Automatic temperature control tunnel kiln for daily use porcelain

CN224838372UActive Publication Date: 2026-10-09CHAOZHOU DAXIN CRAFT FACTORY CO LTD
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Patent Information

Application Number
CN202522392309.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-11
Publication Date
2026-10-09
Estimated Expiration
2035-11-11

AI Technical Summary

Technical Problem

[0003]现市面上的自动控温的日用瓷隧道窑炉在实际使用过程中存在以下问题:传统的自动控温的日用瓷隧道窑炉在实际使用时,由于该窑炉中放置瓷胚的承载座只是为单平台,不具备可为瓷胚进行防护的装置,当瓷胚完成制作成为瓷器时,此时在承载台移动的过程中,可能会导致瓷器晃动,甚至导致瓷器倾倒,使用时防护性较差

Benefits of technology

[0011]本实用新型的一种自动控温的日用瓷隧道窑炉具有以下优点:该一种自动控温的日用瓷隧道窑炉,通过在窑炉本体内部安装轨道,同时在轨道表面连接承载座,为承载座顶部焊接卡框,在卡框内部套接支撑柱,为支撑柱表面开设滑槽,并且在支撑柱表面套接套框,为套框表面开设内螺纹孔,在内螺纹孔内部套接挤压杆,该挤压杆表面开设外螺纹,同时挤压杆一端位于滑槽内部,在套框表面焊接第一档杆,为套框侧面焊接第二档杆,该第二档杆表面开设外螺纹,并且在第二档杆表面套接内螺纹套筒,该套框呈对称分布形式,同时套框呈等距分布形式,当在将瓷胚放置在承载座上时,可根据放置的瓷胚大小为套框进行位置调整,此时可直接将套框在支撑柱表面移动,此时将带动第一档杆和第二档杆进行移动,直至档杆之间的缝隙小余瓷胚的体积,之后即可旋转挤压杆,在内螺纹孔和挤压杆表面的外螺纹基础上,可使得挤压杆进行移动,直至挤压杆挤压滑槽,此时通过挤压杆可增大套框和支撑柱之间的摩擦力,为套框完成固定效果,此时即可为第一档杆和第二档杆完成位置固定,之后在移动承载座的过程中,可利用第一档杆和第二档杆为瓷胚或制作好的瓷器提供阻挡的效果,使得瓷胚或瓷器不会掉落,使用时提供了防护性。

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Abstract

The utility model discloses a kind of automatic temperature control's daily-use porcelain tunnel kiln, including kiln body, track and bearing seat, track is installed inside kiln body, track surface is connected bearing seat, the top of bearing seat is welded card frame, the inside sleeve of card frame is supported column, the surface of support column is set sliding slot, the surface of support column is sleeved sleeve frame, and the surface of sleeve frame is set internal thread hole.This kind of automatic temperature control's daily-use porcelain tunnel kiln, by installing track inside kiln body, bearing seat is simultaneously connected on the surface of track, for bearing seat top welding card frame, sleeve supported column in the inside of card frame, first gear lever and second gear lever can be fixed position at this time, after moving bearing seat, first gear lever and second gear lever can be used to provide blocking effect for porcelain embryo or made porcelain, so that porcelain embryo or porcelain does not fall, and protection is provided when using.
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Description

Technical Field

[0001] This utility model belongs to the field of tunnel kiln technology, and in particular relates to an automatic temperature-controlled tunnel kiln for daily-use porcelain. Background Technology

[0002] A tunnel kiln is an industrial continuous kiln, mainly used for the continuous sintering of products such as catalysts and ceramics under a hydrogen protective atmosphere. It features stable production, high output, and low energy consumption. An automatic temperature-controlled tunnel kiln for daily-use porcelain is a kiln with automatic temperature control function specifically designed for the production of daily-use porcelain.

[0003] The following problems exist in the actual use of the automatic temperature-controlled tunnel kilns for daily-use porcelain on the market: In actual use, the support for placing the porcelain blanks in the traditional automatic temperature-controlled tunnel kiln is only a single platform and does not have a device to protect the porcelain blanks. When the porcelain blanks are made into porcelain, the porcelain may shake or even tip over during the movement of the support platform, resulting in poor protection during use. Utility Model Content

[0004] The purpose of this utility model is to provide an automatically temperature-controlled tunnel kiln for daily-use ceramics to solve the technical problems mentioned in the background art.

[0005] To achieve the above objectives, the specific technical solution of this utility model is as follows: An automatic temperature-controlled tunnel kiln for daily-use ceramics includes a kiln body, a track, and a support base. The track is installed inside the kiln body, and the support base is connected to the surface of the track. A retaining frame is welded to the top of the support base, and a support column is sleeved inside the retaining frame. A sliding groove is formed on the surface of the support column, and a sleeve frame is sleeved on the surface of the support column. An internally threaded hole is formed on the surface of the sleeve frame, and an extrusion rod is sleeved inside the internally threaded hole. An external thread is formed on the surface of the extrusion rod, and one end of the extrusion rod is located inside the sliding groove. A first stop rod is welded to the surface of the sleeve frame, and a second stop rod is welded to the side of the sleeve frame. The second stop rod has an external thread on its surface, and an internally threaded sleeve is sleeved on its surface. The sleeve frames are symmetrically distributed and equidistantly distributed.

[0006] Preferably, a groove is formed on the surface of the card frame, and a first external threaded rod is welded to the surface of the support column. The first external threaded rod is located inside the groove, and a nut is sleeved on the surface of the first external threaded rod. One end of the nut is attached to the surface of the card frame.

[0007] Preferably, a slot is formed inside the support column, a retaining ring is welded to the surface of the extrusion rod, the retaining ring is located inside the slot, and a rotating plate is welded to the other end of the extrusion rod.

[0008] Preferably, the top of the support base is provided with a storage frame, the bottom of the storage frame is welded with a positioning rod, the top of the support base is provided with a positioning hole, and the positioning rod is embedded in the positioning hole.

[0009] Preferably, a strip groove is formed on the top of the support seat, an internal threaded seat is fixedly connected to the surface of the storage frame, a second external threaded rod is sleeved inside the internal threaded seat, an internal threaded handle is sleeved on the surface of the second external threaded rod, and the internal threaded handle is located inside the strip groove.

[0010] Preferably, the internal threaded grips are symmetrically distributed, and the second external threaded grips are symmetrically distributed.

[0011] This utility model discloses an automatically temperature-controlled tunnel kiln for daily-use porcelain, which has the following advantages: The kiln features an internal track, a support seat connected to the track surface, a welded frame at the top of the support seat, a support column fitted inside the frame, a groove on the support column surface, and a sleeve fitted onto the support column surface. An internally threaded hole is formed on the sleeve surface, and an extrusion rod is fitted inside the internally threaded hole. The extrusion rod has an external thread, with one end located inside the groove. A first stop bar is welded to the sleeve surface, and a second stop bar is welded to the side of the sleeve frame. The second stop bar has an external thread, and an internally threaded sleeve is fitted onto its surface. The sleeve frames are symmetrically and equidistantly distributed. When the porcelain blank is placed... When placed on the support base, the position of the sleeve can be adjusted according to the size of the porcelain blank. At this time, the sleeve can be moved directly on the surface of the support column, which will drive the first and second stops to move until the gap between the stops is smaller than the volume of the porcelain blank. Then, the extrusion rod can be rotated. Based on the internal thread hole and the external thread on the surface of the extrusion rod, the extrusion rod can be moved until the extrusion rod presses against the slide groove. At this time, the extrusion rod can increase the friction between the sleeve and the support column, thus fixing the sleeve. This fixes the position of the first and second stops. During the movement of the support base, the first and second stops can be used to block the porcelain blank or the finished porcelain, preventing the porcelain blank or porcelain from falling, thus providing protection during use. Attached Figure Description

[0012] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0014] Figure 2 This is a schematic diagram of the first stop lever structure of this utility model;

[0015] Figure 3 This is a schematic diagram of the frame structure of this utility model;

[0016] Figure 4 This is a schematic diagram of the storage frame structure of this utility model;

[0017] Figure 5 For the present utility model Figure 2 Enlarged view of section A in the middle;

[0018] Figure 6 For the present utility model Figure 2 Enlarged view of section B.

[0019] The markings in the diagram are as follows: 1. Kiln body; 2. Support seat; 3. Track; 4. Groove; 5. Support column; 6. First external threaded rod; 7. Nut; 8. Slide groove; 9. Sleeve frame; 10. Internal threaded hole; 11. Extrusion rod; 12. First stop rod; 13. Second stop rod; 14. Internal threaded sleeve; 15. Rotating plate; 16. Retaining ring; 17. Slot; 18. Storage frame; 19. Internal threaded seat; 20. Second external threaded rod; 21. Internal threaded grip rod; 22. Positioning rod; 23. Positioning hole; 24. Strip groove; 25. Slot frame. Detailed Implementation

[0020] In the following description, only certain exemplary embodiments are briefly described. As those skilled in the art will recognize, the described embodiments can be modified in various ways without departing from the spirit or scope of the present invention. Therefore, the drawings and description are considered to be exemplary in nature and not restrictive.

[0021] In the description of the embodiments of this utility model, it should be understood that the terms "length", "vertical", "horizontal", "top", "bottom", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings. They are only for the convenience of describing the embodiments of this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the embodiments of this utility model.

[0022] 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 indicated technical features. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of embodiments of this utility model, "a plurality of" means two or more, unless otherwise explicitly specified.

[0023] In this embodiment of the invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a communication connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this embodiment of the invention according to the specific circumstances.

[0024] The following disclosure provides many different implementations or examples for different structures of the embodiments of the present invention. To simplify the disclosure of the embodiments of the present invention, specific examples of components and arrangements are described below. Of course, these are merely examples and are not intended to limit the embodiments of the present invention. Furthermore, reference numerals and / or reference letters may be repeated in different examples of the embodiments of the present invention; such repetition is for simplification and clarity and does not in itself indicate a relationship between the various implementations and / or arrangements discussed.

[0025] To better understand the purpose, structure, and function of this utility model, the following description, in conjunction with the accompanying drawings, provides a more detailed account of an automatically temperature-controlled tunnel kiln for daily-use porcelain.

[0026] like Figure 1-6 As shown, this utility model discloses an automatic temperature-controlled tunnel kiln for daily-use ceramics, comprising a kiln body 1, a track 3, and a support base 2. The track 3 is installed inside the kiln body 1, and the support base 2 is connected to the surface of the track 3. A retaining frame 25 is welded to the top of the support base 2, and a support column 5 is sleeved inside the retaining frame 25. A sliding groove 8 is formed on the surface of the support column 5, and a sleeve frame 9 is sleeved on the surface of the support column 5. An internally threaded hole 10 is formed on the surface of the sleeve frame 9, and an extrusion rod 11 is sleeved inside the internally threaded hole 10. By installing the extrusion rod 11, based on the external threads on the surface of the internally threaded hole 10 and the surface of the extrusion rod 11, the extrusion rod 11 can be moved during rotation, providing a moving effect for subsequent extrusion. The pressure rod 11 provides a base for the fixed sleeve frame 9. The surface of the pressure rod 11 is threaded with external threads. One end of the pressure rod 11 is located inside the slide groove 8. The first stop rod 12 is welded to the surface of the sleeve frame 9, and the second stop rod 13 is welded to the side of the sleeve frame 9. The surface of the second stop rod 13 is threaded with external threads, and the surface of the second stop rod 13 is fitted with an internally threaded sleeve 14. The sleeve frames 9 are symmetrically distributed and equidistantly distributed. By installing the first stop rod 12 and the second stop rod 13, during the movement of the bearing seat 2, the first stop rod 12 and the second stop rod 13 can be used to provide a blocking effect for the porcelain blank or the finished porcelain, so that the porcelain blank or porcelain will not fall off, providing protection during use.

[0027] A groove 4 is formed on the surface of the frame 25, and a first external thread rod 6 is welded to the surface of the support column 5. The first external thread rod 6 is located inside the groove 4, and a nut 7 is sleeved on the surface of the first external thread rod 6. One end of the nut 7 is attached to the surface of the frame 25. By installing the first external thread rod 6, when installing the support column 5, the first external thread rod 6 on the surface of the support column 5 can be placed inside the groove 4, and then the nut 7 can be sleeved on the surface of the first external thread rod 6 until one end of the nut 7 is attached to the surface of the frame 25. At this time, the support column 5 can be fixed inside the frame 25, ensuring the stability of the support column 5 during use.

[0028] A slot 17 is opened inside the support column 5, and a retaining ring 16 is welded to the surface of the extrusion rod 11. The retaining ring 16 is located inside the slot 17, and a rotating plate 15 is welded to the other end of the extrusion rod 11. By installing the retaining ring 16, since the retaining ring 16 is located inside the slot 17, the retaining ring 16 can provide a limiting effect for the extrusion rod 11, so that the extrusion rod 11 will not come out of the internal threaded hole 10 during the movement, which is very convenient to use.

[0029] The top of the support base 2 is provided with a storage frame 18, and a positioning rod 22 is welded to the bottom of the storage frame 18. A positioning hole 23 is opened on the top of the support base 2, and the positioning rod 22 is embedded in the positioning hole 23. By installing the storage box frame, when there is residual waste on the support base 2, the waste on the support base 2 can be directly swept into the storage frame 18. Afterwards, all the waste can be directly taken out through the storage frame 18, which is very convenient to use.

[0030] A slot 24 is formed on the top of the support base 2. An internal threaded seat 19 is fixedly connected to the surface of the storage frame 18. A second external threaded rod 20 is sleeved inside the internal threaded seat 19. An internal threaded handle 21 is sleeved on the surface of the second external threaded rod 20. The internal threaded handle 21 is located inside the slot 24. By installing the internal threaded handle 21, when lifting the storage frame 18, the internal threaded handle 21 can be rotated. At this time, the internal threaded handle 21 will move on the surface of the second external threaded rod 20 until the internal threaded handle 21 protrudes from the slot 24. At this time, the storage frame 18 can be easily lifted by the internal threaded handle 21, which is very convenient to use.

[0031] The internal threaded handles 21 are symmetrically distributed, and the second external threaded handles 20 are symmetrically distributed. The distribution of the internal threaded handles 21 allows for more stable movement of the storage frame 18 when it is lifted, making it very convenient to use.

[0032] The working principle of this automatically temperature-controlled tunnel kiln for daily-use porcelain is as follows: First, install the storage frame 18. This is done by inserting the positioning rod 22 into the positioning hole 23 until the storage frame 18 is positioned at the top of the support seat 2. Then, install the support column 5. When installing the support column 5, place the first external threaded rod 6 on the surface of the support column 5 into the groove 4. Then, fit the nut 7 onto the surface of the first external threaded rod 6 until one end of the nut 7 is against the surface of the clamping frame 25. At this point, the support column 5 is fixed inside the clamping frame 25, ensuring its stability during use. The kiln can then be used. During the use of the kiln, due to the internal structure of the kiln body 1... Install track 3, and connect bearing seat 2 to the surface of track 3. Weld frame 25 to the top of bearing seat 2. Fit support column 5 inside frame 25. Slide groove 8 is opened on the surface of support column 5. Fit sleeve frame 9 is fitted on the surface of support column 5. Internal threaded hole 10 is opened on the surface of sleeve frame 9. Press rod 11 is fitted inside internal threaded hole 10. External thread is opened on the surface of press rod 11. One end of press rod 11 is located inside slide groove 8. First stop rod 12 is welded to the surface of sleeve frame 9. Second stop rod 13 is welded to the side of sleeve frame 9. External thread is opened on the surface of second stop rod 13. Internal threaded sleeve 14 is fitted on the surface of second stop rod 13. The sleeve frame 9 is symmetrically distributed. The ceramic blanks are evenly distributed. When the ceramic blank is placed on the support seat 2, the position of the sleeve 9 can be adjusted according to the size of the ceramic blank. At this time, the sleeve 9 can be moved directly on the surface of the support column 5. This will drive the first stop rod 12 and the second stop rod 13 to move until the gap between the stop rods is smaller than the volume of the ceramic blank. Then, the pressing rod 11 can be rotated. Based on the internal thread hole 10 and the external thread on the surface of the pressing rod 11, the pressing rod 11 can be moved until the pressing rod 11 presses the slide groove 8. At this time, the pressing rod 11 can increase the friction between the sleeve 9 and the support column 5, thus fixing the sleeve 9. At this time, the first stop rod 12 and the second stop rod 13 are positioned. Once fixed in place, the first stop bar 12 and the second stop bar 13 can be used to block the porcelain blank or finished porcelain during the movement of the support seat 2, preventing the porcelain blank or porcelain from falling and providing protection during use. When it is necessary to clean the top of the support seat 2, the support column 5 can be removed first, and then the waste on the support seat 2 can be directly swept into the storage frame 18. By rotating the internal thread handle 21, the internal thread handle 21 will move on the surface of the second external thread handle 20 until the internal thread handle 21 protrudes from the strip groove 24. At this time, the storage frame 18 can be easily lifted by the internal thread handle 21, and then the waste inside the storage frame 18 can be placed in a suitable position.

[0033] It is understood that this utility model has been described through some embodiments, and those skilled in the art will recognize that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. Furthermore, under the teachings of this utility model, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application are within the protection scope of this utility model.

Claims

1. An automatic temperature-controlled tunnel kiln for daily-use porcelain, comprising a kiln body (1), a track (3), and a support seat (2), wherein the track (3) is installed inside the kiln body (1), and the support seat (2) is connected to the surface of the track (3), characterized in that: The top of the bearing seat (2) is welded with a frame (25), and a support column (5) is sleeved inside the frame (25). A groove (8) is opened on the surface of the support column (5). A sleeve frame (9) is sleeved on the surface of the support column (5). An internal threaded hole (10) is opened on the surface of the sleeve frame (9). An extrusion rod (11) is sleeved inside the internal threaded hole (10). An external thread is opened on the surface of the extrusion rod (11). One end of the extrusion rod (11) is located inside the groove (8). A first stop rod (12) is welded on the surface of the sleeve frame (9). A second stop rod (13) is welded on the side of the sleeve frame (9). An external thread is opened on the surface of the second stop rod (13). An internal threaded sleeve (14) is sleeved on the surface of the second stop rod (13). The sleeve frames (9) are symmetrically distributed and equidistantly distributed.

2. The automatically temperature-controlled tunnel kiln for daily-use porcelain according to claim 1, characterized in that: The card frame (25) has a groove (4) on its surface. The support column (5) has a first external thread rod (6) welded to its surface. The first external thread rod (6) is located inside the groove (4). A nut (7) is sleeved on the surface of the first external thread rod (6). One end of the nut (7) is attached to the surface of the card frame (25).

3. The automatically temperature-controlled tunnel kiln for daily-use porcelain according to claim 1, characterized in that: The support column (5) has a slot (17) inside, and a retaining ring (16) is welded to the surface of the extrusion rod (11). The retaining ring (16) is located inside the slot (17), and a rotating plate (15) is welded to the other end of the extrusion rod (11).

4. The automatically temperature-controlled tunnel kiln for daily-use porcelain according to claim 1, characterized in that: The top of the support base (2) is provided with a storage frame (18), and a positioning rod (22) is welded to the bottom of the storage frame (18). A positioning hole (23) is opened on the top of the support base (2), and the positioning rod (22) is embedded in the positioning hole (23).

5. The automatically temperature-controlled tunnel kiln for daily-use porcelain according to claim 4, characterized in that: The top of the support seat (2) has a strip groove (24), and the surface of the storage frame (18) is fixedly connected to an internal thread seat (19). The internal thread seat (19) is fitted with a second external thread rod (20), and the surface of the second external thread rod (20) is fitted with an internal thread handle (21). The internal thread handle (21) is located inside the strip groove (24).

6. The automatically temperature-controlled tunnel kiln for daily-use porcelain according to claim 5, characterized in that: The internal threaded grip (21) is symmetrically distributed, and the second external threaded grip (20) is symmetrically distributed.