Self-adaptive heat treatment frame for nanocrystalline iron core
By designing an adaptive heat treatment rack with an adjustable support plate for nanocrystalline iron cores, the problem of customizing existing racks was solved, heat treatment efficiency was improved, and resource waste was reduced.
Patent Information
- Application Number
- CN202422921631.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-28
AI Technical Summary
Existing heat treatment racks need to be customized according to iron cores of different sizes, resulting in low heat treatment efficiency and often being left idle after use, causing waste of resources.
An adaptive heat treatment rack for nanocrystalline iron cores was designed. It can adapt to iron cores of different sizes through an adjustable support plate structure in the slide groove. It includes first and second fixing mechanisms, and the support plate is adjustable and fixed by using screws and bolts.
It enables heat treatment to adapt to different sizes of iron cores without customization, improving heat treatment efficiency and avoiding resource waste.
Smart Images

Figure CN223561622U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to heat treatment frame technical field, concretely relates to a kind of nanocrystalline iron core self-adapting heat treatment frame. BACKGROUND
[0002] Heat treatment refers to the workpiece in solid state, by heating, heat preservation and cooling means, change the chemical composition and organization of material surface or inside, obtain the performance of a kind of metal hot working process, and when amorphous, nanocrystalline small iron core is heat treated, usually need to utilize processing frame to support workpiece.
[0003] Among them, the heat treatment rack with publication No.CN203513744U, including a plurality of connecting together rack main body, rack main body includes at least one for placing tray containing part, a plurality of rack main body is stacked from top to bottom and connected together, the containing part of each rack main body is opposite with the containing part of adjacent rack main body.
[0004] However, the existing heat treatment rack usually needs to be customized rack in advance according to different size of iron core, so it will affect the efficiency of iron core heat treatment, and the customized rack often appears idle phenomenon after use, thereby leading to waste of resources. UTILITY MODEL CONTENT
[0005] In view of the above problems existing in the prior art heat treatment rack, the utility model is proposed.
[0006] Therefore, the utility model aims at providing a kind of nanocrystalline iron core self-adapting heat treatment frame, solve the problem that the existing heat treatment rack usually needs to be customized rack in advance according to different size of iron core, so it will affect the efficiency of iron core heat treatment, and the customized rack often appears idle phenomenon after use, thereby leading to waste of resources.
[0007] In order to achieve the above purpose, the utility model provides the following technical scheme:
[0008] A kind of nanocrystalline iron core self-adapting heat treatment frame, including base, the upper surface of the base is staggered and is provided with two sliding grooves, one of the sliding grooves is slidably provided with two first support plates, the other sliding groove is slidably provided with two second support plates, first fixing mechanism is arranged between two second support plates, the upper surface of the base is provided with two third support plates vertical to corresponding second support plate, second fixing mechanism is arranged between two third support plates and two first support plates.
[0009] Preferably, the first fixing mechanism comprises a first screw rod and a plurality of first bolts, the upper end of each of the two second support plates is provided with a first groove, the first screw rod is arranged in the two grooves, and each of the first bolts is threadedly sleeved on the rod wall of the first screw rod and located on the two sides of the corresponding second support plate.
[0010] Preferably, the second fixing mechanism comprises a second screw rod, a plurality of second bolts, a plurality of third screw rods and a plurality of third bolts, the upper end of each of the two first support plates and the third support plates is provided with a second groove, each of the second screw rods is arranged in each of the second grooves, each of the second bolts is threadedly sleeved on the rod wall of the second screw rod and located on the two sides of the corresponding first support plate or third support plate, one side of each of the two third support plates is symmetrically provided with a plurality of through holes, each of the third screw rods is arranged in the corresponding two through holes, and each of the third bolts is fixedly sleeved on the rod wall of the corresponding third screw rod and located on the two sides of the corresponding third support plate.
[0011] Preferably, one end of each of the first support plate and the second support plate is provided with a mounting hole, and the inside of each mounting hole is provided with a screw.
[0012] Preferably, the inside of each of the two sliding grooves is provided with an internal thread groove matched with the screw.
[0013] Preferably, the two ends of each of the two second support plates are provided with an insertion strip, and one end of each of the two third support plates is provided with a strip-shaped hole matched with the insertion strip.
[0014] In the above technical solution, the technical effects and advantages of the present application are provided:
[0015] 1. The present application can be applied to iron cores of different sizes by moving the distance between the two second support plates and the two third support plates, so that the heat treatment frame does not need to be customized in advance according to the size of the iron core, and the heat treatment efficiency of the iron core is greatly improved.
[0016] 2. According to the present application, when each of the second support plates and the third support plates is moved, each of the insertion strips is inserted into the corresponding strip-shaped hole, so that the overall strength of the device is not reduced during movement. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments or the prior art, the drawings needed in the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments described in the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.
[0018] Figure 1 This is a three-dimensional structural diagram of the present invention;
[0019] Figure 2 This is a perspective view of the first support plate of this utility model;
[0020] Figure 3 This is a perspective view of the second support plate of this utility model;
[0021] Figure 4 This is a perspective view of the third support plate of this utility model.
[0022] Explanation of reference numerals in the attached figures:
[0023] 1. Base; 2. First support plate; 3. Second support plate; 4. Third support plate; 5. First lead screw; 6. First bolt; 7. Second lead screw; 8. Second bolt; 9. Third lead screw; 10. Third bolt; 11. Screw; 12. Insert. Detailed Implementation
[0024] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.
[0025] This utility model discloses a nanocrystalline iron core adaptive heat treatment rack.
[0026] This utility model provides, for example Figures 1-3 The nanocrystalline iron core adaptive heat treatment rack shown includes a base 1. Two sliding grooves are staggered on the upper surface of the base 1. Two first support plates 2 are slidably arranged inside one of the sliding grooves, and two second support plates 3 are slidably arranged inside the other sliding groove. A first fixing mechanism is arranged between the two second support plates 3. Two third support plates 4 are arranged on the upper surface of the base 1, which are perpendicular to the corresponding second support plates 3. A second fixing mechanism is arranged between the two third support plates 4 and the two first support plates 2.
[0027] By adjusting the spacing between the two second support plates 3 and the two third support plates 4, the device can be adapted to iron cores of different sizes, thus eliminating the need for pre-customized heat treatment racks based on the size of the iron core and greatly improving the heat treatment efficiency of the iron core.
[0028] In order to support the second support plate 3, such as Figure 1 and Figure 3 As shown, the first fixing mechanism includes a first lead screw 5 and a plurality of first bolts 6. The upper ends of the two second support plates 3 are provided with first grooves. The first lead screw 5 is disposed inside the two grooves. Each first bolt 6 is threaded onto the rod wall of the first lead screw 5 and is located on both sides of the corresponding second support plate 3.
[0029] Each first bolt 6 is screwed to the rod wall of the first lead screw 5, then the first lead screw 5 is placed inside the two first grooves, then each first bolt 6 is tightened, so as to support the two second support plates 3.
[0030] In order to fix the two third support plates 4, as shown in Figure 1 and 3 The second fixing mechanism comprises a second lead screw 7, a plurality of second bolts 8, a plurality of third lead screws 9 and a plurality of third bolts 10, the upper end of each of the first support plate 2 and the third support plate 4 is provided with a second groove, each second lead screw 7 is arranged inside each second groove, each second bolt 8 is threadedly sleeved to the rod wall of the second lead screw 7 and is respectively located on the two sides of the corresponding first support plate 2 or the third support plate 4, one side of each of the two third support plates 4 is symmetrically provided with a plurality of through holes, each third lead screw 9 is arranged inside the corresponding two through holes, and each third bolt 10 is fixedly sleeved to the rod wall of the corresponding third lead screw 9 and is respectively located on the two sides of the corresponding third support plate 4.
[0031] Each second bolt 8 is screwed to the rod wall of the second lead screw 7, then the second lead screw 7 is placed inside each second groove, then each second bolt 9 is tightened, then the two second lead screws 9 are inserted into the two through holes, and then the two second bolts 10 are tightened, so that the third support plate 4 can be fixed.
[0032] In order to fix the first support plate 2 and the second support plate 3, as shown in Figures 1-3 The one end of each of the first support plate 2 and the second support plate 3 is provided with a mounting hole, the inside of each mounting hole is provided with a screw 11, and the inside of each sliding groove is provided with an internal thread groove matched with the screw 11.
[0033] The two first support plates 2 and the two second support plates 3 are respectively arranged inside the sliding grooves, and then the two first support plates 2 and the second support plates 3 can be fixed by using each screw 11.
[0034] In order to make the device more stable, as shown in Figures 1-2 and Figure 4 The two ends of each second support plate 3 are provided with an insertion strip 12, and one end of each third support plate 4 is provided with a strip-shaped hole matched with the insertion strip 12.
[0035] When each second support plate 3 and third support plate 4 moves, each insertion strip 12 is respectively inserted into the inside of the corresponding strip-shaped hole, so that the overall strength of the device is not reduced in the moving process.
[0036] The above has only described certain exemplary embodiments of the present application by way of illustration, and it is needless to say that the described embodiments can be modified in various ways without departing from the spirit and scope of the present application for those skilled in the art. Therefore, the above drawings and descriptions are illustrative in nature, and should not be understood as limiting the scope of protection of the claims of the present application.
Claims
1. A nanocrystalline core self-adapting heat treatment rack, comprising a base (1), characterized in that, The upper surface of the base (1) is staggered with two grooves, one of which is internally slidably provided with two first support plates (2), and the other of which is internally slidably provided with two second support plates (3), and a first fixing mechanism is arranged between the two second support plates (3), and the upper surface of the base (1) is provided with two third support plates (4) perpendicular to the corresponding second support plates (3), and a second fixing mechanism is arranged between the two third support plates (4) and the two first support plates (2).
2. The nanocrystalline core adaptive heat treatment rack of claim 1, wherein, The first fixing mechanism comprises a first lead screw (5) and a plurality of first bolts (6), the upper end of each of the two second support plates (3) is provided with a first recess, and the first lead screw (5) is arranged in the two recesses, and each first bolt (6) is threadedly connected to the wall of the first lead screw (5) and is located on the two sides of the corresponding second support plate (3).
3. The nanocrystalline core adaptive heat treatment rack of claim 1, wherein, The second fixing mechanism comprises a second lead screw (7), a plurality of second bolts (8), a plurality of third lead screws (9) and a plurality of third bolts (10), the upper end of each of the two first support plates (2) and third support plates (4) is provided with a second recess, each second lead screw (7) is arranged in each second recess, each second bolt (8) is threadedly connected to the wall of the second lead screw (7) and is located on the two sides of the corresponding first support plate (2) or third support plate (4), and the side of each of the two third support plates (4) is symmetrically provided with a plurality of through holes, each third lead screw (9) is arranged in the corresponding two through holes, and each third bolt (10) is fixedly connected to the wall of the corresponding third lead screw (9) and is located on the two sides of the corresponding third support plate (4).
4. The nanocrystalline core adaptive heat treatment rack of claim 1, wherein, One end of each of the first support plate (2) and the second support plate (3) is provided with a mounting hole, and a screw (11) is arranged in each mounting hole.
5. The nanocrystalline core adaptive heat treatment rack of claim 1, wherein, The interior of each of the two grooves is provided with an internal thread groove matched with the screw (11).
6. The nanocrystalline core adaptive heat treatment rack of claim 1, wherein, Both ends of each of the two second support plates (3) are provided with a plug strip (12), and one end of each of the two third support plates (4) is provided with a strip-shaped hole matched with the plug strip (12). Both ends of each of the two second support plates (3) are provided with a plug strip (12), and one end of each of the two third support plates (4) is provided with a strip-shaped hole matched with the plug strip (12).
Citation Information
Patent Citations
Storage rack for heat treatment
CN203513744U