Modular mold steel capable of being quickly assembled
Through the modular design of mold steel, the U-shaped steel strip and locking components are used to fix the mold steel, which solves the scratch problem caused by shaking during transportation and reduces processing costs.
Patent Information
- Application Number
- CN202422210134.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-08-22
- Estimated Expiration
- 2034-09-10
AI Technical Summary
During the transport process, the mold steel is easily shaken due to vibration, resulting in surface scratches and increases subsequent processing costs.
The modular design adopts the module design, and the mold steel body is fixed through U-shaped steel strip and locking assembly, and the C-shaped hoop and rubber sleeve are used to maintain an appropriate distance to avoid friction and scratches. The fixing force is adjusted using a fastening mechanism.
It effectively avoids scratches caused by shaking during the transfer of mold steel, reducing subsequent surface treatment requirements and processing costs.
Smart Images

Figure CN223253787U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mold steel materials, and more particularly to a modular mold steel material that can be quickly assembled. Background Art
[0002] Mold steel is a type of steel used to manufacture molds such as cold stamping dies, hot forging dies, and die casting dies. Mold materials are the material and technical foundation of the mold manufacturing industry, with mold steel being a traditional mold material. Its variety, specification, and quality play a decisive role in mold performance, service life, and manufacturing cycle. In recent years, mold steel production, production technology, process equipment, quality, and variety have all seen rapid growth both domestically and internationally. This development has also driven the development of industrial products towards higher quality, more personalized, and higher value-added products. Molds have a wide range of uses, and a wide range of materials are used to manufacture them. Among mold materials, mold steel is undoubtedly the most widely used.
[0003] In the prior art, mold steels are usually stacked and transported by cart to a professional processing workshop or a designated processing enterprise after completing a simple segmentation operation. Since the mold steels are simply stacked, they are prone to shaking due to vibration and other reasons during transportation. The shaking mold steels rub against each other, which can easily cause scratches on the steel surface. In the subsequent mold processing process, the surface scratches need to be processed, resulting in an increase in mold preparation consumables, thereby increasing the cost of mold processing. In view of this, we propose a modular mold steel that can be quickly assembled. Utility Model Content
[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to actual needs, and provide a modular and quickly assembled mold steel to solve the technical problem that the current mold steel is easily shaken due to vibration and other reasons during transportation, and the shaking mold steel rubs against each other, which easily causes scratches on the steel surface. The scratches on the surface need to be processed during processing, resulting in an increase in mold preparation consumables and thus an increase in mold processing costs.
[0005] In order to solve the above technical problems, the present invention provides the following technical solutions: a modular mold steel material that can be quickly assembled, comprising a plurality of mold steel bodies and locking assemblies symmetrically arranged at both ends of the plurality of mold steel bodies;
[0006] The locking assembly includes a plurality of end fixing assemblies respectively provided at one end of the corresponding mold steel body and a U-shaped steel belt arranged at both ends of the plurality of end fixing assemblies, and both ends of the U-shaped steel belt are jointly constructed with a fastening mechanism for adjusting the fixing force;
[0007] The end fixing assembly includes a C-shaped hoop A and a C-shaped hoop B detachably connected to the C-shaped hoop A, wherein the C-shaped hoop A and the C-shaped hoop B form a fixing hoop for fixing one end of the mold steel body, and a rubber sleeve is arranged inside the fixing hoop and is sleeved on one end of the mold steel body;
[0008] The top ends of both sides of the C-shaped hoop A are each constructed with a through-ear, and a through-groove for the U-shaped steel belt to pass through is provided in the center of the bottom end of the through-ear.
[0009] The utility model arranges two locking components at both ends of a plurality of mold steel bodies. During the transportation process, the U-shaped steel belt can be used in conjunction with a plurality of end fixing components to bundle and position the plurality of mold steel bodies to form modular mold steel. Since the U-shaped steel belt passes through the two piercing ears on both sides of the C-shaped hoop A, the bundling is not prone to loosening due to shaking, and the mold steel bodies are kept at an appropriate distance from each other by the plurality of end fixing components. Therefore, the mold steel bodies with modular fixation are more conducive to transportation and stacking, effectively avoiding the problem of scratches on the mold steels caused by friction between each other due to shaking, reducing the subsequent surface treatment of the mold steel, and effectively reducing the consumables and costs required for mold processing.
[0010] Preferably, the fastening mechanism includes two bosses, which are symmetrically constructed at both ends of the U-shaped steel belt, and circular holes are centrally opened on the facing surfaces of the two bosses, and fasteners are passed through the two circular holes.
[0011] Preferably, the fastener includes a fastening screw and a fastening nut, the fastening screw is passed through the two circular holes, and the fastening nut is threadedly mounted on one end of the fastening screw.
[0012] Preferably, a guide handle is constructed on one side of the top end of the facing surfaces of the two protrusions, and a through slot for the corresponding guide handle to pass through is opened in the center of the other side of the protrusion, and the two guide handles form handles for users to hold.
[0013] Preferably, both ends of the C-shaped hoop A are constructed with hinged seats, and both ends of the C-shaped hoop B are symmetrically constructed with two hinged ears arranged on both sides of the corresponding hinged seats.
[0014] Preferably, one side of the hinge seat and the two hinge ears is provided with a socket, and a plurality of the sockets are commonly provided with a pin, and one end of the pin is threadedly fitted with a limit nut.
[0015] Preferably, a positioning key is configured at the center of the bottom end of the C-shaped hoop A, and a positioning groove for the positioning key to be engaged is provided at the center of the top end of the C-shaped hoop B.
[0016] Compared with the prior art, the beneficial effects of the present invention are:
[0017] 1. The utility model sets two locking components at both ends of several mold steel bodies. During the transportation process, the U-shaped steel belt can be used to cooperate with several end fixing components to bundle and position the several mold steel bodies to form modular mold steel. Since the U-shaped steel belt passes through the two through ears on both sides of the C-shaped hoop A, the bundling is not easy to loosen due to shaking, and the mold steel bodies are kept at an appropriate distance from each other by the several end fixing components. Therefore, the modular fixed mold steel body is more conducive to transportation and stacking, effectively avoiding the problem of scratches caused by friction between mold steels due to shaking, reducing the subsequent surface treatment of the mold steel, and effectively reducing the consumables and costs required for mold processing.
[0018] 2. The utility model also arranges the end fixing components by arranging the C-type hoop A connected to the C-type hoop B at both ends of the mold steel body, and using rubber sleeves to keep the C-type hoop A and the C-type hoop B at a distance from the mold steel body, and the adjacent end fixing components can be positioned by the snap-fit cooperation of the positioning key and the positioning groove, and the rubber sleeve can effectively reduce the generation of friction scratches. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0020] Figure 2 This is a schematic structural diagram of the locking assembly in the present utility model;
[0021] Figure 3 This is a partial structural diagram of the mold steel body and the end fixing assembly in the open state in the present utility model;
[0022] Figure 4 This is a schematic structural diagram of the end fixing assembly in the present invention in a disassembled state.
[0023] Description of the numbers in the figure:
[0024] 1. Mold steel body; 2. Locking assembly; 201. U-shaped steel belt; 202. Boss; 203. Guide handle; 204. Fastener; 3. End fixing assembly; 301. C-type hoop A; 302. C-type hoop B; 303. Threading ear; 304. Rubber sleeve; 305. Articulated ear; 306. Articulated seat; 307. Latch; 308. Positioning key; 309. Positioning slot. DETAILED DESCRIPTION
[0025] like Figures 1 to 4As shown, the present invention relates to a modular mold steel material that can be quickly assembled, comprising a plurality of mold steel bodies 1 and locking assemblies 2 symmetrically arranged at both ends of the plurality of mold steel bodies 1;
[0026] In an embodiment of the present invention, in order to avoid the problem of scratches on the mold steel materials caused by friction between each other due to shaking, the locking assembly 2 includes a plurality of end fixing assemblies 3 respectively provided at one end of the corresponding mold steel main body 1 and U-shaped steel belts 201 arranged at both ends of the plurality of end fixing assemblies 3. The two ends of the U-shaped steel belt 201 are jointly constructed with a fastening mechanism for adjusting the fixing force. The end fixing assembly 3 includes a C-shaped hoop A301 and a C-shaped hoop B302 detachably connected to the C-shaped hoop A301. The C-shaped hoop A301 and the C-shaped hoop B302 form a fixing hoop for fixing one end of the mold steel main body 1, and a rubber sleeve 304 is arranged inside the fixing hoop and is sleeved on one end of the mold steel main body 1. The top ends of both sides of the C-shaped hoop A301 are constructed with a through ear 303, and the bottom end of the through ear 303 is provided with a center for the U-shaped The steel belt 201 passes through the through groove, and two locking components 2 are set at both ends of several mold steel bodies 1. During the transportation process, the U-shaped steel belt 201 can be used to cooperate with several end fixing components 3 to bundle and position several mold steel bodies 1 to form modular mold steel. Since the U-shaped steel belt 201 passes through the two piercing ears 303 on both sides of the C-shaped hoop A301, the bundling is not easy to loosen due to shaking, and the mold steel bodies 1 are kept at an appropriate distance from each other through several end fixing components 3. Therefore, the modular fixed mold steel body 1 is more conducive to transportation and stacking, effectively avoiding the problem of scratches on the mold steels caused by friction between each other due to shaking, reducing the subsequent surface treatment of the mold steel, and effectively reducing the consumables and costs required for mold processing.
[0027] In the embodiment of the present invention, in order to facilitate the transportation, the fastening mechanism includes two convex seats 202, the two convex seats 202 are symmetrically constructed at the two ends of the U-shaped steel belt 201, and the facing surfaces of the two convex seats 202 are centrally opened with a circular hole, and the two circular holes are penetrated with fasteners 204, and the fasteners 204 include a fastening screw and a fastening nut. The fastening screw is penetrated in the two circular holes, and the fastening bolt is threadedly installed at one end of the fastening screw. The top of the facing surface of the two convex seats 202 is a A guide handle 203 is constructed on both sides, and a through slot for the corresponding guide handle 203 to pass through is opened in the center of the other side of the protrusion 202. The two guide handles 203 form handles for users to hold. The fastening force of the U-shaped steel belt 201 on the several end fixing components 3 is adjusted by screwing the fastening nut on the fastening screw. During adjustment, the two guide handles 203 move toward each other and pass through the through slots on the opposite protrusions 202 to form handles for workers to hold, so as to facilitate transportation.
[0028] In the embodiment of the present invention, in order to further reduce the generation of friction scratches, both ends of the C-type hoop A301 are constructed with hinged seats 306, and both ends of the C-type hoop B302 are symmetrically constructed with two hinged ears 305 arranged on both sides of the corresponding hinged seats 306, and one side of the hinged seat 306 and the two hinged ears 305 are provided with a socket, and a plurality of sockets are commonly arranged with a pin 307, one end of the pin 307 is threadedly mounted due to the limit nut, a positioning key 308 is constructed at the center of the bottom end of the C-type hoop A301, and the C-type hoop B302 is symmetrically constructed with two hinged ears 305 arranged on both sides of the corresponding hinged seats 306. A positioning groove 309 for the positioning key 308 to be engaged is provided at the top center. Through the setting of the end fixing component 3, the C-type hoop A301 connected to the C-type hoop B302 is arranged at both ends of the mold steel body 1, and the C-type hoop A301 and the C-type hoop B302 are kept at a distance from the mold steel body 1 through the rubber sleeve 304, and the adjacent end fixing components 3 can be positioned by the engagement of the positioning key 308 with the positioning groove 309, and the rubber sleeve 304 can effectively reduce the generation of friction scratches.
[0029] Working principle: This embodiment provides a modular mold steel that can be quickly assembled. When in use, two rubber sleeves 304 are sleeved on the two ends of the mold steel body 1, and the C-shaped hoop A301 and C-shaped hoop B302 are sleeved on the rubber sleeves 304 on the mold steel body 1, and then the pins 307 are used for plugging and positioning. Then, several mold steel bodies 1 with end fixing components 3 are stacked, so that the positioning key 308 on the upper C-shaped hoop A301 is engaged with the positioning groove 309 on the lower C-shaped hoop B302, and then the two ends of the U-shaped steel belt 201 are passed through the through ears 303 on several C-shaped hoop A301, and then the fastening force of the U-shaped steel belt 201 on the several end fixing components 3 is adjusted by screwing the fastening nut on the fastening screw. During adjustment, the two guide handles 203 move toward each other and pass through the through slots on the opposite protrusions 202 to form handles for workers to hold, so as to facilitate transportation.
[0030] The embodiments disclosed in the present invention are preferred embodiments, but are not limited to them. Ordinary technicians in this field can easily understand the spirit of the present invention based on the above embodiments and make different extensions and changes. As long as they do not deviate from the spirit of the present invention, they are all within the scope of protection of the present invention.
Claims
1. A modular mold steel material that can be quickly assembled, characterized in that: It comprises a plurality of mold steel bodies (1) and locking components (2) symmetrically arranged at both ends of the plurality of mold steel bodies (1); The locking assembly (2) comprises a plurality of end fixing assemblies (3) respectively arranged at one end of the corresponding mold steel body (1) and a U-shaped steel belt (201) passing through both ends of the plurality of end fixing assemblies (3), wherein both ends of the U-shaped steel belt (201) are jointly constructed with a fastening mechanism for adjusting the fixing force; The end fixing assembly (3) comprises a C-shaped hoop A (301) and a C-shaped hoop B (302) detachably connected to the C-shaped hoop A (301), wherein the C-shaped hoop A (301) and the C-shaped hoop B (302) form a fixing hoop for fixing one end of the mold steel body (1), and a rubber sleeve (304) is arranged inside the fixing hoop and is sleeved on one end of the mold steel body (1); The top ends of both sides of the C-shaped hoop A (301) are both constructed with a through-ear (303), and a through-groove for the U-shaped steel belt (201) to pass through is provided in the center of the bottom end of the through-ear (303).
2. The modular mold steel material that can be quickly assembled according to claim 1, characterized in that: The fastening mechanism comprises two bosses (202), the two bosses (202) are symmetrically constructed at the two ends of the U-shaped steel belt (201), and the facing surfaces of the two bosses (202) are centrally provided with a circular hole, and the two circular holes are penetrated by fasteners (204).
3. The modular mold steel material capable of rapid assembly according to claim 2, characterized in that: The fastener (204) comprises a fastening screw and a fastening nut, wherein the fastening screw is passed through the two circular holes, and the fastening nut is threadably mounted on one end of the fastening screw.
4. The modular mold steel material capable of rapid assembly according to claim 2, characterized in that: A guide handle (203) is constructed on one side of the top end of the facing surface of the two protrusions (202), and a through slot for the corresponding guide handle (203) to pass through is opened in the center of the other side of the protrusion (202), and the two guide handles (203) form a handle for the user to hold.
5. The modular mold steel material capable of rapid assembly according to claim 1, characterized in that: Both ends of the C-shaped hoop A (301) are constructed with hinged seats (306), and both ends of the C-shaped hoop B (302) are symmetrically constructed with two hinged ears (305) arranged on both sides of the corresponding hinged seats (306).
6. The modular mold steel material capable of rapid assembly according to claim 5, characterized in that: One side of the hinge seat (306) and the two hinge ears (305) is provided with a socket, and a plurality of the sockets are provided with a latch (307) in common, and one end of the latch (307) is threadedly fitted with a limit nut.
7. The modular mold steel material capable of rapid assembly according to claim 1, characterized in that: A positioning key (308) is constructed at the center of the bottom end of the C-shaped hoop A (301), and a positioning groove (309) for the positioning key (308) to be buckled is opened at the center of the top end of the C-shaped hoop B (302).