Die-cast zinc alloy ingot capable of being stacked and bundled stably

By designing specific structures for die-cast zinc alloy ingot components, binding components, and stabilizing components, the problem of collapse during the stacking of die-cast zinc alloy ingots was solved, achieving stable stacking and binding, and improving safety and binding efficiency.

CN223658838UActive Publication Date: 2025-12-12WENZHOU SHENHUI ALLOY CO LTD
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Patent Information

Application Number
CN202520158928.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2025-12-12
Estimated Expiration
2035-01-23

AI Technical Summary

Technical Problem

Existing die-cast zinc alloy ingots are prone to collapse during stacking, leading to material damage and safety hazards.

Method used

A structure including a die-cast zinc alloy ingot assembly, a binding assembly, and a stabilizing assembly was designed. Through specific structural design and the extension of support components and the insertion of auxiliary components, the zinc alloy ingots are ensured to be stably arranged layer by layer during the stacking process, thereby enhancing overall stability and preventing collapse.

Benefits of technology

This improves the safety of die-cast zinc alloy ingots during transportation and storage, reduces the difficulty and complexity of bundling, and ensures the stability and safety after bundling.

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Abstract

The utility model relates to the technical field of die-cast zinc alloy ingots, in particular to a die-cast zinc alloy ingot capable of being stacked and bundled stably, which comprises a die-cast zinc alloy ingot assembly, the die-cast zinc alloy ingot assembly is mounted on the inner side of a bundling assembly, the outer side of the bundling assembly is fixedly connected with a stabilizing assembly, and the die-cast zinc alloy ingot assembly comprises a middle fixing plate. The bundling assembly comprises a bottom frame, one side of the bottom frame is fixedly connected with a first bearing plate and a second bearing plate, one side of the bottom frame is fixedly connected with an external connection plate through bolts, one side of the external connection plate is fixedly connected with an upper frame through bolts, and the upper frame is fixedly connected with a lower frame through bolts. According to the die-cast zinc alloy ingot stacking device, die-cast zinc alloy ingots can be stably arranged layer by layer in the stacking process, the collapse phenomenon caused by unstable stacking is effectively avoided, and meanwhile the difficulty and complexity in later bundling are reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to die casting zinc alloy ingot technical field, concretely is a kind of die casting zinc alloy ingot capable of stable stacking bundling. BACKGROUND

[0002] Die casting zinc alloy ingot is a kind of metal material for die casting process, usually in the form of ingot, with good casting performance, mechanical property and dimensional accuracy, it is formed by die casting process after zinc alloy melting is injected into mould and rapidly cooled, widely used in manufacturing various automobile parts, hardware, electronic shell etc., its surface is smooth, internal organization is dense, can satisfy the requirement of high precision and high strength, and with good corrosion resistance and processing performance, it is indispensable important material in modern manufacturing industry;

[0003] Bundled ingot is more stable, can prevent collapse due to vehicle bumping or improper stacking during transportation, ensure transportation safety, and at the same time can ensure that die casting zinc alloy ingot does not scatter during transportation and storage, reduce damage caused by collision or sliding;

[0004] In the existing die casting zinc alloy ingot bundling process, zinc alloy ingot is usually stacked into a pile first, and then fixed using bundling belt, this process has many shortcomings, during stacking, if improper operation, zinc alloy ingot pile may collapse, which not only causes material damage, but also may cause safety accident, bring danger to workers, therefore, aiming at the above problems, a kind of die casting zinc alloy ingot capable of stable stacking bundling is provided. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a kind of die casting zinc alloy ingot capable of stable stacking bundling, to solve the problem that, if improper operation during stacking, zinc alloy ingot pile may collapse, which not only causes material damage, but also may cause safety accident, bring danger to workers.

[0006] To achieve the above object, the utility model provides the following technical scheme:

[0007] The utility model provides a kind of die-casting zinc alloy ingot capable of stable stacking binding, including die-casting zinc alloy ingot component, the die-casting zinc alloy ingot component is installed in the inside of binding component, the outside of the binding component is fixedly connected with firm component, the die-casting zinc alloy ingot component includes middle fixed plate, the outside of the middle fixed plate is fixedly connected with taper plate, taper groove is arranged between the taper plate, the inside of the middle fixed plate is equipped with reserved socket, the binding component includes chassis, the side of the chassis is fixedly connected with first bearing plate and second bearing plate, the side of the chassis is fixedly connected with external connection plate by bolt, the side of the external connection plate is fixedly connected with upper frame by bolt, the firm component includes plug-in column, the upper end of the plug-in column is equipped with threaded column hole, the bottom end of the plug-in column is fixedly connected with screw rod, the screw rod is inserted in the inside of through hole, the through hole is equipped in the inside of first plug-in plate, the bottom end of the first plug-in plate is fixedly connected with built-in column, the bottom end of the built-in column is fixedly connected with second plug-in plate.

[0008] As the further optimization of the utility model, the number of the die-casting zinc alloy ingot component is multiple, the shape of the taper plate is a four-pyramid, and the top end and the bottom end of the middle fixed plate are fixedly connected with taper plates.

[0009] As the further optimization of the utility model, the reserved socket penetrates the inside of the middle fixed plate from top to bottom, multiple reserved sockets are arranged in the inside of the middle fixed plate, the outside of the plug-in column is inserted into the inside of the reserved socket, and part of the taper plates are attached to the inside of the taper groove.

[0010] As the further optimization of the utility model, the bottom end of the middle fixed plate is attached to the upper end of the second bearing plate or the first bearing plate, the outside of the lower taper plate is attached to the upper end of the first bearing plate or the second bearing plate, and the outside of the upper taper plate is attached to the lower end of the upper frame.

[0011] As the further optimization of the utility model, the left side and the right side of the second bearing plate are fixedly connected with the chassis, the front end and the rear end of the chassis are fixedly connected with the second bearing plate, the shapes of the second bearing plate and the first bearing plate are trapezoidal bodies, the number of the first bearing plate is multiple, the inside of the chassis and the upper frame close to the external connection plate are equipped with threaded holes, and the inside of the upper frame is spirally attached with a screw.

[0012] As the further optimization of the utility model, the inside of the upper frame close to the plug-in column is equipped with a straight hole, the inside of the chassis close to the screw rod is equipped with a threaded hole, and the screw rod is spirally installed in the inside of the threaded hole of the chassis.

[0013] As the further optimization of the utility model, the outside of the first plug-in plate and the second plug-in plate is attached to the outside of the taper plate, the structure of the first plug-in plate is the same as that of the second plug-in plate, and the through hole penetrates the inside of the first plug-in plate.

[0014] Compared with the prior art, the die-casting zinc alloy ingot assembly, the bundling assembly and the stabilizing assembly are arranged, the device is provided with specific structure, the die-casting zinc alloy ingot can be arranged layer by layer stably in the stacking process, and after being stacked to a certain height, the length of the supporting part can be further lengthened and the auxiliary part can be inserted in the middle layer to further enhance the overall stability, the collapse phenomenon caused by unstable stacking is effectively avoided, the safety of the staff is greatly improved, the difficulty and complexity of the later bundling are reduced, the bundling efficiency and the stability after bundling are improved, and the safety of the die-casting zinc alloy ingot in the transportation and storage process is ensured.

[0015] In the utility model, through setting up the die-casting zinc alloy ingot assembly, the bundling assembly and the stabilizing assembly, the device is provided with specific structure, the die-casting zinc alloy ingot can be arranged layer by layer stably in the stacking process, and after being stacked to a certain height, the length of the supporting part can be further lengthened and the auxiliary part can be inserted in the middle layer to further enhance the overall stability, the collapse phenomenon caused by unstable stacking is effectively avoided, the safety of the staff is greatly improved, the difficulty and complexity of the later bundling are reduced, the bundling efficiency and the stability after bundling are improved, and the safety of the die-casting zinc alloy ingot in the transportation and storage process is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the whole structure schematic view of the utility model;

[0017] Figure 2 It is die-casting zinc alloy ingot assembly structure schematic view of the utility model;

[0018] Figure 3 It is the cut open structure schematic view of the fixed plate in the utility model;

[0019] Figure 4 It is the cone plate structure schematic view of the utility model;

[0020] Figure 5 It is the bundling assembly structure schematic view of the utility model;

[0021] Figure 6 It is the stabilizing assembly structure schematic view of the utility model.

[0022] Fig. 1, die-casting zinc alloy ingot assembly;11, fixed plate;12, cone plate;13, taper groove;14, reserved socket;

[0023] 2, bundling assembly;21, bottom frame;22, first bearing plate;23, second bearing plate;24, external plate;25, upper frame;

[0024] 3, stabilizing assembly;31, insertion column;32, threaded column hole;33, screw;34, through hole;35, first insertion plate;36, built-in column;37, second insertion plate. DETAILED DESCRIPTION

[0025] Clearly, the described embodiments are merely a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative efforts under the premise that no creative efforts are made belong to the scope of protection of the present application.

[0026] It is to be noted that the terms used herein are merely for the purpose of describing specific embodiments, and are not intended to limit the exemplary embodiments according to the present application. As used herein, the singular form is intended to include the plural form, unless the context clearly indicates otherwise, and it should also be understood that, when the terms "comprise" and / or "include" are used in the specification, there is a presence of a feature, step, operation, device, component, and / or combination thereof.

[0027] Please refer to Figures 1-6 The present application provides a technical scheme:

[0028] A kind of stable stacking bundling of die casting zinc alloy ingot, including die casting zinc alloy ingot component 1, die casting zinc alloy ingot component 1 is installed in the inner side of bundling component 2, bundling component 2 outer side is fixedly connected with firm component 3, die casting zinc alloy ingot component 1 includes middle solid plate 11, middle solid plate 11 outer side is fixedly connected with taper plate 12, taper plate 12 between being provided with taper groove 13, middle solid plate 11 inner side is provided with reserved socket 14, bundling component 2 includes chassis 21, one side of chassis 21 is fixedly connected with first bearing plate 22 and second bearing plate 23, one side of chassis 21 is fixedly connected with external connection plate 24 by bolt, one side of external connection plate 24 is fixedly connected with upper frame 25 by bolt, firm component 3 includes plug-in column 31, plug-in column 31 upper end is provided with threaded column hole 32, plug-in column 31 bottom end is fixedly connected with screw rod 33, screw rod 33 is inserted in the inner side of through hole 34, through hole 34 is provided in the inner side of first plug-in plate 35, first plug-in plate 35 bottom end is fixedly connected with built-in column 36, built-in column 36 bottom end is fixedly connected with second plug-in plate 37.

[0029] As a further embodiment of the present application, the number of die casting zinc alloy ingot components 1 is multiple, the shape of the taper plate 12 is a four-pyramid, the top and bottom ends of the middle solid plate 11 are fixed with the taper plate 12, the reserved socket 14 penetrates the inner side of the middle solid plate 11 up and down, multiple reserved sockets 14 are provided in the inner side of the middle solid plate 11, the outer side of the plug-in column 31 is inserted into the reserved socket 14, part of the taper plate 12 is attached to the inner side of the taper groove 13, through the above setting, the stability of the stacking between the die casting zinc alloy ingot components 1 can be improved, the die casting zinc alloy ingot components 1 pull each other, so that the die casting zinc alloy ingot can be arranged stably layer by layer during stacking;

[0030] As a further implementation of the present scheme, the bottom end of the fixed plate 11 in the lower end is attached to the upper end of the second bearing plate 23 or the first bearing plate 22, the outer side of the lower end taper plate 12 is attached to the upper end of the first bearing plate 22 or the second bearing plate 23, and the outer side of the upper end taper plate 12 is attached to the lower end of the upper frame 25. Through the above setting, through the cooperation between the die-casting zinc alloy ingot assembly 1 and the bundling assembly 2, the die-casting zinc alloy ingot assembly 1 is supported, and through the design of the upper frame 25, the bundled die-casting zinc alloy ingot assembly 1 is fixed;

[0031] As a further implementation of the present scheme, the second bearing plate 23 is fixed on the left and right sides of the bottom frame 21, the bottom frame 21 is fixed near the front end and the rear end, and the second bearing plate 23 and the first bearing plate 22 are both in the shape of a trapezoidal body. The number of first bearing plates 22 is multiple, the inner side of the bottom frame 21 and the upper frame 25 near the outer connecting plate 24 is provided with a threaded hole, the inner side of the upper frame 25 is spirally attached with a screw, the inner side of the upper frame 25 near the insertion column 31 is provided with a straight hole, the inner side of the threaded hole of the bottom frame 21 near the screw rod 33 is provided with a threaded hole, and the screw rod 33 is spirally installed in the threaded hole of the bottom frame 21. Through the above setting, the second bearing plate 23 and the first bearing plate 22 are provided to stably support the die-casting zinc alloy ingot assembly 1, the outer connecting plate 24 is provided to prevent the die-casting zinc alloy ingot assembly 1 from moving left and right, and prevent the die-casting zinc alloy ingot assembly 1 from collapsing left and right. Through the setting of the bottom frame 21, the insertion column 31 is fixed, and the insertion column 31 is vertically erected on the upper part of the bottom frame 21;

[0032] As a further implementation of the present scheme, the outer side of the first insertion plate 35 and the second insertion plate 37 is attached to the outer side of the taper plate 12, the structure of the first insertion plate 35 is the same as that of the second insertion plate 37, and the through hole 34 penetrates the inner side of the first insertion plate 35. Through the above setting, the stability of the bundled die-casting zinc alloy ingot assembly 1 is improved, and the difficulty and complexity of the later bundling are reduced.

[0033] Work flow: when stacking and bundling multiple die-casting zinc alloy ingot assemblies 1, first screw the screw rod 33 at the bottom end of the insertion column 31 into the threaded hole inside the bottom frame 21, then install multiple insertion columns 31, align the reserved insertion opening 14 at the front end of the die-casting zinc alloy ingot assembly 1 with the insertion column 31, insert the reserved insertion opening 14 of the die-casting zinc alloy ingot assembly 1 outside the insertion column 31, align the taper plate 12 of the die-casting zinc alloy ingot assembly 1 with the upper end of the second load-bearing plate 23, stick the middle fixed plate 11 of multiple die-casting zinc alloy ingot assemblies 1 together, and then stick the middle fixed plate 11 of the die-casting zinc alloy ingot assembly 1 behind, place the die-casting zinc alloy ingot assembly 1 on the upper end of the first load-bearing plate 22, until the last one is placed on the upper end of the second load-bearing plate 23, and is inserted outside the insertion column 31, when the first layer of die-casting zinc alloy ingot assemblies 1 is laid, the second layer of die-casting zinc alloy ingot assemblies 1 is laid, at this time, the die-casting zinc alloy ingot assembly 1 is placed on the upper part of the die-casting zinc alloy ingot assembly 1 at the front end, and the lower end of the taper plate 12 of the die-casting zinc alloy ingot assembly 1 is at the rear end of the second taper plate 12 on the upper part of the die-casting zinc alloy ingot assembly 1 at the lower end, the taper plate 12 at the lower part of the die-casting zinc alloy ingot assembly 1 at the upper end is installed inside the taper groove 13, and then arranged in turn, so that the lowest die-casting zinc alloy ingot assembly 1 leaks out, and the die-casting zinc alloy ingot assembly 1 is arranged in layers according to the above principle, the gap between the taper plate 12 and the taper groove 13 of the die-casting zinc alloy ingot assembly 1 is set, the stability of the die-casting zinc alloy ingot assembly 1 after stacking can be improved by the cooperation of the taper plate 12 and the taper groove 13, when the die-casting zinc alloy ingot assembly 1 is stacked to a certain height, the screw rod 33 at the bottom end of the other insertion column 31 is installed in the threaded column hole 32 inside the upper part of the previously installed insertion column 31, the length of the insertion column 31 is extended, and then the first insertion plate 35 and the second insertion plate 37 are inserted into the middle layer of the die-casting zinc alloy ingot assembly 1, which can prevent the die-casting zinc alloy ingot assembly 1 from collapsing due to instability during stacking, improve the safety of the workers, and fix the upper frame 25, the bottom frame 21 and the external plate 24 by bolts after stacking, which improves the stability of the die-casting zinc alloy ingot assembly 1 after bundling, and reduces the difficulty and complexity of later bundling.

[0034] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A die-cast zinc alloy ingot capable of stable stacking and bundling, comprising a die-cast zinc alloy ingot assembly (1), characterized in that: The die-cast zinc alloy ingot assembly (1) is installed on the inner side of the binding assembly (2), and a stabilizing assembly (3) is fixedly connected to the outer side of the binding assembly (2). The die-cast zinc alloy ingot assembly (1) includes a central solid plate (11), a conical plate (12) is fixedly connected to the outside of the central solid plate (11), a conical groove (13) is provided between the conical plates (12), and a reserved insertion slot (14) is opened on the inside of the central solid plate (11). The binding assembly (2) includes a base frame (21), a first load-bearing plate (22) and a second load-bearing plate (23) are fixedly connected to one side of the base frame (21), and an outer connecting plate (24) is fixedly connected to one side of the base frame (21) by bolts. The upper frame (25) is fixedly connected to one side by bolts. The stabilizing component (3) includes a plug (31). The upper end of the plug (31) is provided with a threaded post hole (32). The bottom end of the plug (31) is fixedly connected with a screw (33). The screw (33) is inserted into the inside of the through opening (34). The through opening (34) is opened on the inside of the first insert plate (35). The bottom end of the first insert plate (35) is fixedly connected with an internal column (36). The bottom end of the internal column (36) is fixedly connected with a second insert plate (37).

2. The die-cast zinc alloy ingot capable of stable stacking and bundling according to claim 1, characterized in that: The number of die-cast zinc alloy ingot components (1) is multiple, the cone plate (12) is in the shape of a quadrangular pyramid, and the cone plate (12) is fixed at both the top and bottom of the middle solid plate (11).

3. The die-cast zinc alloy ingot capable of stable stacking and bundling according to claim 1, characterized in that: The reserved socket (14) extends through the inner side of the middle solid plate (11) from top to bottom. Multiple reserved sockets (14) are provided on the inner side of the middle solid plate (11). The outer side of the insert (31) is inserted into the interior of the reserved socket (14). Part of the cone plate (12) is in contact with the inner side of the cone groove (13).

4. The die-cast zinc alloy ingot capable of stable stacking and bundling according to claim 1, characterized in that: The bottom end of the lower solid plate (11) is attached to the upper end of the second load-bearing plate (23) or the first load-bearing plate (22), the outer side of the lower cone plate (12) is attached to the upper end of the first load-bearing plate (22) or the second load-bearing plate (23), and the outer side of the upper cone plate (12) is attached to the lower end of the upper frame (25).

5. The die-cast zinc alloy ingot capable of stable stacking and bundling according to claim 1, characterized in that: The second load-bearing plate (23) is fixed to the base frame (21) on both the left and right sides. The base frame (21) is fixed to the second load-bearing plate (23) near the front and rear ends. The second load-bearing plate (23) and the first load-bearing plate (22) are both trapezoidal in shape. There are multiple first load-bearing plates (22). The base frame (21) and the upper frame (25) are provided with threaded holes on the inner side near the outer plate (24). The upper frame (25) is screwed on the inner side.

6. The die-cast zinc alloy ingot capable of stable stacking and bundling according to claim 1, characterized in that: The upper frame (25) has a straight hole on the inner side near the insert (31), and the base frame (21) has a threaded hole on the inner side near the screw (33). The screw (33) is spirally installed inside the threaded hole of the base frame (21).

7. A die-cast zinc alloy ingot capable of stable stacking and bundling according to claim 1, characterized in that: The outer sides of the first insert plate (35) and the second insert plate (37) are both attached to the outer side of the cone plate (12). The structure of the first insert plate (35) is the same as that of the second insert plate (37). The through hole (34) penetrates the inner side of the first insert plate (35).