Embroidery fabric supporting frame

By designing an adjustable support rod and elastic telescopic components for the embroidery fabric support frame, the problems of fixed angle and fabric displacement in traditional support frames are solved. This provides stable angle adjustment and flat fabric fixation, improving the precision and portability of embroidery.

CN121593250AInactive Publication Date: 2026-03-03CHANGZHOU VOCATIONAL INST OF ENG
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Patent Information

Application Number
CN202511885230.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-15
Publication Date
2026-03-03
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing embroidery support frames have fixed or unstable angles, making it difficult to meet individual needs and leading to fatigue during long hours of work; the fabric is also prone to shifting and wrinkling, and storage and management are inconvenient.

Method used

An embroidery fabric support frame was designed, comprising a support rod, an adjustment and fixing component, and a support component. The frame achieves stepless angle adjustment and stability through a damped rotation connection and an elastic telescopic component. The fabric is quickly fixed by the threaded engagement of the pressure plate and the placement rack. The frame integrates lighting and storage functions and uses magnetic adsorption and a damping shaft to improve stability and portability.

Benefits of technology

It achieves flatness and stability of the embroidered fabric, reduces fatigue from long hours of work, ensures embroidery precision and efficiency, and is easy to store and carry.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of embroidery equipment, in particular to an embroidery fabric supporting frame which comprises a bottom plate, supporting rods are arranged on the two sides of the top of the bottom plate, an adjusting and fixing assembly connected with the supporting rods is installed between the upper ends of the two supporting rods, and supporting assemblies are arranged at the bottom ends of the supporting rods; the adjusting and fixing assembly comprises a connecting rod, a placement frame, a pressing plate and a fixing part, the connecting rod is rotationally connected with the supporting rod and fixedly connected with the placement frame, the pressing plate is arranged at the front end of the top of the placement frame, and the fixing part is in transmission connection with the pressing plate and penetrates through the pressing plate to be in threaded connection with the placement frame; the adjusting and fixing assembly further comprises a moving shaft, a transverse shaft, a positioning rod, a mounting ring, a connecting frame, an elastic telescopic piece, a pressing plate and a winding shaft, a user can easily adjust the inclination angle of the placing frame in a stepless mode through damping rotating connection between the supporting rod and the bottom plate and the locking effect of the jackscrew rod on the connecting rod, and the user can conveniently adjust the placing frame in a stepless mode. And the support can be stably kept at any required position.
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Description

Technical Field

[0001] This invention relates to the field of embroidery equipment technology, and in particular to an embroidery fabric support frame. Background Technology

[0002] Embroidery, an ancient traditional craft, is the art of creating patterns and colors on fabric using specific stitches and materials such as silk threads. Its finished products are widely used in clothing, household goods, and art decorations. During the embroidery process, the stability, flatness, and appropriate angle of the fabric are crucial for ensuring accuracy and efficiency; therefore, an embroidery support frame is an indispensable auxiliary tool.

[0003] Existing embroidery fabric supports (such as embroidery hoops and frames) are mostly single-function devices, typically providing only a fixed-size frame for tensioning the fabric. They suffer from the following significant drawbacks: the angle of traditional supports is often fixed, or only allows for limited and unstable adjustments, making it difficult to meet the embroiderer's need to flexibly adjust the fabric angle according to lighting, posture, or personal habits. Prolonged work can easily lead to fatigue. During embroidery, especially when working on complex or large-area pieces, the fabric is prone to localized shifting, loosening, or wrinkling due to repeated pulling of the needle and thread. Existing devices lack effective dynamic pressing and anti-wrinkle mechanisms, affecting the flatness and accuracy of the embroidery pattern. For longer embroidery fabrics (such as scrolls or long paintings), traditional supports can usually only fix and display the currently embroidered section. The completed embroidery sections lack effective storage and management, often hanging or piling up haphazardly. This not only takes up space and easily gets stained, but may also damage the finished embroidery surface due to friction and folding, causing inconvenience for subsequent embroidery and management. Many support frames are bulky or have complicated folding methods, making them inconvenient to use in non-fixed locations or to store after use. Summary of the Invention

[0004] The technical problem to be solved by the present invention is: in order to overcome the problem that the angle of the traditional support frame in the prior art is often fixed or can only be adjusted in a limited and unstable manner, which makes it difficult to meet the needs of embroiderers to flexibly adjust the angle of the fabric according to the light, sitting posture or personal habits, and the problem that long-term operation is prone to fatigue, an embroidery fabric support frame is provided.

[0005] The technical solution adopted by the present invention to solve its technical problem is: an embroidery fabric support frame, including a base plate, support rods arranged on both sides of the top of the base plate, an adjustment and fixing assembly connected to the support rods installed between the upper ends of the two sets of support rods, and a support assembly arranged at the bottom end of the support rods; The adjusting and fixing assembly includes a connecting rod, a placement frame, a pressure plate, and a fixing component. The connecting rod and the support rod are rotatably connected, and the connecting rod and the placement frame are fixedly connected. The pressure plate is located at the top front end of the placement frame. The fixing component is drive-connected to the pressure plate and threaded through the pressure plate and the placement frame. The adjusting and fixing assembly also includes a movable shaft, a horizontal shaft, a positioning rod, a mounting ring, a connecting frame, an elastic telescopic component, a pressure plate, a winding shaft, and a winding shaft. A movable groove is provided on the inner wall side of the placement frame, and the movable shaft is slidably arranged within the movable groove. The horizontal shaft and the movable shaft are rotatably connected. The horizontal shaft is used for winding and placing the embroidered fabric. A positioning hole is provided on the top side of the placement frame to mate with the positioning rod. The positioning rod passes through the positioning hole and is inserted into the positioning rod. The mounting ring is mounted on the movable shaft and is fixedly connected to the connecting frame. One end of the elastic telescopic component is fixedly connected to the connecting frame, and the other end... The support rod is fixedly connected to the pressure plate, which is located above the horizontal axis. A winding shaft is rotatably connected between the lower ends of the support rods. The winding shaft is used to wind up the embroidered fabric. Through the damped rotational connection between the support rod and the base plate, and the locking action of the top screw on the connecting rod, the user can easily and steplessly adjust the tilt angle of the placement frame and hold it firmly in any desired position. This greatly adapts to different embroidery scenarios and the personalized needs of operators, effectively reducing neck and eye fatigue during long-term work. Through the threaded engagement between the pressure plate and the placement frame, the ends of the embroidered fabric can be quickly pressed and fixed.

[0006] To address the issues of cumbersome operation or unstable locking of the angle adjustment mechanism, which can easily lead to unexpected deflection when the embroidery is subjected to force, a further design includes a top screw rod rotatably arranged on the side of the support rod, with the top screw rod passing through the support rod on its side and abutting against the top screw rod.

[0007] To address the issues of insufficient lighting in the embroidery work environment and the inefficiency caused by the scattered placement of commonly used tools, the system further includes a mounting bracket fixed to the top of the support rod, a lighting fixture installed on the mounting bracket, and a needle and thread storage box arranged on one side of the mounting bracket.

[0008] To address the issue of the positioning rod used to fix the horizontal axis position being easily lost or accidentally detached, a further method is included: magnetic adsorption connection between the upper end of the positioning rod and the placement frame.

[0009] It further includes an embroidered fabric wound on a horizontal axis, one end of which passes between the pressure plate and the placement frame and is connected to the winding shaft.

[0010] To address the issue that the take-up shaft may move axially or detach during rotation, affecting the flatness of the winding and operational safety, the system further includes a receiving groove at the front end of the support rod, with a baffle slidably connected within the receiving groove. The end of the take-up shaft is arranged within the receiving groove of the support rod on its side, and the baffle is in contact with the outer wall of one side of the take-up shaft. The baffle is used to confine the take-up shaft within the receiving groove.

[0011] To address the issues of insufficient overall stability of the support frame and the inconvenience of folding and storing it after use, the support component further includes a fixing block, which is fixedly connected to the base plate. A damping shaft extends horizontally through the lower end of the support rod and is rotatably connected to it. The damping shaft is fixedly connected to the fixing block. Support plates are rotatably connected to the front and rear sides of the lower end of the support rod. A slot is provided at the top of the base plate for the support plate to abut against. The side of the support plate closest to the base plate is arranged in the slot.

[0012] To address the inconvenience and effort involved in manually rotating the take-up shaft, a further adjustment and fixing assembly includes a rotating disk, which is fixedly connected to the take-up shaft.

[0013] The beneficial effects of this invention are as follows: The embroidery fabric support frame provided by this invention, through the damped rotational connection between the support rod and the base plate, and the locking effect of the top screw rod on the connecting rod, allows the user to easily and steplessly adjust the tilt angle of the frame and hold it securely in any desired position. This greatly adapts to the personalized needs of different embroidery scenarios and operators, effectively reducing neck and eye fatigue during long-term work. The threaded engagement between the pressure plate and the frame allows for quick and easy clamping and fixing of the ends of the embroidery fabric. The design of the elastic telescopic component driving the pressure plate applies continuous and flexible vertical pressure to the fabric passing beneath it. This pressure can be automatically and finely adjusted according to the thickness of the fabric, smoothing out wrinkles that may be caused by the pulling of the needle and thread during embroidery and preventing lateral displacement of the fabric, ensuring that the embroidery surface is always in a flat and taut ideal state, thus guaranteeing embroidery accuracy. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0015] Figure 1 This is a schematic diagram of the overall component structure of the present invention; Figure 2 This is a schematic diagram of the overall component storage structure of the present invention; Figure 3 This is a schematic diagram of the adjusting and fixing component structure of the present invention; Figure 4 This is a schematic diagram of the placement rack structure of the present invention; Figure 5 This is a schematic diagram of the internal structure of the placement rack of the present invention; Figure 6 This is a schematic diagram of the arc-shaped flexible pressure plate structure of the present invention; Figure 7 This is a schematic diagram of the support component structure of the present invention; Figure 8 This is a schematic diagram of the connection structure between the baffle and the support rod of the present invention.

[0016] In the diagram: 100, base plate; 110, support rod; 120, mounting bracket; 130, lighting lamp; 140, needle and thread holder; 150, embroidery fabric. 200. Adjusting and fixing assembly; 210. Connecting rod; 211. Top screw; 220. Placement frame; 230. Pressure plate; 240. Fixing component; 250. Moving shaft; 251. Moving groove; 260. Positioning rod; 261. Positioning hole; 270. Horizontal shaft; 280. Mounting ring; 290. Connecting frame; 2910. Elastic telescopic component; 2920. Pressure plate; 2930. Rewinding shaft; 2931. Rotating disk; 2940. Baffle; 2941. Receiving groove; 300, Support component; 310, Fixing block; 320, Damping shaft; 330, Support plate; 331, Slot. Detailed Implementation

[0017] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.

[0018] like Figure 1 This is a schematic diagram of the structure of the present invention. An embroidery fabric support frame includes a base plate 100, support rods 110 arranged on both sides of the top of the base plate 100, an adjustment and fixing assembly 200 connected to the support rods 110 installed between the upper ends of the two sets of support rods 110, and a support assembly 300 arranged at the bottom end of the support rods 110. The adjusting and fixing assembly 200 includes a connecting rod 210, a placement frame 220, a pressure plate 230, and a fixing member 240. The connecting rod 210 and the support rod 110 are rotatably connected, and the connecting rod 210 and the placement frame 220 are fixedly connected. The pressure plate 230 is arranged at the top front end of the placement frame 220. The fixing member 240 and the pressure plate 230 are connected by transmission and threaded through the pressure plate 230 and the placement frame 220. The fixing member 240 is a bolt, and the connecting rod 210 is a ball head rod. The adjusting and fixing assembly 200 also includes a movable shaft 250, a horizontal shaft 270, a positioning rod 260, a mounting ring 280, a connecting frame 290, an elastic telescopic component 2910, a pressure plate 2920, a winding shaft 2930, and a winding shaft 2931. A movable groove 251 is provided on the inner wall side of the placement frame 220. The movable shaft 250 is slidably arranged in the movable groove 251. The horizontal shaft 270 is rotatably connected to the movable shaft 250. The horizontal shaft 270 is used for winding and placing the embroidered fabric 150. The top side of the placement frame 220 has a positioning hole 261 that mates with the positioning rod 260. The positioning rod 260 passes through the positioning hole 261 and is inserted into the positioning rod 260. The mounting ring 280 is mounted on the moving shaft 250 and is fixedly connected to the connecting frame 290. One end of the elastic telescopic member is fixedly connected to the connecting frame 290, and the other end is fixedly connected to the pressure plate 2920. The pressure plate 2920 is located above the horizontal shaft 270. A winding shaft 2930 is rotatably connected between the lower ends of the support rod 110. The winding shaft 2930 is used to wind up the embroidered fabric 150. The elastic telescopic component 2910 is an elastic telescopic rod, which includes a sleeve, a movable rod, and a spring. The movable rod and the sleeve are slidably connected. The spring is arranged inside the sleeve, with one end of the spring abutting against the sleeve and the other end abutting against the movable rod. Through the damped rotational connection between the support rod 110 and the base plate 100, and the locking effect of the top screw rod 211 on the connecting rod 210, the user can easily and steplessly adjust the tilt angle of the placement frame 220 and hold it firmly in any desired position. This greatly adapts to different embroidery scenarios and the personalized needs of operators, effectively reducing neck and eye fatigue during long-term work. Through the threaded engagement between the pressure plate 230 and the placement frame 220, the end of the embroidered fabric can be quickly pressed and fixed. The design of the elastic telescopic component driving the pressure plate can apply continuous and flexible vertical pressure to the fabric passing underneath it. This pressure can be automatically and finely adjusted according to the thickness of the fabric, smoothing out wrinkles that may be caused by the pulling of the needle and thread during the embroidery process, and preventing the fabric from shifting laterally, ensuring that the embroidered surface is always in a flat and taut ideal state, thus guaranteeing the accuracy of the embroidery.

[0019] This application involves wrapping the embroidered fabric 150 around a horizontal shaft 270, then pulling one end of the fabric 150 to rotate the shaft 270 and pass it between the pressure plate 230 and the placement frame 220. Through the cooperation of the curved, flexible pressure plate 2920 and the spring extension member 2910, the pressure force can be automatically adjusted according to the thickness of the embroidered fabric 150, ensuring that the fabric 150 remains flat and stable during embroidery and will not shift or wrinkle due to external forces. Then, the fixing members 240 on both sides of the pressure plate 230 are twisted to press the fabric 150 firmly, further fixing its position and preventing slippage during embroidery, thus ensuring the accuracy of the embroidery. When adjustments to the embroidery fabric are needed... When positioning the fabric 150, simply lift the positioning rod 260 upwards to disengage it from the moving shaft 250. Then, allow the moving shaft 250 to slide within the moving groove 251, flexibly adjusting the position of the horizontal shaft 270 to meet the needs of different embroidery patterns. The cooperation between the positioning rod 260 and the positioning hole 261 precisely fixes the position of the moving shaft 250, preventing accidental movement of the horizontal shaft 270 during embroidery. After part of the embroidered fabric 150 is finished, one end can be wound around the winding shaft 2930. By rotating the rotating disc 2931, the winding shaft 2930 can be rotated, neatly winding the embroidered fabric 150 onto the winding shaft 2930. This allows for convenient winding of the embroidered fabric 150 for storage and carrying.

[0020] A set screw 211 is rotatably arranged on the side of the support rod 110. The set screw 211 passes through the support rod 110 on the same side and abuts against the support rod 110. Friction locking is achieved through the set screw 211, providing a simple and reliable angle fine-tuning and fixing mechanism to ensure the stability of the worktable angle. The tightness of the set screw 211 against the connecting rod 210 is controlled by rotation. When the set screw 211 moves away from the connecting rod 210, the placement frame 220 can rotate freely. After rotating to a suitable angle, the set screw 211 is rotated to abut against the connecting rod 210.

[0021] This application uses a top screw rod 211 to abut against one side of the connecting rod 210, which can position the connecting rod 210. When it is necessary to adjust the angle of the connecting rod 210 and thus the angle of the placement frame 220, simply rotate the top screw rod 211 to separate it from the connecting rod 210, adjust the angle, and then rotate the top screw rod 211 back to abut against the connecting rod 210. This is convenient to operate and provides stable positioning, which can better meet the embroidery needs of different angles. The lighting lamp 130 installed on the mounting frame 120 can provide sufficient light for the embroidery process, avoiding deviations in embroidery due to insufficient light. The needle and thread placement box 140 facilitates the embroiderer to store and retrieve needles and threads, making the embroidery work more orderly. The upper end of the positioning rod 260 is magnetically attached to the placement frame 220, making the positioning rod 260 more stable after being inserted into the positioning hole 261 and less prone to loosening. This ensures that the horizontal axis 270 is fixed on the moving axis 250, thereby ensuring the stability of the embroidered fabric 150 during the embroidery process.

[0022] In another embodiment, the top screw 211 and the support rod 110 are threaded together, and the top screw 211 and the connecting rod 210 are fixedly connected. The angle of the placement frame 220 is achieved by rotating the top screw 211.

[0023] A mounting bracket 120 is fixed to the top of the support rod 110. A light 130 is installed on the mounting bracket 120, and a needle and thread storage box 140 is arranged on one side of the mounting bracket 120. This integrates lighting and storage functions, directly improves the lighting conditions of the work area, and provides a dedicated storage location for needles, thread and other tools, making operation more convenient and efficient.

[0024] The upper end of the positioning rod 260 is magnetically attached to the placement rack 220. This magnetic attachment allows the positioning rod 260 to be easily and temporarily fixed to the placement rack 220 when not in use, making it less likely to be lost and easier to retrieve.

[0025] Embroidered fabric 150 is wound around the horizontal axis 270. One end of the embroidered fabric 150 passes between the pressure plate 230 and the placement rack 220 and is connected to the winding shaft 2930. The fabric completes the process from the supplied horizontal axis 270, through the work area, to the storage winding shaft 2930, realizing the full management function of the fabric.

[0026] This application uses embroidered fabric 150 wound around the horizontal axis 270 to keep the embroidered fabric 150 flat during the embroidery process, preventing wrinkles or shifting. By having the baffle 2940 fit against the curved outer wall of one side of the winding shaft 2930, the winding shaft 2930 can be prevented from falling off the support rod 110 during rotation. In addition, the baffle 2940 is slidably connected in the slot 2941, which also makes it easy to remove the winding shaft 2930 from the support rod 110.

[0027] The support rod 110 has a receiving groove 2941 at its front end, and a baffle 2940 is slidably connected in the receiving groove 2941. The end of the take-up shaft 2930 is arranged in the receiving groove 2941 of the support rod 110 on its side. The baffle 2940 and the outer wall of one side of the take-up shaft 2930 are in contact. The baffle 2940 is used to restrict the take-up shaft 2930 in the receiving groove 2941. Through the sliding baffle 2940 structure, the axial direction of the take-up shaft 2930 is limited without affecting its rotation, thus ensuring the stability and reliability of the take-up operation.

[0028] After the support rod 110 is adjusted to the appropriate angle, rotate the support plate 330 so that its bottom end abuts into the slot 331 at the top of the base plate 100. At this time, the support plate 330, the base plate 100 and the support rod 110 form a stable triangular support structure, which effectively improves the stability of the entire device. The damping characteristics of the damping shaft 320 can also prevent the support rod 110 from rotating excessively due to inertia during the adjustment process, ensuring the smoothness and accuracy of the adjustment process. After the device is used, rotate the support plate 330 into the support rod 110 to fit it. Then rotate the support rods 110 on both sides to make them parallel to the base plate 100. At this time, the entire device is in the storage state. It is small in size, easy to store and carry, and meets the needs of embroiderers for use and storage in different scenarios, bringing great convenience to embroiderers.

[0029] The support assembly 300 includes a fixing block 310, which is fixedly connected to the base plate 100. A damping shaft 320 extends horizontally through the lower end of the support rod 110 and is rotatably connected to it. The damping shaft 320 is fixedly connected to the fixing block 310. Support plates 330 are rotatably connected to the front and rear sides of the lower end of the support rod 110. A slot 331 is provided at the top of the base plate 100 for the support plate 330 to abut against. The side of the support plate 330 closest to the base plate 100 is arranged in the slot 331. Through the cooperation of the damping shaft 320, the rotatable support plate 330 and the slot 331 of the base plate 100, a stable triangular support is achieved in the working state, and quick folding is achieved when not in use, thus taking into account both stability and portability.

[0030] The adjusting and fixing assembly 200 also includes a rotating disk 2931, which is fixedly connected to the winding shaft 2930. By setting the rotating disk 2931, the force application radius is increased, providing the operator with a labor-saving and easy-to-grip control point, making the operation of winding up the cloth easier and more convenient.

[0031] Work process: Unfold the device, rotate and lower the two side support plates 330 so that their bottom ends are inserted into the slots 331 of the base plate 100 to form a stable triangular support. Loosen the top screw 211, adjust the placement frame 220 (through the connecting rod 210) to a suitable embroidery angle as needed, and then tighten the top screw 211 to fix the angle. The two ends of the horizontal shaft 270 with the embroidered fabric wrapped around it are installed on the movable shaft 250, and the movable shaft 250 is slid along the movable groove 251 to a suitable position. The positioning rod 260 is inserted to lock the horizontal shaft 270. The free end of the embroidered fabric is pulled out so that it passes under the pressure plate 2920, and then its end is placed between the front end of the placement frame 220 and the pressure plate 230. Rotate the fixing part 240 to drive the pressure plate 230 to move down, press and fix the end of the fabric on the placement frame 220, and the embroiderer can embroider on the flat and taut fabric surface. During the embroidery process, the elastic telescopic component 2910, located between the horizontal axis 270 and the fixed point, continuously applies a flexible downward pressure to the fabric through the pressure plate 2920. This pressure automatically compensates for minor deformations of the fabric, eliminates wrinkles generated during operation in real time, and ensures a consistently smooth embroidered surface.

[0032] When a section of embroidery is completed and the next section needs to be embroidered, the winding shaft 2930 can be operated (for example, by rotating the rotating disc 2931 connected to it). The winding shaft 2930 rotates to gradually wind up and store the embroidered fabric, while the new fabric to be embroidered is pulled out from the horizontal shaft 270 and pressed and fixed in the embroidery area by the pressing plate 2920. The baffle 2940 ensures that the winding shaft 2930 will not move axially during rotation. After the embroidery is finished, the rewinding shaft 2930 can be rotated in the opposite direction to release the fabric appropriately. The fixing piece 240 can be loosened to remove the fabric or store it as a whole. The support plate 330 can be taken out from the slot 331 and rotated to fit the support rod 110. Then, the two support rods 110 on both sides can be rotated inward at the same time so that they are roughly parallel to the base plate 100. The device can be folded for easy storage.

[0033] Based on the above-described preferred embodiments of the present invention, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the inventive concept. The technical scope of this invention is not limited to the contents of the specification, but must be determined according to the scope of the claims.

Claims

1. An embroidered fabric support frame, characterized in that, Includes a base plate (100), on both sides of the top of the base plate (100) are arranged support rods (110), and an adjustment and fixing assembly (200) connected to the support rods (110) is installed between the upper ends of the two sets of support rods (110), and a support assembly (300) is arranged at the bottom end of the support rods (110). The adjusting and fixing assembly (200) includes a connecting rod (210), a placement frame (220), a pressure plate (230), and a fixing member (240). The connecting rod (210) and the support rod (110) are rotatably connected, and the connecting rod (210) and the placement frame (220) are fixedly connected. The pressure plate (230) is arranged at the top front end of the placement frame (220). The fixing member (240) and the pressure plate (230) are drive-connected and threaded through the pressure plate (230) and the placement frame (220). The adjusting and fixing assembly (200) further includes a movable shaft (250), a horizontal shaft (270), a positioning rod (260), a mounting ring (280), a connecting frame (290), an elastic telescopic component (2910), a pressure plate (2920), a winding shaft (2930), and a winding shaft (2930). The inner wall of the placement frame (220) is provided with a movable groove (251), and the movable shaft (250) is slidably arranged in the movable groove (251). The horizontal shaft (270) is rotatably connected to the movable shaft (250). The horizontal shaft (270) is used for winding and placing the embroidered fabric (150). The top side of the placement frame (220) is provided with a component that connects with the positioning rod (260). 0) The positioning hole (261) is matched with the positioning rod (260) and is inserted into the positioning rod (260). The mounting ring (280) is mounted on the moving shaft (250). The mounting ring (280) and the connecting frame (290) are fixedly connected. One end of the elastic telescopic member is fixedly connected to the connecting frame (290), and the other end is fixedly connected to the pressing plate (2920). The pressing plate (2920) is located above the horizontal axis (270). The lower ends of the support rod (110) are rotatably connected to the winding shaft (2930). The winding shaft (2930) is used to wind up the embroidered fabric (150).

2. The embroidered fabric support frame as described in claim 1, characterized in that: The support rod (110) is rotatably arranged with a top screw (211) on its side. The top screw (211) passes through the support rod (110) on its side and abuts against the top screw (211).

3. The embroidered fabric support frame as described in claim 1, characterized in that: The top of the support rod (110) is fixed with a mounting bracket (120), a lighting lamp (130) is installed on the mounting bracket (120), and a needle and thread storage box (140) is arranged on one side of the mounting bracket (120).

4. The embroidered fabric support frame as described in claim 1, characterized in that: The upper end of the positioning rod (260) and the placement frame (220) are magnetically attached.

5. The embroidered fabric support frame as described in claim 1, characterized in that: Embroidered fabric (150) is wound around the horizontal shaft (270), one end of which passes between the pressure plate (230) and the placement frame (220) and is connected to the winding shaft (2930).

6. The embroidered fabric support frame as described in claim 1, characterized in that: The support rod (110) has a receiving groove (2941) at its front end. A baffle (2940) is slidably connected in the receiving groove (2941). The end of the take-up shaft (2930) is arranged in the receiving groove (2941) of the support rod (110) on its side. The baffle (2940) and the outer wall of the take-up shaft (2930) are in contact. The baffle (2940) is used to restrict the take-up shaft (2930) in the receiving groove (2941).

7. The embroidered fabric support frame as described in claim 1, characterized in that: The support assembly (300) includes a fixing block (310) and a base plate (100) fixedly connected. The lower end of the support rod (110) is transversely connected to a damping shaft (320) and is rotatably connected to it. The damping shaft (320) is fixedly connected to the fixing block (310). Support plates (330) are rotatably connected to the front and rear sides of the lower end of the support rod (110). The top of the base plate (100) is provided with a slot (331) for the support plate (330) to abut. The side of the support plate (330) near the base plate (100) is arranged in the slot (331).

8. The embroidered fabric support frame as described in claim 1, characterized in that: The adjusting and fixing assembly (200) also includes a rotating disk (2931), which is fixedly connected to the winding shaft (2930).