Ceramic assembly for network
By designing network ceramic components with installation slots, embed slots, air holes and trapezoidal slots, the installation limitations of existing ceramic components are solved, and a more flexible and stable installation effect is achieved.
Patent Information
- Application Number
- CN202421561361.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-03
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-03
AI Technical Summary
The installation of existing network nozzle ceramic sheets and accessories has limitations and needs to be used in conjunction, which increases the limitations of the use of ceramic components.
A ceramic assembly for network is designed, including ceramic parts, which have a boss, a platform, a mounting groove, a top trapezoidal groove, a bottom trapezoidal groove, a air hole and an insertion groove. It is fastened and installed with external bolts and nozzle accessories, and the installation groove and the insertion groove are used to reduce installation limitations.
Through the design of the installation groove and the embedding groove, the limitations of the ceramic parts in installation are reduced, the flexibility of the network ceramic components is increased, and the stability and lightness of the ceramic parts are achieved through the combination of air holes and trapezoidal grooves.
Smart Images

Figure CN222948551U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of network processing, and particularly relates to a ceramic component for network. Background Art
[0002] Network processing is an indispensable process for producing low-elastic network yarn. At present, in the texturizing machine (false twist texturing machine), the network nozzle is generally used for network processing. Its working principle is: in the network nozzle, the silk strip is subjected to the action of the jet airflow, and the single filaments are entangled with each other to form filaments with periodic network points. By making nodes on the continuous yarn, the elasticity and quality of the yarn can be changed with different node density and strength. At present, in the coordinated use of the network nozzle ceramic sheet and accessories, bolts are used for fastening and installation, and the mounting holes often need to be opened in the matching places, which makes the installation between the ceramic sheet and the nozzle accessories limited, and they need to be used in conjunction, which undoubtedly increases the limitations of the use of ceramic components. Utility Model Content
[0003] The utility model aims at providing a ceramic component for a network in view of the existing device, and has the advantage of reducing installation limitations.
[0004] The above technical purpose of the utility model is achieved through the following technical solutions: a ceramic component for a network, including a ceramic part, the ceramic part includes a boss and a platform, the number of the platforms is two, the inside of the platform is provided with a mounting groove, the top of the boss is provided with a top trapezoidal groove, the bottom of the boss is provided with a bottom trapezoidal groove, the inside of the boss is provided with air holes, and both sides of the platform are formed with embedded grooves, the number of the embedded grooves is two.
[0005] The above technical solution is adopted: when installing the ceramic component for network, the ceramic part is fastened and installed with the nozzle accessory through the external bolt, the external bolt is inserted into the installation groove, and the specific position of the external bolt in the installation groove can be adjusted according to the hole of the nozzle accessory. During the fastening of the external bolt and the nozzle accessory, the external bolt gradually contacts the installation groove, and the friction force is sufficient to achieve the stability of the ceramic part. The setting of the installation groove is convenient to reduce the limitations of the ceramic part in installation, distinguish the matching limitations of the existing ceramic parts in use, and increase the flexibility of network ceramic components. The platform is convenient for the installation of the external bolt to avoid the external bolt protruding to the top of the boss and affecting the use of the network nozzle. At the same time, in the use of the ceramic part, the air hole is used in conjunction with the ceramic part for air outlet, the top trapezoidal groove and the bottom trapezoidal groove are used in conjunction with the airflow, and the embedded groove is convenient to reduce the weight of the ceramic frame itself, which brings lightness to the use of the ceramic part.
[0006] The utility model is further configured that one end of the installation groove is designed in an arc shape, and the number of the installation grooves is two.
[0007] The above technical solution is adopted: the installation groove is installed in conjunction with the ceramic part and the external bolts, and the installation groove designed in an arc shape is used in conjunction with the external bolts.
[0008] The utility model is further configured such that the air hole is located between the top trapezoidal groove and the bottom trapezoidal groove.
[0009] By adopting the above technical solution, the air hole cooperates with the ceramic part to vent air.
[0010] The utility model is further configured that one end of the embedding groove is designed in an arc shape.
[0011] By adopting the above technical solution, the embedded groove designed in an arc shape is convenient for reducing the weight of the ceramic frame itself.
[0012] The utility model is further configured that the two platforms are respectively located on two sides of the boss.
[0013] By adopting the above technical solution, the platform is convenient for fitting the external bolts to sink into the platform, thereby preventing the external bolts from protruding to the top of the boss.
[0014] In summary, the utility model has the following beneficial effects:
[0015] 1. When installing the ceramic component for network, the ceramic component is fastened and installed with the nozzle accessory through the external bolt, and the external bolt is inserted into the installation groove, and the specific position of the external bolt in the installation groove can be adjusted according to the hole of the nozzle accessory. During the fastening of the external bolt and the nozzle accessory, the external bolt gradually contacts the installation groove, and the friction force is sufficient to achieve the stability of the ceramic component. The setting of the installation groove is convenient to reduce the limitations of the ceramic component in installation, which is different from the matching limitations of the existing ceramic components in use, and increases the flexibility of use of network ceramic components;
[0016] 2. When using the ceramic piece, the air hole cooperates with the ceramic piece to vent air, the top trapezoidal groove and the bottom trapezoidal groove cooperate with the airflow, and the embedded groove is convenient to reduce the weight of the ceramic frame itself, making the use of the ceramic piece light. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model.
[0018] Figure numerals: 1, ceramic part; 101, boss; 102, platform; 103, mounting groove; 104, top trapezoidal groove; 105, bottom trapezoidal groove; 106, air hole; 107, embedded groove. DETAILED DESCRIPTION
[0019] The utility model is further described in detail below in conjunction with the accompanying drawings.
[0020] Example:
[0021] refer to Figure 1 A network ceramic component includes a ceramic part 1, the ceramic part 1 includes a boss 101 and a platform 102, the number of the platforms 102 is two, the platform 102 has a mounting groove 103 formed inside, the top of the boss 101 has a top trapezoidal groove 104, the bottom of the boss 101 has a bottom trapezoidal groove 105, the boss 101 has an air hole 106 formed inside, both sides of the platform 102 are formed with an embedding groove 107, the number of the embedding groove 107 is two, and one end of the mounting groove 103 is The arc-shaped design has two mounting grooves 103, which are installed with the ceramic part 1 and external bolts. The arc-shaped mounting groove 103 is used with external bolts. The air hole 106 is located between the top trapezoidal groove 104 and the bottom trapezoidal groove 105. The air hole 106 is used to vent the ceramic part 1. One end of the embedded groove 107 is designed in an arc shape. The arc-shaped embedded groove 107 is convenient for reducing the weight of the ceramic frame. The two platforms 102 are respectively located on the boss On both sides of 101, the platform 102 is convenient for fitting with the installation of the external bolts to prevent the external bolts from protruding to the top of the boss 101. When installing the network ceramic component, the ceramic part 1 is fastened and installed with the nozzle accessories through the external bolts, and the external bolts are inserted into the installation groove 103. The specific position of the external bolts in the installation groove 103 can be adjusted according to the hole of the nozzle accessory. During the fastening of the external bolts and the nozzle accessory, the external bolts gradually contact the installation groove 103, and the friction force is sufficient to achieve the stability of the ceramic part 1. The setting of the installation groove 103 can reduce the limitations of the ceramic part 1 in installation, distinguish the matching limitations of the existing ceramic part 1 in use, and increase the flexibility of use of the network ceramic component. At the same time, in the use of the ceramic part 1, the air hole 106 cooperates with the ceramic part 1 for air outlet, the top trapezoidal groove 104 and the bottom trapezoidal groove 105 are used in conjunction with the airflow, and the embedded groove 107 is convenient to reduce the weight of the ceramic frame itself, which brings convenience to the use of the ceramic part 1.
[0022] Brief description of the use process: When installing the ceramic component for network, the ceramic part 1 is fastened and installed with the nozzle accessory through external bolts, and the external bolts are inserted into the installation groove 103, and the specific position of the external bolts in the installation groove 103 can be adjusted according to the hole of the nozzle accessory. During the fastening of the external bolts and the nozzle accessory, the external bolts gradually contact the installation groove 103, and the friction force is sufficient to achieve the stability of the ceramic part 1. The setting of the installation groove 103 is convenient to reduce the limitations of the ceramic part 1 in installation, distinguish the matching limitations of the existing ceramic part 1 in use, and increase the flexibility of use of the network ceramic component. The platform 102 is convenient for the installation of the external bolts to avoid the external bolts protruding to the top of the boss 101 and affecting the use of the network nozzle. At the same time, in the use of the ceramic part 1, the air hole 106 is used in conjunction with the ceramic part 1 for air outlet, the top trapezoidal groove 104 and the bottom trapezoidal groove 105 are used in conjunction with the airflow, and the embedded groove 107 is convenient to reduce the weight of the ceramic frame itself, which brings convenience to the use of the ceramic part 1.
[0023] This specific embodiment is merely an explanation of the present invention and is not a limitation of the present invention. After reading this specification, those skilled in the art may make non-creative modifications to the present embodiment as needed, but such modifications are protected by patent law as long as they are within the scope of the claims of the present invention.
Claims
1. A ceramic component for a network, comprising a ceramic part (1), characterized in that: The ceramic component (1) comprises a boss (101) and a platform (102), the number of the platforms (102) being two, a mounting groove (103) being provided inside the platform (102), a top trapezoidal groove (104) being provided at the top of the boss (101), a bottom trapezoidal groove (105) being provided at the bottom of the boss (101), an air hole (106) being provided inside the boss (101), and embedding grooves (107) being formed on both sides of the platform (102), the number of the embedding grooves (107) being two.
2. A network ceramic component according to claim 1, characterized in that: One end of the installation groove (103) is designed in an arc shape, and the number of the installation grooves (103) is two.
3. A network ceramic component according to claim 1, characterized in that: The air hole (106) is located between the top trapezoidal groove (104) and the bottom trapezoidal groove (105).
4. A network ceramic component according to claim 1, characterized in that: One end of the embedding groove (107) is designed in an arc shape.
5. A network ceramic component according to claim 1, characterized in that: The two platforms (102) are respectively located on two sides of the boss (101).