Shaping tool for processing moon-shaped ring of intelligent embroidery machine
By designing a shaping fixture for the processing of moon rings on intelligent embroidery machines, the problem of unstable moon ring structure was solved by using mold stamping, achieving a highly efficient and precise shaping effect.
Patent Information
- Application Number
- CN202423157948.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-12-20
AI Technical Summary
The structure of the moon ring in the intelligent embroidery machine is unstable after sintering, and the existing manual adjustment is inefficient and the quality is difficult to guarantee.
Design a shaping fixture for processing the moon ring of an intelligent embroidery machine, which performs shaping through the stamping cooperation of the upper and lower shaping dies.
It improves shaping efficiency and accuracy, and has a simple structure, is easy to manufacture, and is practical and efficient.
Smart Images

Figure CN223616598U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a tooling, specifically a shaping tooling for processing the crescent moon of an intelligent embroidery machine. Background Technology
[0002] As an important component of intelligent embroidery machines, the crescent ring is often sintered in conjunction with a mold during actual processing. However, the structure of the crescent ring is extremely unstable after sintering. At this point, workers often rely on experience to make manual adjustments, which is not only inefficient but also cannot guarantee product quality. Therefore, it is particularly important to design a shaping fixture for crescent ring processing in intelligent embroidery machines to solve the above problems. Summary of the Invention
[0003] To solve the above problems, this utility model designs a shaping fixture for processing moon rings on intelligent embroidery machines. Through the stamping cooperation of the upper and lower shaping molds, the sintered moon rings can be directly shaped, greatly improving the shaping efficiency.
[0004] To solve the above-mentioned technical problems, this utility model provides a shaping fixture for processing crescent moons in an intelligent embroidery machine. Its features include: an upper connecting plate, an upper support base, an upper shaping mold, a base, a lower support base, and a lower shaping mold. The lower support base is detachably mounted on the top of the base by a first bolt. A cross-shaped first groove is formed on the top of the lower support base. The lower shaping mold is also mounted on the top of the base by a second bolt. A matching notch is formed on the first groove relative to the position of the lower shaping mold. The upper end of the lower shaping mold extends out of the first groove along the notch. A guide post is provided at each of the four corners of the top of the lower support base. The upper support base is mounted to the bottom of the upper connecting plate by a third bolt. A cross-shaped second groove is formed on the bottom of the upper support base. The upper shaping mold is detachably connected to the second groove. The upper shaping mold matches the lower shaping mold. A matching guide hole is formed on the bottom of the upper support base relative to the positions of the four guide posts. The upper ends of the guide posts extend into the guide holes and are slidably connected to them.
[0005] Further: The shaping lower mold is composed of a lower forming seat and trapezoidal lower positioning blocks arranged on the left and right sides of the lower forming seat. A semi-circular forming groove is opened on the top of the lower forming seat. The lower end of the lower forming seat is connected to the lower end of the trapezoidal lower positioning block. The first groove is opened at the first notch and the second notch respectively relative to the position of the lower forming seat and the trapezoidal lower positioning block. The semi-circular forming groove is exposed above the first notch.
[0006] Furthermore: the upper forming mold consists of a semi-circular forming block and trapezoidal upper positioning blocks set on the left and right sides of the semi-circular forming block. The upper end of the semi-circular forming block is connected to the upper end of the trapezoidal upper positioning blocks on the left and right sides. Two arc-shaped plates are detachably fixed on the outer wall of the semi-circular forming block. The two arc-shaped plates are set at the two ends of the arc-shaped wall of the semi-circular forming block, one on the left and one on the right. The semi-circular forming block matches the semi-circular forming groove, and the inner wall of the lower trapezoidal positioning block matches the outer wall of the upper trapezoidal positioning block.
[0007] Furthermore, the upper end of the shaping mold is provided with guide parts on the front and rear sides, which are integrated with the mold. The inner walls of the second groove are provided with guide grooves at positions relative to the guide parts. The shaping mold can slide left and right along the second groove through the cooperation of the guide parts and the guide grooves.
[0008] With the above structure, this utility model can directly shape the sintered moon ring through the stamping cooperation of the upper and lower shaping molds, which greatly improves the shaping efficiency and ensures the shaping accuracy. In addition, this design also has the advantages of simple structure, easy manufacturing and practicality and high efficiency. Attached Figure Description
[0009] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0010] Figure 1 This is a schematic diagram of the structure of this utility model.
[0011] Figure 2 This is a diagram showing the connection structure of the upper mold for shaping.
[0012] Figure 3 This is a diagram showing the connection structure of the lower forming mold. Detailed Implementation
[0013] like Figure 1 , Figure 2 and Figure 3The above describes a shaping fixture for processing crescent moons on an intelligent embroidery machine. It includes an upper connecting plate 1, an upper support base 2, an upper shaping mold, a base 3, a lower support base 4, and a lower shaping mold. The base is U-shaped. The lower support base is detachably mounted on the top of the base by a first bolt. A cross-shaped first groove is formed on the top of the lower support base. The lower shaping mold is also mounted on the top of the base by a second bolt. A matching notch is formed on the first groove relative to the position of the lower shaping mold. The upper end of the lower shaping mold extends out of the first groove along the notch. A guide post 5 is provided at each of the four corners of the top of the lower support base. The upper support base is mounted to the bottom of the upper connecting plate by a third bolt. A cross-shaped second groove is formed on the bottom of the upper support base. The upper shaping mold is detachably connected to the second groove. The upper shaping mold matches the lower shaping mold. A matching guide hole 2-1 is formed on the bottom of the upper support base relative to the positions of the four guide posts. The upper ends of the guide posts extend into the guide holes and are slidably connected to them. This invention allows for direct shaping of the sintered moon ring through the stamping cooperation of the upper and lower shaping dies, greatly improving shaping efficiency and ensuring shaping accuracy. Furthermore, this design has the advantages of simple structure, ease of manufacturing, and high efficiency.
[0014] like Figure 3 The lower forming mold shown is composed of a lower forming seat 6-1 and trapezoidal lower positioning blocks 6-2 arranged on the left and right sides of the lower forming seat. A semi-circular forming groove is opened on the top of the lower forming seat. The lower end of the lower forming seat is connected to the lower end of the trapezoidal lower positioning block. The first groove is opened at the first notch and the second notch respectively relative to the lower forming seat and the trapezoidal lower positioning block. The semi-circular forming groove is exposed above the first notch.
[0015] like Figure 2 The upper forming mold shown consists of a semi-circular forming block 7-1 and trapezoidal upper positioning blocks 7-2 set on the left and right sides of the semi-circular forming block. The upper end of the semi-circular forming block is connected to the upper end of the trapezoidal upper positioning blocks on the left and right sides. Two arc-shaped plates 7-3 are detachably fixed on the outer wall of the semi-circular forming block. The two arc-shaped plates are set at the two ends of the arc wall of the semi-circular forming block, one on the left and one on the right. The semi-circular forming block matches the semi-circular forming groove, and the inner wall of the lower trapezoidal positioning block matches the outer wall of the upper trapezoidal positioning block.
[0016] like Figure 2 The upper shaping mold shown has guide portions integrated with its front and rear sides on its upper end. Guide grooves are formed on the front and rear inner walls of the second groove relative to the guide portions. The upper shaping mold can slide left and right along the second groove through the cooperation of the guide portions and guide grooves. This design facilitates installation.
[0017] The above are merely preferred embodiments of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are within its protection scope. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should be considered within its protection scope.
Claims
1. A shaping fixture for processing crescent rings on an intelligent embroidery machine, characterized in that: The assembly includes an upper connecting plate (1), an upper support base (2), a shaping upper mold, a base (3), a lower support base (4), and a shaping lower mold. The lower support base is detachably mounted on the top of the base by a first bolt. A cross-shaped first groove is provided on the top of the lower support base. The shaping lower mold is also mounted on the top of the base by a second bolt. A matching notch is provided on the first groove relative to the position of the shaping lower mold. The upper end of the shaping lower mold extends out of the first groove along the notch. A guide post (5) is provided at each of the four corners of the top of the lower support base. The upper support base is mounted to the bottom of the upper connecting plate by a third bolt. A cross-shaped second groove is provided on the bottom of the upper support base. The shaping upper mold is detachably connected to the second groove. The shaping upper mold matches the shaping lower mold. A matching guide hole (2-1) is provided on the bottom of the upper support base relative to the position of the four guide posts. The upper end of the guide post extends into the guide hole and is slidably connected to it.
2. The shaping fixture for processing crescent rings on an intelligent embroidery machine according to claim 1, characterized in that: The shaping lower mold consists of a lower forming seat (6-1) and trapezoidal lower positioning blocks (6-2) arranged on the left and right sides of the lower forming seat. A semi-circular forming groove is provided on the top of the lower forming seat. The lower end of the lower forming seat is connected to the lower end of the trapezoidal lower positioning block. The first groove is provided with a first notch and a second notch respectively, relative to the lower forming seat and the trapezoidal lower positioning block. The semi-circular forming groove is exposed above the first notch.
3. The shaping fixture for processing crescent rings on an intelligent embroidery machine according to claim 2, characterized in that: The upper forming mold consists of a semi-circular forming block (7-1) and trapezoidal upper positioning blocks (7-2) set on the left and right sides of the semi-circular forming block. The upper end of the semi-circular forming block is connected to the upper end of the trapezoidal upper positioning blocks on the left and right sides. Two arc-shaped plates (7-3) are detachably fixed on the outer wall of the semi-circular forming block. The two arc-shaped plates are set at the two ends of the arc wall of the semi-circular forming block, one on the left and one on the right. The semi-circular forming block matches the semi-circular forming groove, and the inner wall of the lower trapezoidal positioning block matches the outer wall of the upper trapezoidal positioning block.
4. The shaping fixture for processing crescent rings on an intelligent embroidery machine according to claim 1, characterized in that: The upper end of the shaping mold has guide parts integrated with it on the front and rear sides. The inner walls of the second groove are provided with guide grooves at positions relative to the guide parts. The shaping mold can slide left and right along the second groove through the cooperation of the guide parts and the guide grooves.