CN217828644U - Hidden microwave radiator - Google Patents
Hidden microwave radiator Download PDFInfo
- Publication number
- CN217828644U CN217828644U CN202221404497.XU CN202221404497U CN217828644U CN 217828644 U CN217828644 U CN 217828644U CN 202221404497 U CN202221404497 U CN 202221404497U CN 217828644 U CN217828644 U CN 217828644U
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- radiator
- mechanical arm
- microwave
- microwave source
- toothed belt
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Abstract
A hidden microwave radiator, the inside of one end of mechanical arm installs the electrical machinery, mount the guide pulley of the motor side on the output shaft of the electrical machinery, the other end of mechanical arm installs the guide pulley of the mechanical arm side inside, mount the toothed belt between side guide pulley of electrical machinery and side guide pulley of mechanical arm, the toothed belt connects the upper portion of slide block; a slide rail is transversely arranged at the lower side of the toothed belt in the mechanical arm, and a slide block is arranged on the slide rail in a sliding manner; the slide block is arranged on a microwave source, and the microwave source is connected with the radiator. The utility model discloses a hidden microwave radiator, microwave source and radiator integration are in mechanical cantilever, and the patient can not bump microwave radiator at the treatment in-process, is difficult to the scraping and burns, and is safe pleasing to the eye.
Description
Technical Field
The utility model relates to the field of medical equipment.
Background
Tumor thermotherapy, which is a method for raising the temperature of the whole body or tumor tissues (local) by various methods and treating malignant tumors by utilizing the heat action and secondary effects thereof, is the fifth therapy after surgery, radiotherapy, chemotherapy and immunotherapy and is a green treatment means.
Tumor thermotherapy, based on modern science, was activated in the early 60's of the 20 th century and had many breakthrough advances. A large number of in vitro experiments and clinical data show that the tumor thermotherapy has obvious synergistic and supplementary effects on tumor treatment means such as chemotherapy, radiotherapy and operation, although the tumor thermotherapy can not replace the operation, the chemotherapy or the radiotherapy as an independent tumor treatment scheme. Because of this, tumor hyperthermia has rapidly developed in recent years, becoming another important tumor treatment means following surgery, radiotherapy, chemotherapy, and biotherapy.
The radiation is treated by infrared radiation, and has analgesic, repercussive, and local blood circulation improving effects. In the traditional microwave therapeutic machine, the microwave radiator is arranged outside the equipment or hung on a mechanical arm, and is easy to scratch during movement, sometimes the skin is burnt at the edge, and the safety is poor.
SUMMERY OF THE UTILITY MODEL
In order to solve the problems of the traditional microwave therapeutic machine radiator, the utility model provides a hidden microwave radiator.
The utility model discloses a realize that the technical scheme that above-mentioned purpose adopted is: a hidden microwave radiator is characterized in that a motor 2 is arranged in one end of a mechanical arm 1, a motor side guide wheel 3 is arranged on an output shaft of the motor 2, a mechanical arm side guide wheel 8 is arranged in the other end of the mechanical arm 1, a toothed belt 5 is arranged between the motor side guide wheel 3 and the mechanical arm side guide wheel 8, and the toothed belt 5 is connected with the upper part of a sliding block 9; a slide rail 4 is transversely arranged at the lower side of the toothed belt 5 in the mechanical arm 1, and a slide block 9 is arranged on the slide rail 4 in a sliding manner; the slide 9 is arranged on the microwave source 6, and the microwave source 6 is connected with the radiator 7.
And a transverse radiation hole groove 15 is formed in the lower shell of the mechanical arm 1, and a polymer insulating plate is arranged at the radiation hole groove 15.
A fan 14 is arranged on the shell at the upper part of the mechanical arm 1.
The microwave source 6 and the radiator 7 are connected through a coupler, two ends of a coupler shell 10 are respectively fixed on the microwave source 6 and the radiator 7, one end of a microwave source side oscillator 11 in the coupler shell 10 is connected with a microwave source output power end, one end of a radiator side oscillator 12 in the coupler shell 10 penetrates through the coupler shell 10 and the radiator 7 and is positioned in the radiator 7, and an insulator 12 is arranged between the outer side of a radiator side oscillator 13 and the coupler shell 10 and the radiator 7.
The utility model discloses a hidden microwave radiator, microwave source and radiator integration are in mechanical cantilever, and the patient can not bump microwave radiator at the treatment in-process, is difficult to the scraping and burns, and is safe pleasing to the eye.
Drawings
Fig. 1 is a structural diagram of the hidden microwave radiator of the present invention.
Fig. 2 is the external structure view of the hidden microwave radiator of the present invention.
In the figure: 1. the microwave antenna comprises a mechanical arm, 2, a motor, 3, a motor side guide wheel, 4, a sliding rail, 5, a toothed belt, 6, a microwave source, 7, a radiator, 8, a mechanical arm side guide wheel, 9, a sliding block, 10, a coupler shell, 11, a microwave source side oscillator, 12, a radiator side oscillator, 13, an insulator, 14, a fan, 15 and a radiation hole slot.
Detailed Description
The hidden microwave radiator of the utility model is characterized in that a motor 2 is arranged on the inner wall of one end of a mechanical arm 1 through a motor base, a motor side guide wheel 3 is arranged on the output shaft of the motor 2, a mechanical arm side guide wheel 8 is arranged inside the other end of the mechanical arm 1 through a fixed shaft, a toothed belt 5 is arranged between the motor side guide wheel 3 and the mechanical arm side guide wheel 8, and the toothed belt 5 is connected with the upper part of a sliding block 9; a slide rail 4 is transversely arranged at the lower side of the toothed belt 5 in the mechanical arm 1, and a slide block 9 is arranged on the slide rail 4 in a sliding manner; the slide 9 is arranged on the microwave source 6, and the microwave source 6 is connected with the radiator 7. A transverse radiation hole groove 15 is formed in a shell on the lower portion of the mechanical arm 1, a polymer insulation board is installed at the radiation hole groove 15, and a fan 14 is installed on the shell on the upper portion of the mechanical arm 1.
The microwave source 6 is connected with the radiator 7 through a coupler, the microwave source 6 is an existing solid microwave source or a magnetron, the radiator 7 is a closed cylindrical structure rolled by copper foil, the coupler is fully coupled, two ends of a coupler shell 10 are respectively fixed on the microwave source 6 and the radiator 7, one end of a microwave source side oscillator 11 in the coupler shell 10 is connected with a microwave source output power end, one end of a radiator side oscillator 12 in the coupler shell 10 penetrates through the coupler shell 10 and the radiator 7 and is positioned in the radiator 7, and an insulator 13 is arranged between the outer side of the radiator side oscillator 12 and the coupler shell 10 and the radiator 7. The power output by the microwave source 6 forms an inner conductor and an outer conductor through the coupler shell 10 and the microwave source side oscillator 11, and then is input into the radiator 7 through the radiator side oscillator 12, two parts of the radiator side oscillator 12 are respectively positioned in the radiator 7 and the coupler shell 10, through connection is realized, and the microwave power is directly coupled to the radiator 7.
During the use, it is rotatory to drive cogged belt 5 through the rotation of motor 2, slide rail 4 is hollow structure or comprises two parallel slide rails, slide rail 4 is run through on slider 9 upper portion and be fixed in cogged belt 5 through screw and clamp plate, drive slider 9 and then drive microwave source 6 horizontal slip on slide rail 4 through cogged belt 5, thereby drive radiator 7 horizontal migration about, the microwave is through using the human body of downside with the integrative polymer insulation board in radiation hole groove 15, the polymer insulation board can be materials such as epoxy board or polyethylene tetrafluoro board, and mechanical cantilever fuses as an organic whole, the patient can not bump microwave radiator at the treatment in-process, be difficult to scrape and burn, and microwave beam can horizontal migration.
The present invention has been described with reference to exemplary embodiments, and it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the present invention. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, the present invention is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the present application belong to the protection scope of the present invention.
Claims (4)
1. A concealed microwave radiator characterized by: a motor (2) is arranged in one end of the mechanical arm (1), a motor side guide wheel (3) is arranged on an output shaft of the motor (2), a mechanical arm side guide wheel (8) is arranged in the other end of the mechanical arm (1), a toothed belt (5) is arranged between the motor side guide wheel (3) and the mechanical arm side guide wheel (8), and the toothed belt (5) is connected with the upper part of a sliding block (9); a slide rail (4) is transversely arranged on the lower side of the toothed belt (5) in the mechanical arm (1), and a slide block (9) is arranged on the slide rail (4) in a sliding manner; the slide block (9) is arranged on the microwave source (6), and the microwave source (6) is connected with the radiator (7).
2. An invisible microwave radiator as claimed in claim 1, wherein: a transverse radiation hole groove (15) is formed in the lower shell of the mechanical arm (1), and a polymer insulation plate is installed at the radiation hole groove (15).
3. A concealed microwave radiator as claimed in claim 1, wherein: and a fan (14) is arranged on a shell at the upper part of the mechanical arm (1).
4. A concealed microwave radiator as claimed in claim 1, wherein: the microwave source (6) and the radiator (7) are connected through a coupler, two ends of a coupler shell (10) are respectively fixed on the microwave source (6) and the radiator (7), one end of a microwave source side oscillator (11) in the coupler shell (10) is connected with a microwave source output power end, one end of a radiator side oscillator (12) in the coupler shell (10) penetrates through the coupler shell (10) and the radiator (7) and is located in the radiator (7), and an insulator (13) is arranged between the outer side of the radiator side oscillator (12) and the coupler shell (10) and the radiator (7).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221404497.XU CN217828644U (en) | 2022-06-08 | 2022-06-08 | Hidden microwave radiator |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202221404497.XU CN217828644U (en) | 2022-06-08 | 2022-06-08 | Hidden microwave radiator |
Publications (1)
Publication Number | Publication Date |
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CN217828644U true CN217828644U (en) | 2022-11-18 |
Family
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202221404497.XU Active CN217828644U (en) | 2022-06-08 | 2022-06-08 | Hidden microwave radiator |
Country Status (1)
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CN (1) | CN217828644U (en) |
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2022
- 2022-06-08 CN CN202221404497.XU patent/CN217828644U/en active Active
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