Stainless steel bar cutting equipment

By designing an automated clamping feeding mechanism and cutter assembly, the repeated clamping problem when manually cutting stainless steel rods is solved, and automatic cutting of stainless steel rods is achieved, and safety and cutting efficiency are improved.

CN223235179UActive Publication Date: 2025-08-19DONGGUAN RIJIN HARDWARE PRODUCTS CO LTD
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Patent Information

Application Number
CN202422354062.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2025-08-19
Estimated Expiration
2034-09-26

AI Technical Summary

Technical Problem

When manually cutting stainless steel rods, frequent adjustments and re-climbing are required, resulting in workers being inattentive and posing safety hazards.

Method used

A stainless steel rod cutting equipment is designed, using a clamping feeding mechanism and a cutting knife assembly, and the first driving part drives the press plate and the clamping frame to automatically clamp and limit the stainless steel rod to realize automatic cutting and reduce manual clamping operations.

Benefits of technology

The automated clamping and cutting process reduces repeated clamping operations, improves safety, avoids workers' boredom and equipment safety hazards, and improves cutting efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223235179U_ABST
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Abstract

The utility model relates to stainless steel bar cutting equipment which comprises a machine table and a clamping and feeding mechanism transversely arranged at the top of the machine table, a cutter assembly is transversely arranged on one side of the clamping and feeding mechanism, and the cutter assembly is located at the top of the machine table. The clamping and feeding mechanism comprises a workbench and a first linear driving module transversely arranged at the top of the workbench, a first moving table is arranged on the first linear driving module, the first moving table transversely reciprocates at the top of the machine table through the first linear driving module, and a clamping frame is vertically arranged at the top of the first moving table. And the clamping frame and the first moving table move synchronously, a first driving part is vertically arranged at the top of the clamping frame and penetrates through the clamping frame, a pressing plate is arranged at one end of the clamping frame in a driving mode, and the pressing plate is driven by the first driving part to move in the clamping frame, so that the stainless steel rod arranged in the clamping frame in a penetrating mode is clamped and limited.
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Description

Technical Field

[0001] The present application relates to the technical field of cutting equipment, and more particularly, to a stainless steel rod cutting equipment. Background Art

[0002] In the field of mechanical processing, it is often necessary to cut the long stainless steel bars to be processed into small pieces of blanks for preparation, so as to facilitate subsequent use. In most cases, the long stainless steel bars to be processed are manually cut by a cutting machine. However, the disadvantage of manual cutting is that every time a small piece of the long stainless steel bar to be processed is cut, the worker needs to adjust the cutting position of the remaining long stainless steel bar to be cut and re-clamp it before a new round of cutting can be carried out. This requires the worker to perform a large number of repetitive clamping operations. In this case, the worker is very likely to feel bored, which leads to a lack of concentration and easily causes major safety hazards to personnel and equipment. Utility Model Content

[0003] In response to the deficiencies of the above-mentioned prior art, the purpose of this application is to provide a stainless steel rod cutting device, comprising a machine table and a clamping and feeding mechanism arranged horizontally on the top of the machine table, and a cutter assembly is arranged horizontally on one side of the clamping and feeding mechanism, and the cutter assembly is located on the top of the machine table, the clamping and feeding mechanism comprises a workbench and a first linear drive module arranged horizontally on the top of the workbench, and a first movable table is arranged on the first linear drive module, and the first movable table moves back and forth horizontally on the top of the machine table through the first linear drive module, a clamping frame is vertically arranged on the top of the first movable table, and the clamping frame moves synchronously with the first movable table, and a first driving member is vertically arranged on the top of the clamping frame, the first driving member passes through the clamping frame, and a pressure plate is driven at one end of the clamping frame, and the pressure plate is driven to move in the clamping frame by the first driving member, thereby clamping and limiting the stainless steel rod passing through the clamping frame.

[0004] Preferably, a first sliding component is also provided on the top of the workbench, and the first sliding component is located on both sides of the first linear drive module, and the first sliding component and the first linear drive module are parallel to each other, the bottom of the first movable platform is connected to the top of the first sliding component, and the first movable platform and the first sliding component move in the same direction.

[0005] Preferably, a first guide column is provided on the pressure plate, and the first guide columns are respectively located on both sides of the top of the pressure plate, and the first guide columns move synchronously with the pressure plate. The first guide columns all vertically pass through the clamping frame, and the first guide columns all move inside the clamping frame.

[0006] Preferably, the cutter assembly includes a fixed seat, and a second driving member is provided on the top of the fixed seat, and the second driving member vertically penetrates the fixed seat, one end of the second driving member is driven and connected to the second movable table, and the second movable table is vertically located at the side of the fixed seat, and the second movable table is raised and lowered on the side of the fixed seat through the second driving member, a third driving member is vertically provided on the top of the second movable table, and the third driving member penetrates the second movable table, and the third driving member moves synchronously with the second movable table, one end of the third driving member is driven and connected to the cutter, and the cutter is vertically located on the top of the stainless steel rod, and the cutter moves synchronously with the second movable table through the third driving member.

[0007] Preferably, a second sliding assembly is vertically arranged between the fixed seat and the second movable platform, and the second sliding assembly is respectively located on both sides of the fixed seat, and the second movable platform and the second sliding assembly move in the same direction.

[0008] Preferably, the cutter assembly also includes a first carrier and a second carrier arranged transversely on one side of the clamping and feeding mechanism, and the stainless steel rod passes through the first carrier and the second carrier respectively, and the first carrier and the second carrier are both located at the bottom of the cutter, and a fourth driving member is also transversely arranged on the top of the machine, and the fourth driving member is driven and connected to the second carrier, and the second carrier moves back and forth transversely on the side of the first carrier through the fourth driving member.

[0009] Preferably, a second guide column is laterally arranged on the other side of the second supporting frame, and the second guide column moves synchronously with the second supporting frame. The second guide column laterally passes through the first supporting frame, and the second guide column moves inside the first supporting frame.

[0010] In summary, this application has the following beneficial effects:

[0011] First, the stainless steel rod is passed through the clamping frame, and the first driving member drives the pressure plate to move downward, so that the stainless steel rod is in contact with the pressure plate and the clamping frame. At this time, the stainless steel rod is clamped and limited in the clamping frame. After the position of the stainless steel rod is clamped and limited, the first linear driving module drives the first movable table together with the clamped and limited stainless steel rod to be moved to the cutter assembly, and the cutter assembly is used to cut the stainless steel rod. When the remaining stainless steel rod needs to be cut again, the first driving member drives the pressure plate to move upward. At this time, the pressure plate and the remaining stainless steel rod are in a separated state, and then the first linear driving module drives the first movable table together with the pressure plate to reset. After resetting, the first driving member drives the pressure plate again The plate moves downward, re-clamps and limits the remaining stainless steel, and repeats the above steps again, and repeats this reciprocating process to complete the entire cutting of the stainless steel bar. The clamping method of the pressure plate and the clamping frame driven by the first driving member replaces manual clamping, which effectively solves the problem that every time a small section of the stainless steel bar to be processed is cut, the workers need to adjust the cutting position of the remaining stainless steel bar to be cut and re-clamp before a new round of cutting can be carried out. This requires workers to perform a large number of repetitive clamping operations. In this case, workers are very likely to feel bored, which leads to lack of concentration and easily causes major safety hazards to personnel and equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a schematic diagram of the overall structure of a stainless steel rod cutting device;

[0013] Figure 2 It is a structural diagram of the clamping and feeding mechanism;

[0014] Figure 3 is a schematic structural diagram of the cutter assembly;

[0015] Figure 4 yes Figure 1 Schematic diagram of the enlarged structure at point A in the middle.

[0016] Figure markings: 1. Machine; 2. Clamping and feeding mechanism; 201. Workbench; 202. First linear drive module; 203. First movable table; 204. Clamping frame; 205. First drive member; 206. Press plate; 207. First sliding assembly; 208. First guide column; 3. Cutter assembly; 301. Fixed seat; 302. Second drive member; 303. Second movable table; 304. Third drive member; 305. Cutter; 306. Second sliding assembly; 307. First carrier; 308. Second carrier; 3081. Second guide column; 309. Fourth drive member; 4. Material guide plate; 5. Material receiving box. DETAILED DESCRIPTION

[0017] In order to make the technical problems, technical solutions and beneficial effects to be solved by this application more clearly understood, this application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.

[0018] It should be noted that when a component is referred to as being “fixed to” or “disposed on” another component, it can be directly on the other component or indirectly on the other component. When a component is referred to as being “connected to” another component, it can be directly or indirectly connected to the other component.

[0019] It should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application.

[0020] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features. Throughout the description of this application, "plurality" means two or more, unless otherwise specifically defined.

[0021] A stainless steel rod cutting device, see Figures 1 to 4, including a machine 1 and a clamping and feeding mechanism 2 arranged horizontally on the top of the machine 1, and a cutter assembly 3 is arranged horizontally on one side of the clamping and feeding mechanism 2, and the cutter assembly 3 is located on the top of the machine 1, the clamping and feeding mechanism 2 includes a workbench 201 and a first linear drive module 202 arranged horizontally on the top of the workbench 201, and a first movable platform 203 is arranged on the first linear drive module 202, and the first movable platform 203 moves back and forth horizontally on the top of the machine 1 through the first linear drive module 202, a clamping frame 204 is vertically arranged on the top of the first movable platform 203, and the clamping frame 204 moves synchronously with the first movable platform 203, And a first driving member 205 is vertically provided on the top of the clamping frame 204, and the first driving member 205 passes through the clamping frame 204, and a pressure plate 206 is driven at one end of the clamping frame 204, and the first driving member 205 drives the pressure plate 206 to move in the clamping frame 204, thereby clamping and limiting the stainless steel rod inserted in the clamping frame 204. In this embodiment, the stainless steel rod is first inserted into the clamping frame 204, and the first driving member 205 drives the pressure plate 206 to move downward, so that the stainless steel rod is in contact with the pressure plate 206 and the clamping frame 204. At this time, the stainless steel rod is clamped and limited in the clamping frame 204, and the stainless steel rod is not clamped. After the position is clamped and limited, the first linear drive module 202 drives the first movable table 203 together with the clamped and limited stainless steel rod to the cutter assembly 3, and the cutter assembly 3 is used to cut the stainless steel rod. When the remaining stainless steel rod needs to be cut again, the first drive member 205 drives the pressure plate 206 to move upward. At this time, the pressure plate 206 and the remaining stainless steel rod are in a separated state, and then the first linear drive module 202 drives the first movable table 203 together with the pressure plate 206 to reset. After resetting, the first drive member 205 drives the pressure plate 206 to move downward again, and re-clamps and limits the remaining stainless steel, and cuts the stainless steel rod again. The above steps are repeated repeatedly to complete the entire cutting work of the stainless steel bar. The first driving member 205 drives the pressure plate 206 and the clamping frame 204 to cooperate with each other to replace manual clamping, which effectively solves the problem that every time a small section of the stainless steel bar to be processed is cut, the worker needs to adjust the cutting position of the remaining stainless steel bar to be cut and re-clamp before a new round of cutting can be carried out. This requires the worker to perform a large number of repetitive clamping operations. In this case, the worker is very likely to feel bored, resulting in a lack of concentration, which can easily cause major safety hazards to personnel and equipment.

[0022] A first sliding assembly 207 is also provided on the top of the workbench 201, and the first sliding assembly 207 is respectively located on both sides of the first linear drive module 202, and the first sliding assembly 207 and the first linear drive module 202 are parallel to each other. The bottom of the first movable platform 203 is connected to the top of the first sliding assembly 207, and the first movable platform 203 and the first sliding assembly 207 move in the same direction. In this embodiment, by providing the first sliding assembly 207, the first movable platform 203 can move more smoothly when moving back and forth laterally on the top of the machine 1.

[0023] The pressure plate 206 is provided with a first guide column 208, and the first guide columns 208 are respectively located on both sides of the top of the pressure plate 206, and the first guide columns 208 move synchronously with the pressure plate 206. The first guide columns 208 vertically penetrate the clamping frame 204, and the first guide columns 208 are movable inside the clamping frame 204. In this embodiment, by providing the first guide columns 208, the pressure plate 206 can be more stable when moving in the clamping frame 204, and will not shift in position, thereby affecting the clamping and limiting work of the stainless steel rod.

[0024] The cutter assembly 3 includes a fixed base 301, and a second driving member 302 is provided on the top of the fixed base 301, and the second driving member 302 vertically penetrates the fixed base 301, and one end of the second driving member 302 is connected to a second movable platform 303, and the second movable platform 303 is vertically located at the side of the fixed base 301, and the second movable platform 303 is lifted and lowered on the side of the fixed base 301 by the second driving member 302, and a third driving member 304 is vertically provided on the top of the second movable platform 303, and the third driving member 304 is connected to the second movable platform 303. 04 passes through the second movable platform 303, and the third driving member 304 moves synchronously with the second movable platform 303. One end of the third driving member 304 is connected to a cutter 305, and the cutter 305 is vertically located on the top of the stainless steel rod, and the cutter 305 moves synchronously with the second movable platform 303 through the third driving member 304. In this embodiment, by providing the second driving member 302, the cutting distance between the cutter 305 and the stainless steel rod can be adjusted, thereby adapting to the cutting work of stainless steel rods of different sizes.

[0025] A second sliding assembly 306 is vertically arranged between the fixed base 301 and the second movable platform 303, and the second sliding assembly 306 is respectively located on both sides of the fixed base 301, and the second movable platform 303 and the second sliding assembly 306 move in the same direction. In this embodiment, by providing the second sliding assembly 306, the second movable platform 303 can be more stable when rising and falling on the side of the fixed base 301.

[0026] The cutter assembly 3 also includes a first carrier 307 and a second carrier 308 arranged transversely on one side of the clamping and feeding mechanism 2, and the stainless steel rod passes through the first carrier 307 and the second carrier 308 respectively, and the first carrier 307 and the second carrier 308 are both located at the bottom of the cutter 305. A fourth driving member 309 is also arranged transversely on the top of the machine 1, and the fourth driving member 309 is driven and connected to the second carrier 308, and the second carrier 308 moves transversely back and forth on the side of the first carrier 307 through the fourth driving member 309. In this embodiment, when the cutter 305 cuts the stainless steel rod, the first carrier 307 and the second carrier 308 are moved transversely back and forth. It can provide support for the stainless steel rod so that the cutter 305 can perform the cutting work better, and when the remaining stainless steel rod needs to be cut again, because part of the remaining stainless steel rod is still in the first carrier frame 307, the first carrier frame 307 can also limit the remaining stainless steel rod to prevent the remaining stainless steel rod from being displaced when the first linear drive module 202 drives the first movable table 203 together with the pressure plate 206 to reset. By providing a fourth sliding component, the gap between the second carrier frame 308 and the first carrier frame 307 can be adjusted to adapt to the cutting work of cutters 305 of different thicknesses, thereby effectively improving the practicality of this embodiment.

[0027] A second guide post 3081 is laterally provided on the other side of the second carrier 308, and the second guide post 3081 moves synchronously with the second carrier 308. The second guide post 3081 laterally penetrates the first carrier 307, and the second guide post 3081 moves inside the first carrier 307. In this embodiment, by providing the second guide post 3081, the second carrier 308 can move more smoothly when moving back and forth laterally on the side of the first carrier 307, and will not cause positional deviation, thereby affecting the cutting work of the stainless steel rod. In this embodiment, A material guide plate 4 is obliquely provided on one side of the second carrier 308, and the material guide plate 4 is located at the bottom of the stainless steel rod, and the material guide plate 4 and the fourth driving member 309 are parallel to each other, and a material receiving box 5 is placed on the outer side of the machine 1, and the material receiving box 5 is located at the bottom of the material guide plate 4, and the material receiving box 5 is connected to the material guide plate 4. By providing the material guide plate 4 and the material receiving box 5, the cut stainless steel rods can automatically fall into the material receiving box 5 through the material guide plate 4, thereby realizing the collection of the cut stainless steel rods, thereby facilitating subsequent transportation and use, and further improving the practicality of this embodiment.

[0028] The above embodiments are merely explanations of the present application and are not limitations of the present application. After reading this specification, those skilled in the art may make modifications to the embodiments without any creative contribution as needed. However, as long as they are within the scope of the claims of the present application, they are protected by the patent law.

Claims

1. A stainless steel rod cutting device, characterized in that, It includes a machine table and a clamping and feeding mechanism arranged horizontally on the top of the machine table, and a cutter assembly is arranged horizontally on one side of the clamping and feeding mechanism, and the cutter assembly is located on the top of the machine table. The clamping and feeding mechanism includes a workbench and a first linear drive module arranged horizontally on the top of the workbench, and a first movable table is arranged on the first linear drive module, and the first movable table moves back and forth horizontally on the top of the machine table through the first linear drive module. A clamping frame is vertically arranged on the top of the first movable table, and the clamping frame moves synchronously with the first movable table, and a first driving member is vertically arranged on the top of the clamping frame, the first driving member passes through the clamping frame, and a pressure plate is driven at one end of the clamping frame, and the pressure plate is driven to move in the clamping frame by the first driving member, thereby clamping and limiting the stainless steel rod inserted in the clamping frame.

2. The stainless steel rod cutting device according to claim 1, characterized in that: A first sliding assembly is also provided on the top of the workbench, and the first sliding assembly is respectively located on both sides of the first linear drive module, and the first sliding assembly and the first linear drive module are parallel to each other. The bottom of the first movable platform is connected to the top of the first sliding assembly, and the first movable platform and the first sliding assembly move in the same direction.

3. The stainless steel rod cutting device according to claim 1, characterized in that: The pressure plate is provided with a first guide column, and the first guide columns are respectively located on both sides of the top of the pressure plate, and the first guide columns move synchronously with the pressure plate. The first guide columns vertically penetrate the clamping frame, and the first guide columns move inside the clamping frame.

4. The stainless steel rod cutting device according to claim 1, characterized in that: The cutter assembly includes a fixed seat, and a second driving member is provided on the top of the fixed seat, and the second driving member vertically penetrates the fixed seat, one end of the second driving member is driven and connected to the second movable platform, and the second movable platform is vertically located at the side of the fixed seat, and the second movable platform is raised and lowered on the side of the fixed seat through the second driving member, a third driving member is vertically provided on the top of the second movable platform, and the third driving member penetrates the second movable platform, and the third driving member moves synchronously with the second movable platform, one end of the third driving member is driven and connected to the cutter, and the cutter is vertically located on the top of the stainless steel rod, and the cutter moves synchronously with the second movable platform through the third driving member.

5. The stainless steel rod cutting device according to claim 4, characterized in that: A second sliding assembly is vertically arranged between the fixed seat and the second movable platform, and the second sliding assembly is respectively located on both sides of the fixed seat, and the second movable platform and the second sliding assembly move in the same direction.

6. The stainless steel rod cutting device according to claim 1, characterized in that: The cutter assembly also includes a first carrier and a second carrier arranged transversely on one side of the clamping and feeding mechanism, and the stainless steel rod passes through the first carrier and the second carrier respectively, and the first carrier and the second carrier are both located at the bottom of the cutter. A fourth driving member is also transversely arranged on the top of the machine, and the fourth driving member is driven and connected to the second carrier, and the second carrier moves back and forth transversely on the side of the first carrier through the fourth driving member.

7. The stainless steel rod cutting device according to claim 6, characterized in that: A second guide post is laterally arranged on the other side of the second carrier, and the second guide post moves synchronously with the second carrier. The second guide post laterally penetrates the first carrier, and the second guide post moves inside the first carrier.