strand weaving technique and wrap them horizontally and tightly around Y1, Y2, Y3 in a "herringbone" pattern from the front. ...On Yn, finally, starting from one side of X2, repeat the steps of step three, wrapping the wires horizontally and tightly around Y1, Y2, Y3...Yn from the back. Repeat the above operation until X1 and X2 tightly wrap and connect all the wires in the same horizontal direction. Then select two other palm leaves, name them X3 and X4, and start wrapping and connecting all the wires tightly in another horizontal direction. When all the palm leaves completely wrap all the wires, the production of a multi-strand palm leaf weaving basic component is completed.
[0056] The specific steps of the single-strand weaving technique are as follows: First, select a wire as the frame and place it in the center of a palm leaf with the stem removed. Place the palm leaves on both sides of the wire. Then, wrap one side of the palm leaf tightly around the wire in a ribbon-like manner. Wrap the other side of the palm leaf in the wire in the opposite direction in a ribbon-like manner to form a "V-shaped knot" pattern, which is a complete "knot". Then, repeat step 2 until a "strand" is formed on the wire, which is arranged vertically and resembles a cicada pupa shell. The left and right sides are closely symmetrical and completely wrap the wire.
[0057] In summary, this invention employs a single-strand weaving technique to weave multiple palm leaves onto multiple wires, allowing the palm leaves to completely enclose all the wires, thus completing the creation of a multi-strand palm leaf woven base component. This multi-strand palm leaf woven base component can be used as the base component for works with specific appearances (such as large animal torsos), allowing for free creation and ensuring that the work is suitable for any occasion. Because the wires are tightly wrapped and connected by the palm leaves throughout the weaving process, the overall structure's stability and aesthetics are guaranteed. This solves the technical problems of existing palm weaving handicrafts, such as unstable structure, limited applicability to various works, and low level of refinement.
[0058] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A method for weaving multi-strand palm leaves, characterized in that, Includes the following steps: Step 1: Select 1 to n iron wires as the main body of weaving. Place all the iron wires side by side and regard them as weft Y. Arrange them according to their position and call them weft Y1, Y2, Y3...Yn; Step 2: Select two palm leaves of suitable length, both regarded as warp threads X, and name them X1 and X2 according to whether they are woven in the forward or reverse direction; Step 3: Starting from one side of X1, using the single-strand weaving technique, wrap the strands horizontally and tightly around Y1, Y2, Y3...Yn in a herringbone pattern from the front. Step 4: Starting from one side of X2, repeat the steps in Step 3, wrapping the X2, Y3...Yn horizontally and tightly from the back. Step 5: Repeat this operation until X1 and X2 tightly connect all the wires in the same horizontal direction; Step Six: Select two more palm leaves, name them X3 and X4, and begin to tightly wrap and connect all the wires in another horizontal direction; Step 7: Once all the palm leaves have completely wrapped the wire, the basic structure of a multi-strand palm leaf weaving is complete. X1 and X2 need to be knitted in a prescribed order, alternating sequentially, and simultaneously in the following manner: After weaving Y1 and Y2 from the front using X1, begin the weaving process for X2. Starting from the back, weave Y1, Y2, and Y3 using X2, then start weaving from Y3 to Y5 using X2. That is, each weaving of X1 and X2 leads by an additional weft Y.
2. The method for weaving multi-strand palm leaves as described in claim 1, characterized in that, The wire used in step one is made of stainless steel, with a thickness of not less than 0.9 mm and a hardness controlled between 150-200 HBS.
3. The multi-strand palm leaf weaving method as described in claim 1, characterized in that, The palm leaf used in step two has an overall length of not less than 0.5m and a width of not less than 1cm.
4. The method for weaving multi-strand palm leaves as described in claim 1, characterized in that, The specific method of the single-strand weaving technique in step three is as follows: Step 1: Select a wire as a frame and place it in the center of a palm leaf with the stem removed. Place the leaves on both sides of the palm leaf on either side of the wire. Step 2: Wrap one side of the palm leaf tightly around the wire in a ribbon-like manner, and wrap the other side of the palm leaf in the opposite direction in the same way, forming a "V" knot, thus completing a "knot". Step 3: Repeat step 2 until a longitudinal arrangement is formed on the wire, resembling a cicada pupa shell, with the left and right sides closely symmetrical and completely enclosing the wire.