Flush Baffle Structure and Method

By introducing induction switches and alarms into the simultaneous baffle structure, we can automatically detect wear and alarm, and solve the problem of high difficulty in replacing the simultaneous baffle, and simplify and improve the efficiency of the replacement work.

CN116129622BActive Publication Date: 2025-05-30SGIS SONGSHAN CO LTD
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Patent Information

Application Number
CN202310149281.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-20
Publication Date
2025-05-30
Estimated Expiration
2043-02-20

AI Technical Summary

Technical Problem

The operation of replacing the simultaneous baffle is difficult and the panel usage is low, which causes waste of resources and takes a long time to replace the operation, which requires multiple operators to participate.

Method used

A close-end baffle structure is designed, including a panel, a base plate, an induction switch and an alarm. The panel can be switched between the first and second states. The induction switch automatically detects the wear of the panel and alarms, simplifying the replacement operation process.

Benefits of technology

Automatically detect wear and alarm through induction switches, reducing the difficulty and time of replacement operations, reducing work staffing, improving usage efficiency, and optimizing resource utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

Embodiments of the present invention provide a flush baffle structure and method, which relate to the field of steel processing equipment. The aim is to be able to improve the problem of high difficulty in replacing the flush baffle structure. The flush baffle structure includes a panel, a base plate, an inductive switch, and an alarm; the panel can be fixed relative to the base plate in a first state or a second state; a first contact surface and a second contact surface are used to alternately switch to a first preset position to respectively act on the head of the steel; the inductive switch is used to sense the head of the steel that protrudes a preset distance relative to a preset surface, and the preset surface is coplanar with the unworn first contact surface that has switched to the first preset position. The flush baffle method is implemented using the above structure. When the wear amount of the first contact surface reaches the preset distance, the inductive switch can detect the head of the steel that protrudes a preset distance relative to the preset surface. At this time, the alarm will give an alarm, and then the second contact surface is replaced to contact the head of the steel, quickly restoring the flush accuracy of the panel.
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Description

Technical Field

[0001] The present invention relates to the field of steel processing equipment, and more particularly, to a head alignment baffle structure and method. Background Art

[0002] In a bar production workshop, after the steel is cut to a fixed length by cold shearing, the steel is conveyed to the flat support bracket area by conveying rollers. At this time, the heads of the conveyed steel are uneven, and it is necessary to impact the head alignment baffle to achieve the effect of aligning the heads of the steel.

[0003] There are the following disadvantages: Whether to replace the worn panel of the head alignment baffle requires the operator to evaluate the wear amount and confirm when to replace it, resulting in low efficiency. The head alignment baffle is divided into a base plate and a panel. After the panel is worn and cut off, it cannot be reused and is discarded as waste. The utilization rate of the panel is low, resulting in waste of resources. The panel and the base plate of the head alignment baffle are welded together. The operation of replacing the panel of the head alignment baffle takes a long time and the operation process is relatively complex, requiring at least 4 operators (including professional technicians) to carry out the replacement operation. Summary of the Invention

[0004] The objectives of the present invention include, for example, providing a head alignment baffle structure that can improve the problem of high difficulty in replacing the head alignment baffle structure.

[0005] The present invention also aims to provide a head alignment baffle method that can improve the problem of high difficulty in replacing the head alignment baffle structure.

[0006] The embodiments of the present invention may be implemented as follows:

[0007] The embodiments of the present invention provide a head alignment baffle structure, including a panel, a base plate, an induction switch, and an alarm; the panel is detachably fixed on the base plate, and the panel can be fixed in a first state or a second state relative to the base plate; the panel has a first contact surface and a second contact surface, and the first contact surface and the second contact surface are used for the panel to alternately switch to a first preset position during the process of switching between the first state and the second state to respectively contact the head of the steel conveyed along a preset direction, so as to make the heads of the steel flush; the induction switch is arranged at a second preset position on one side of the base plate, and the induction switch is used to sense the head of the steel that protrudes a preset distance relative to the preset surface, and the preset surface is coplanar with the unworn first contact surface and the second contact surface that are switched to the first preset position; the alarm is electrically connected to the induction switch, and the alarm is used to give an alarm when the induction switch senses the head of the steel.

[0008] In addition, the head alignment baffle structure provided by the embodiments of the present invention may also have the following additional technical features:

[0009] Optionally, the first contact surface and the second contact surface are coplanar; the base plate is provided with a card slot, and the panel is detachably and slidably arranged in the card slot; the panel is used to be inserted and fixed in the card slot at the position in the first state, or the panel is used to be inserted and fixed in the card slot at the position in the second state.

[0010] Optionally, the panel has a first end and a second end with opposite positions, and the first contact surface and the second contact surface are arranged side by side between the first end and the second end; the first end and the second end of the panel are used to be alternately inserted into the card slot so that the panel is switched and fixed between the first state and the second state.

[0011] Optionally, a first lifting part is arranged at the first end of the panel, and a second lifting part is arranged at the second end of the panel; both the first lifting part and the second lifting part are used for hoisting cooperation with a crane.

[0012] Optionally, the card slot is arranged along the vertical direction of the base plate; the flush head baffle structure further includes a partition; the partition is arranged at the bottom of the card slot, and the partition is used to support the panel inserted into the card slot; the partition is provided with a lifting hole, and the lifting hole is used to accommodate the first lifting part or the second lifting part.

[0013] Optionally, the base plate is provided with a screw hole communicated with the card slot; the flush head baffle structure further includes a fastening bolt, and the fastening bolt is used for threaded connection with the screw hole, and the fastening bolt is used to abut against the panel in the card slot to fix the panel on the base plate.

[0014] Optionally, the inductive switch is an inductive proximity switch.

[0015] Optionally, the inductive switch is arranged at a third preset position on one side of the base plate, and the inductive switch is used to sense the head of the steel material that translates out of the panel after contacting the panel and protrudes a preset distance relative to the preset surface.

[0016] Optionally, the flush head baffle structure further includes a bottom plate and a reinforcing rib; the base plate is arranged on the bottom plate, and the reinforcing rib connects and fixes the bottom plate and the base plate.

[0017] An embodiment of the present invention also provides a method for flush head baffle. Implemented by using the flush head baffle structure, the method for flush head baffle includes: in the case of the alarm of the alarm device, operating the panel to be changed from the first state to the second state.

[0018] The beneficial effects of the flush baffle structure and method according to the embodiments of the present invention include, for example:

[0019] The flush baffle structure includes a panel, a base plate, an induction switch, and an alarm; the panel is detachably fixed on the base plate, and the panel can be fixed in a first state or a second state relative to the base plate; the panel has a first contact surface and a second contact surface, and the first contact surface and the second contact surface are used to alternately switch to a first preset position during the process of the panel switching between the first state and the second state, so as to respectively contact the head of the steel delivered along a preset direction, so that the head of the steel is flush; the induction switch is arranged at a second preset position on one side of the base plate, and the induction switch is used to sense the head of the steel that protrudes a preset distance relative to a preset surface, and the preset surface is coplanar with the unworn first contact surface and the second contact surface that are switched to the first preset position; the alarm is electrically connected to the induction switch, and the alarm is used to give an alarm when the induction switch senses the head of the steel.

[0020] When the wear amount of the first contact surface reaches the preset distance, the induction switch can detect the head of the steel that protrudes a preset distance relative to the preset surface. At this time, the alarm will give an alarm, and then the second contact surface is replaced to contact the head of the steel. The induction switch automatically detects that the panel wears beyond the limit and gives an alarm, reducing the difficulty of replacement operation and achieving a flush baffle with rapid recovery of functional accuracy. It can effectively reduce the on-site operation risk coefficient and reduce the number of operators under the premise of quickly replacing the flush baffle panel. Improve the use efficiency. It can also be switched from the second contact surface to the first contact surface, just from the worn contact surface to the unworn contact surface.

[0021] The flush baffle method is implemented by using the above-mentioned flush baffle structure, which can improve the problem of high difficulty in replacing the flush baffle structure. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following will briefly introduce the drawings required for the embodiments. It should be understood that the following drawings only show some embodiments of the present invention, so they should not be regarded as limiting the scope. For those of ordinary skill in the art, other related drawings can be obtained based on these drawings without creative efforts.

[0023] Figure 1 It is a top view of the flush baffle structure provided by the embodiment of the present invention;

[0024] Figure 2 It is a front view of the flush baffle structure provided by the embodiment of the present invention;

[0025] Figure 3 It is a left view of the flush baffle structure provided by the embodiment of the present invention.

[0026] Icons: 10 - flush baffle structure; 100 - bottom plate; 200 - reinforcing rib; 300 - base plate; 310 - card slot; 320 - screw hole; 400 - panel; 410 - first end; 411 - first lifting part; 420 - second end; 421 - second lifting part; 430 - first contact surface; 431 - second contact surface; 500 - induction switch; 600 - partition; 610 - lifting hole; 700 - fastening bolt; 800 - adjusting bracket. Detailed implementation mode

[0027] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. Usually, the components of the embodiments of the present invention described and illustrated in the accompanying drawings here can be arranged and designed in various different configurations.

[0028] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed present invention, but merely represents selected embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention.

[0029] It should be noted that similar reference numerals and letters denote similar items in the following drawings. Therefore, once an item is defined in one drawing, it does not need to be further defined and explained in subsequent drawings.

[0030] In the description of the present invention, it should be noted that if terms such as "upper", "lower", "inner", "outer", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product of the present invention is usually placed during use, it is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0031] In addition, terms such as "first", "second", etc. are only used for distinguishing descriptions and cannot be understood as indicating or implying relative importance.

[0032] It should be noted that, without conflict, the features in the embodiments of the present invention can be combined with each other.

[0033] The following will be combined with Figures 1 to 3 A detailed description will be given to the flush baffle structure 10 provided in this embodiment.

[0034] Please refer to Figure 1 、Figure 2 and Figure 3 An embodiment of the present invention provides a flush baffle structure 10, including a panel 400, a base plate 300, an induction switch 500, and an alarm; the panel 400 is detachably fixed on the base plate 300, and the panel 400 can be fixed in a first state or a second state relative to the base plate 300; the panel 400 has a first contact surface 430 and a second contact surface 431, and the first contact surface 430 and the second contact surface 431 are used to alternately switch to a first preset position during the process of the panel 400 switching between the first state and the second state, so as to respectively contact the head of the steel transported along the preset direction, so that the heads of the steel are flush; the induction switch 500 is arranged at a second preset position on one side of the base plate 300, and the induction switch 500 is used to sense the head of the steel that protrudes a preset distance from the preset surface, and the preset surface is coplanar with the unworn first contact surface 430 and the second contact surface 431 that are switched to the first preset position; the alarm is electrically connected to the induction switch 500, and the alarm is used to give an alarm when the induction switch 500 senses the head of the steel.

[0035] The first contact surface 430 is used to contact the head of the steel transported along the preset direction when the panel 400 is fixed in the first state, so that the head of the steel is flush; the second contact surface 431 is used to contact the head of the steel transported along the preset direction when the panel 400 is fixed in the second state, so that the head of the steel is flush.

[0036] "The panel 400 is detachably fixed on the base plate 300, and the panel 400 can be fixed in a first state or a second state relative to the base plate 300". The panel 400 can be detached from the base plate 300 or fixed on the base plate 300. The panel 400 can be fixed on the base plate 300 in the first state, or can be detached in the first state and then fixed on the base plate 300 in the second state, and switches between the first state and the second state. Correspondingly, when the panel 400 is in the first state, the first contact surface 430 is located at the first preset position, and the first contact surface 430 is used to abut against the head of the steel transported along the preset direction, so that the heads of the steel transported along the preset direction are all flush; when the panel 400 is in the second state, the second contact surface 431 is located at the first preset position, and the second contact surface 431 is used to abut against the head of the steel transported along the preset direction, so that the heads of the steel transported along the preset direction are all flush.

[0037] When the first contact surface 430 and the second contact surface 431 are not worn, when the first contact surface 430 is switched to the first preset position, the first contact surface 430 is coplanar with the preset surface; similarly, when the second contact surface 431 is switched to the first preset position, the second contact surface 431 is coplanar with the preset surface. The preset surface is the reference setting position when the unworn first contact surface 430 and the second contact surface 431 are switched to the first preset position. When the first contact surface 430 is worn, after the head of the steel contacts the first contact surface 430, the head of the steel will protrude a certain distance relative to the preset surface. When the protruding distance is within the preset distance range, the induction switch 500 can sense the head of the steel within this range, and thus the alarm will sound. In this embodiment, the alarm uses a light alarm. Similarly, when the second contact surface 431 is worn to within the preset distance range, the alarm will also sound. That is, when neither the first contact surface 430 nor the second contact surface 431 is worn, after the head of the steel contacts the first contact surface 430 and the second contact surface 431, the protruding distance of the head of the steel relative to the preset surface is zero, that is, the head of the steel is flush with the preset surface. At this time, the induction switch 500 cannot detect the head of the steel, and the alarm will not sound.

[0038] According to the function of the induction switch 500, the induction range of the induction switch 500 can be arranged on the side protruding from the preset surface. And when the steel is not conveyed to the preset surface, the induction switch 500 cannot detect the head of the steel either, and the alarm will not sound.

[0039] The "preset distance" generally refers to being greater than a certain value, that is, when the wear amount is greater than a certain set value, an alarm can be given.

[0040] After the alarm sounds, operate the operation panel 400 to change the panel 400 from the first state to the second state, or from the second state to the first state, and replace the worn contact surface to the unworn contact surface.

[0041] The induction switch 500 automatically detects that the panel 400 is worn beyond the limit and gives an alarm, reducing the difficulty of replacement operations and achieving the head baffle structure 10 with quickly restored functional accuracy. It can effectively reduce the on-site operation risk coefficient and reduce the number of operating personnel while quickly replacing the head baffle panel 400. Improve the use efficiency. It can also be switched from the second contact surface 431 to the first contact surface 430, just from the worn contact surface to the unworn contact surface.

[0042] Refer to Figure 1 、 Figure 2 and Figure 3, in this embodiment, the first contact surface 430 and the second contact surface 431 are coplanar; the base plate 300 is provided with a card slot 310, and the panel 400 is detachably and slidably arranged in the card slot 310; the panel 400 is used to be inserted and fixed in the card slot 310 at the position of the first state, or the panel 400 is used to be inserted and fixed in the card slot 310 at the position of the second state.

[0043] The panel 400 is fixed on the base plate 300 through the card slot 310, and the disassembly and fixation are quick and convenient. It only needs to pull out or insert the panel 400 relative to the card slot 310. "The first contact surface 430 and the second contact surface 431 are coplanar", then for the replacement between the first state and the second state, only the position of the panel 400 relative to the card slot 310 needs to be replaced. The cooperation between the panel 400 and the card slot 310 is quick and convenient, and the replacement of the first contact surface 430 and the second contact surface 431 can be quickly realized. In case of wear, the accuracy of the panel 400 can be quickly restored.

[0044] Specifically, the cross-section of the card slot 310 along the horizontal direction is in a "concave" shape. Both ends of the panel 400 are slidably embedded in the card slot 310.

[0045] Refer to Figure 1 、 Figure 2 And Figure 3 , in this embodiment, the panel 400 has a first end 410 and a second end 420 with opposite positions. The first contact surface 430 and the second contact surface 431 are arranged side by side between the first end 410 and the second end 420; the first end 410 and the second end 420 of the panel 400 are used to be alternately inserted into the card slot 310 to enable the panel 400 to be switched and fixed between the first state and the second state.

[0046] "The first end 410 and the second end 420 of the panel 400 are used to be alternately inserted into the card slot 310 to enable the panel 400 to be switched and fixed between the first state and the second state". If the first end 410 of the panel 400 is inserted into the card slot 310 first, then the first contact surface 430 is located at the first preset position. If the second end 420 of the panel 400 is inserted into the card slot 310 first, then the second contact surface 431 is located at the first preset position. Introduced with the relative positions in Figure 2 , the first end 410 of the panel 400 is the upper end, the second end 420 of the panel 400 is the lower end, and the lower end of the panel 400 is above the lower end of the panel 400. At this time, the first contact surface 430 is located at the first preset position. If it is reversed and the upper and lower ends of the panel 400 are swapped and then inserted into the card slot 310, then the second contact surface 431 is located at the first preset position. The operation is convenient and fast.

[0047] Refer to Figure 2, in this embodiment, a first lifting portion 411 is provided at the first end 410 of the panel 400, and a second lifting portion 421 is provided at the second end 420 of the panel 400; both the first lifting portion 411 and the second lifting portion 421 are used for cooperation with the overhead crane for lifting.

[0048] When the panel 400 needs to be replaced, the overhead crane holds the first lifting portion 411, lifts the panel 400 out of the card slot 310, and then replaces it with another overhead crane, which holds the second lifting portion 421 of the panel 400 and inserts the panel 400 upside down into the card slot 310.

[0049] Specifically, the number of the first lifting portions 411 is two, and the two lifting portions are arranged at intervals at the first end 410. The number of the second lifting portions 421 is two, and the two second lifting portions 421 are arranged at intervals at the second end 420.

[0050] Refer to Figure 1 、 Figure 2 And Figure 3 , in this embodiment, the card slot 310 is arranged along the vertical direction of the base plate 300; the flush head baffle structure 10 further includes a partition plate 600; the partition plate 600 is arranged at the bottom of the card slot 310, and the partition plate 600 is used for supporting the panel 400 inserted into the card slot 310; the partition plate 600 is provided with a lifting hole 610, and the lifting hole 610 is used for accommodating the first lifting portion 411 or the second lifting portion 421.

[0051] The partition plate 600 is used to prevent the panel 400 inserted into the card slot 310 from sliding out from below the card slot 310. When the first end 410 of the panel 400 is supported on the partition plate 600, the first lifting portion 411 is accommodated in the lifting hole 610. When the second end 420 of the panel 400 is supported on the partition plate 600, the second lifting portion 421 is accommodated in the lifting hole 610.

[0052] Refer to Figure 1 、 Figure 2 And Figure 3 , in this embodiment, the base plate 300 is provided with a screw hole 320 communicating with the card slot 310; the flush head baffle structure 10 further includes a fastening bolt 700, and the fastening bolt 700 is used for threaded connection with the screw hole 320, and the fastening bolt 700 is used for abutting against the panel 400 in the card slot 310 to fix the panel 400 on the base plate 300.

[0053] Specifically, the screw holes 320 are arranged on both sides of the "concave"-shaped card slot 310 to fix both sides of the panel 400 respectively.

[0054] Specifically, two screw holes 320 are respectively arranged on both sides of the "concave"-shaped card slot 310, and the number of the fastening bolts 700 is four. The four bolts are in one-to-one threaded connection with the four screw holes 320.

[0055] In this embodiment, the inductive switch 500 is an inductive proximity switch. The detection object of the inductive proximity switch is metal. When the metal is within the detection range, the normally open or normally closed point of the inductive switch 500 acts to control whether the alarm sounds. In other embodiments, other forms of inductive switches 500 can also be used, as long as they can detect steel within a preset distance from the preset surface.

[0056] Refer to Figure 2 , in this embodiment, the inductive switch 500 is arranged at the third preset position on one side of the base plate 300. The inductive switch 500 is used to sense the head of the steel that moves out of the panel 400 after contacting the panel 400 and protrudes a preset distance from the preset surface.

[0057] Taking Figure 2 the relative positions in as an example for introduction, the inductive switch 500 is arranged on the left side of the base plate 300. The sensing range of the inductive switch 500 is within the sensing distance directly above the inductive switch 500 in the vertical direction and within the range of protruding a preset distance from the preset surface in the horizontal direction. After the head of the steel abuts against the panel 400, the whole steel moves upward and then leftward. If the wear amount of the panel 400 reaches the preset distance, when the steel moves leftward to directly above the inductive switch 500, the inductive switch 500 can sense the steel. If the wear amount of the panel 400 does not reach the preset distance, when the steel moves above the inductive switch 500, although the steel is within the sensing distance of the inductive switch 500 in the height direction, it is not within the sensing range of the inductive switch 500 in the horizontal direction, so the steel cannot be sensed.

[0058] At this time, the installation height position of the inductive switch 500 is installed according to the high position of the flat pallet for transporting steel bars, that is, the height when the steel is transported above the inductive switch 500; and then the front and rear positions of the inductive switch 500 are adjusted according to the wear limit of the panel 400, that is, the preset distance from the preset surface.

[0059] The "second preset position" includes the third preset position and also includes the inductive switch 500 being arranged on one side of the panel 400. When the wear of the panel 400 reaches the preset distance, the steel moves out of the preset distance relative to the preset surface, and the panel 400 senses the head of the steel. At this time, an ultrasonic inductive switch 500, etc. can be used.

[0060] Refer to Figure 1 、 Figure 2 and Figure 3, in this embodiment, the flush baffle structure 10 further includes a bottom plate 100 and a reinforcing rib 200; the base plate 300 is disposed on the bottom plate 100, and the reinforcing rib 200 is connected and fixed to the bottom plate 100 and the base plate 300 to improve the structural strength. The reinforcing rib 200 is welded to the bottom plate 100 and the base plate 300 to provide a strong supporting effect for the base plate 300.

[0061] Referring to Figure 1 , Figure 2 and Figure 3 , in this embodiment, the flush baffle structure 10 further includes an adjustment bracket 800, and the induction switch 500 is disposed on the adjustment bracket 800. The adjustment bracket 800 is used to adjust and fix the vertical height and horizontal position of the induction switch 500.

[0062] According to a flush baffle structure 10 provided by this embodiment, the working principle of the flush baffle structure 10 is as follows:

[0063] When the wear amount of the panel 400 exceeds the limit and reaches the sensing distance of the induction switch 500, the light prompt turns on, indicating that the operator that the wear of the flush baffle panel 400 exceeds the limit, and the panel 400 can be replaced at an opportune time. For the panel 400 replacement operation, first loosen the fastening bolt 700 with a threaded hole 320, and lift out the panel 400 by using a crane through the first lifting portion 411 or the second lifting portion 421 provided on the panel 400, and then hoist and reinstall it through another set of lifting points. After tightening the fastening bolt 700, the panel 400 replacement operation is completed.

[0064] A flush baffle structure 10 provided by this embodiment has at least the following advantages:

[0065] The induction switch 500 automatically detects the wear amount and the alarm gives an alarm; the base plate 300 and the panel 400 are separated, and only the fastening bolt 700 needs to be loosened and tightened for the hoisting and replacement operation, which simplifies the operation process; replacing the panel 400 does not require professional technicians to perform flame cutting and welding operations, reducing the difficulty of the replacement operation and the on-site operation risk coefficient; improving the efficiency of the panel 400 replacement operation and reducing the operation time. The operation time is reduced from the original 4 hours to at most 15 minutes to complete the replacement operation; optimizing the panel 400 replacement operation method and reducing the number of operators. The number of operators is reduced from the original 4 to the current 2.

[0066] An embodiment of the present invention further provides a flush baffle method. Implemented by using the flush baffle structure 10, the flush baffle method includes: when the alarm gives an alarm, operating the panel 400 to be replaced from the first state to the second state. This can improve the problem of high difficulty in replacing the flush baffle structure 10.

[0067] Alternatively, the operation panel 400 changes from the second state to the first state, depending on whether the first contact surface 430 or the second contact surface 431 is worn or not worn.

[0068] As described above, it is only the specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any changes or substitutions that can be easily thought of by those skilled in the art within the technical scope disclosed by the present invention should be covered by the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.

Claims

1. A flush baffle structure, characterized in that, it includes: a panel (400), a base plate (300), an induction switch (500) and an alarm; The panel (400) is detachably fixed on the base plate (300), and the panel (400) can be fixed in a first state or a second state relative to the base plate (300); the panel (400) has a first contact surface (430) and a second contact surface (431), and the first contact surface (430) and the second contact surface (431) are used to alternately switch to a first preset position during the process of the panel (400) switching between the first state and the second state, so as to contact the head of the steel material conveyed along the preset direction respectively, so that the heads of the steel materials are flush; The induction switch (500) is arranged at a second preset position on one side of the base plate (300), and the induction switch (500) is used to sense the head of the steel material protruding a preset distance from the preset surface, and the preset surface is coplanar with the unworn first contact surface (430) and the second contact surface (431) that are switched to the first preset position; The alarm is electrically connected to the induction switch (500), and the alarm is used to give an alarm when the induction switch (500) senses the head of the steel material; The first contact surface (430) and the second contact surface (431) are coplanar; The base plate (300) is provided with a card slot (310), and the panel (400) is detachably and slidably arranged in the card slot (310); the panel (400) is used to be inserted and fixed in the card slot (310) at the position of the first state, or the panel (400) is used to be inserted and fixed in the card slot (310) at the position of the second state; The panel (400) has a first end (410) and a second end (420) with opposite positions, and the first contact surface (430) and the second contact surface (431) are arranged side by side between the first end (410) and the second end (420); The first end (410) and the second end (420) of the panel (400) are used to be alternately inserted into the card slot (310), so that the panel (400) is switched and fixed between the first state and the second state; The first end (410) of the panel (400) is provided with a first lifting part (411), and the second end (420) of the panel (400) is provided with a second lifting part (421); both the first lifting part (411) and the second lifting part (421) are used for hoisting cooperation with a crane.

2. The flush baffle structure according to claim 1, characterized in that: The card slot (310) is arranged along the vertical direction of the base plate (300); The flush baffle structure further includes a partition plate (600); the partition plate (600) is arranged at the bottom of the card slot (310), and the partition plate (600) is used for supporting the panel (400) inserted into the card slot (310); the partition plate (600) is provided with a lifting hole (610), and the lifting hole (610) is used for accommodating the first lifting part (411) or the second lifting part (421).

3. The flush baffle structure according to claim 1, wherein: The base plate (300) is provided with a screw hole (320) communicated with the card slot (310); the flush baffle structure further includes a fastening bolt (700), the fastening bolt (700) is used for being in threaded connection with the screw hole (320), and the fastening bolt (700) is used for abutting against the panel (400) in the card slot (310) to fix the panel (400) on the base plate (300).

4. The flush baffle structure according to any one of claims 1-3, wherein: The inductive switch (500) is an inductive proximity switch.

5. The flush baffle structure according to claim 4, wherein: The inductive switch (500) is arranged at a third preset position on one side of the base plate (300), and the inductive switch (500) is used for sensing the head of the steel material that translates out of the panel (400) after contacting the panel (400) and protrudes a preset distance relative to the preset surface.

6. The flush baffle structure according to claim 5, wherein: The flush baffle structure further includes a bottom plate (100) and a reinforcing rib (200); the base plate (300) is arranged on the bottom plate (100), and the reinforcing rib (200) connects and fixes the bottom plate (100) and the base plate (300).

7. A flush baffle method implemented by using the flush baffle structure according to any one of claims 1-6, wherein, The flush baffle method includes: In the case of the alarm of the alarm, operating the panel (400) to be changed from the first state to the second state.

Citation Information

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