Thermotherapy device
The thermal therapy device's frame design with guide spaces and a center guide portion simplifies maintenance and improves durability by addressing eccentric tilting and jamming issues, enhancing the thermal ceramic module's alignment and engagement.
Patent Information
- Application Number
- PCT/KR2025/000342
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-01-08
- Filing Date
- 2025-01-07
- Publication Date
- 2025-07-17
AI Technical Summary
Existing thermal therapy devices face issues with difficult maintenance of the thermal ceramic module due to eccentric tilting and jamming phenomena, which affect the durability of the horizontal driving system.
The thermal therapy device features a frame design with a first and second guide space that allows easy separation of the thermal ceramic module for maintenance, and includes a center guide portion to regulate the lateral position of the driving parts, eliminating the need for a center alignment wheel and preventing jamming.
Facilitates easy maintenance of the thermal ceramic module, reduces manufacturing costs, and enhances the durability of the device by preventing eccentric tilting and jamming.
Smart Images

Figure KR2025000342_17072025_PF_FP_ABST
Abstract
Description
thermal therapy device
[0001] The present invention relates to a thermal therapy device, and more particularly, to a thermal therapy device including a frame and a thermal ceramic module, in which the thermal ceramic module is easy to maintain and the thermal ceramic module is easy to align.
[0002] Fig. 1 is a drawing showing the structure of a thermal therapy device (1) according to the prior art. Fig. 2 is a drawing showing the structure of a horizontal driving system of a thermal therapy device according to the prior art. In Fig. 1, the X-axis may mean the front-back direction, and the Z-axis may mean the up-down direction. In addition, the direction orthogonal to the X-axis and the Z-axis may mean the left-right direction.
[0003] A thermal treatment device (1) includes a thermal ceramic module (B) including a thermal ceramic, a predetermined driving device (C) for horizontally displacing the thermal ceramic module (B), and a frame (D).
[0004] The thermal therapy device (1) may include a horizontal drive system (10) for horizontal driving of the thermal electrode module (B). The horizontal drive system (10) may include a pinion gear (12) for forward and backward movement of the thermal electrode module (B), and a center alignment wheel (14) for center alignment of the thermal electrode module (B). Here, center alignment of the thermal electrode module (B) may mean, for example, maintaining the thermal electrode module (B) at the left-right center of the frame (D) when viewing the thermal therapy device (1) in the X-axis direction.
[0005] The pinion gear (12) is meshed with the rack gear provided on the frame (D), thereby enabling the forward and backward movement of the thermal ceramic module (B). In addition, the center alignment wheel (14) is mounted on the four corners of the horizontal drive system (10), thereby maintaining the center alignment of the thermal ceramic module (B) when the thermal ceramic module (B) is driven horizontally.
[0006] However, since the pinion gear (12) operates in an eccentric state in such a horizontal drive system (10), eccentric tilting of the thermal ceramic module (B) can easily occur even though it has a center alignment wheel (14). In addition, eccentric tilting can easily occur depending on the deviation between the parts.
[0007] In addition, depending on the joint structure between the frame and the thermal ceramic module, maintenance of the thermal ceramic module may be difficult, and depending on the condition of the device during the horizontal driving process, a jamming phenomenon may occur, which may easily cause problems with the durability of the horizontal driving system.
[0008] Therefore, a means to solve these problems is needed.
[0009] The present invention has been devised to solve the above-mentioned problems, and an object of the present invention is to provide a thermal treatment device including a frame and a thermal ceramic module, in which maintenance of the thermal ceramic module is easy and alignment of the position of the thermal ceramic module is easy.
[0010] A thermal treatment device according to one embodiment of the present invention comprises: a frame having a mounting space; and a thermal ceramic module mounted in the mounting space; wherein the frame comprises a bottom frame disposed at a lower portion and a top frame disposed on the base frame, a first guide space open in the mounting space direction is formed between the bottom frame and the top frame, and when the top frame is separated from the bottom frame, the first guide space opens upward, and the thermal ceramic module comprises a module body and a first driving part, and the first driving part comprises a first shaft and a driving wheel connected to the first shaft and mounted on a side of the module body, and the driving wheel is positioned within the first guide space.
[0011] According to one embodiment, the bottom frame includes a bottom portion forming a bottom surface, and bottom side portions provided on both sides of the bottom portion, and the top frame includes a top side portion arranged on the bottom side portion.
[0012] In one embodiment, the frame further includes a guide frame, the guide frame being disposed within the mounting space and between the bottom frame and the top frame, and the first guide space being formed between the guide frame and the top frame.
[0013] According to one embodiment, the bottom frame includes a bottom portion forming a bottom surface, and bottom side portions provided on both sides of the bottom portion, the top frame includes a top side portion arranged on the bottom side portion, and an inner side portion located on the inside of the top side portion, and the guide frame is arranged between the bottom portion and the inner side portion.
[0014] In one embodiment, the inner side portion has a recessed portion that is recessed in an outward direction of the mounting space, and the first guide space is formed between the recessed portion and the guide frame.
[0015] In one embodiment, the upper surface of the recessed portion is a first guide surface, the upper surface of the guide frame is a second guide surface, and the first guide space is a space formed between the first guide surface and the second guide surface.
[0016] A thermal treatment device according to one embodiment comprises: a frame having a mounting space; and a thermal ceramic module mounted in the mounting space; wherein the frame comprises a bottom frame disposed at a lower portion, a top frame disposed on the base frame, and a guide rail positioned within the mounting space; and wherein the thermal ceramic module comprises a module body, and a second driving unit having at least a portion disposed on the guide rail and driving along the guide rail.
[0017] In one embodiment, the guide rail comprises a rail body protruding upward and a rack gear including a first gear portion formed on the rail body, and the second driving portion comprises a second shaft and a pinion gear connected to the second shaft and provided on a side of the module body, the pinion gear being disposed on the guide rail and driving along the guide rail.
[0018] According to one embodiment, the bottom frame includes a bottom portion forming a bottom surface, and bottom side portions provided on both sides of the bottom portion, and the guide rail is disposed on both sides of the bottom portion and is disposed on the inside of the bottom side portion.
[0019] In one embodiment, a second guide space is formed between the guide rail and the side surface of the bottom side portion, and the thermal ceramic module further includes a center guide portion positioned within the second guide space and having a lateral position regulated by the second guide space.
[0020] In one embodiment, the center guide portion is connected to both ends of the second shaft.
[0021] In one embodiment, the frame further includes a guide frame, the guide frame being disposed within the mounting space, provided on both sides of the bottom portion, and including a guide frame disposed on the inside of the bottom side portion, and the guide rail being located on the inside of the guide frame.
[0022] In one embodiment, the guide frame includes an inner side surface forming an inner surface of the mounting space, and the first guide space is formed between the side surface of the rail body and the inner side surface.
[0023] In one embodiment, the guide frame includes an inner bottom surface, the inner bottom surface is provided on the inner side of the inner side surface and is positioned on the bottom portion, and the guide rail is arranged on the inner bottom surface.
[0024] According to an embodiment of the present invention, the thermal therapy device can detach the thermal ceramic module from the frame by separating the top frame from the bottom frame. Therefore, when maintenance of the thermal ceramic module is required, the thermal ceramic module can be separated from the frame and the maintenance performed. This facilitates maintenance of the thermal therapy device.
[0025] In addition, the thermal electrode module of the thermal therapy device according to an embodiment of the present invention is provided with a center guide portion positioned within a side guide space, and the lateral position of the center guide portion is regulated. Accordingly, the lateral position of the second driving portion connected to the center guide portion can be regulated. Accordingly, the pinion gear is prevented from lateral deviation from the rack gear, and the meshing between the pinion gear and the rack gear can be maintained. Accordingly, the thermal therapy device according to an embodiment of the present invention can maintain the upright alignment of the thermal electrode module (maintain the center in the driving direction) without a center alignment wheel. Accordingly, the cost required for mounting the center alignment wheel is reduced, and the manufacturing cost can be reduced. In addition, since the jamming phenomenon is prevented, it can be advantageous in terms of durability.
[0026] Figure 1 is a drawing showing the structure of a thermal treatment device according to a conventional technology.
[0027] Figure 2 is a drawing showing the structure of a horizontal driving system of a thermal treatment device according to a conventional technology.
[0028] Figure 3 is a drawing showing the appearance of a thermal treatment device according to one embodiment of the present invention.
[0029] Figure 4 is a drawing showing the internal structure of a thermal treatment device according to one embodiment of the present invention.
[0030] Figure 5 is an enlarged view of part A of Figure 4.
[0031] FIG. 6 is a drawing showing the structure of a horizontal drive system of a thermal treatment device according to a comparative example in contrast to the embodiment of the present invention.
[0032] Figure 7 is a conceptual diagram showing the structure of a horizontal drive system of a thermal treatment device according to one embodiment of the present invention.
[0033] A thermal treatment device according to one embodiment of the present invention comprises: a frame having a mounting space; and a thermal ceramic module mounted in the mounting space; wherein the frame comprises a bottom frame disposed at a lower portion and a top frame disposed on the base frame, a first guide space open in the mounting space direction is formed between the bottom frame and the top frame, and when the top frame is separated from the bottom frame, the first guide space opens upward, and the thermal ceramic module comprises a module body and a first driving part, and the first driving part comprises a first shaft and a driving wheel connected to the first shaft and mounted on a side of the module body, and the driving wheel is positioned within the first guide space.
[0034] Hereinafter, with reference to the attached drawings, a preferred embodiment according to the present invention will be described.
[0035] Fig. 3 is a drawing showing the exterior of a thermal therapy device according to one embodiment of the present invention. Fig. 4 is a drawing showing the internal structure of a thermal therapy device according to one embodiment of the present invention. Fig. 5 is an enlarged drawing of part A of Fig. 4.
[0036] FIG. 3 is a conceptual drawing illustrating the appearance of a thermal therapy device according to an embodiment of the present invention; however, the appearance of the thermal therapy device according to an embodiment of the present invention is not necessarily limited to the shape illustrated in FIG. 3. FIG. 3 may be understood as a reference drawing merely for explaining the horizontal drive system (2) of the thermal therapy device illustrated in FIGS. 4 and 5.
[0037] FIG. 4 illustrates the internal structure of a thermal treatment device according to one embodiment of the present invention as viewed in the front-back direction, and can be understood as illustrating, for example, the DD cross-section of FIG. 3.
[0038] As illustrated in FIG. 4, a thermal therapy device according to an embodiment of the present invention may include a frame (100), a thermal ceramic module (200), and a thermal ceramic unit (300). The frame (100), the thermal ceramic module (200), and the thermal ceramic unit (300) are mounted on the thermal therapy device. Among the components constituting the thermal therapy device according to an embodiment of the present invention, components other than the frame (100), the thermal ceramic module (200), and the thermal ceramic unit (300) are not illustrated, but it is obvious to those skilled in the art that the frame (100), the thermal ceramic module (200), and the thermal ceramic unit (300) are components mounted inside the thermal therapy device.
[0039] Hereinafter, “left and right,” “front and back,” and “up and down” indicating directions are based on the directions shown in each drawing. Accordingly, based on FIGS. 3 and 4, the Y-axis direction (left and right direction in FIG. 4), the Z-axis direction (up and down direction in FIG. 4), and the X-axis direction (direction penetrating FIG. 4) orthogonal to the Y-axis and Z-axis are defined as “left and right,” “up and down,” and “front and back,” respectively.
[0040] A thermal treatment device according to one embodiment of the present invention includes a frame (100) having a mounting space (130); and a thermal ceramic module (200) mounted in the mounting space (130).
[0041]
[0042] <Frame (100)>
[0043] The above frame (100) may include a bottom frame (110) placed at the bottom, a top frame (120) placed on the bottom frame (110), and a loading space (130).
[0044] The above bottom frame (110) may include a bottom portion (112) forming a bottom surface, and bottom side portions (114) provided on both sides of the bottom portion (112). The bottom side portions (114) may be partition-shaped structures that are located on both sides of the bottom portion (112) and are erected with a predetermined height. The mounting space (130) may be formed between the bottom side portions (114) on the bottom portion (112). According to one embodiment, the bottom frames (110) may have a configuration that is symmetrical with respect to a center line (CL). The center line (CL) may be an imaginary line that passes through the center of the thermal treatment device when the thermal treatment device is viewed in the front-back direction.
[0045] The top frame (120) may constitute the upper portion of the frame (100). According to one embodiment, the top frames (120) may have a configuration that is symmetrical with respect to the center line (CL).
[0046] The top frame (120) may include a top side portion (122) and an inner side portion (124). The top side portion (122) may be a portion constituting both sides of the upper portion of the frame (100). The inner side portion (124) may be a portion located on the inner side of the top side portion (122) and extending downward from the top side portion (122).
[0047] The top frame (120) can be coupled to the bottom frame (110). The top frame (120) can be coupled to the bottom frame (110) in a manner that covers the mounting space (130) of the bottom frame (110) from above. In addition, the top frame (120) can be separated from the bottom frame (110). The structure and means for coupling and separating the top frame (120) and the bottom frame (110) are not limited.
[0048] When the bottom frame (110) and the top frame (120) are combined, the top side portion (122) can be placed on the bottom side portion (114). And, the inner side portion (124) can be located on the inner side of the bottom side portion (114).
[0049] A recessed portion (126) that is sunken in the outward direction can be formed on the inner surface of the lower part of the inner side portion (124). The upper surface of the recessed portion (126) is configured as a second guide surface (144).
[0050] The mounting space (130) is a space formed inside the frame (100). The mounting space (130) is a space formed between the bottom frame (110) and the top frame (120). The mounting space (130) may be a space having a predetermined height in the vertical direction and a predetermined width in the left-right direction, and extending long in the front-back direction.
[0051] The guide frame (140) may be placed within the mounting space (130). The guide frame (140) may be placed on both lower sides of the mounting space (130). The guide frame (140) may be a portion that extends long in the front-back direction of the thermal treatment device. According to one embodiment, the guide frames (140) placed on both sides of the mounting space (130) may have a configuration that is symmetrical with respect to the center line. The guide frame (140) may be positioned on the bottom portion (112) of the bottom frame (110) and may be positioned on the inner side of the bottom side portion (114).
[0052] The specific coupling relationship between the guide frame (140) and the bottom frame (110) is not limited.
[0053] In one example, the guide frame (140) may be a predetermined block that is coupled to the bottom frame (110), or may be a steel beam having a predetermined shape. In this embodiment, the guide frame (140) and the bottom frame (110) are separate members, and the bottom frame (110) and the guide frame (140) may have a configuration in which they are coupled to each other.
[0054] In another example, the guide frame (140) may be a predetermined three-dimensional portion formed at an edge position between the bottom portion (112) and the bottom side portion (114). In this embodiment, the guide frame (140) and the bottom frame (110) may have an integral configuration. That is, the guide frame (140) may be a part of the bottom frame (110).
[0055] The guide frame (140) may include an inner side surface (142) and a second guide surface (144).
[0056] The inner side surface (142) constitutes the side surface of the guide frame (140). When the bottom frame (110), the top frame (120), and the guide frame (140) are combined, the inner side surface (142) of the guide frame (140) can constitute the inner lower side surfaces of the loading space (130).
[0057] The second guide surface (144) constitutes the upper surface of the guide frame (140). When the bottom frame (110), the top frame (120), and the guide frame (140) are combined, the second guide surface (144) is located below the inner side portion (124) of the top frame (120), and can be located below the recessed portion (126) formed in the inner side portion (124).
[0058] Accordingly, a predetermined first guide space (W) that is sunken in the outer direction of the mounting space (130) and opens in the inner direction (center line direction) of the mounting space (130) can be formed between the first guide surface (128), which is the upper surface of the recessed portion (126), and the second guide surface (144), which is the upper surface of the guide frame (140).
[0059] According to an embodiment, the guide frame (140) may include an inner bottom surface (146). The inner bottom surface (146) may be a portion extending inwardly (in the direction of the center line (CL)) of the mounting space (130) from the lower end of the inner side surface (142). The inner bottom surface (146) may constitute at least a portion of both sides of the bottom surface of the mounting space (130).
[0060] According to an embodiment, the frame (100) may further include a guide rail (150). The guide rail (150) may be placed within the mounting space (130). The guide rail (150) may be positioned on the bottom portion (112) of the bottom frame (110) and may be positioned inside the bottom side portion (114). The guide rail (150) may have a predetermined length in the front-rear direction and may be extended long.
[0061] The guide rail (150) may include a rail bottom portion (152) constituting a lower portion, and a rail body (154) positioned on the rail bottom portion (152). The rail body (154) may have a first gear portion (156) at an upper portion. Accordingly, the guide rail (150) may be a rack gear in which the first gear portion (156) is arranged in a front-back direction at an upper portion.
[0062] The guide rails (150) may be arranged on both sides of the mounting space (130). According to one embodiment, the guide rails (150) arranged on both sides of the mounting space (130) may have a configuration in which they are arranged symmetrically with respect to the center line (CL).
[0063] The guide rail (150) may be positioned on the inner side of the guide frame (140). In one example, the guide frame (140) may be provided with an inner bottom surface (146), and the guide rail (150) may be placed on the inner bottom surface (146). Accordingly, the guide frame (140) and the guide rail (150) may be connected to each other.
[0064] According to an embodiment, a second guide space (V) may be formed between the guide rail (150) and the inner side surface of the bottom side portion (114). The second guide space (V) may be a predetermined space that extends long in the front-rear direction along the rail body (154), is open upward, and has a predetermined depth in the downward direction. According to an embodiment, a guide frame (140) may be disposed between the guide rail (150) and the bottom side portion (114), and the second guide space (V) may be formed between the rail body (154) of the guide rail (150) and the inner side surface (142) of the guide frame (140). Therefore, the second guide space (V) may be symmetrically disposed on both sides of the mounting space (130) with the center line (CL) as the center.
[0065]
[0066] <Thermal Ceramic Module (200)>
[0067] The thermal ceramic module (200) has a thermal ceramic part (300) that performs thermal treatment, and may include a module body (210), a first driving part (220), and a second driving part (230) that performs displacement and operation of the thermal ceramic part (300).
[0068] The module body (210) may be a predetermined structure that mounts a ceramic used for thermal therapy. In addition, a predetermined device that controls the displacement of the module body (210) and the operation of the ceramic may be mounted inside the module body (210).
[0069] The first driving unit (220) may include a first shaft (222) and a driving wheel (224).
[0070] Although not shown, the first driving unit (220) may further include a predetermined actuator that rotates the first shaft (222).
[0071] The first shaft (222) can penetrate the module body (210) in the left-right direction. The driving wheel (224) can be connected to both ends of the first shaft (222). According to an embodiment, the first driving part (220) can have a configuration that is symmetrical in the left-right direction of the module body (210) with the center line (CL) as the center.
[0072] According to an embodiment, when the thermal ceramic module (200) is mounted within the frame (100), the driving wheel (224) can be positioned within the first guide space (W). Accordingly, the driving wheel (224) can be positioned on the first guide surface (128) of the guide frame (140). According to an embodiment, the driving wheel (224) can be positioned between the first guide surface (128) and the second guide surface (144).
[0073] As described above, the driving wheel (224) is positioned between the bottom frame (110) and the top frame (120), and specifically, may be positioned between the first guide surface (128) of the guide frame (140) and the second guide surface (144) of the top frame (120). Therefore, when the top frame (120) is separated from the bottom frame (110), the driving wheel (224) is exposed upward, and the heating ceramic module (200) can be separated from the bottom frame (110). That is, when the top frame (120) is separated from the bottom frame (110), there is no part on the upper part of the heating ceramic module (200) that is caught by the heating ceramic module (200), and thus the heating ceramic module (200) can be separated from the bottom frame (110).
[0074] The second driving part (230) may be located below the first driving part (220).
[0075] The second driving unit (230) may include a second shaft (232) and a pinion gear (234).
[0076] Although not shown, the second driving unit (230) may further include a predetermined actuator that rotates the second shaft (232).
[0077] A second shaft (232) can laterally penetrate the module body (210). A pinion gear (234) can be connected to both ends of the second shaft (232). The pinion gear (234) can have a second gear portion (236) on its outer periphery.
[0078] According to an embodiment, the pinion gear (234) may be positioned on the guide rail (150). Accordingly, the second gear portion (236) provided on the pinion gear (234) may mesh with the first gear portion (156) formed on the rail body (154) of the guide rail (150).
[0079] According to an embodiment, the second driving unit (230) may have a configuration that is symmetrical in both lateral directions of the module body (210) with the center line (CL) as the center.
[0080] According to an embodiment, the thermal ceramic module (200) may include a center guide portion (240).
[0081] The center guide part (240) may have a configuration in which it is symmetrically arranged in both lateral directions with the center line (CL) as the center. The center guide part (240) may have a configuration in which it is coupled with the second driving part (230). For example, the center guide part (240) may be connected to both ends of the second shaft (232). The center guide part (240) may be arranged on the outside of the pinion gear (234).
[0082] According to an embodiment, when the thermal ceramic module is mounted within the frame (100), the center guide portion (240) can be positioned within the second guide space (V). Accordingly, the center guide portion (240) can be positioned between the inner side surface (142) and the rail body (154).
[0083] Accordingly, the lateral position of the center guide part (240) is regulated, and the lateral position of the second driving part (230) to which the center guide part (240) is connected can be regulated. Accordingly, the pinion gear (234) is prevented from lateral separation from the rail body (154), and the engagement between the pinion gear (234) and the rail body (154) can be maintained.
[0084] As described above, the frame (100) involved in the forward and backward movement of the thermal ceramic module (200) and the entire structure and operation of the thermal ceramic module (200) can be described as being part of a horizontal drive system (2).
[0085]
[0086] Fig. 5 is a drawing showing the structure of a horizontal drive system (10) of a thermal treatment device according to a comparative example in contrast to an embodiment of the present invention. Fig. 6 is a conceptual diagram showing the structure of a horizontal drive system (2) of a thermal treatment device according to an embodiment of the present invention.
[0087] A thermal therapy device according to a comparative example may include a shaft (12A), a pinion gear (12B) having a gear portion (12C) formed thereon, a wheel (16), and a rubber (18). The shaft (12A) and the pinion gear (12B) having a gear portion (12C) formed thereon constitute a portion of a driving module (12) that is responsible for driving the thermal ceramic module in the forward and backward directions. In addition, the frame (20) may include a D-shaped rail (22) into which the pinion gear (12B) and the wheel (16) are inserted, and a rack gear (24) that meshes with the pinion gear (12B).
[0088] According to the structure as described above, at least a part of the thermal ceramic module (a part of the shaft (12A) and the pinion gear (12B), the wheel (16), and the rubber (18)) is located within the D-shaped rail (22). Therefore, it is difficult to separate the thermal ceramic module from the frame (20).
[0089] Since it is difficult to separate the thermal ceramic module, if maintenance of the thermal ceramic module is required, the entire thermal treatment device must be recovered.
[0090] In addition, the thermal treatment device according to the prior art had a problem in that the horizontal drive system was eccentric, so the pinion gear (12B) was operated, resulting in eccentric tilting, and thus the device was not properly aligned with the center. As a method for solving this, there is a method of mounting a center alignment wheel (14) on the four corners as shown in Fig. 2, but eccentric tilting may occur depending on the deviation in the press material constituting each member. In addition, depending on the rail condition, a jamming phenomenon may occur, and the durability of the motor may decrease.
[0091] On the other hand, in the case of the thermal ceramic module (200) of the thermal therapy device according to the embodiment of the present invention, when the top frame (120) is separated from the bottom frame (110), there is no part on the upper part of the thermal ceramic module (200) that is caught by the thermal ceramic module (200). Therefore, the thermal ceramic module (200) can be easily removed from the frame (100). Therefore, when maintenance of the thermal ceramic module (200) is required, the thermal ceramic module (200) can be separated from the frame (100) and maintenance can be performed. Therefore, maintenance of the thermal therapy device can be easily performed.
[0092] In addition, the thermal ceramic module (200) of the thermal treatment device according to an embodiment of the present invention is provided with a center guide part (240) positioned within the second guide space (V), and the lateral position of the center guide part (240) is regulated, so that the lateral position of the second driving part (230) to which the center guide part (240) is connected can be regulated. Accordingly, the pinion gear (234) is prevented from being laterally separated from the rack gear, and the engagement between the pinion gear (234) and the rack gear can be maintained. Accordingly, the thermal treatment device according to an embodiment of the present invention can achieve the maintenance of the upright alignment of the thermal ceramic module (200) (maintaining the center in the driving direction) even without a center alignment wheel like the comparative example. Accordingly, the cost required for mounting the center alignment wheel is reduced, and the manufacturing cost can be reduced. In addition, since the jamming phenomenon is prevented, it can be advantageous in terms of durability.
[0093]
[0094] Although the preferred embodiments have been illustrated and described above, the present invention is not limited to the specific embodiments described above, and various modifications may be made by a person skilled in the art to which the invention pertains without departing from the gist of the invention as claimed in the claims. Furthermore, such modifications should not be understood individually from the technical idea or prospect of the present invention.
Claims
1. A frame having a loading space; and Includes a thermal ceramic module mounted in the above-mentioned mounting space; The above frame is, Bottom frame placed at the bottom, Including a top frame placed on the above base frame, A first guide space that opens in the direction of the loading space is formed between the bottom frame and the top frame. When the top frame is separated from the bottom frame, the first guide space is opened upward, The above thermal ceramic module is, module body, and Including the first driving section, The above first driving part includes a first shaft and a driving wheel connected to the first shaft and provided on the side of the module body, The above driving wheel is a thermal treatment device positioned within the first guide space.
2. In paragraph 1, The above bottom frame, The bottom part that constitutes the lower surface, and Including a bottom side part provided on both sides of the bottom part, The above top frame, A thermal treatment device comprising a top side portion disposed on the bottom side portion.
3. In paragraph 1, The above frame is, Including more guide frames, The above guide frame is placed within the above loading space, but is placed between the bottom frame and the top frame. A thermal treatment device in which the first guide space is formed between the guide frame and the top frame.
4. In paragraph 3, The above bottom frame, The bottom part that constitutes the lower surface, and Including a bottom side part provided on both sides of the bottom part, The above top frame, A top side portion arranged on the above bottom side portion, and Including an inner side portion located on the inner side of the top side portion, The above guide frame, A thermal treatment device placed between the above bottom part and the above inner side part 5. In paragraph 4, The inner side above, It has a recessed portion that sinks in the outer direction of the above-mentioned loading space, A thermal treatment device in which the first guide space is formed between the above-mentioned recessed portion and the guide frame.
6. In paragraph 5, The upper surface of the above-mentioned depression is the first guide surface, The upper surface of the above guide frame is a second guide surface, A thermal therapy device in which the first guide space is a space formed between the first guide surface and the second guide surface.
7. A frame having a loading space; and Includes a thermal ceramic module mounted in the above-mentioned mounting space; The above frame is, Bottom frame placed at the bottom, A top frame placed on the above base frame, and Including a guide rail located within the above-mentioned mounting space, The above thermal ceramic module is, module body, and A thermal therapy device comprising a second driving unit having at least one portion positioned on the guide rail and running along the guide rail.
8. In paragraph 7, The above guide rail, It is composed of a rail body protruding upward, and a rack gear including a first gear portion formed on the rail body, The second driving part includes a second shaft, and a pinion gear connected to the second shaft and provided on the side of the module body. A thermal treatment device in which the pinion gear is disposed on the guide rail and runs along the guide rail.
9. In paragraph 8, The above bottom frame, The bottom part that constitutes the lower surface, and Including a bottom side part provided on both sides of the bottom part, The above guide rail, It is placed on both sides of the above bottom part, A thermal treatment device positioned on the inner side of the above bottom side.
10. In paragraph 9, Between the above guide rail and the side of the bottom side, A second guide space is formed, The above thermal ceramic module is, A thermal treatment device further comprising a center guide portion positioned within the second guide space and having a lateral position regulated by the second guide space.
11. In paragraph 10, The above center guide section, A thermal treatment device connected to both ends of the second shaft.
12. In paragraph 11, The above frame is, Including more guide frames, The above guide frame is arranged within the above loading space, is provided on both sides of the bottom part, and includes a guide frame arranged on the inside of the bottom side part. The above guide rail, A thermal treatment device positioned inside the above guide frame.
13. In paragraph 12, The above guide frame includes an inner side surface forming the inner surface of the above loading space, The above first guide space is, A thermal treatment device formed between the side surface of the above rail body and the inner side surface.
14. In paragraph 13, The above guide frame includes an inner bottom surface, The inner bottom surface above is, It is provided on the inner side of the inner side and is located on the bottom part, The above guide rail is a thermal treatment device arranged on the inner bottom surface.
Citation Information
Patent Citations
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