Magnesium alloy heat treatment device
By designing a magnesium alloy heat treatment device, utilizing a servo motor-driven roller assembly and an electric heating mechanism, the problem of uneven temperature during the magnesium alloy heat preservation process was solved, achieving uniform heating and efficient heat treatment of magnesium alloy workpieces.
Patent Information
- Application Number
- CN202520269475.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-02-19
AI Technical Summary
During the heat treatment of magnesium alloys, the low weight of the high-temperature gas leads to a temperature difference between the bottom and surface layers, affecting the heat treatment effect.
A magnesium alloy heat treatment device was designed, which adopts a heat preservation mechanism, a roller assembly driven by a servo motor and an electric heating mechanism. The rotation of the roller assembly and the cyclic heating of the heating assembly ensure that the magnesium alloy workpiece is heated evenly.
This method achieves uniform heat treatment of magnesium alloy workpieces, avoids temperature differences, and improves the quality and consistency of heat treatment.
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Figure CN223738077U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to magnesium alloy heat treatment field, especially related to a magnesium alloy heat treatment device. BACKGROUND
[0002] At present, magnesium alloy is the alloy that magnesium is as the basis and adds other elements. Its characteristics are: small density (1.8g / cm3 around), high strength, large elastic modulus, good heat dissipation, good shock absorption, withstand impact load capacity than aluminum alloy, good corrosion resistance of organic matter and alkali, magnesium alloy when carrying out heat treatment work, generally will adopt two kinds of heat treatment mode of heating heat treatment and heat preservation heat treatment, when carrying out heat preservation heat treatment work, need to use the corresponding heat treatment device.
[0003] But, magnesium alloy when carrying out heat treatment operation, since it needs to carry out heat preservation continuously, and magnesium alloy is limited by the low weight of high temperature gas when heat preservation, will gradually rise and cause the temperature difference between the temperature of the magnesium alloy of the bottom layer and the temperature of the magnesium alloy of the surface layer, will affect the heat treatment operation of magnesium alloy, therefore a magnesium alloy heat treatment device is proposed.
[0004] Therefore, in view of the above scheme in actual production and implementation use's lack, and correct, improve, and by the spirit and idea of seeking good, and the aid of professional knowledge, experience, and after many parties cleverness, test, the utility model is created, and a magnesium alloy heat treatment device is provided, which is used to solve the problem that the temperature difference between the temperature of the magnesium alloy of the bottom layer and the temperature of the magnesium alloy of the surface layer is caused by the low weight of high temperature gas when heat preservation, which affects the heat treatment operation of magnesium alloy. Utility model content
[0005] The utility model provides a magnesium alloy heat treatment device, solve the problem in prior art since it needs to carry out heat preservation continuously, and magnesium alloy is limited by the low weight of high temperature gas when heat preservation, will gradually rise and cause the temperature difference between the temperature of the magnesium alloy of the bottom layer and the temperature of the magnesium alloy of the surface layer, will affect the heat treatment operation of magnesium alloy.
[0006] The technical scheme of the utility model is realized as follows: a magnesium alloy heat treatment device, comprising a heat preservation mechanism, the heat preservation mechanism is the box body structure of front end one-way opening, the inside fixedly connected with installation mechanism of heat preservation mechanism, installation mechanism is equipped with eight, wherein every four ring array arrangement installation mechanism is a group;
[0007] Two groups of mounting mechanisms are fixedly connected to the front and rear positions inside the heat preservation mechanism in a linear array, the outer sides of the two groups of mounting mechanisms are fixedly connected with servo motors, the rear side of the servo motor is provided with an output shaft, a dial assembly is installed on the output shaft, the servo motor is used for driving the dial assembly to rotate, the inner side of the dial assembly is installed with a roller assembly, the roller assembly is a bidirectional through structure at the front and rear sides, the outer circumferential surface of the roller assembly is fixedly connected with a protruding block assembly in an annular array, the protruding block assembly is engaged with the dial assembly, the inner side of the roller assembly is fixedly connected with a roasting assembly in an annular array, and the roasting assembly is an electric heating mechanism.
[0008] As a preferred embodiment, the bottom end surface of the heat preservation mechanism is fixedly connected with four cushion blocks with circular cross sections.
[0009] As a preferred embodiment, the four cushion blocks are fixedly connected to the four corner positions of the bottom end surface of the heat preservation mechanism, and the front end of the heat preservation mechanism is hingedly connected with a box door.
[0010] As a preferred embodiment, the front end of the box door is fixedly connected with a handle, and the front end of the box door is fixedly connected with a display screen.
[0011] As a preferred embodiment, the inner side of the heat preservation mechanism is fixedly connected with a support mechanism, and the support mechanism is a U-shaped structure with an open front end.
[0012] As a preferred embodiment, a longitudinal groove is formed in the inner part of the support mechanism, and a moving assembly is slidingly connected in the longitudinal groove.
[0013] As a preferred embodiment, the moving assembly is provided with two blocks, and the outer sides of the two blocks are fixedly connected with two protruding structures of a clamping block assembly.
[0014] As a preferred embodiment, the moving assembly is slidingly connected in the support mechanism through the clamping block assembly.
[0015] As a preferred embodiment, the inner side of the moving assembly is fixedly connected with a storage assembly, and a recess is formed in the front end of the storage assembly.
[0016] As a preferred embodiment, the recess formed in the front end of the storage assembly is a holding groove, and the inner side of the storage assembly is fixedly connected with a bottom plate in a linear array.
[0017] After the above technical scheme is used, the beneficial effects of the present application are:
[0018] 1. In this utility model, by providing a heating component fixedly connected to the inner side of the roller assembly, when the magnesium alloy workpiece is placed in the inner position of the placement assembly and the base plate, the roller assembly can drive the rotation of the heating component to avoid the continuous accumulation of heat at a high position, which would affect the normal heat preservation heat treatment.
[0019] 2. In this utility model, a servo motor is fixedly connected to the outside of the mounting mechanism. When in use, the servo motor can drive the dial assembly to rotate. The continuous heat treatment operation of the magnesium alloy is achieved through the meshing transmission between the dial assembly and the protrusion assembly fixedly connected to the outer circumferential surface of the roller assembly, thereby ensuring the purpose of heat preservation. Attached Figure Description
[0020] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0021] Figure 1 This is a schematic diagram of the front view of the heat treatment device of this utility model after it has been opened;
[0022] Figure 2 This is a schematic diagram of the combined structure of the heat treatment device of this utility model;
[0023] Figure 3 This is a schematic diagram of the combined structure of the roller assembly and the protrusion assembly of the heat treatment device of this utility model;
[0024] Figure 4 This is a schematic diagram of the combined structure of the support mechanism and the moving component of the heat treatment device of this utility model;
[0025] Figure 5 This is a front view of the heat treatment device of this utility model.
[0026] Figure 6 This is a schematic diagram of the combined structure of the mounting mechanism and servo motor of the heat treatment device of this utility model;
[0027] In the diagram, 1 is the insulation mechanism; 101 is the pad; 102 is the cabinet door; 1021 is the handle; 1022 is the display screen; 2 is the support mechanism; 201 is the moving component; 2011 is the locking block component; 202 is the storage component; 2021 is the grip groove; 2022 is the base plate; 3 is the mounting mechanism; 301 is the servo motor; 3011 is the dial assembly; 302 is the roller assembly; 3021 is the protrusion assembly; and 3022 is the roasting component. Detailed Implementation
[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0029] like Figures 1-6 As shown, a magnesium alloy heat treatment device includes: a heat preservation mechanism 1, which is a box structure with a one-way opening at the front end. An installation mechanism 3 is fixedly connected inside the heat preservation mechanism 1. There are eight installation mechanisms 3 in total, and each group consists of four installation mechanisms 3 arranged in a circular array.
[0030] Two sets of mounting mechanisms 3 are fixedly connected in a linear array to the front and rear sides of the heat preservation mechanism 1. A servo motor 301 is fixedly connected to the outer side of each set of mounting mechanisms 3. An output shaft is provided on the rear side of the servo motor 301. A dial assembly 3011 is mounted on the output shaft. The servo motor 301 is used to drive the dial assembly 3011 to rotate. A roller assembly 302 is installed on the inner side of the dial assembly 3011. The roller assembly 302 has a bidirectional through structure on both the front and rear sides. A protrusion assembly 3021 is fixedly connected in a ring array on the outer circumference of the roller assembly 302. The protrusion assembly 3021 engages with the dial assembly 3011. A grilling assembly 3022 is fixedly connected in a ring array on the inner side of the roller assembly 302. The grilling assembly 3022 is an electric heating mechanism. The groove opened at the front end of the placement assembly 202 is a grip groove 2021. A base plate 2022 is fixedly connected in a linear array on the inner side of the placement assembly 202.
[0031] Among them, a circular cross-section pad 101 is fixedly connected to the bottom end face of the insulation mechanism 1. There are four pads 101 in total, and the four pads 101 are fixedly connected to the four corners of the bottom end face of the insulation mechanism 1. A box door 102 is hinged to the front end of the insulation mechanism 1.
[0032] The front end of the door 102 is fixedly connected to a handle 1021 and a display screen 1022. The inner side of the insulation mechanism 1 is fixedly connected to a support mechanism 2, which is a U-shaped structure with an opening at the front end.
[0033] The support mechanism 2 has a longitudinal groove inside, and a moving component 201 is slidably connected inside the longitudinal groove. There are two moving components 201, and two protruding block components 2011 are fixedly connected to the outer sides of the two moving components 201 in opposite directions.
[0034] The moving assembly 201 is slidably connected in the supporting mechanism 2 through the clamping block assembly 2011, and the inner side of the moving assembly 201 is fixedly connected with the storage assembly 202.
[0035] In use, the heat preservation mechanism 1 is placed on the ground through the cushion block 101 fixedly connected to the bottom end, and the device is powered on, then the magnesium alloy workpiece to be heat treated is placed on the bottom plate 2022 fixedly connected to the storage assembly 202, the moving assembly 201 fixedly connected to the outer side of the storage assembly 202 and the clamping block assembly 2011 are inserted into the inner side of the supporting mechanism 2, the box door 102 is closed, and the front end opening of the heat preservation mechanism 1 is closed.
[0036] At this time, the roasting assembly 3022 in the roller assembly 302 is powered on and heated, and the servo motor 301 installed in the mounting mechanism 3 is started to reciprocatingly rotate the dial wheel assembly 3011, for example, the dial wheel assembly 3011 is rotated for a certain number of turns, and then is reversed for a certain number of turns, and the reciprocating rotation is repeated until the roller assembly 302 is rotated for nearly one turn, so that the heat preservation work is realized through the cyclic roasting of the roasting assembly 3022.
[0037] The above is only a preferred embodiment of the present application, and is not used to limit the present application, and any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application should be included in the protection scope of the present application.
Claims
1. A magnesium alloy heat treatment device comprising a heat retaining mechanism (1) which is a front-end one-way opening box structure, characterized in that, The inside of the heat preservation mechanism (1) is fixedly connected with the mounting mechanism (3), and the mounting mechanism (3) is provided with eight places. The two groups of mounting mechanisms (3) are fixedly connected to the front and rear positions inside the heat preservation mechanism (1) in a linear array, and the outer sides of the two groups of mounting mechanisms (3) are fixedly connected with servo motors (301), the rear side of the servo motor (301) is provided with an output shaft, the output shaft is provided with a dial assembly (3011), the servo motor (301) is used for driving the dial assembly (3011) to rotate, the inner side of the dial assembly (3011) is provided with a roller assembly (302), the roller assembly (302) is a front and rear bidirectional through structure, the outer circumferential surface of the roller assembly (302) is fixedly connected with a protruding block assembly (3021) in an annular array, the protruding block assembly (3021) is engaged with the dial assembly (3011), and the inner side of the roller assembly (302) is fixedly connected with a roasting assembly (3022) in an annular array, the roasting assembly (3022) is an electric heating mechanism.
2. The magnesium alloy heat treatment apparatus according to claim 1, wherein The bottom end surface of the heat preservation mechanism (1) is fixedly connected with the cushion block (101) with a circular cross section, and the cushion block (101) is provided with four places.
3. The magnesium alloy heat treatment apparatus according to claim 2, wherein The four cushion blocks (101) are fixedly connected to the four corner positions of the bottom end surface of the heat preservation mechanism (1), and the front end of the heat preservation mechanism (1) is hingedly connected with a box door (102).
4. The magnesium alloy heat treatment apparatus according to claim 3, wherein The front end of the box door (102) is fixedly connected with a handle (1021), and the front end of the box door (102) is fixedly connected with a display screen (1022).
5. The magnesium alloy heat treatment apparatus according to claim 1, wherein The inner side of the heat preservation mechanism (1) is fixedly connected with the support mechanism (2), and the support mechanism (2) is a U-shaped structure with an open front end.
6. A magnesium alloy heat treatment apparatus according to claim 5, wherein The inside of the support mechanism (2) is provided with a longitudinal groove, and the inside of the longitudinal groove is slidably connected with a moving assembly (201).
7. A magnesium alloy heat treatment apparatus according to claim 6, wherein The moving assembly (201) is provided with two places, and the outer sides of the two moving assemblies (201) are fixedly connected with two protruding block assemblies (2011) in opposition.
8. The magnesium alloy heat treatment apparatus according to claim 7, wherein The moving assembly (201) is slidably connected in the support mechanism (2) through the protruding block assembly (2011).
9. The magnesium alloy heat treatment apparatus according to claim 8, wherein The inner sides of the two moving assemblies (201) are fixedly connected with a storage assembly (202), and the front end of the storage assembly (202) is provided with a recess.
10. The magnesium alloy heat treatment apparatus according to claim 9, wherein The recess provided at the front end of the storage assembly (202) is a holding groove (2021), and the inner side of the storage assembly (202) is fixedly connected with a bottom plate (2022) in a linear array.