Reed plate steel sheet spacing adjustable device of inorganic fiber loom

By designing an adjustable reed plate steel sheet spacing device in the inorganic fiber loom and utilizing the upper and lower gaskets and crossbar snap-on structure, the problems of limited applicability and complex operation caused by the fixed spacing of the traditional device are solved, and high-precision fiber arrangement and fabric quality stability are achieved.

CN223422878UActive Publication Date: 2025-10-10DONGGUAN KEFU PRECISION MFG CO LTD +1
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Patent Information

Application Number
CN202422709783.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-07
Publication Date
2025-10-10
Estimated Expiration
2034-11-07

AI Technical Summary

Technical Problem

The spacing of the reed steel sheet device of traditional inorganic fiber looms is fixed and cannot be flexibly adjusted, resulting in a limited scope of application, complex operation and low precision, making it difficult to meet the needs of diversified fiber materials and fabric structures.

Method used

A device with adjustable spacing between reed plate steel sheets is designed. Upper and lower gaskets are set between adjacent reed plate steel sheets, and the spacing between the reed plate steel sheets can be flexibly adjusted through a cross bar and a snap-on structure. The components of the outer frame are connected and fixed by screws, which is convenient for disassembly and reassembly.

Benefits of technology

It realizes the flexible adjustment of the spacing between the reed plates, simplifies the operation, improves the adjustment accuracy and the stability of the device, and ensures the consistency of fabric quality and the durability of the device.

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Abstract

The utility model discloses a reed plate steel sheet spacing adjustable device of an inorganic fiber loom, which relates to the technical field of inorganic fiber looms and comprises a peripheral frame body and a plurality of reed plate steel sheets. The peripheral frame body is composed of an upper cross beam, a lower cross beam and two side columns which are connected and fixed through screws. The reed plate steel sheets are fixed in the frame body, and the distance between the adjacent reed plate steel sheets is flexibly adjusted by increasing and decreasing the number of the upper gaskets and the lower gaskets. Each reed plate steel sheet is matched with the gasket in shape and size and is serially connected and fixed through a cross rod, and the surface of the cross rod is plated with chromium to enhance wear resistance. The upper cross beam is provided with an upper preformed groove and a buckle, and the lower cross beam is provided with a lower preformed groove and a clamping strip and is clamped and fixed with the reed plate steel sheet and the gasket. The side columns are connected with the first convex edges and clamped in the upper and lower reserved grooves to restrain the transverse position of the reed plate steel sheet. The device is stable in structure, easy and convenient to operate, high in adjusting precision and suitable for production requirements of different fiber materials and fabric structures, and the weaving efficiency and the fabric quality are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to inorganic fiber loom technical field, concretely is a kind of inorganic fiber loom's reed plate steel sheet spacing adjustable device. BACKGROUND

[0002] In the inorganic fiber weaving industry, reed plate steel sheet is the key component on loom, its function is to control the arrangement and density of fiber, to ensure the quality and uniformity of fabric. The traditional reed plate steel sheet device often adopts fixed spacing design, cannot flexibly adjust the spacing between reed plate steel sheet according to production demand. This fixed spacing design limits the application range of loom, cannot meet the diversification demand of reed plate steel sheet spacing for different fiber materials and fabric structure.

[0003] In addition, the traditional reed plate steel sheet device has many inconveniences in fixing and adjusting spacing. For example, some devices need to disassemble entire frame body to adjust the spacing of reed plate steel sheet, which not only consumes time and effort, but also easily damages device components. Although some devices can change spacing by adjusting bolt or nut, operation is complex and precision is not high, difficult to meet the requirement of high-precision weaving. SUMMARY

[0004] In view of the deficiencies of prior art, the utility model provides a kind of reed plate steel sheet spacing adjustable device of inorganic fiber loom, solves the problems raised in the above background art.

[0005] To achieve the above object, the utility model is realized by the following technical scheme: a kind of reed plate steel sheet spacing adjustable device of inorganic fiber loom, including peripheral frame body, the inside of the peripheral frame body is fixed with several reed plate steel sheets, several upper shims are provided between the top of adjacent two reed plate steel sheets, and several lower shims are provided between the bottom of adjacent two reed plate steel sheets, the spacing of several reed plate steel sheets is adjusted by changing the number of upper shims and lower shims between adjacent two reed plate steel sheets.

[0006] Further, the peripheral frame body includes upper crossbeam, lower crossbeam, first side column and second side column, the adjacent ends of the upper crossbeam, lower crossbeam, first side column, second side column are fixed by screw connection.

[0007] Further, the shape and size of the top of each reed plate steel sheet are adapted to the upper shim, and the shape and size of the bottom of each reed plate steel sheet are adapted to the lower shim, the number of upper shims and lower shims provided between adjacent two reed plate steel sheets is same.

[0008] Furthermore, a socket is provided on the top of each reed plate steel sheet and inside each upper gasket. A cross bar is inserted into several sockets to connect and fix several reed plate steel sheets and several upper gaskets in series. The surface of the cross bar is provided with a chrome-plated layer.

[0009] Furthermore, an upper reserved groove is opened at the bottom of the upper crossbeam, and a plurality of clips are arranged inside the upper reserved groove. An upper clip is opened inside each clip, and the top of each reed plate steel sheet and each upper gasket are snapped into the interior of the upper clip.

[0010] Furthermore, a lower reserved groove is opened at the top of the lower cross beam, and the interior of the lower reserved groove is symmetrically connected to the clamping strip. The bottom of each reed plate steel sheet and each lower gasket are located inside the lower reserved groove, and all have lower clamping grooves symmetrically opened, and the lower clamping grooves are engaged with the clamping strip.

[0011] Furthermore, the adjacent ends of the first side column and the second side column are connected to the first flange, and splicing notches are provided at both ends of the upper crossbeam and the lower crossbeam, and the splicing notches are adapted to the first side column and the second side column. The top of the first flange is engaged in the interior of the upper reserved groove, and the bottom is engaged in the interior of the lower reserved groove, and is located at the upper part of the clamping strip. The first flange in the middle can constrain the lateral position of several reed plate steel sheets.

[0012] The utility model provides a device for adjusting the spacing between reed plates of an inorganic fiber loom. Compared with the prior art, the device has the following advantages:

[0013] 1. The upper and lower spacers are designed to allow for flexible adjustment of the spacing between the reed plates. This design not only simplifies the adjustment process and reduces operational difficulty, but also improves adjustment accuracy, ensuring the stability and consistency of fabric quality.

[0014] 2. The peripheral frame is rationally designed, with tight and reliable connections between components, enhancing the stability and durability of the device. The upper and lower crossbeams, first and second side posts are fastened with screws, allowing for easy disassembly and reassembly, facilitating adjustments and repairs as needed. Furthermore, the design of the first flange not only enhances the structural stability of the frame but also constrains the lateral position of the reed plate, preventing deviation during operation.

[0015] 3. By inserting a crossbar into the socket, several reed plates and upper washers can be connected and fixed together, further enhancing the stability and accuracy of the device. The chrome plating on the crossbar surface improves its wear resistance and corrosion resistance, extending the service life of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the split structure of the utility model;

[0017] Figure 2 This is a structural diagram of the upper and lower crossbeams, upper and lower gaskets, and buckles in the utility model;

[0018] Figure 3 This is a schematic structural diagram of the first and second side columns in the present utility model;

[0019] Figure 4 This is a schematic diagram of the assembly structure of the utility model;

[0020] Figure 5 This is a top view of the utility model after assembly;

[0021] Figure 6 For this utility model Figure 5 Cross-section of the middle AA;

[0022] Figure 7 For this utility model Figure 5 Cross-section of the BB.

[0023] Figure 8 This is a schematic diagram of the lower gasket of the utility model.

[0024] In the figure: 1. Upper crossbeam; 11. Upper reserved slot; 2. Lower crossbeam; 21. Lower reserved slot; 22. Clip; 23. Joint notch; 3. First side column; 31. First flange; 4. Second side column; 5. Reed plate steel sheet; 6. Upper gasket; 61. Insert hole; 7. Lower gasket; 71. Lower clip; 72. Second flange; 8. Crossbar; 9. Clip; 91. Upper clip. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0026] See also Figure 1-7The present invention provides a technical solution: a device for adjusting the spacing of reed steel sheets of an inorganic fiber loom, comprising an upper crossbeam 1, a lower crossbeam 2, a first side post 3, a second side post 4, a plurality of reed steel sheets 5, a plurality of upper gaskets 6, a plurality of lower gaskets 7, a crossbar 8, and a plurality of clips 9. The adjacent ends of the upper crossbeam 1, the lower crossbeam 2, the first side post 3, and the second side post 4 are connected and fixed by screws to form a stable outer frame. This connection method facilitates disassembly and reassembly, and facilitates adjustment and maintenance as needed. Several reed steel sheets 5 are fixed inside the outer frame. These reed steel sheets 5 play a key role in the device, and the spacing between them is adjustable. To achieve spacing adjustment, a plurality of upper gaskets 6 are provided between the tops of two adjacent reed steel sheets 5, and a plurality of lower gaskets 7 are provided between the bottoms of two adjacent reed steel sheets 5. By increasing or decreasing the number of upper and lower shims 6, 7, and by providing a second flange 72 on the edge of each lower shim 7, the spacing between the reed plates 5 can be flexibly adjusted to meet different production requirements. It should be noted that the top and bottom shapes and sizes of each reed plate 5 are adapted to the upper and lower shims 6, 7, respectively. This design ensures a tight fit between the reed plates 5 and the shims, thereby improving the stability and accuracy of the device. Furthermore, the number of upper and lower shims 6 and 7 provided between two adjacent reed plates 5 is the same, which helps maintain balance between the reed plates 5.

[0027] To further secure the reed plates 5 and upper washers 6, insertion holes 61 are provided at the top of each reed plate 5 and within each upper washers 6. By inserting a crossbar 8 through these insertion holes 61, several reed plates 5 and upper washers 6 can be connected and secured together. The crossbar 8 is chrome-plated, which helps improve its wear and corrosion resistance, thereby extending the service life of the device.

[0028] Please read Figure 8 As shown, when the size of the gap needs to be adjusted, the size of the gap can be adjusted by simply replacing the gasket 7, because the gasket 7 is provided with a second convex edge 72, and the second convex edge can be set to several widths, so that the size of the gap can be adjusted.

[0029] An upper reserved groove 11 is provided at the bottom of the upper crossbeam 1 of the outer frame body. Several clips 9 are provided inside the upper reserved groove 11, and an upper clip 91 is provided inside each clip 9. The top of each reed plate steel sheet 5 and each upper gasket 6 can be snapped into the inside of these upper clips 91, thereby further fixing their positions. Correspondingly, a lower reserved groove 21 is provided at the top of the lower crossbeam 2, and the inside of the lower reserved groove 21 is symmetrically connected to the clip strip 22. The bottom of each reed plate steel sheet 5 and each lower gasket 7 are located inside the lower reserved groove 21, and they all have symmetrical lower clip grooves 71, which snap into place with the clip strip 22, thereby achieving fixation of the lower part;

[0030] Finally, the adjacent ends of the first side column 3 and the second side column 4 are connected to the first flange 31. Both ends of the upper crossbeam 1 and the lower crossbeam 2 are provided with a splicing notch 23 adapted to the first side column 3 and the second side column 4. The top of the first flange 31 is engaged with the inside of the upper reserved groove 11, and the bottom is engaged with the inside of the lower reserved groove 21, and is located on the upper part of the clamping strip 22. This design not only strengthens the structural stability of the outer frame body, but also the first flange 31 in the middle can constrain the lateral position of several reed plate steel sheets 5 to prevent them from shifting during operation.

[0031] In summary, this embodiment provides a stable and easy-to-operate device for adjusting the spacing between reed plates for an inorganic fiber loom. By adjusting the number of upper and lower spacers 6 and 7, the spacing between the reed plates 5 can be flexibly adjusted to meet diverse production requirements. Furthermore, the rational design of the outer frame and the tight and reliable connections between the various components ensure the stability and accuracy of the device.

Claims

1. A device for adjusting the spacing between reed plates of an inorganic fiber loom, comprising a peripheral frame body and a first flange (31), characterized in that: A plurality of reed plate steel sheets (5) are fixed inside the outer frame body, a plurality of upper gaskets (6) are arranged between the tops of two adjacent reed plate steel sheets (5), and a plurality of lower gaskets (7) are arranged between the bottoms of two adjacent reed plate steel sheets (5), and the spacing between the plurality of reed plate steel sheets (5) is adjusted by changing the number of upper gaskets (6) and lower gaskets (7) between two adjacent reed plate steel sheets (5).

2. The device for adjusting the spacing between reed plates of an inorganic fiber loom according to claim 1, characterized in that: The peripheral frame body comprises an upper crossbeam (1), a lower crossbeam (2), a first side column (3) and a second side column (4); adjacent ends of the upper crossbeam (1), the lower crossbeam (2), the first side column (3) and the second side column (4) are connected and fixed by screws.

3. The device for adjusting the spacing between reed plates of an inorganic fiber loom according to claim 1, wherein: The shape and size of the top of each reed plate steel sheet (5) are adapted to the upper gasket (6), and the shape and size of the bottom of each reed plate steel sheet (5) are adapted to the lower gasket (7). The number of upper gaskets (6) and lower gaskets (7) provided between two adjacent reed plate steel sheets (5) is the same, and the edge of the lower gasket (7) is provided with a second convex edge (72).

4. The device for adjusting the spacing between reed plates of an inorganic fiber loom according to claim 3, wherein: A plug hole (61) is provided through the top of each reed plate steel sheet (5) and the inside of each upper gasket (6). A cross bar (8) is inserted into the plurality of plug holes (61) to connect and fix the plurality of reed plate steel sheets (5) and the plurality of upper gaskets (6) in series. The surface of the cross bar (8) is provided with a chrome-plated layer.

5. The device for adjusting the spacing between reed plates of an inorganic fiber loom according to claim 2, wherein: An upper reserved groove (11) is provided at the bottom of the upper crossbeam (1), and a plurality of clips (9) are provided inside the upper reserved groove (11). An upper clipping groove (91) is provided inside each clip (9), and the top of each reed plate steel sheet (5) and each upper gasket (6) are snap-fitted inside the upper clipping groove (91).

6. The device for adjusting the spacing between reed plates of an inorganic fiber loom according to claim 2, wherein: A lower reserved groove (21) is provided at the top of the lower crossbeam (2), and a clamping strip (22) is symmetrically connected to the interior of the lower reserved groove (21). The bottom of each reed plate steel sheet (5) and each lower gasket (7) are located inside the lower reserved groove (21) and are symmetrically provided with lower clamping grooves (71), which are engaged with the clamping strip (22).

7. The device for adjusting the spacing between reed plates of an inorganic fiber loom according to claim 2, wherein: The adjacent ends of the first side column (3) and the second side column (4) are connected to the first flange (31), and both ends of the upper crossbeam (1) and the lower crossbeam (2) are provided with a splicing notch (23), and the splicing notch (23) is adapted to the first side column (3) and the second side column (4). The top of the first flange (31) is engaged with the inside of the upper reserved groove (11), and the bottom is engaged with the inside of the lower reserved groove (21), and is located at the upper part of the clamping strip (22). The first flange (31) in the middle can constrain the lateral position of a plurality of reed plate steel sheets (5).