Pressing equipment for steelmaking slagging fast fluxing agent

By introducing extrusion components and a slider structure into the pressing equipment for quick-melting agent of steelmaking slag, the problem of material overflow caused by uneven manual feeding was solved, and the uniform distribution of materials in the tank and the stability of the extrusion process were achieved, thereby improving the operational reliability of the equipment and the quality of the finished product.

CN223669137UActive Publication Date: 2025-12-16ZHEJIANG ZHIFENG NEW MATERIALS TECHNOLOGY GROUP CO LTD
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Patent Information

Application Number
CN202423172451.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2025-12-16
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

When transporting steelmaking slag quick-melting agent powder in small factories, it is difficult to ensure accuracy and uniformity of manual feeding, resulting in uneven feeding in the extrusion tank, with excessive material in some areas, which easily overflows.

Method used

A pressing device for quick-melting agent of steelmaking slag was designed. It adopts an extrusion assembly and a slider structure. The pressing plate is driven by a cylinder to press down. The extrusion block cooperates with the piston disc to ensure that the material is evenly distributed in the trough and prevent overflow. The pressing plate is kept stable by the cooperation of the slider and the chute, which improves the extrusion accuracy.

Benefits of technology

It effectively prevents material from overflowing during the extrusion process, ensures uniform material distribution within the trough, reduces cleaning workload, and improves the accuracy of feeding and the precision and consistency of the extrusion process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of pressing equipment, and discloses pressing equipment for a steelmaking slag melting fast flux, which comprises a mounting frame, a base plate arranged in the mounting frame, a placing plate arranged at the end part of the base plate, a pressing mechanism correspondingly arranged above the placing plate, and a first pressing plate arranged at the bottom of the pressing mechanism, an extrusion assembly is arranged on the side portion of the first pressing plate, the extrusion assembly is used in cooperation with the containing plate, through the arrangement of the extrusion assembly, materials are manually placed into the material groove, an air cylinder body is started, the air cylinder body drives the first pressing plate to press downwards, and a second extrusion block on the side portion of the first pressing plate; and a first extrusion block on the side portion of the second extrusion block presses the materials in the material groove, the first extrusion block drives a piston disc to be clamped in the cavity in a sliding mode, the extrusion balls are blown up, the piston disc is clamped with the inner wall of the material groove in a sliding mode, the materials are prevented from overflowing, and in the extrusion process, the first extrusion block drives the piston disc to be clamped in the cavity in a sliding mode.
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Description

TECHNICAL FIELD

[0001] The utility model relates to pressing equipment technical field, concretely is a kind of pressing equipment for steelmaking slagging flux. BACKGROUND

[0002] The pressing equipment for steelmaking slagging flux is mainly used for quickly melting and separating the slag generated in the steelmaking process to improve the steelmaking efficiency and the quality of molten steel. This equipment usually presses the flux powder or other additives into hard particles or blocks to quickly react in high-temperature slag and promote the fluidity and melting of the slag. The press body is the core part of the pressing equipment, usually driven by a hydraulic system, which can apply high pressure to press the powder into particles with specific shape and density. The mold is an important part of the press, and its design and material selection directly affect the shape, size and density of the pressed product. The mold is usually made of wear-resistant and high-temperature-resistant alloy materials. The feeding system is responsible for uniformly delivering the flux powder to the mold to ensure consistent product quality for each pressing. The control system is usually equipped with advanced control systems in modern pressing equipment, which can accurately control the pressure, speed and time of pressing to ensure the stability and consistency of product quality. Safety protection devices are essential for the operation of the pressing equipment under high pressure, including emergency stop buttons, pressure sensors and protective covers to ensure the safety of operators.

[0003] Currently, some small factories usually use manual delivery when transporting flux powder, but manual feeding cannot guarantee the accuracy and uniformity of the feeding amount each time, which may cause uneven feeding in the extrusion tank, excessive material in some areas, and easy overflow during extrusion. Therefore, it does not meet the existing needs, and for this purpose, we propose a pressing equipment for steelmaking slagging flux. INVENTION CONTENTS

[0004] The utility model provides a kind of pressing equipment for steelmaking slagging flux, with the beneficial effects of effectively preventing material overflow during extrusion and ensuring uniform distribution of material in the tank. The above-mentioned problems in the background art, such as manual delivery of flux powder in some small factories, which cannot guarantee the accuracy and uniformity of the feeding amount each time, leading to uneven feeding in the extrusion tank and easy overflow during extrusion, are solved.

[0005] The utility model provides the following technical scheme: a kind of pressing equipment for steelmaking slagging flux, including mounting bracket, the mounting bracket is internally provided with base plate, the base plate end is provided with placing plate, the placing plate upper side is provided with pressing mechanism correspondingly, the pressing mechanism bottom is provided with first pressing plate, the first pressing plate side is provided with extrusion assembly, the extrusion assembly is used in cooperation with placing plate.

[0006] As a kind of pressing equipment for steelmaking slagging flux of the utility model, wherein: the base plate is installed in the inside of the mounting bracket, the placing plate is connected on the surface of the base plate, material groove is opened on the surface of the placing plate.

[0007] As a kind of pressing equipment for steelmaking slagging flux of the utility model, wherein: the mounting bracket is internally provided with sliding block, the first pressing plate side is connected with fixed block, the fixed block side is connected with sliding block, sliding groove is opened on the side of the sliding block, the sliding block and the sliding groove slide and engage, the sliding block is inserted into the inside of the sliding block, and the sliding block and the sliding block slide and cooperate.

[0008] As a kind of pressing equipment for steelmaking slagging flux of the utility model, wherein: the mounting bracket side is connected with limit rod, and the limit rod and the first pressing plate slide and cooperate.

[0009] As a kind of pressing equipment for steelmaking slagging flux of the utility model, wherein: the extrusion assembly includes first extrusion block and moving block, the first extrusion block is arranged on the side of the first pressing plate, the second extrusion block is connected on the side of the first pressing plate, and the moving block is arranged between the first extrusion block and the second extrusion block.

[0010] As a kind of pressing equipment for steelmaking slagging flux of the utility model, wherein: the moving block is connected on the side of the first extrusion block, the second extrusion block side is opened with cavity, and the piston disc is arranged in the cavity.

[0011] As a kind of pressing equipment for steelmaking slagging flux of the utility model, wherein: the other end of the moving block is connected in the inside of the cavity, the piston disc and the cavity slide and cooperate, the second extrusion block side is opened with notch, the extrusion ball is connected on the end of the notch, the notch and the cavity are communicated, and the extrusion ball and the inner wall of the material groove slide and cooperate.

[0012] As a kind of pressing equipment for steelmaking slagging flux of the utility model, wherein: the pressing mechanism includes cylinder main body and cylinder output shaft, the cylinder main body is installed on the end of the mounting bracket, the cylinder output shaft is arranged on the side of the cylinder main body, and the other end of the cylinder output shaft is connected on the side of the first pressing plate.

[0013] The utility model has the following beneficial effects:

[0014] 1. The steelmaking slagging flux pressing equipment, through the setting of the extrusion assembly, the material is manually put into the inside of the material groove, the cylinder body is started, the first pressing plate is pressed down by the cylinder body, the second extrusion block on the side of the first pressing plate and the first extrusion block on the side of the second extrusion block press the material in the material groove, the piston disc is slidably clamped in the cavity by the first extrusion block, the extrusion ball is blown up and slidably clamped with the inner wall of the material groove, so that the material overflow is avoided, and in the extrusion process, the piston disc is slidably clamped in the cavity by the first extrusion block, the extrusion ball is blown up and slidably clamped with the inner wall of the material groove. This design effectively prevents the overflow of the material during the extrusion process, ensures the uniform distribution of the material in the groove, reduces the workload of cleaning and processing, and solves the problem that some small factories generally use manual transportation when transporting flux powder, but manual feeding cannot guarantee the accuracy and uniformity of the feeding amount each time, which may cause uneven feeding in the extrusion groove, and too much material in some areas, so that the material is easy to overflow during extrusion.

[0015] 2. The steelmaking slagging flux pressing equipment, through the setting of the sliding block, the sliding block is matched with the sliding groove, and the sliding block is matched with the sliding groove when the first pressing plate is driven by the cylinder to move downward, so that the first pressing plate is prevented from tilting and shaking, and the cooperation of the sliding block and the sliding groove can ensure that the first pressing plate always remains stable during the downward movement, and the tilting and shaking caused by the unstable mechanical structure are avoided. This stable movement trajectory helps to improve the precision and consistency of the extrusion process. BRIEF DESCRIPTION OF DRAWINGS

[0016] Fig. 1 It is a three-dimensional structure schematic view of the utility model.

[0017] Fig. 2 It is a part of the three-dimensional structure schematic view of the utility model.

[0018] Fig. 3 It is a first pressing plate structure schematic view of the utility model.

[0019] Fig. 4 It is a first extrusion block structure schematic view of the utility model.

[0020] Fig. 5 It is an extrusion assembly structure schematic view of the utility model.

[0021] Fig. 6 It is a piston disc structure schematic view of the utility model.

[0022] In the figure: 110, mounting frame; 111, sliding block; 112, limiting rod; 120, base plate; 130, placing plate; 131, material groove; 140, pressing mechanism; 141, cylinder main body; 142, cylinder output shaft; 150, first pressing plate; 151, fixed block; 152, sliding block; 160, extrusion assembly; 161, first extrusion block; 162, moving block; 163, cavity; 165, piston disc; 170, notch; 171, extrusion ball; 200, sliding groove; 300, second extrusion block. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0024] Embodiment one aims to promote the solution of the problem that some small factories generally adopt manual transportation when transporting rapid melting agent powder, but manual feeding is difficult to guarantee the accuracy and uniformity of feeding amount each time, which may lead to uneven feeding in the extrusion groove, and excessive material in some areas, thus causing the problem of easy overflow during extrusion. Please refer to Figs. 1-6 A pressing device for steelmaking and slagging rapid melting agent, comprising a mounting frame 110, a base plate 120 is arranged inside the mounting frame 110, a placing plate 130 is arranged at the end of the base plate 120, a pressing mechanism 140 is arranged above the placing plate 130, a first pressing plate 150 is arranged at the bottom of the pressing mechanism 140, an extrusion assembly 160 is arranged at the side of the first pressing plate 150, and the extrusion assembly 160 is used in cooperation with the placing plate 130.

[0025] The base plate 120 is installed inside the mounting frame 110, the placing plate 130 is connected to the surface of the base plate 120, and the material groove 131 is arranged on the surface of the placing plate 130. The extrusion assembly 160 comprises a first extrusion block 161 and a moving block 162, the first extrusion block 161 is arranged at the side of the first pressing plate 150, the second extrusion block 300 is connected to the side of the first pressing plate 150, and the moving block 162 is arranged between the first extrusion block 161 and the second extrusion block 300.

[0026] The moving block 162 is connected to the side of the first extrusion block 161, the second extrusion block 300 is provided with a cavity 163 on the side, and the piston disc 165 is arranged in the cavity 163. The other end of the moving block 162 is connected to the inside of the cavity 163, the piston disc 165 is in sliding fit with the cavity 163, the second extrusion block 300 is provided with a notch 170 on the side, the notch 170 is connected with the extrusion ball 171 at the end, the notch 170 is arranged in communication with the cavity 163, the extrusion ball 171 is in sliding fit with the inner wall of the material groove 131, and the pressing mechanism 140 comprises a cylinder body 141 and a cylinder output shaft 142. The cylinder body 141 is installed at the end of the mounting frame 110, the cylinder output shaft 142 is arranged on the side of the cylinder body 141, and the other end of the cylinder output shaft is connected to the side of the first pressing plate 150.

[0027] In the embodiment: through the arrangement of the extrusion assembly 160, the material is manually put into the inside of the material groove 131, the cylinder body 141 is started, the cylinder body 161 drives the first pressing plate 150 to press down, the second extrusion block 300 on the side of the first pressing plate 150 and the first extrusion block 161 on the side of the second extrusion block 300 press the material in the material groove 131, the first extrusion block 161 drives the piston disc 165 to slide and engage in the cavity 163, the extrusion ball 171 is blown up and is in sliding fit with the inner wall of the material groove 131, so that the material is prevented from overflowing. In the extrusion process, the first extrusion block 161 drives the piston disc 165 to slide and engage in the cavity 163, the extrusion ball 171 is blown up and is in sliding fit with the inner wall of the material groove 131. This design effectively prevents the material from overflowing in the extrusion process, ensures that the material is evenly distributed in the groove, reduces the workload of cleaning and processing, and solves the problem that some small factories generally use manual transportation when transporting the molten powder, but manual feeding cannot guarantee the accuracy and uniformity of the feeding amount each time, which may cause uneven feeding in the extrusion groove and excessive material in some areas, thereby causing the material to easily overflow during extrusion.

[0028] In the embodiment, the first pressing plate 150 is unstable, and the embodiment is improved on the basis of the first embodiment. For details, please refer to Figs. 1-6 The mounting frame 110 is provided with a sliding block 111 in the inside, the first pressing plate 150 is connected with a fixed block 151 on the side, the fixed block 151 is connected with a sliding block 152 on the side, the sliding block 152 is provided with a sliding groove 200 on the side, the sliding block 111 is in sliding fit with the sliding groove 200, the sliding block 111 penetrates the inside of the sliding block 152, and the sliding block 111 is in sliding fit with the sliding block 152. The mounting frame 110 is connected with a limiting rod 112 on the side, and the limiting rod 112 is in sliding fit with the first pressing plate 150.

[0029] In the embodiment: the slider 111 is set, the slider 111 cooperates with the sliding groove 200, when the cylinder drives the first pressing plate 150 to move downward, the slider 111 is clamped with the sliding groove 200, the first pressing plate 150 is prevented from tilting and shaking, the cooperation of the slider 111 and the sliding groove 200 can ensure that the first pressing plate 150 keeps stable during the downward movement, and the tilting and shaking caused by unstable mechanical structure are avoided. The stable movement track helps to improve the precision and consistency of the extrusion process.

[0030] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one entity or action from another, without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0031] The above only describes the preferred embodiments of the present application, and it should be pointed out that for those skilled in the art, without departing from the technical principles of the present application, a number of improvements and refinements can be made, and these improvements and refinements should also be considered as the protection scope of the present application.

Claims

1. A pressing apparatus for steelmaking flux, comprising a mounting frame (110), characterized in that: The mounting frame (110) is internally provided with a base plate (120), the end of the base plate (120) is provided with a placing plate (130), the placing plate (130) is correspondingly provided with a pressing mechanism (140) above, the bottom of the pressing mechanism (140) is provided with a first pressing plate (150), the side of the first pressing plate (150) is provided with an extrusion assembly (160), and the extrusion assembly (160) is used in cooperation with the placing plate (130).

2. A press apparatus for a steelmaking flux according to claim 1, characterized in that: The base plate (120) is installed in the inside of the mounting frame (110), the placing plate (130) is connected to the surface of the base plate (120), and the surface of the placing plate (130) is provided with a material groove (131).

3. A pressing apparatus for a steelmaking flux according to claim 1, characterized in that: The inside of the mounting frame (110) is provided with a sliding block (111), the side of the first pressing plate (150) is connected with a fixed block (151), the side of the fixed block (151) is connected with a sliding block (152), the side of the sliding block (152) is provided with a sliding groove (200), the sliding block (111) is slidably connected with the sliding groove (200), the sliding block (111) penetrates the inside of the sliding block (152), and the sliding block (111) is slidably connected with the sliding block (152).

4. A pressing apparatus for a steelmaking flux according to claim 1, characterized in that: The side of the mounting frame (110) is connected with a limiting rod (112), and the limiting rod (112) is slidably connected with the first pressing plate (150).

5. A pressing apparatus for a steelmaking flux according to claim 2, characterized in that: The extrusion assembly (160) comprises a first extrusion block (161) and a moving block (162), the first extrusion block (161) is arranged on the side of the first pressing plate (150), the side of the first pressing plate (150) is connected with a second extrusion block (300), and the moving block (162) is arranged between the first extrusion block (161) and the second extrusion block (300).

6. A press apparatus for a steelmaking flux according to claim 5, characterized in that: The moving block (162) is connected to the side of the first extrusion block (161), the side of the second extrusion block (300) is provided with a cavity (163), and the cavity (163) is internally provided with a piston disc (165).

7. A press for fluxes for the production of steel, according to claim 6, characterized in that: The other end of the moving block (162) is connected to the inside of the cavity (163), the piston disc (165) is slidably connected with the cavity (163), the side of the second extrusion block (300) is provided with a notch (170), the notch (170) is connected with an extrusion ball (171), the notch (170) is in communication with the cavity (163), and the extrusion ball (171) is slidably connected with the inner wall of the material groove (131).

8. A pressing apparatus for a steelmaking flux according to claim 1, characterized by: The pressing mechanism (140) comprises a cylinder body (141) and a cylinder output shaft (142), the cylinder body (141) is installed at the end of the mounting frame (110), the cylinder output shaft (142) is arranged on the side of the cylinder body (141), and the other end of the cylinder output shaft is connected to the side of the first pressing plate (150).