Die wear-resisting plate convenient to replace
By using threaded connections between the wear-resistant plate components and the fixed base components, and employing a heat dissipation design, the problem of inconvenient replacement of mold wear-resistant plates is solved, enabling rapid installation and disassembly, improving maintenance efficiency, and extending service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-03-24
AI Technical Summary
The existing wear-resistant plates for molds are inconvenient to install or disassemble, affecting the efficiency of maintenance operations.
The design employs wear-resistant plate components and fixed base components, utilizing threaded connections of combination bolts and connecting bolts, combined with the structure of heat dissipation fins and thermally conductive silicon plates to achieve rapid assembly and disassembly, and reduces impact and friction through energy-absorbing plates.
A stable connection between the wear-resistant plate and the mounting base is achieved, facilitating quick replacement and improving maintenance efficiency. The heat-conducting fins reduce the temperature and extend the service life.
Smart Images

Figure CN224028128U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to die wear -resistant plate technical field, concretely is a die wear -resistant plate convenient to replace. BACKGROUND
[0002] Die wear -resistant plate is a kind of plate with high wear resistance, mainly used to protect die, prolong its service life, and ensure that die can stably run under high speed, high temperature and other harsh working environments;
[0003] Wear -resistant plate is a kind of plate with excellent wear resistance, usually made of high-strength, high-hardness materials, such as special alloy steel, hard alloy, etc. These materials have excellent wear resistance, impact resistance and high-temperature resistance, and can maintain stable performance in harsh working environments.
[0004] Conventional die wear -resistant plate, limited by the structure on the setting use, when installing or splitting, compared with inconvenience, affect the efficiency of maintenance operation.
[0005] Therefore, in view of the above, the existing structure and the lack of research and improvement are proposed, and a die wear -resistant plate convenient to replace is provided. INVENTION CONTENTS
[0006] The utility model aims at providing a die wear -resistant plate convenient to replace to solve the problems raised in the above background.
[0007] To achieve the above object, the utility model provides the following technical scheme: a die wear -resistant plate convenient to replace, including wear -resistant plate component and fixed seat component, the side of wear -resistant plate component is equipped with fixed seat component, and the upper and lower sides of fixed seat component are horizontally installed with heat dissipation component, and the combination bolt is installed between fixed seat component and wear -resistant plate component, and the link bolt is installed between fixed seat component and heat dissipation component, wear -resistant plate component includes wear -resistant plate main body, heat dissipation line, energy absorption plate and butt joint pile, the side surface of wear -resistant plate main body is equipped with heat dissipation line, and the surface of wear -resistant plate main body away from heat dissipation line is fixedly pasted with energy absorption plate in the middle, and the four diagonal positions of energy absorption plate are provided with butt joint pile.
[0008] Further, the left and right sides of the fixed seat component are horizontally installed with fixed bolt, and the first sealing block is arranged at one end of the fixed bolt, and the second sealing block is installed on the rear vertical surface of the fixed seat component.
[0009] Further, the butt joint pile and the wear -resistant plate main body are arranged in an integral structure, and the combination bolt and the butt joint pile are screw-connected.
[0010] Further, the fixing seat component comprises a main seat body, fixing piles, a stabilizing groove, an assembly groove and a mounting hole, the left and right sides of the main seat body are symmetrically provided with fixing piles upward and downward, a stabilizing groove is formed in the side surface of the main seat body close to the wear-resistant plate component, assembly grooves are formed in the upper and lower side surfaces of the main seat body, and a mounting hole is formed in the side surface of the main seat body away from the wear-resistant plate component.
[0011] Further, the fixing seat component comprises a main seat body, fixing piles, a stabilizing groove, an assembly groove and a mounting hole, the left and right sides of the main seat body are symmetrically provided with fixing piles upward and downward, a stabilizing groove is formed in the side surface of the main seat body close to the wear-resistant plate component, assembly grooves are formed in the upper and lower side surfaces of the main seat body, and a mounting hole is formed in the side surface of the main seat body away from the wear-resistant plate component.
[0012] Further, the fixing seat component comprises a main seat body, fixing piles, a stabilizing groove, an assembly groove and a mounting hole, the left and right sides of the main seat body are symmetrically provided with fixing piles upward and downward, a stabilizing groove is formed in the side surface of the main seat body close to the wear-resistant plate component, assembly grooves are formed in the upper and lower side surfaces of the main seat body, and a mounting hole is formed in the side surface of the main seat body away from the wear-resistant plate component.
[0013] Further, the fixing seat component comprises a main seat body, fixing piles, a stabilizing groove, an assembly groove and a mounting hole, the left and right sides of the main seat body are symmetrically provided with fixing piles upward and downward, a stabilizing groove is formed in the side surface of the main seat body close to the wear-resistant plate component, assembly grooves are formed in the upper and lower side surfaces of the main seat body, and a mounting hole is formed in the side surface of the main seat body away from the wear-resistant plate component.
[0014] Further, the fixing seat component comprises a main seat body, fixing piles, a stabilizing groove, an assembly groove and a mounting hole, the left and right sides of the main seat body are symmetrically provided with fixing piles upward and downward, a stabilizing groove is formed in the side surface of the main seat body close to the wear-resistant plate component, assembly grooves are formed in the upper and lower side surfaces of the main seat body, and a mounting hole is formed in the side surface of the main seat body away from the wear-resistant plate component.
[0015] The utility model provides a mould wear -resistant plate convenient to replace has the following beneficial effects:
[0016] 1. The utility model, through setting up stable groove on one side of main seat body, utilize the wear -resisting plate body that one side surface is provided with energy -absorbing plate and butt joint stake is embedded in the inside of stable groove, then uses combination bolt, twists into the inside of mounting hole, stable groove and butt joint stake in proper order, can carry out quick combination butt joint between wear -resisting plate component and fixed seat component, utilize the use of above -mentioned structure, on the one hand can guarantee the structural connection stability and firmness between wear -resisting plate component and fixed seat component as far as possible, guarantee normal use of wear -resisting plate component, on the other hand, can also make the structure between both have good structural convenient dismounting, convenient for maintenance operation of structure, also make the flexibility of structure between use, in addition, the energy -absorbing plate between wear -resisting plate body and main seat body is set up, cooperates the connection and fixation of combination bolt, can guarantee that main seat body and wear -resisting plate body have enough structural link stability after structural combination, can also utilize the structural characteristic of energy -absorbing plate itself, play the role of buffering between structures, reduce unnecessary impact and friction between wear -resisting plate body and main seat body, guarantee the service life of structure.
[0017] 2. The utility model discloses a mounting groove is set up on the surface of the upper and lower sides of main seat body, utilize the heat dissipation fin that one side is provided with heat conduction silicon plate and link stake is inserted and embedded in the inside of mounting groove, and uses link bolt and twists into the inside of heat dissipation fin, link stake and mounting groove in proper order, to this end realizes the quick butt joint combination between heat dissipation component and fixed seat component, utilize the use of above -mentioned structure, utilize the structural connection between main seat body, heat conduction silicon plate and heat dissipation fin, can quickly conduct the heat on the surface of wear -resisting plate body, and carries out dispersion, to this end realizes the effect of good heat conduction and heat dissipation, avoids that wear -resisting plate component surface temperature is too high, leads to wear -resisting plate component difficult to play effective role, in addition, the first sealing block and second sealing block of fixed stake and mounting hole opening are inserted, can protect combination bolt and fixed bolt as far as possible, avoid the influence of external factors, lead to the structural combination between wear -resisting plate component, fixed seat component and the stable effect of fixed seat component's own structure fixed. ACCURACY OF DRAWINGS
[0018] Figure 1 It is the body axial side view structural schematic drawing of the utility model of a kind of convenient replacement mould wear -resisting plate;
[0019] Figure 2 It is the body explosion structural schematic drawing of the utility model of a kind of convenient replacement mould wear -resisting plate;
[0020] Figure 3 It is the wear -resisting plate component three-dimensional structural schematic drawing of the utility model of a kind of convenient replacement mould wear -resisting plate;
[0021] Figure 4 It is the fixed seat component three-dimensional structural schematic drawing of the utility model of a kind of convenient replacement mould wear -resisting plate.
[0022] Figure 5 This is a three-dimensional structural diagram of a heat dissipation component for a mold wear-resistant plate that is easy to replace, according to the present invention.
[0023] In the diagram: 1. Wear-resistant plate component; 101. Wear-resistant plate body; 102. Heat dissipation pattern; 103. Energy-absorbing plate; 104. Connecting pile; 2. Fixing base component; 201. Main base body; 202. Fixing pile; 203. Stabilizing groove; 204. Assembly groove; 205. Mounting hole; 3. Heat dissipation component; 301. Heat dissipation fin plate; 302. Thermally conductive silicon plate; 303. Connecting pile; 4. Combination bolt; 5. Connecting bolt; 6. Fixing bolt; 7. First sealing block; 8. Second sealing block. Detailed Implementation
[0024] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0025] like Figures 1 to 5 As shown, a replaceable mold wear-resistant plate includes a wear-resistant plate component 1 and a fixing base component 2. The fixing base component 2 is installed on one side of the wear-resistant plate component 1, and heat dissipation components 3 are horizontally installed on both the upper and lower sides of the fixing base component 2. A combination bolt 4 is installed between the fixing base component 2 and the wear-resistant plate component 1, and a connecting bolt 5 is installed between the fixing base component 2 and the heat dissipation components 3. The wear-resistant plate component 1 includes a wear-resistant plate body 101, heat dissipation patterns 102, an energy-absorbing plate 103, and a connecting post 104. A heat dissipation pattern 102 is formed on one side surface of the wear-resistant plate body 101, and an energy-absorbing plate 103 is fixedly attached to the middle of the side surface of the wear-resistant plate body 101 away from the heat dissipation pattern 102. The four pairs of the energy-absorbing plate 103 are connected to the fixing base component 104. Each corner is provided with a docking pile 104. The docking pile 104 and the wear-resistant plate body 101 are integrally structured. The combination bolt 4 and the docking pile 104 are threaded together. Fixing bolts 6 are installed horizontally on both sides of the fixing seat component 2. A first sealing block 7 is provided at one end of the fixing bolt 6. A second sealing block 8 is installed on the rear side of the fixing seat component 2. The wear-resistant plate body 101, which has an energy-absorbing plate 103 and a docking pile 104 on one side, is embedded into the inside of the stabilizing groove 203. Then, the combination bolt 4 is screwed into the mounting hole 205, the stabilizing groove 203 and the docking pile 104 in sequence, so that the wear-resistant plate component 1 and the fixing seat component 2 can be quickly assembled and connected.
[0026] like Figures 1 to 5As shown, the fixing base component 2 includes a main base body 201, fixing piles 202, stabilizing grooves 203, assembly grooves 204, and mounting holes 205. Fixing piles 202 are symmetrically arranged on both the left and right sides of the main base body 201. A stabilizing groove 203 is formed on the surface of the main base body 201 closest to the wear-resistant plate component 1. Assembly grooves 204 are formed on the upper and lower surfaces of the main base body 201, and mounting holes 205 are formed on the surface of the main base body 201 furthest from the wear-resistant plate component 1. The fixing piles 202 and the main base... The main body 201 is integrally structured, with the fixing bolt 6 threaded horizontally through the middle of the fixing pile 202. The first sealing block 7 is movably embedded in one end of the opening of the fixing pile 202. The inner surface structure of the assembly groove 204 matches the surface structure of one side of the wear-resistant plate main body 101 where the energy-absorbing plate 103 and the docking pile 104 are located. The mounting holes 205 are located at the four opposite corners of the main body 201 and communicate with the stabilizing groove 203. The combination bolt 4 is threaded into the interior of the mounting holes 205. Furthermore, the second sealing block 8 is movably embedded in the opening of the mounting hole 205. The heat dissipation component 3 includes a heat dissipation fin 301, a thermally conductive silicon plate 302, and a connecting post 303. The thermally conductive silicon plate 302 is fixedly attached to the surface of the heat dissipation fin 301 near the fixed base component 2, and the connecting posts 303 are symmetrically arranged on the left and right sides of the bottom of the heat dissipation fin 301. The connecting posts 303 and the heat dissipation fin 301 are integrally formed, and the connecting bolt 5 is vertically threaded into the connecting post 303 and the heat dissipation fin 301 and adopts a method of... The structure is recessed, and the inner surface of the assembly groove 204 matches the surface of one side of the heat dissipation fin 301, which is provided with thermally conductive silicon plate 302 and connecting post 303. The heat dissipation fin 301, which is provided with thermally conductive silicon plate 302 and connecting post 303 on one side, is inserted into the assembly groove 204. The connecting bolt 5 is then screwed into the heat dissipation fin 301, connecting post 303 and assembly groove 204 in sequence, thereby achieving rapid docking and assembly between the heat dissipation component 3 and the fixing seat component 2.
[0027] In summary, as Figures 1 to 5 As shown, when using this easily replaceable mold wear plate, firstly, the energy-absorbing plate 103 and the docking pile 104 on the side of the wear plate body 101 away from the heat dissipation pattern 102 are embedded into the inside of the stabilizing groove 203 on one side of the main body 201. After the structure is installed and assembled, one end of the combination bolt 4 is screwed into the mounting hole 205, the stabilizing groove 203 and the docking pile 104 in sequence, thereby connecting and fixing the fixing seat component 2 and the wear plate component 1. Then, four sets of second sealing blocks 8 are embedded into the opening of the mounting hole 205 to protect the combination bolt 4 inside the mounting hole 205.
[0028] Then the heat-conducting silicon plate 302 and the engaging post 303 at the bottom of the heat dissipation fin plate 301 are embedded into the assembly groove 204 on the side of the main seat body 201, and then the engaging bolt 5 is screwed into the inside of the heat dissipation fin plate 301, the engaging post 303 and the assembly groove 204, so that the two groups of heat dissipation components 3 are symmetrically installed on the upper and lower sides of the fixing seat component 2, then the fixing seat component 2 installed with the wear-resistant plate component 1 and the heat dissipation component 3 is attached to the installation structure surface corresponding to the mold, then the four fixing bolts 6 are screwed into the fixing post 202 on the two sides of the main seat body 201 one by one, and the fixing seat component 2 is fixed to the surface of the mold, finally the first sealing block 7 is embedded into the opening of the fixing post 202 to protect the inside fixing bolt 6.
[0029] Embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments are chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.
Claims
1. A replaceable mold wear-resistant plate, comprising a wear-resistant plate component (1) and a fixing base component (2), characterized in that: A fixing seat component (2) is installed on one side of the wear-resistant plate component (1), and heat dissipation components (3) are horizontally installed on both the upper and lower sides of the fixing seat component (2). A combination bolt (4) is installed between the fixing seat component (2) and the wear-resistant plate component (1), and a connecting bolt (5) is installed between the fixing seat component (2) and the heat dissipation component (3). The wear-resistant plate component (1) includes a wear-resistant plate body (101), heat dissipation patterns (102), an energy-absorbing plate (103), and a connecting post (104). A heat dissipation pattern (102) is opened on one side surface of the wear-resistant plate body (101), and an energy-absorbing plate (103) is fixedly attached to the middle of the side surface of the wear-resistant plate body (101) away from the heat dissipation pattern (102). A connecting post (104) is provided at each of the four opposite corners of the energy-absorbing plate (103).
2. The easily replaceable mold wear-resistant plate according to claim 1, characterized in that, Fixing bolts (6) are horizontally installed on both the left and right sides of the fixing seat component (2), and a first sealing block (7) is provided at one end of the fixing bolt (6), and a second sealing block (8) is installed on the rear side of the fixing seat component (2).
3. The easily replaceable mold wear-resistant plate according to claim 1, characterized in that, The connecting pile (104) and the wear-resistant plate body (101) are integrated into one structure, and the combination bolt (4) and the connecting pile (104) are threaded together.
4. The easily replaceable mold wear-resistant plate according to claim 2, characterized in that, The fixed base component (2) includes a main base body (201), a fixing pile (202), a stabilizing groove (203), an assembly groove (204), and a mounting hole (205). The main base body (201) is symmetrically provided with fixing piles (202) on both the left and right sides. The main base body (201) has a stabilizing groove (203) on the side surface of the main base body (201) close to the wear-resistant plate component (1). The main base body (201) has an assembly groove (204) on the upper and lower sides. The main base body (201) has a mounting hole (205) on the side surface of the main base body (201) away from the wear-resistant plate component (1).
5. The easily replaceable mold wear-resistant plate according to claim 4, characterized in that, The fixed pile (202) and the main body (201) are integrated into one structure, and the fixing bolt (6) is threaded horizontally through the middle of the interior of the fixed pile (202), and the first sealing block (7) is movably embedded in one end of the opening of the fixed pile (202).
6. The easily replaceable mold wear-resistant plate according to claim 4, characterized in that, The inner surface structure of the assembly groove (204) matches the surface structure of the wear-resistant plate body (101) on one side where the energy-absorbing plate (103) and the docking pile (104) are provided. The mounting holes (205) are located at the four opposite corners of the main body (201) and are connected to the stabilizing groove (203). The combination bolt (4) is threaded into the interior of the mounting hole (205), and the second sealing block (8) is movably embedded in the opening of the mounting hole (205).
7. The easily replaceable mold wear-resistant plate according to claim 4, characterized in that, The heat dissipation component (3) includes a heat dissipation fin (301), a thermally conductive silicon plate (302), and a connecting post (303). The thermally conductive silicon plate (302) is fixedly attached to the side surface of the heat dissipation fin (301) near the fixing base component (2), and the connecting post (303) is symmetrically arranged on the bottom left and right sides of the heat dissipation fin (301).
8. The easily replaceable mold wear-resistant plate according to claim 7, characterized in that, The connecting pile (303) and the heat dissipation fin (301) are integrated into one structure, and the connecting bolt (5) is vertically threaded inside the connecting pile (303) and the heat dissipation fin (301) and is set in a sunken structure. Moreover, the inner surface structure of the assembly groove (204) matches the surface structure of one side of the heat dissipation fin (301) on which the thermally conductive silicon plate (302) and the connecting pile (303) are provided.