Die-casting die with deslagging and exhausting functions
By designing a new slag exhaust mechanism in the die-casting mold, using multiple slag cavity and exhaust components, the problem that existing molds cannot guarantee the airtightness of die-casting parts with large height dimensions is solved, and efficient depth slag discharge and quality improvement is achieved.
Patent Information
- Application Number
- CN202421430988.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-20
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-20
AI Technical Summary
Existing die-casting molds with slag and exhaust function cannot effectively ensure the airtightness of die-casting parts with larger height dimensions, resulting in poor quality and high cost of die-casting.
A new structure of die-casting mold is designed, using a new slag exhaust mechanism, which includes multiple slag chambers and exhaust components. By flowing molten metal liquid into different slag chambers and cooling it to form slag parts, and then using the exhaust components to quickly discharge gas, increasing the density of the die-casting parts.
It has achieved deep slag discharge, which is suitable for die-casting production of complex products, significantly improving the yield and quality of die-casting parts required for high airtightness, especially the airtightness can be improved by several levels.
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Figure CN222856693U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of molds, in particular to a die-casting mold with slag and gas discharge functions. Background Art
[0002] Die casting is a metal casting process, which is characterized by using high pressure to fill the mold cavity with metal raw materials at high speed and solidify under the action of high pressure.
[0003] The die-casting process is a metal casting process achieved with the help of a die-casting mold with slag and exhaust functions. Specifically, it is a process of injecting molten metal or alloy into a mold for cooling and solidification. The die-casting process can produce high-precision, high-strength, and high-wear-resistant parts, so it is widely used in automobiles, motorcycles, electronics, home appliances and other fields.
[0004] Existing die-casting molds with slag removal and exhaust functions are generally only suitable for die-castings with smaller dimensions in the height direction (or shallower cavities). The die-casting quality cannot be guaranteed for some die-castings with larger dimensions in the height direction (or deeper cavities). Since these products require the molds to have higher airtightness, existing molds can only increase the number of good products by increasing output, which is costly and has a high defective rate of die-casting products. Utility Model Content
[0005] In view of the shortcomings of the prior art mentioned above, the purpose of the present utility model is to provide a die-casting mold with slag removal and exhaust function that can greatly improve the internal density of the die-cast product, thereby improving the strength and airtightness of the product, and is used to solve the quality problem of die-casting molding of products with extremely strict airtightness requirements that cannot be guaranteed in the prior art.
[0006] In order to achieve the above-mentioned purpose and other related purposes, the utility model provides a die-casting mold with slag and exhaust functions, which at least includes:
[0007] The fixed mold mechanism comprises a fixed mold frame and a fixed mold core, wherein the fixed mold core is installed on the fixed mold frame and a fixed mold cavity is formed in the fixed mold core;
[0008] The movable mold mechanism comprises a movable mold frame and a movable mold core. The movable mold core is installed on the movable mold frame. A convex mold matching with the fixed mold cavity is arranged on the movable mold core. When the fixed mold mechanism and the movable mold mechanism are molded together, the movable mold core and the fixed mold core are enclosed to form a cavity.
[0009] A slag discharge and exhaust mechanism, comprising a slag discharge assembly, a first slag cavity and a second slag cavity respectively connected to two ends of the cavity in the depth direction, a third slag cavity connected to the first slag cavity, and an exhaust assembly connected to the third slag cavity, wherein the second slag cavity is arranged on the fixed mold mechanism;
[0010] The molten metal enters the mold, flows into the mold cavity to form a die casting, flows into the first slag cavity to form a first slag part, flows into the second slag cavity to form a second slag part, and flows into the third slag cavity to form a third slag part;
[0011] The slag removal assembly cooperates with the second slag material piece and is used to separate the second slag material piece from the fixed mold mechanism.
[0012] Therefore, the utility model provides a die-casting mold with a new structure, which has a new slag discharge and exhaust mechanism, the principle of which is that the molten metal flows into the mold cavity and is cooled to form a die-casting, flows into the first slag cavity and is cooled to form a first slag material part, flows into the third slag cavity and is cooled to form a third slag material part, the third slag cavity is connected to the exhaust component, and the slag discharge and exhaust mechanism can quickly discharge the gas to increase the density of the die-casting. More importantly, a second slag cavity is also provided at the other end of the mold cavity in the depth direction, and the molten metal flows into the second slag cavity and is cooled to form a second slag material part. The slag discharge component cooperates with the second slag material part, which can separate the second slag material part from the fixed mold mechanism, facilitating subsequent manual slag discharge or automatic slag discharge.
[0013] Due to the setting of the slag removal and exhaust mechanism, the die-casting mold can achieve deep slag removal, which is suitable for the die-casting production of complex products. The yield of die-castings with high airtightness requirements is greatly improved, and the quality of die-castings (especially airtightness) can be improved by several levels.
[0014] In one embodiment of the utility model, the fixed mold frame includes a fixed mold frame bottom plate and a fixed mold frame main board, the slag discharge assembly includes a slag discharge driving member, a push block, a push rod mounting block, a push rod, a first insert block and a second insert block, the first insert block is installed on the fixed mold frame bottom plate and has a first mold cavity, the second insert block is installed on the fixed mold frame main board and has a second mold cavity, the fixed mold core is installed on the fixed mold frame main board and has a third mold cavity connected to the fixed mold cavity, and the first mold cavity, the second mold cavity and the third mold cavity together form a second slag cavity;
[0015] The slag discharge driving member is installed on the bottom plate of the fixed mold frame, the push block is connected to the driving end of the slag discharge driving member and can slide in the bottom plate of the fixed mold frame, the push rod mounting block can be movably installed on the bottom plate of the fixed mold frame and cooperate with the push block, the push rod is installed on the push rod mounting block and cooperates with the second slag material piece. Under the drive of the slag discharge driving member, the push block can drive the push rod mounting block to move, and then drive the push rod to push the second slag material piece, so that the second slag material piece is separated from the second slag material cavity.
[0016] Therefore, after the movable mold mechanism and the fixed mold mechanism are molded together, the molten metal liquid first flows into the mold cavity, and then the molten metal liquid diffused from the mold cavity to the depth direction passes through the third mold cavity, the second mold cavity, and the first mold cavity in turn to fill the second slag cavity, and the molten metal liquid expanding from the mold cavity to the surrounding areas first enters the first slag cavity, and then enters the third slag cavity; after cooling and molding, the mold opening action is performed, and the fixed mold frame main board and the fixed mold frame bottom plate are opened first to separate the second slag material piece from the die casting, and the second slag material piece is retained on the fixed mold frame bottom plate, while the die casting is retained on the movable mold. At this time, the first slag material piece and the second slag material piece are connected to the die-casting part, and the slag discharge assembly is in action. Its specific working principle is: the slag discharge driving part drives the push block to slide, and the push block and the ejector mounting block are extruded and matched with the first inclined surface and the second inclined surface, thereby driving the ejector mounting block to move, thereby driving the ejector rod to move, thereby loosening the second slag material piece from the first embedded block, and subsequently manually or automatically separating the second slag material piece from the first embedded block; and the first slag material piece and the second slag material piece connected to the die-casting part can be removed separately later.
[0017] In one embodiment of the utility model, one end surface of the push block that cooperates with the push rod mounting block is provided with a first inclined surface, and one end surface of the push rod mounting block that cooperates with the push block is provided with a second inclined surface that cooperates with the first inclined surface. Thus, the movement of the push rod can be realized through the sliding cooperation of the first inclined surface and the second inclined surface, and the structure is simple but highly practical.
[0018] In one embodiment of the utility model, a guide protrusion is provided on the second inclined surface, a guide groove matching the guide protrusion is provided on the first inclined surface, a guide column is provided on the push rod mounting block, and a guide hole matching the guide column is provided on the first insert block. Thus, the cooperation between the guide protrusion and the guide groove can play a guiding role when the push block moves, and the cooperation between the guide column and the guide hole can play a guiding role when the push rod mounting block moves, thereby ensuring stability.
[0019] In one embodiment of the utility model, the slag discharge assembly further includes a first wear-resistant plate and a second wear-resistant plate, wherein the first wear-resistant plate is mounted on the bottom plate of the fixed mold frame and is located between the bottom plate of the fixed mold frame and the push block, and the second wear-resistant plate is disposed on the bottom plate of the fixed mold frame and is located between the bottom plate of the fixed mold frame and the top rod mounting block. Thus, the first wear-resistant plate and the second wear-resistant plate play an isolating and wear-resistant role, and can extend the service life of the slag discharge assembly.
[0020] In one embodiment of the utility model, the exhaust assembly includes a first exhaust block arranged on the fixed mold frame main board and a second exhaust block arranged on the movable mold frame, and the third slag cavity includes a main cavity arranged on the movable mold frame, a first branch cavity and a second branch cavity arranged on the fixed mold frame main board, one end of the main cavity is connected to the first exhaust block and the second exhaust block, and the other end is respectively connected to the first branch cavity and the second branch cavity. Thus, the first slag material part (i.e., slag bag) can be formed through the first slag cavity, the first slag cavity can accommodate the gas that first enters the cavity, and can cooperate with the feed channel to control the flow state of the molten liquid filling, and can prevent local eddy currents. The third slag cavity is respectively connected to the first slag cavity and the exhaust assembly, and can quickly discharge the gas to increase the density of the die casting.
[0021] In one embodiment of the utility model, the die-casting mold with slag and gas removal function also includes a movable frame, a base, a lifting mechanism and an opening and closing mechanism, the base is installed on the movable frame, the movable mold frame is installed on the base, the lifting mechanism can be movably installed on the movable frame and cooperate with the movable mold core to eject the die-casting part from the movable mold core, and the opening and closing mechanism includes a plurality of openers and closes respectively connected to the fixed mold frame mainboard and the movable mold frame.
[0022] In one embodiment of the utility model, the die-casting mold with slag and gas removal function also includes a core pulling mechanism, which is installed on the movable mold frame and cooperates with the mold cavity to form a concave-convex structure and / or a hole groove structure on the side of the die casting, and the core pulling mechanism includes a first core pulling assembly, a second core pulling assembly, a third core pulling assembly and a fourth core pulling assembly distributed around the movable mold core;
[0023] The first core pulling assembly includes a first slider, a first slide seat and a first core pulling driving member, the first slide seat and the first core pulling driving member are installed on the movable mold frame, the first slider is installed on the first slide seat, the first slide seat is slidably installed on the movable mold frame and connected to the first core pulling driving member, and the first core pulling driving member is used to drive the first slider to approach or move away from the movable mold core;
[0024] The second core pulling assembly includes a second slider, a second slide seat and a second core pulling driving member, the second slide seat and the second core pulling driving member are installed on the movable mold frame, the second slider is installed on the second slide seat, the second slide seat is slidably installed on the movable mold frame and connected to the second core pulling driving member, and the second core pulling driving member is used to drive the second slider to approach or move away from the movable mold core;
[0025] The third core pulling assembly includes a third slider, a third slide seat and a third core pulling driving member, the third slide seat and the third core pulling driving member are installed on the movable mold frame, the third slider is installed on the third slide seat, the third slide seat is slidably installed on the movable mold frame and connected to the third core pulling driving member, and the third core pulling driving member is used to drive the third slider to approach or move away from the movable mold core;
[0026] The fourth core pulling assembly includes a fourth slider, a fourth slide and a fourth core pulling drive member. The fourth slide and the fourth core pulling drive member are installed on the movable mold frame. The fourth slider is installed on the fourth slide. The fourth slide can be slidably installed on the movable mold frame and is connected to the fourth core pulling drive member. The fourth core pulling drive member is used to drive the fourth slider to approach or move away from the movable mold core.
[0027] Therefore, by setting up a core-pulling mechanism, a concave-convex structure and / or a hole-groove structure can be formed around the die-casting part, achieving one-time molding with good molding quality, effectively reducing the die-casting scrap rate, and being able to improve production efficiency and reduce production costs.
[0028] In one embodiment of the utility model, the die-casting mold with slag and gas discharge function also includes a feeding mechanism, the feeding mechanism includes a diverter cone and a sprue sleeve, the sprue sleeve is mounted on the fixed mold frame, the diverter cone is installed on the movable mold frame and can be mounted in the sprue sleeve when the mold is closed, a feeding channel is formed between the sprue sleeve and the diverter cone, and the fixed mold core is provided with a diverter channel, one end of the diverter channel is connected to the feeding channel, and the other end is connected to the fixed mold cavity. Thus, the diverter cone is connected to the feeding channel, which can divert the molten metal liquid from the feeding channel to each diverter channel, which can improve the introduction direction of the molten metal liquid, and can also reduce the injection speed, which has the effect of reducing the generation of pores.
[0029] As described above, the die-casting mold with slag and exhaust functions of the utility model has the following beneficial effects:
[0030] The utility model provides a die-casting mold with a new structure, which has a new slag discharge and exhaust mechanism, the principle of which is that the molten metal flows into the mold cavity and is cooled to form a die-casting, flows into the first slag cavity and is cooled to form a first slag material part, flows into the third slag cavity and is cooled to form a third slag material part, the third slag cavity is connected to the exhaust component, and the slag discharge and exhaust mechanism can quickly discharge the gas to increase the density of the die-casting. More importantly, a second slag cavity is also provided at the other end of the mold cavity in the depth direction, and the molten metal flows into the second slag cavity and is cooled to form a second slag material part. The slag discharge component cooperates with the second slag material part, which can separate the second slag material part from the fixed mold mechanism, facilitating subsequent manual slag discharge or automatic slag discharge.
[0031] Due to the setting of the slag removal and exhaust mechanism, the die-casting mold can achieve deep slag removal, which is suitable for the die-casting production of complex products. The yield of die-castings with high airtightness requirements is greatly improved, and the quality of die-castings (especially airtightness) can be improved by several levels. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 Shown is a three-dimensional structural schematic diagram of a die-casting mold with slag and gas removal functions according to one embodiment of the present invention.
[0033] Figure 2 for Figure 1 The three-dimensional structural schematic diagram of the die-casting mold with slag and exhaust functions is shown with some structures omitted.
[0034] Figure 3 for Figure 2 One of the exploded structural schematic diagrams of the die-casting mold with slag removal and exhaust function is shown.
[0035] Figure 4 for Figure 2 The second schematic diagram of the explosion structure of the die-casting mold with slag removal and exhaust function is shown.
[0036] Figure 5 It is a schematic diagram of the three-dimensional structure of a product produced by die-casting using a die-casting mold with slag and gas removal functions according to one embodiment of the utility model.
[0037] Figure 6 for Figure 2 One of the three-dimensional structural schematic diagrams of the die-casting mold with slag and exhaust functions after omitting some structures.
[0038] Figure 7 for Figure 6 The three-dimensional structural schematic diagram of the die-casting mold with slag and exhaust functions is shown after some mechanisms are omitted.
[0039] Figure 8 for Figure 2 The second schematic diagram of the three-dimensional structure of the die-casting mold with slag and exhaust functions after omitting some structures.
[0040] Fig. 9 for Figure 8 The schematic diagram of the cross-sectional structure of the die-casting mold with slag and gas removal function in one direction is shown.
[0041] Fig.10 for Figure 8 The exploded structure schematic diagram of the die-casting mold with slag removal and exhaust function is shown.
[0042] Fig.11 for Fig.10 The exploded structural schematic diagram of a partial structure of a die-casting mold with slag removal and exhaust function is shown.
[0043] Fig.12 for Fig.10 The schematic diagram of the partial structure of the die-casting mold with slag removal and exhaust function is shown.
[0044] Figure 1-12Reference numerals in the figure: 1-movable frame; 2-base; 3-lifting mechanism; 4-fixed mold mechanism; 5-movable mold mechanism; 6-slag discharge and exhaust mechanism; 7-opening and closing mechanism; 8-core pulling mechanism; 9-feeding mechanism; 100-die casting; 200-first slag material piece; 300-second slag material piece; 400-third slag material piece; 500-gate piece; 41-fixed mold frame; 42-fixed mold core; 51-movable mold frame; 52-movable mold core; 61-slag discharge assembly; 62-first slag cavity; 63 - second slag cavity; 64 - third slag cavity; 65 - exhaust assembly; 71 - shutter; 81 - first core pulling assembly; 82 - second core pulling assembly; 83 - third core pulling assembly; 84 - fourth core pulling assembly; 91 - diverter cone; 92 - gate sleeve; 93 - feed channel; 411 - fixed mold frame bottom plate; 412 - fixed mold frame main board; 421 - fixed mold cavity; 422 - third mold cavity; 423 - diverter channel; 521 - punch; 611 - slag discharge drive; 612 - push block ;613-rod mounting block;614-rod;615-first insert;616-second insert;617-first wear-resistant plate;618-second wear-resistant plate;619-guide post;641-main cavity;642-first branch cavity;643-second branch cavity;651-first exhaust block;652-second exhaust block;811-first slider;812-first slide seat;813-first core-pulling drive member;821-second slider;822-second slide seat; 823-second core-pulling drive member; 831-third slider; 832-third slide; 833-third core-pulling drive member; 841-fourth slider; 842-fourth slide; 843-fourth core-pulling drive member; 411a-first mounting groove; 412a-second mounting groove; 612a-first inclined surface; 612b-guide groove; 613a-second inclined surface; 613b-guide protrusion; 615a-first mold cavity; 615b-guide hole; 616a-second mold cavity. DETAILED DESCRIPTION
[0045] The following describes the implementation of the present invention through specific examples, and those skilled in the art can easily understand other advantages and effects of the present invention from the contents disclosed in this specification. The present invention can also be implemented or applied through other different specific implementations, and the details in this specification can also be modified or changed in various ways based on different viewpoints and applications without departing from the spirit of the present invention. It should be noted that the following embodiments and features in the embodiments can be combined with each other without conflict.
[0046] It should be noted that the illustrations provided in the following embodiments are only schematic illustrations of the basic concept of the present invention, and thus the drawings only show components related to the present invention rather than being drawn according to the number, shape and size of components in actual implementation. In actual implementation, the type, quantity and proportion of each component may be changed at will, and the component layout may also be more complicated.
[0047] See also Figure 1-Figure 12 The utility model provides a die-casting mold with slag removal and exhaust function in the following embodiments. The die-casting mold with slag removal and exhaust function belongs to the field of mold technology and can solve the problems of high scrap rate of die-castings and low density of die-castings in the prior art.
[0048] like Figure 1-12 As shown, the utility model provides a die-casting mold with slag and gas removal functions in one mode.
[0049] The die-casting mold with slag and exhaust functions comprises at least:
[0050] The fixed mold mechanism 4 includes a fixed mold frame 41 and a fixed mold core 42. The fixed mold core 42 is installed on the fixed mold frame 41. The fixed mold core 42 is provided with a fixed mold cavity 421.
[0051] The movable mold mechanism 5 includes a movable mold frame 51 and a movable mold core 52. The movable mold core 52 is installed on the movable mold frame 51. A convex mold 521 matching with the fixed mold cavity 421 is provided on the movable mold core 52. When the fixed mold mechanism 4 and the movable mold mechanism 5 are molded together, the movable mold core 52 and the fixed mold core 42 are enclosed to form a mold cavity.
[0052] The slag discharge and exhaust mechanism 6 comprises a slag discharge assembly 61, a first slag cavity 62 and a second slag cavity 63 respectively connected to the two ends of the cavity in the depth direction, a third slag cavity 64 connected to the first slag cavity 62, and an exhaust assembly 65 connected to the third slag cavity 64, wherein the second slag cavity 63 is arranged on the fixed mold mechanism 4;
[0053] The molten metal enters the mold, flows into the mold cavity to form the die casting 100, flows into the first slag cavity 62 to form the first slag part 200, flows into the second slag cavity 63 to form the second slag part 300, and flows into the third slag cavity 64 to form the third slag part 400;
[0054] The slag removal assembly 61 cooperates with the second slag piece 300 to enable the second slag piece 300 to separate from the fixed mold mechanism 4 .
[0055] Preferably, the fixed mold frame 41 includes a fixed mold frame bottom plate 411 and a fixed mold frame main plate 412, the slag discharge assembly 61 includes a slag discharge drive 611, a push block 612, a push rod mounting block 613, a push rod 614, a first insert 615 and a second insert 616, the fixed mold frame bottom plate 411 is provided with a first mounting groove 411a, the first insert 615 is installed in the first mounting groove 411a of the fixed mold frame bottom plate 411 and is provided with a first mold cavity 615a, the fixed mold frame main plate 412 is provided with a second mounting groove 412a, the second insert 616 is installed in the second mounting groove 412a of the fixed mold frame main plate 412 and is provided with a second mold cavity 616a, the fixed mold core 42 is installed on the fixed mold frame main plate 412 and is provided with a third mold cavity 422 connected to the fixed mold cavity 421, and the first mold cavity 615a, the second mold cavity 616a and the third mold cavity 422 jointly form a second slag cavity 63;
[0056] Preferably, the third mold cavity 422, the second mold cavity 616a and the first mold cavity 615a are arranged in sequence along the depth direction, and the volume of the cavity increases gradually.
[0057] Further preferably, a lower concave cavity is provided in the middle of the fixed mold cavity 421, and the number of the lower concave cavities may be multiple, and the multiple lower concave cavities are arranged in sequence and spaced apart, and may be multiple rows, and the number of the second slag cavities 63 corresponds to the number of the lower concave cavities.
[0058] The solution of the utility model is at least applicable to die-cast products with a cavity of a certain depth, such as the housing of a sensor for an automobile, etc.
[0059] The slag discharge driving member 611 is installed on the fixed mold frame bottom plate 411, the push block 612 is connected to the driving end of the slag discharge driving member 611 and can slide in the fixed mold frame bottom plate 411, the top rod mounting block 613 is movably installed on the fixed mold frame bottom plate 411 and cooperates with the push block 612, and the top rod 614 is installed on the top rod mounting block 613 and cooperates with the second slag material part 300. Under the drive of the slag discharge driving member 611, the push block 612 can drive the top rod mounting block 613 to move, and then drive the top rod 614 to push the second slag material part 300, so that the second slag material part 300 is separated from the second slag material cavity 63. Preferably, the slag discharge driving member 611 can be a cylinder.
[0060] Therefore, after the movable mold mechanism 5 and the fixed mold mechanism 4 are molded together, the molten metal liquid first flows into the mold cavity, and then the molten metal liquid diffused from the mold cavity to the depth direction successively passes through the third mold cavity 422, the second mold cavity 616a, and the first mold cavity 615a to fill the second slag cavity 63, and the molten metal liquid expanding outward from the mold cavity first enters the first slag cavity 62, and then enters the third slag cavity 64; after cooling and molding, the mold opening action is performed, and the fixed mold frame main board 412 and the fixed mold frame bottom plate 411 are opened first to separate the second slag material part 300 from the die casting 100, and the second slag material part 300 is retained on the fixed mold frame bottom plate 411, while the die casting 100 is retained on the movable mold core 52. At this time, the first slag material part 300 is The material piece 200 and the second slag material piece 300 are connected to the die casting 100, and the slag discharge assembly 61 is in operation. Its specific working principle is: the slag discharge driving member 611 drives the push block 612 to slide, and the push block 612 and the push rod mounting block 613 are extruded and matched with the first inclined surface 612a and the second inclined surface 613a, driving the push rod mounting block 613 to move, and then driving the push rod 614 to move, so as to loosen the second slag material piece 300 from the first embedded block 615, and subsequently the second slag material piece 300 is separated from the first embedded block 615 manually or automatically; and the first slag material piece 200 and the second slag material piece 300 connected to the die casting 100 can be removed separately later.
[0061] Preferably, one end face of the push block 612 that cooperates with the push rod mounting block 613 is provided with a first inclined surface 612a, and one end face of the push rod mounting block 613 that cooperates with the push block 612 is provided with a second inclined surface 613a that cooperates with the first inclined surface 612a. Thus, the movement of the push rod 614 can be realized through the sliding cooperation of the first inclined surface 612a and the second inclined surface 613a, and the structure is simple but highly practical.
[0062] Preferably, the second inclined surface 613a is provided with a guide protrusion 613b, the first inclined surface 612a is provided with a guide groove 612b matched with the guide protrusion 613b, the push rod mounting block 613 is provided with a guide column 619, and the first insert block 615 is provided with a guide hole 615b matched with the guide column 619. Therefore, the cooperation between the guide protrusion 613b and the guide groove 612b can play a guiding role when the push block 612 moves, and the cooperation between the guide column 619 and the guide hole 615b can play a guiding role when the push block 612 moves, and the stability can be ensured.
[0063] Preferably, the slag discharge assembly 61 further includes a first wear-resistant plate 617 and a second wear-resistant plate 618. The first wear-resistant plate 617 is installed on the fixed mold frame bottom plate 411 and is located between the fixed mold frame bottom plate 411 and the push block 612. The second wear-resistant plate 618 is arranged on the fixed mold frame bottom plate 411 and is located between the fixed mold frame bottom plate 411 and the push rod mounting block 613. Therefore, the first wear-resistant plate 617 and the second wear-resistant plate 618 play an isolation and wear-resistant role, which can extend the service life of the slag discharge assembly 61.
[0064] Preferably, the exhaust assembly 65 includes a first exhaust block 651 disposed on the fixed mold frame main board 412 and a second exhaust block 652 disposed on the movable mold frame 51, and the third slag cavity 64 includes a main cavity 641 disposed on the movable mold frame 51, a first branch cavity 642 and a second branch cavity 643 disposed on the fixed mold frame main board 412, one end of the main cavity 641 is connected to the first exhaust block 651 and the second exhaust block 652, and the other end is respectively connected to the first branch cavity 642 and the second branch cavity 643. Thus, the first slag material part 200 (i.e., slag bag) can be formed through the first slag cavity 62, the first slag cavity 62 can accommodate the gas that first enters the cavity, and can cooperate with the feed channel 93 to control the flow state of the molten liquid filling, and can prevent local eddy currents, and the third slag cavity 64 is respectively connected to the first slag cavity 62 and the exhaust assembly 65, and can quickly discharge the gas, thereby increasing the density of the die casting 100.
[0065] Preferably, the die-casting mold with slag and gas removal function also includes a movable frame 1, a base 2, a lifting mechanism 3 and an opening and closing mechanism 7. The base 2 is installed on the movable frame 1, and the movable mold frame 51 is installed on the base 2. The lifting mechanism 3 can be movably installed on the movable frame 1 and cooperate with the movable mold core 52 to push the die-casting part 100 out of the movable mold core 52. The opening and closing mechanism 7 includes a plurality of openers 71 respectively connected to the fixed mold frame main board 412 and the movable mold frame 51.
[0066] Preferably, the die-casting mold with slag and gas discharge function further includes a core pulling mechanism 8, which is installed on the movable mold frame 51 and cooperates with the mold cavity to form a concave-convex structure and / or a hole-groove structure on the side of the die-casting 100. The core pulling mechanism 8 includes a first core pulling component 81, a second core pulling component 82, a third core pulling component 83 and a fourth core pulling component 84 distributed around the movable mold core 52;
[0067] The first core pulling assembly 81 includes a first slider 811, a first slide 812 and a first core pulling driving member 813. The first slide 812 and the first core pulling driving member 813 are installed on the movable mold frame 51. The first slider 811 is installed on the first slide 812. The first slide 812 is slidably installed on the movable mold frame 51 and connected to the first core pulling driving member 813. The first core pulling driving member 813 is used to drive the first slider 811 to approach or move away from the movable mold core 52.
[0068] The second core pulling assembly 82 includes a second slider 821, a second slide 822, and a second core pulling driving member 823. The second slide 822 and the second core pulling driving member 823 are installed on the movable mold frame 51. The second slider 821 is installed on the second slide 822. The second slide 822 is slidably installed on the movable mold frame 51 and connected to the second core pulling driving member 823. The second core pulling driving member 823 is used to drive the second slider 821 to approach or move away from the movable mold core 52.
[0069] The third core pulling assembly 83 includes a third slider 831, a third slide seat 832 and a third core pulling driving member 833. The third slide seat 832 and the third core pulling driving member 833 are installed on the movable mold frame 51. The third slider 831 is installed on the third slide seat 832. The third slide seat 832 is slidably installed on the movable mold frame 51 and connected to the third core pulling driving member 833. The third core pulling driving member 833 is used to drive the third slider 831 to approach or move away from the movable mold core 52.
[0070] The fourth core pulling assembly 84 includes a fourth slider 841, a fourth slide 842 and a fourth core pulling drive 843. The fourth slide 842 and the fourth core pulling drive 843 are installed on the movable mold frame 51. The fourth slider 841 is installed on the fourth slide 842. The fourth slide 842 can be slidably installed on the movable mold frame 51 and is connected to the fourth core pulling drive 843. The fourth core pulling drive 843 is used to drive the fourth slider 841 to approach or move away from the movable mold core 52.
[0071] Preferably, the first core pulling driving member 813, the second core pulling assembly 82, the third core pulling assembly 83 and the fourth core pulling driving member 843 can all be hydraulic cylinders.
[0072] Therefore, by setting the core-pulling mechanism 8, a concave-convex structure and / or a hole-groove structure can be formed around the die-casting 100, achieving one-time molding with good molding quality, effectively reducing the die-casting scrap rate, and being able to improve production efficiency and reduce production costs.
[0073] Preferably, the die-casting mold with slag and gas discharge function also includes a feed mechanism 9, which includes a diverter cone 91 and a sprue sleeve 92. The sprue sleeve 92 is mounted on the fixed mold frame 41, and the diverter cone 91 is installed on the movable mold frame 51 and can be mounted in the sprue sleeve 92 when the mold is closed. A feed channel 93 is formed between the sprue sleeve 92 and the diverter cone 91. The fixed mold core 42 is provided with a diverter channel 423, one end of the diverter channel 423 is connected to the feed channel 93, and the other end is connected to the fixed mold cavity 421. Therefore, the diverter cone 91 is connected to the feed channel 93, which can divert the molten metal liquid from the feed channel 93 to each diverter channel 423, which can improve the introduction direction of the molten metal liquid, and can also reduce the injection speed, which has the effect of reducing the generation of pores.
[0074] The molten metal flows into the feed channel 93 and forms a gate member 500 after being cooled. The gate member 500 is connected to the die casting 100 and can be removed after demoulding.
[0075] The working principle of the die-casting mold with slag and exhaust functions of the utility model is:
[0076] S1, molding: the movable mold mechanism 5 and the fixed mold mechanism 4 are molded together, and the molten metal liquid is injected into the mold through the feeding mechanism 9, and the molten metal liquid flows into the mold cavity and is cooled to form a die casting 100, flows into the first slag cavity 62 and is cooled to form a first slag material part 200, flows into the second slag cavity 63 and is cooled to form a second slag material part 300, and flows into the third slag cavity 64 and is cooled to form a third slag material part 400;
[0077] S2. Demolding:
[0078] S21, after die casting is completed, the mold opening action is performed. The movable mold frame 51 and the fixed mold frame main board 412 will not be opened under the action of the shutter 71. The fixed mold frame main board 412 and the fixed mold frame bottom plate 411 are opened. Figure 3 As shown;
[0079] S22, the second slag piece 300 is separated from the die casting 100 through the mold opening action of step S21, the second slag piece 300 is retained on the fixed mold frame bottom plate 411, and the die casting 100 is retained on the movable mold core 52, and the first slag piece 200 and the third slag piece 400 are connected to the die casting 100;
[0080] S23, continue the mold opening work, so that the movable mold frame 51 and the fixed mold frame main board 412 are opened, and the die casting 100 is retained in the movable mold core 52, such as Figure 4 As shown;
[0081] S24, after the mold opening action is completed, the slag discharge assembly 61 and the core pulling mechanism 8 act together, the slag discharge driving member 611 drives the push block 612 to slide, and the core pulling mechanism 8 performs a core pulling movement;
[0082] S25, the push block 612 is pressed and matched with the push rod mounting block 613, driving the push rod mounting block 613 to move, and then driving the push rod 614 to move, so as to loosen the second slag material 300 from the fixed mold frame bottom plate 411, so that the second slag material 300 is separated from the fixed mold frame bottom plate 411;
[0083] S26, the ejection mechanism is actuated to eject the die casting 100 from the movable die core 52, and the die casting 100 is demoulded. Figure 5 As shown, the gate piece 500 , the first slag piece 200 and the third slag piece 400 around the die casting 100 can be removed manually or by machine.
[0084] As described above, the die-casting mold with slag and exhaust functions of the utility model has the following beneficial effects:
[0085] The utility model provides a die-casting mold with a new structure, which has a new slag discharge and exhaust mechanism 6, the principle of which is that the molten metal flows into the mold cavity and is cooled to form a die-casting 100, flows into the first slag cavity 62 and is cooled to form a first slag material part 200, flows into the third slag cavity 64 and is cooled to form a third slag material part 400, the third slag cavity 64 is connected to the exhaust component 65, and the slag discharge and exhaust mechanism 6 can quickly discharge the gas to increase the density of the die-casting 100. More importantly, a second slag cavity 63 is also provided at the other end of the mold cavity in the depth direction, and the molten metal flows into the second slag cavity 63 and is cooled to form a second slag material part 300, and the slag discharge component 61 cooperates with the second slag material part 300, which can separate the second slag material part 300 from the fixed mold mechanism 4, which is convenient for subsequent manual or automatic slag discharge.
[0086] Due to the setting of the slag removal and exhaust mechanism 6, the die-casting mold can achieve deep slag removal, which is suitable for the die-casting production of complex products. The yield of the die-casting 100 with high airtightness requirements is greatly improved, and the quality of the die-casting 100 (especially the airtightness) can be improved by several levels.
[0087] The above embodiments are merely illustrative of the principles and effects of the present invention, and are not intended to limit the present invention. Anyone familiar with the technology may modify or alter the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or alterations made by a person of ordinary skill in the art without departing from the spirit and technical concept disclosed in the present invention shall still be covered by the claims of the present invention.
Claims
1. A die-casting mold with slag and exhaust functions, characterized in that: At least: The fixed mold mechanism (4) comprises a fixed mold frame (41) and a fixed mold core (42), wherein the fixed mold core (42) is mounted on the fixed mold frame (41), and the fixed mold core (42) is provided with a fixed mold cavity (421); The movable mold mechanism (5) comprises a movable mold frame (51) and a movable mold core (52), wherein the movable mold core (52) is mounted on the movable mold frame (51), and a convex mold (521) matching with the fixed mold cavity (421) is arranged on the movable mold core (52), and when the fixed mold mechanism (4) and the movable mold mechanism (5) are molded together, a mold cavity is enclosed between the movable mold core (52) and the fixed mold core (42); A slag discharge and exhaust mechanism (6), comprising a slag discharge assembly (61), a first slag cavity (62) and a second slag cavity (63) respectively connected to two ends of the cavity in the depth direction, a third slag cavity (64) connected to the first slag cavity (62), and an exhaust assembly (65) connected to the third slag cavity (64), wherein the second slag cavity (63) is arranged on the fixed mold mechanism (4); The molten metal enters the mold, flows into the mold cavity to form a die casting (100), flows into the first slag cavity (62) to form a first slag part (200), flows into the second slag cavity (63) to form a second slag part (300), and flows into the third slag cavity (64) to form a third slag part (400); The slag removal assembly (61) cooperates with the second slag material piece (300) to enable the second slag material piece (300) to be separated from the fixed mold mechanism (4).
2. The die-casting mold with slag and gas removal function according to claim 1, characterized in that: The fixed mold frame (41) comprises a fixed mold frame bottom plate (411) and a fixed mold frame main plate (412); the slag discharge assembly (61) comprises a first insert (615) and a second insert (616); the first insert (615) is mounted on the fixed mold frame bottom plate (411) and is provided with a first mold cavity (615a); the second insert (616) is mounted on the fixed mold frame main plate (412) and is provided with a second mold cavity (616a); the fixed mold core (42) is mounted on the fixed mold frame main plate (412) and is provided with a third mold cavity (422) which is in communication with the fixed mold cavity (421); the first mold cavity (615a), the second mold cavity (616a) and the third mold cavity (422) together form the second slag cavity (63).
3. The die-casting mold with slag and gas removal function according to claim 2, characterized in that: The slag discharge assembly (61) further comprises a slag discharge driving member (611), a push block (612), a push rod mounting block (613) and a push rod (614); the slag discharge driving member (611) is mounted on the fixed mold frame bottom plate (411); the push block (612) is connected to the driving end of the slag discharge driving member (611) and is capable of sliding in the fixed mold frame bottom plate (411); the push rod mounting block (613) is movably mounted on the fixed mold frame bottom plate (411) The push block (612) cooperates with the push rod (614), which is installed on the push rod mounting block (613) and cooperates with the second slag material part (300). Under the drive of the slag discharge driving member (611), the push block (612) can drive the push rod mounting block (613) to move, thereby driving the push rod (614) to push the second slag material part (300), so that the second slag material part (300) is separated from the second slag material cavity (63).
4. The die-casting mold with slag and gas removal function according to claim 3, characterized in that: One end surface of the push block (612) that cooperates with the push rod mounting block (613) is provided with a first inclined surface (612a), and one end surface of the push rod mounting block (613) that cooperates with the push block (612) is provided with a second inclined surface (613a) that cooperates with the first inclined surface (612a).
5. The die-casting mold with slag and gas removal function according to claim 4, characterized in that: The second inclined surface (613a) is provided with a guide protrusion (613b), the first inclined surface (612a) is provided with a guide groove (612b) matched with the guide protrusion (613b), the push rod mounting block (613) is provided with a guide column (619), and the first embedded block (615) is provided with a guide hole (615b) matched with the guide column (619).
6. The die-casting mold with slag and gas removal function according to claim 3, characterized in that: The slag discharge assembly (61) further comprises a first wear-resistant plate (617) and a second wear-resistant plate (618), wherein the first wear-resistant plate (617) is mounted on the fixed mold frame bottom plate (411) and is located between the fixed mold frame bottom plate (411) and the push block (612), and the second wear-resistant plate (618) is arranged on the fixed mold frame bottom plate (411) and is located between the fixed mold frame bottom plate (411) and the push rod mounting block (613).
7. The die-casting mold with slag and gas removal function according to any one of claims 2 to 6, characterized in that: The exhaust assembly (65) includes a first exhaust block (651) arranged on the fixed mold frame main board (412) and a second exhaust block (652) arranged on the movable mold frame (51); the third slag cavity (64) includes a main cavity (641) arranged on the movable mold frame (51), a first branch cavity (642) and a second branch cavity (643) arranged on the fixed mold frame main board (412); one end of the main cavity (641) is connected to the first exhaust block (651) and the second exhaust block (652), and the other end is respectively connected to the first branch cavity (642) and the second branch cavity (643).
8. The die-casting mold with slag and gas removal function according to any one of claims 2 to 6, characterized in that: The invention also comprises a movable frame (1), a base (2), a lifting mechanism (3) and an opening and closing mechanism (7), wherein the base (2) is mounted on the movable frame (1), the movable die frame (51) is mounted on the base (2), the lifting mechanism (3) can be movably mounted on the movable frame (1) and cooperates with the movable die core (52) to eject the die casting (100) from the movable die core (52), and the opening and closing mechanism (7) comprises a plurality of shutters (71) respectively connected to the fixed die frame mainboard (412) and the movable die frame (51).
9. The die-casting mold with slag and gas removal function according to any one of claims 1 to 6, characterized in that: It also includes a core pulling mechanism (8), which is installed on the movable mold frame (51) and cooperates with the mold cavity, and is used to form a concave-convex structure and / or a hole-groove structure on the side of the die casting (100), and the core pulling mechanism (8) includes a first core pulling component (81), a second core pulling component (82), a third core pulling component (83) and a fourth core pulling component (84) distributed around the movable mold core (52); The first core-pulling assembly (81) comprises a first slider (811), a first slide seat (812) and a first core-pulling driving member (813); the first slide seat (812) and the first core-pulling driving member (813) are mounted on the movable mold frame (51); the first slider (811) is mounted on the first slide seat (812); the first slide seat (812) is slidably mounted on the movable mold frame (51) and is connected to the first core-pulling driving member (813); the first core-pulling driving member (813) is used to drive the first slider (811) to approach or move away from the movable mold core (52); The second core-pulling assembly (82) comprises a second slider (821), a second slide seat (822) and a second core-pulling driving member (823), wherein the second slide seat (822) and the second core-pulling driving member (823) are mounted on the movable mold frame (51), the second slider (821) is mounted on the second slide seat (822), the second slide seat (822) is slidably mounted on the movable mold frame (51) and is connected to the second core-pulling driving member (823), and the second core-pulling driving member (823) is used to drive the second slider (821) to approach or move away from the movable mold core (52); The third core-pulling assembly (83) includes a third slider (831), a third slide seat (832) and a third core-pulling driving member (833). The third slide seat (832) and the third core-pulling driving member (833) are installed on the movable mold frame (51). The third slider (831) is installed on the third slide seat (832). The third slide seat (832) is slidably installed on the movable mold frame (51) and is connected to the third core-pulling driving member (833). The third core-pulling driving member (833) is used to drive the third slider (831) to approach or move away from the movable mold core (52). The fourth core-pulling assembly (84) includes a fourth slider (841), a fourth slide (842) and a fourth core-pulling driving member (843); the fourth slide (842) and the fourth core-pulling driving member (843) are installed on the movable mold frame (51); the fourth slider (841) is installed on the fourth slide (842); the fourth slide (842) is slidably installed on the movable mold frame (51) and is connected to the fourth core-pulling driving member (843); the fourth core-pulling driving member (843) is used to drive the fourth slider (841) to approach or move away from the movable mold core (52).
10. The die-casting mold with slag and gas removal function according to any one of claims 1 to 6, characterized in that: The invention also comprises a feeding mechanism (9), wherein the feeding mechanism (9) comprises a diverter cone (91) and a sprue sleeve (92), wherein the sprue sleeve (92) is sleeved on the fixed mold frame (41), the diverter cone (91) is mounted on the movable mold frame (51) and can be sleeved in the sprue sleeve (92) when the mold is closed, a feeding channel (93) is formed between the sprue sleeve (92) and the diverter cone (91), and the fixed mold core (42) is provided with a diverter channel (423), one end of the diverter channel (423) is connected to the feeding channel (93), and the other end is connected to the fixed mold cavity (421).