Infant garment processing device
By designing an infant and toddler clothing processing device, a combination of graphic holes and graphic cutters is used to achieve precise cutting of simple geometric shapes, solving the problems of low cutting accuracy and efficiency in infant and toddler clothing processing, adapting to diverse design needs, and reducing operation and maintenance costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG SHENGTAI BABY CLOTHING CO LTD
- Filing Date
- 2025-04-27
- Publication Date
- 2026-05-01
AI Technical Summary
In the process of manufacturing infant and toddler clothing, the lack of equipment for cutting simple geometric shapes results in low cutting accuracy and efficiency, making it difficult to meet the needs of diverse and personalized clothing designs.
A processing device for infant and toddler clothing has been designed, including a flat plate and a pressing plate. The flat plate is provided with multiple graphic holes, and graphic cutters are correspondingly matched with the graphic holes. The graphic holes and graphic cutters enable precise cutting of simple geometric shapes. The device supports detachable graphic cutters to adapt to different design needs, and the device enables efficient cutting of multi-layer fabrics through a lifting frame and telescopic rod.
It enables precise cutting of simple geometric shapes, improves cutting efficiency and accuracy, adapts to diverse design needs, and reduces operation difficulty and maintenance costs.
Smart Images

Figure CN224186487U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of infant and toddler clothing processing, and more specifically to an infant and toddler clothing processing device. Background Technology
[0002] In the infant and toddler clothing market, design styles are rapidly developing towards diversification and personalization. The younger generation of parents has increasingly higher aesthetic demands for infant and toddler clothing, no longer satisfied with just basic functionality, but paying more attention to fashion and uniqueness. Simple geometric shapes, with their concise and bright visual effect, are widely used in infant and toddler clothing design. By presenting geometric shapes such as circles, squares, and triangles in novel combinations, paired with bright and lively colors, cute and fashionable clothing styles can be created. However, in the actual infant and toddler clothing manufacturing process, there is a lack of equipment for cutting simple geometric shapes. Utility Model Content
[0003] To overcome the shortcomings of the existing technology, this utility model provides an infant clothing processing device, the beneficial effect of which is that this utility model can be used to cut simple geometric shapes.
[0004] An infant clothing processing device includes a flat plate with multiple graphic holes II. A pressure plate is provided on the upper side of the flat plate, and multiple graphic holes I are provided on the pressure plate. The multiple graphic holes I and multiple graphic holes II are arranged vertically and vertically, and the graphic holes I and graphic holes II that are vertically opposite each other are the same size and shape.
[0005] Multiple support columns are fixed to the lower side of the plate.
[0006] Handles are fixed to both the left and right ends of the pressure plate.
[0007] The pressure plate has cylinders fixed at both ends on the left and right sides, and the flat plate has through holes for the corresponding cylinders at both ends, so that the two cylinders can be inserted into the two through holes respectively.
[0008] A graphic cutter is provided above each of the graphic holes.
[0009] Each of the aforementioned graphic blades has a cutting edge along its lower edge.
[0010] Each of the graphic blades is fixed with a connecting strip at its upper end, and a pin is fixed at the upper end of the connecting strip.
[0011] Multiple insertion pins are inserted into the lifting frame with a gap fit.
[0012] The lifting frame is fixed with multiple screw seats, each screw seat is provided with a threaded hole, and a positioning screw is threaded into the threaded hole. The positioning screw passes through the through hole on the insertion post and fixes the insertion post to the lifting frame.
[0013] The rear of the flat plate is fixed with a vertical column, the rear of the lifting frame is vertically slidably connected to the column, and a telescopic rod is fixed on the lifting frame, with the end of the telescopic rod fixed to the flat plate. Attached Figure Description
[0014] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.
[0015] Figure 1 A schematic diagram of the structure of an infant clothing processing device. Figure 1 ;
[0016] Figure 2 A schematic diagram of the structure of an infant clothing processing device. Figure 2 ;
[0017] Figure 3 A partial structural diagram of an infant clothing processing device Figure 1 ;
[0018] Figure 4 A partial structural diagram of an infant clothing processing device Figure 2 ;
[0019] Figure 5 A partial structural diagram of an infant clothing processing device Figure 3 ;
[0020] Figure 6 A partial structural diagram of an infant clothing processing device Figure 4 ;
[0021] In the diagram: 1. Flat plate; 2. Support column; 3. Handle; 4. Pressure plate; 5. Graphic hole one; 6. Cylinder; 7. Graphic hole two; 8. Lifting frame; 9. Graphic knife; 10. Connecting strip; 11. Screw seat; 12. Positioning screw; 13. Insert column; 14. Electric telescopic rod; 15. Vertical column; 16. Blade. Detailed Implementation
[0022] like Figure 1-4 As shown;
[0023] This infant clothing processing device consists of a flat plate 1 and a pressure plate 4. The flat plate 1 serves as the basic load-bearing component of the entire device, and it has multiple graphic holes 7. These graphic holes 7 come in a variety of shapes, including common simple geometric shapes such as circles, squares, and triangles, and can be set to different sizes and specifications according to different design requirements. This infant clothing processing device is suitable for batch processing of simple geometric shapes with fixed sizes and shapes, where frequent adjustments to the size, shape, or other specifications of simple geometric shapes are not recommended during processing. The flat plate 1 is made of high-strength, smooth-surfaced materials, such as high-quality plastic or aluminum alloy, to ensure that the fabric can be placed and moved smoothly on its surface, while also ensuring that the edges of the graphic holes 7 are smooth to avoid damage to the fabric during the cutting process.
[0024] The pressure plate 4 is located on the upper side of the flat plate 1 and works in conjunction with it. The pressure plate 4 has multiple graphic holes 5, and these holes 5 and 7 are arranged vertically in a corresponding manner, with the corresponding holes being the same size and shape. The material of the pressure plate 4 is compatible with that of the flat plate 1.
[0025] When cutting fabric for infant and toddler clothing, first place the fabric flat on the flat plate 1. The choice of fabric can be based on the design requirements of the infant and toddler clothing, such as different materials like cotton or linen. Then, slowly cover the flat plate 1 with the pressing plate 4, so that the fabric is flatly pressed between the flat plate 1 and the pressing plate 4, and the pattern hole 5 on the pressing plate 4 is precisely aligned with the pattern hole 7 on the flat plate 1.
[0026] Next, using sharp scissors or a knife, cut the fabric sandwiched in the middle through pattern holes 5 and 7. Since the shapes and sizes of pattern holes 5 and 7 are pre-designed, the cut fabric will be in the desired simple geometric shapes, such as circles, squares, and triangles. This cutting method ensures that the cut geometric shapes have neat edges and precise dimensions.
[0027] like Figure 3-4 As shown;
[0028] Because multiple support columns 2 are bolted to the lower side of the plate 1, suspending and supporting the plate 1, the cut fabric can fall from the plate 1. In traditional garment processing, if the plate is not suspended, the cut fabric may stick to it. In this device, the cut fabric falls automatically. After cutting, the operator separates the pressure plate 4 from the plate 1 and manually removes the cut fabric between the pressure plate 4 and the plate 1, making it easy to place the next piece of fabric. The operator can immediately proceed with the placement and cutting of the next piece of fabric.
[0029] like Figure 3-4As shown;
[0030] Since handles 3 are welded to both ends of the pressure plate 4, they provide operators with a direct and comfortable grip. During cutting, operators can easily lift or lower the pressure plate 4 by simply holding the handles 3, precisely covering it onto the flat plate 1 where the fabric is placed. Compared to a pressure plate without handles, this significantly reduces the difficulty and complexity of operation, allowing operators to complete each cutting preparation more quickly and efficiently.
[0031] With the assistance of handle 3, the operator has more precise control over the pressure applied to the pressure plate 4. During the cutting process, different materials and thicknesses of fabric require different levels of pressure to ensure that the graphic blade 9 can smoothly penetrate the fabric and complete the precise cut. The operator can flexibly adjust the pressure applied to the pressure plate 4 by holding handle 3, based on practical experience and fabric feedback. For thin cotton fabrics, a light press on handle 3 is enough for the pressure plate 4 to drive the graphic blade 9 to gently cut the fabric, avoiding damage due to excessive pressure; while for slightly thicker knitted fabrics, the operator can apply more pressure, which is transferred to the pressure plate 4 through handle 3 to ensure that the graphic blade 9 can successfully complete the cutting task.
[0032] like Figure 3-4 As shown;
[0033] Cylindricals 6 are welded to both the left and right ends of the lower side of the pressure plate 4, and through holes corresponding to the cylindrical columns 6 are provided at both the left and right ends of the plate 1. The two cylindrical columns 6 can be inserted into the two through holes respectively. When cutting fabric for infant clothing, the fabric is first placed flat on the plate 1. Then, the operator holds the pressure plate 4, aligns the cylindrical columns 6 at both the left and right ends of the lower side of the pressure plate 4 with the through holes at both ends of the plate 1, and slowly covers the plate 1 with the pressure plate 4. As the cylindrical columns 6 are inserted into the through holes, the pressure plate 4 will fall vertically along the direction of the through holes until it is tightly fitted onto the plate 1. During this process, due to the guiding effect of the cylindrical columns 6 and the through holes, the graphic hole 5 on the pressure plate 4 can be precisely aligned with the graphic hole 7 on the plate 1.
[0034] like Figure 3-6 As shown;
[0035] Above each pattern hole 5 is a corresponding pattern cutter 9, the shape of which matches the shape of the corresponding pattern hole 5. Whether the pattern hole 5 is round, square, or triangular, the corresponding pattern cutter 9 can be precisely matched. The pattern cutter 9 is thin-walled, ensuring sufficient strength to complete the cutting task while minimizing unnecessary pressure and damage to the fabric. It is made of high-strength, high-toughness high-quality steel, making its blade extremely sharp, capable of easily and smoothly penetrating various commonly used fabrics for infant and toddler clothing, such as soft cotton and thin gauze.
[0036] During actual cutting, when the pressure plate 4 is pressed down, the fabric is clamped between the flat plate 1 and the pressure plate 4. At this time, the graphic cutter 9, along with the downward movement of the pressure plate 4, passes through the graphic hole 5 and cuts the fabric located between the graphic hole 5 and the graphic hole 7. Because the graphic cutter 9 and the graphic hole 5 are the same shape and fit together tightly, they can accurately cut out various simple geometric shapes that meet the design requirements, greatly improving the accuracy and efficiency of cutting and providing a reliable guarantee for the cutting of decorative patterns for infant and toddler clothing.
[0037] like Figure 6 As shown;
[0038] Each graphic blade 9 has a cutting edge 16 along its lower edge. The cutting edge 16 is finely ground and polished, and under a microscope, the cutting edge of the cutting edge 16 shows neat and smooth lines, which can cut into the fabric with minimal resistance.
[0039] like Figure 5-6 As shown;
[0040] Since each of the graphic blades 9 has a connecting strip 10 welded to its upper end, and a post 13 welded to the upper end of the connecting strip 10, the multiple posts 13 are inserted into the lifting frame 8 with a gap fit. The lifting frame 8 has multiple screw seats 11 welded on it, and each screw seat 11 has a threaded hole. A positioning screw 12 is threaded into the threaded hole. The positioning screw 12 passes through the through hole on the post 13 and fixes the post 13 to the lifting frame 8. The upper end of each graphic blade 9 is firmly connected to the connecting strip 10 by welding.
[0041] Multiple inserts 13 are inserted into the lifting frame 8 with a clearance fit. This clearance fit design allows the inserts 13 to be inserted and removed from the lifting frame 8 smoothly while maintaining a certain level of precision to ensure the accurate positioning of the graphic blade 9 during lifting. Multiple screw seats 11 are welded onto the lifting frame 8, each with a threaded hole. These threaded holes provide a base for the installation and fixing of the positioning screws 12.
[0042] The positioning screw 12 is threaded into the threaded hole and passes through the through hole on the insert 13, thereby fixing the insert 13 to the lifting frame 8. When it is necessary to fix the graphic knife 9, the operator only needs to insert the insert 13 into the corresponding position of the lifting frame 8, and then screw the positioning screw 12 into the threaded hole so that it passes through the through hole on the insert 13. As the positioning screw 12 is tightened, the insert 13 is firmly fixed to the lifting frame 8, thereby achieving stable installation of the graphic knife 9.
[0043] This connection structure enables the detachable function of the graphic cutter 9. When certain shapes do not need to be cut during the processing of infant and toddler clothing, the operator can easily and quickly remove the corresponding graphic cutter 9. In specific operation, simply unscrew the positioning screw 12 from the threaded hole to release the fixation on the insert 13, and then pull the insert 13 out of the lifting frame 8 to remove the graphic cutter 9 together with the connecting strip 10 and the insert 13.
[0044] The detachable design of the graphic cutter 9 offers significant advantages. Firstly, it enhances the flexibility and applicability of the device. In actual production, different styles of infant and toddler clothing may require different combinations of geometric patterns. By detaching the graphic cutter 9, the configuration of the cutting tools can be quickly adjusted according to specific design needs, avoiding interference caused by unnecessary graphic cutters and improving cutting efficiency. Secondly, the detachable design also facilitates the maintenance and replacement of the graphic cutter 9. When the blade 16 of the graphic cutter 9 becomes worn or damaged, it can be disassembled individually for grinding, repair, or replacement, without requiring large-scale disassembly and repair of the entire device, reducing maintenance and time costs.
[0045] like Figure 5-6 As shown;
[0046] A vertical column 15 is bolted to the rear of the flat plate 1. The rear of the lifting frame 8 is vertically slidably connected to the column 15. A telescopic rod 14 is bolted to the lifting frame 8, and the end of the telescopic rod 14 is bolted to the flat plate 1. The telescopic rod 14 is a telescopic metal rod structure with an internal hydraulic or pneumatic device to achieve the telescopic function of the rod. By controlling the telescopic length of the telescopic rod 14, the position of the lifting frame 8 on the column 15 can be precisely adjusted, thereby controlling the distance between the graphic knife 9 and the fabric to complete the cutting action. When the lifting frame 8 and the graphic knife 9 are driven to rise and fall by the telescopic rod 14, the cutting force is large. At this time, multiple layers of fabric can be stacked and placed between the pressure plate 4 and the flat plate 1, so that many layers of fabric can be stacked and cut at the same time, and multiple layers of fabric can be cut at once, resulting in high cutting efficiency.
Claims
1. A processing device for infant and toddler clothing, comprising a flat plate (1), characterized in that: The plate (1) is provided with a plurality of graphic holes (7), and a pressure plate (4) is provided on the upper side of the plate (1). The pressure plate (4) is provided with a plurality of graphic holes (5). The plurality of graphic holes (5) and the plurality of graphic holes (7) are arranged vertically and vertically, and the graphic holes (5) and graphic holes (7) that are vertically and vertically opposite are the same size and shape.
2. The infant clothing processing device according to claim 1, characterized in that: Multiple support columns (2) are fixed to the lower side of the plate (1).
3. The infant clothing processing device according to claim 2, characterized in that: Handles (3) are fixed to both the left and right ends of the pressure plate (4).
4. The infant clothing processing device according to claim 3, characterized in that: The pressure plate (4) has cylinders (6) fixed at both ends on the lower side. The plate (1) has through holes corresponding to the cylinders (6) at both ends, and the two cylinders (6) can be inserted into the two through holes respectively.
5. The infant clothing processing apparatus according to claim 4, characterized in that: A graphic cutter (9) is provided above each of the graphic holes (5).
6. The infant clothing processing apparatus according to claim 5, characterized in that: Each of the graphic blades (9) has a blade edge (16) at its lower edge.
7. The infant clothing processing apparatus according to claim 6, characterized in that: Each of the graphic blades (9) has a connecting strip (10) fixed at its upper end, and a post (13) is fixed at the upper end of the connecting strip (10).
8. The infant clothing processing apparatus according to claim 7, characterized in that: Multiple of the aforementioned inserts (13) are inserted into the lifting frame (8) with a gap fit.
9. The infant clothing processing apparatus according to claim 8, characterized in that: The lifting frame (8) is fixed with multiple screw seats (11), each screw seat (11) is provided with a threaded hole, and a positioning screw (12) is threadedly connected to the threaded hole. The positioning screw (12) passes through the through hole on the insert (13) to fix the insert (13) on the lifting frame (8).
10. The infant clothing processing apparatus according to claim 9, characterized in that: A vertical column (15) is fixed to the rear of the plate (1), and the rear of the lifting frame (8) is vertically slidably connected to the column (15). A telescopic rod (14) is fixed to the lifting frame (8), and the end of the telescopic rod (14) is fixed to the plate (1).