WO2023087257A1 - 物理扩张血管装置 - Google Patents

物理扩张血管装置 Download PDF

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Publication number
WO2023087257A1
WO2023087257A1 PCT/CN2021/131808 CN2021131808W WO2023087257A1 WO 2023087257 A1 WO2023087257 A1 WO 2023087257A1 CN 2021131808 W CN2021131808 W CN 2021131808W WO 2023087257 A1 WO2023087257 A1 WO 2023087257A1
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Prior art keywords
rotation
frame
blood vessels
bearing
carrier
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PCT/CN2021/131808
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English (en)
French (fr)
Inventor
徐園植
徐浩钟
金相宇
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徐園植
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Publication date
Application filed by 徐園植 filed Critical 徐園植
Priority to CN202180094723.0A priority Critical patent/CN117730359A/zh
Priority to PCT/CN2021/131808 priority patent/WO2023087257A1/zh
Publication of WO2023087257A1 publication Critical patent/WO2023087257A1/zh

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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09BEDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
    • G09B23/00Models for scientific, medical, or mathematical purposes, e.g. full-sized devices for demonstration purposes
    • G09B23/06Models for scientific, medical, or mathematical purposes, e.g. full-sized devices for demonstration purposes for physics
    • G09B23/08Models for scientific, medical, or mathematical purposes, e.g. full-sized devices for demonstration purposes for physics for statics or dynamics

Definitions

  • the present invention relates to the technical field of body movement, in which the centrifugal force generated by the centrifugal movement inside the human body cooperates with the blood pressure in the blood vessel to form a driving force and a vibration force to physically expand the blood vessel to reduce blood pressure and physically dredge the blocked blood vessel. Physical dilation of the vascular device.
  • Blood vessels are the pipes that transport blood.
  • the blood vessels lose their elasticity and become hardened, which will lead to a rise in blood pressure. After the blood pressure rises, the blood vessels may even rupture, causing great harm to human health. At the same time, the blood vessels lose their elasticity and appear Once hardened, blood clots are prone to occur.
  • the ways of lowering blood pressure for hypertensive patients basically use drugs to temporarily dilate blood vessels and drugs to dredge blood vessels to lower blood pressure, which cannot completely cure hypertensive patients. Once hypertensive patients stop antihypertensive drugs Or blood pressure-lowering health care products, blood pressure will soar rapidly, and even cause life-threatening.
  • Patients with thrombosis are basically accompanied by varicose veins. At present, the treatment of patients with thrombosis is basically combined with surgery and hemolytic or stasis-removing drugs. They are very resistant to drugs. Once they stop If the drug controls the thrombus, the thrombus will recur.
  • any drug has two sides, and antihypertensive drugs and hemolytic and stasis-removing drugs are no exception. Antihypertensive drugs also have side effects on the body while lowering blood pressure. There are also side effects on the body, and different antihypertensive drugs, hemolytic drugs and anti-stasis drugs only have different side effects. Although there are many antihypertensive and hemolytic health care products on the market, these can only temporarily dredge blood vessels and dilate blood vessels through the blood pressure lowering ingredients in health care products or temporarily dissolve thrombus through hemolytic drugs. Dredging blood vessels cannot completely cure patients with hypertension and thrombosis. Therefore, the drugs and health care products for lowering blood pressure and dissolving blood clots on the market cannot make people with high blood pressure and blood clots feel healthier and more comfortable physically and mentally.
  • the traditional treatment methods for hypertensive patients can only be treated by taking antihypertensive drugs or injecting hypotensive drugs, or through the treatment of surgery and drugs; 2.
  • the blood pressure of hypertensive patients repeatedly Elevated, and then repeated treatment, has caused great harm to people's physical and mental health; 3.
  • the blood pressure of hypertensive patients is extremely unstable without antihypertensive drug control, which has caused great obstacles to people's actions and also caused great harm. It has caused great harm to people's physical and mental health; 4.
  • the blood pressure of hypertensive patients will rise without the antihypertensive drugs, and they have tolerance and addiction to the antihypertensive drugs; 5.
  • the traditional treatment methods for thrombosis can only The combination of surgery and drugs will cause thrombus to recur after surgery without thrombolytic drugs; 6.
  • the traditional treatment of hypertension and thrombus cannot physically expand blood vessels and dredge blood vessels through regular exercise on the human body , but cannot reduce the toxic and side effects of drugs on patients.
  • Hypertensive patients have extremely unstable blood pressure without antihypertensive drug control, which has caused great obstacles to people's actions , but also caused great harm to people's physical and mental health;
  • the object of the present invention is to provide a kind of physical expansion blood vessel device and its method that let the body operate synchronously with the operation of the physical exercise equipment to physically expand the blood vessels so that the blood vessels become elastic.
  • the physical blood vessel expansion device of the present invention adopts the human body to rotate with the carrier on the carrier, and when the carrier rotates, the human body is driven to rotate, and the centrifugal force generated by the centrifugal movement inside the rotating human body and the blood pressure in the blood vessel are utilized.
  • the combined driving force and vibration force make the blood vessels soft, elastic and expandable, so as to physically expand the blood vessels to dredge the blood vessels and lower blood pressure, and physically expand the blood vessels of hypertensive patients to lower blood pressure and treat blood pressure. Physically unblock blood vessels in patients with thrombosis.
  • the carrier is used to carry the human body, and the postures of the human body on or in the carrier include but are not limited to lying, sitting, leaning, and standing.
  • the postures of the human body on or in the carrier include but are not limited to lying, sitting, leaning, and standing.
  • On or in the carrier frame there are appliances that match the human body's lying posture (including reclining, flat lying), sitting posture, leaning posture (including leaning, leaning, standing, and sitting), and standing postures, as well as fixed
  • the human body adopts the safety device when lying, sitting, leaning and standing.
  • the rotation mode of the bearing frame has two types of rotation: independent rotation and circumferential rotation; Rotation also includes two types of individual rotation and equal-diameter circumferential rotation, and unequal-diameter circumferential rotation includes two types of spiral dispersed circumferential rotation and spiral convergent circumferential rotation; the rotation mode of the carrier is divided into combinations, including : Independent rotation, equal diameter circumferential rotation, spiral dispersed circumferential rotation, spiral convergent circumferential rotation, combination of individual rotation and spiral dispersed circumferential rotation, combination of individual rotation and spiral convergent circumferential rotation, individual rotation Combined with circumferential rotation Seven rotation modes:
  • Circumferential rotation There is a certain distance between the carrier and the external axis, and the external axis of the carrier is the axis of rotation; the circumferential rotation includes equal-diameter circumferential rotation and unequal-diameter circumference Circumferential rotation with unequal diameter includes helical dispersed circumferential rotation and helical converging circumferential rotation;
  • Centrifugal force is generated inside the body of hypertensive patients and thrombus patients by forward/reverse rotation of the carrier in a manner of independent rotation, and/or forward/reverse rotation of the carrier in a helically dispersed manner Rotate to generate centrifugal force inside the body of hypertensive and thrombus patients, and/or use forward/reverse rotation of the carrier in a helically converging circumferential rotation to generate centrifugal force inside the body of hypertensive and thrombus patients , and/or, use the forward/reverse rotation of the bearing frame to rotate in the equidiametrical circumferential direction to generate centrifugal force inside the body of the hypertensive patient and the thrombus patient, and/or, use the method of allowing the carrier to rotate in a helically dispersed circumferential direction
  • the forward/reverse rotation of the rotation and the dual rotation of the forward/reverse rotation of the independent rotation of the carrier are simultaneously rotated to generate centrifug
  • a physical vascular expansion device is used to allow the human body to generate centrifugal force inside the body to expand the blood vessels when the human body is rotated.
  • the rotational postures of the human body after being fixed on the carrier include but are not limited to sitting posture rotation, standing posture rotation, and posture rotation , Lying posture rotation and other rotation postures; patients with high blood pressure or thrombosis can choose one of sitting posture rotation, standing posture rotation, leaning posture rotation, and lying posture rotation according to their own physical conditions Or a variety of rotation postures to match the individual rotation of the human body with the carrier, equal-diameter circumferential rotation, spiral-dispersed circumferential rotation, spiral-converging circumferential rotation, combination of individual rotation and spiral-dispersed circumferential rotation, and individual rotation
  • One or more of the combination of helical converging circumferential rotation, single rotation and isodiametrical circumferential rotation is used to expand the blood vessels of hypertensive patients or patients with thrombus by centrifugal force.
  • the physical expansion vessel device has three technical schemes in which the rotation mode of the carrier is matched with individual rotation, equal-diameter circumferential rotation, and a combination of individual rotation and circumferential rotation:
  • the carrier adopts the technical scheme of combining independent rotation and circumferential rotation:
  • the physical expansion vessel device includes but not limited to the carrier, sliding frame, rotating frame, fixed frame, guide rail, screw, insertion foot or threaded hole , deceleration device, motor, controller;
  • the motor includes but not limited to the main shaft motor, bearing motor and transverse motor;
  • the deceleration device is commonly known as tooth box, reduction box, gearbox, including but not limited to
  • the deceleration device and the bearing deceleration device adopt gear shifting or pulley shifting, use bevel gears to change the power transmission direction, and use the transmission composed of pulley and belt or gear transmission or transmission shaft for variable speed transmission;
  • the deceleration device can have one or more output ends , the structure of the output end includes the output drive shaft, the output gear, the output pulley;
  • the upper and lower end faces of the sliding frame are provided with vertical shaft bearing holes that pass through or the vertical shaft is provided above the sliding frame, and guides are provided on the front and rear
  • the lower end surface of the chute and the sliding frame is provided with inserting feet or there are guide grooves and threaded holes on the front and rear end surfaces of the sliding frame.
  • the center line of the guide groove is parallel to the threaded hole.
  • the groove of the sleeve or guide slide plate; the guide rail and the screw are installed on the rotating frame, the screw is fixed on the rotating frame through the screw shaft hole and can rotate, the guide rail is parallel to the axis line of the screw; there is a vertical shaft at the lower end of the bearing frame
  • the vertical shaft and the bearing frame are a whole or a separate combination
  • the vertical shaft and the sliding frame are a whole or a separate combination
  • the main shaft bearing hole for installing the main shaft is provided on the fixed frame , there is a main shaft on the lower side of the rotating frame, and the main shaft and the rotating frame are a whole or a separate combination
  • the main shaft bearing hole for installing the main shaft is provided on the rotating frame, there is a main shaft on the upper
  • the guide part of the sliding frame is matched with the guide rail on the guide rail.
  • the screw drives the sliding frame to slide along the guide rail when the screw rotates.
  • the rotating frame cooperates with the main shaft bearing hole on the fixed frame through the main shaft on the lower side, and then is fixed on the fixed frame or the rotating frame through the bearing.
  • the main shaft on the upper side of the fixed frame is matched with the main shaft bearing hole on the rotating frame and then fixed on the fixed frame through the bearing; the main shaft motor is fixed on the fixed frame or on the rotating frame, and the main shaft motor is connected to the main shaft reduction device through the pulley or shaft or gear.
  • the input end is connected, the output end of the main shaft reduction device is respectively connected with the main shaft under the end of the rotating frame, the vertical shaft at the lower end of the bearing frame, and the screw through the transmission shaft or gear or pulley and belt, and the power circuit of the main shaft motor is connected with the power supply through the controller;
  • the main shaft motor is fixed on the fixed frame or on the rotating frame
  • the carrying motor is fixed on the sliding frame or on the bearing frame
  • the transverse motor is fixed on the rotating frame or on the sliding frame
  • the main shaft motor is connected to the end of the rotating frame through the main shaft reduction device.
  • the main shaft is connected or connected with the main shaft on the fixed frame
  • the bearing motor is connected with the vertical shaft at the lower end of the bearing frame or the vertical shaft at the upper end of the sliding frame through the bearing reduction device
  • the transverse motor is connected with the shaft of the screw through the lateral reduction device. and the energizing circuit of the transverse motor are connected to the power supply through the controller;
  • the bearing frame adopts the technical scheme of equal-diameter and circumferential rotation:
  • the physical expansion vessel device includes but not limited to the bearing frame, rotating frame, fixed frame, spindle reduction device, spindle motor, and controller; at one end of the rotating frame There is a main shaft on the lower side of the part, and a bearing frame is fixed on the upper side of the other end of the rotating frame. There is a main shaft bearing hole for installing the main shaft on the fixed frame.
  • the main shaft motor is fixed on the fixed frame, the main shaft motor is connected with the main shaft under the end of the rotating frame through the main shaft reduction device, and the electrification circuit of the main shaft motor is connected with the power supply through the controller; or, the main shaft is arranged on the upper side of the fixed frame, One end of the rotating frame is provided with a main shaft bearing hole for installing the main shaft.
  • the rotating frame cooperates with the main shaft through the main shaft bearing hole and is fixed on the fixed frame through the bearing.
  • the main shaft motor is fixed on the rotating frame, and the main shaft motor is connected with the main shaft under the end of the rotating frame through the main shaft reduction device, and the energizing circuit of the main shaft motor is connected with the power supply through the controller;
  • the bearing frame adopts a technical solution of independent rotation:
  • the physical expansion vessel device includes but not limited to a bearing frame, a fixed frame, a bearing deceleration device, a bearing motor, and a controller;
  • the frame is a whole or a separate combination; there is a vertical shaft bearing hole for installing the vertical shaft on the fixed frame, the bearing frame is fixed on the fixed frame through the vertical shaft and the vertical shaft bearing hole through the bearing, and the load-carrying motor is fixed on the fixed frame.
  • the deceleration device is connected to the vertical shaft at the lower end of the bearing frame, and the energized circuit of the carrying motor is connected to the power supply through the controller; or, a vertical shaft is arranged on the top of the fixed frame, and the vertical shaft and the fixed frame are a whole or a separate combination; There is a vertical shaft bearing hole for installing the main shaft, the bearing frame is matched with the vertical shaft through the vertical shaft bearing hole and then fixed on the fixed frame through the bearing, the carrying motor is fixed on the carrying frame and connected with the vertical shaft on the fixed frame through the carrying reduction device, and the power supply of the carrying motor The circuit is connected with the power supply through the controller.
  • hypertensive patients can treat high blood pressure without taking antihypertensive drugs, taking antihypertensive injections, and without the need for surgery and drugs.
  • Side effects of blood pressure drugs on the human body are not taking antihypertensive drugs, taking antihypertensive injections, and without the need for surgery and drugs.
  • Hypertensive patients physically expand and dredge the blood vessels of hypertensive patients through the centrifugal movement inside the human body, so that the blood vessels of hypertensive patients become soft, elastic and expandable, and the stability is good after blood pressure is lowered. It is of great help to people's physical and mental health, and reduces the chance of recurrence in patients with high blood pressure;
  • It can also be used as a substitute for blood pressure-lowering drugs to stabilize blood pressure after the blood pressure is lowered by drug treatment for hypertensive patients; it can also be used as a blood clot for patients with thrombosis after the blood clot is temporarily dissolved by drug treatment. The blood no longer coagulates and replaces the substitute of hemolytic drugs; thereby reducing the side effects of drugs on the human body.
  • Fig. 1 is a schematic cross-sectional structural view of a physical dilating blood vessel device in which the main shaft is matched with the fixed frame on the rotary frame, the sliding frame is slidably fitted with the rotary frame, and the vertical shaft is matched with the sliding frame on the bearing frame;
  • Fig. 2 is a cross-sectional schematic diagram of a physical expansion vessel structure in which the main shaft is matched with the rotating frame on the fixed frame, the sliding frame is slidably matched with the rotating frame, and the vertical shaft is matched with the bearing frame on the sliding frame.
  • Fig. 3 is a schematic cross-sectional structural view of a physical dilating blood vessel device in which the main shaft cooperates with the fixed frame on the rotary frame and the carrier frame is fixed on the rotary frame;
  • Fig. 4 is a schematic cross-sectional structural view of a physical expansion blood vessel device in which the main shaft cooperates with the rotating frame on the fixed frame, and the bearing frame is fixed on the rotating frame.
  • Fig. 5 is a schematic cross-sectional structural view of a physical expansion vessel device in which the main shaft cooperates with the fixed frame on the carrier frame;
  • Fig. 6 is a schematic cross-sectional structural view of a device for physically expanding blood vessels in which the main shaft cooperates with the carrier on the fixed frame.
  • fixed frame 1 main shaft 2, rotating frame 3, sliding frame 4, bearing frame 5, vertical shaft 6, guide rail 7, screw rod 8, insertion foot 9, main shaft reduction device 10, main shaft motor 11, lateral deceleration Device 12, transverse motor 13, bearing deceleration device 14, bearing motor 15, bearing 16.
  • the carrier 5 adopts a combination of independent rotation and circumferential rotation: the carrier 5 cooperates with the vertical shaft 6 on the lower end of the vertical shaft 6 and the bearing 16 holes on the sliding frame 4, and then is fixed on the sliding frame 4 through the bearing 16 , the sliding frame 4 is installed on the upper side of the rotating frame 3, the sliding guide part of the sliding frame 4 cooperates with the guiding sliding track 7 on the sliding guide rail 7, the insertion foot 9 at the lower end of the sliding frame 4 cooperates with the screw thread on the screw rod 8, and the screw rod 8 Drive the sliding frame 4 to slide along the guide rail 7 when rotating, and the rotating frame 3 cooperates with the main shaft 2 bearing 16 holes on the fixed frame 1 through the main shaft 2 on the lower side and is fixed on the fixed frame 1 through the bearing 16; the main shaft motor 11 Fixed on the fixed frame 1, the carrying motor 15 is fixed on the sliding frame 4, the transverse motor 13 is fixed on the rotating frame 3, the main shaft motor 11 is connected with the main shaft 2 under the end of the rotating frame 3 through the
  • the rotation mode of the bearing frame 5 is preferably: a combination of independent rotation and circumferential rotation: while the bearing frame 5 is rotating with its own vertical center, the bearing frame 5 is also rotating around the axis with the outer axis as the center of rotation. , forming a double rotation; adopting the forward/reverse rotation of the carrier frame 5 in a spiral distributed circumferential direction and the double rotation mode of the forward/reverse rotation of the carrier frame 5 in a separate rotation and simultaneously rotating with the carrier frame 5 with The forward/reverse rotation of the helical convergent circumferential rotation and the double rotation of the forward/reverse rotation of the carrier 5 in a single rotation are simultaneously rotated, and the forward/reverse rotation of the carrier 5 in the equidiametrical circumferential rotation and the bearing frame 5 are simultaneously rotated and matched in a forward/reverse rotation double rotation mode of independent rotation to generate centrifugal force inside the body of hypertensive patients and patients with thrombosis, and the centrifugal force generated inside the human body allows
  • the rotation posture of the human body after being fixed on the carrier frame 5 is preferred: the optimum is the rotation in the sitting posture, followed by the rotation in the posture posture, and then the rotation in the lying posture posture.
  • the device for physically expanding blood vessels has three technical solutions in which the rotation mode of the carrier 5 is matched with individual rotation, equal-diameter circumferential rotation, and a combination of individual rotation and circumferential rotation:
  • the bearing frame 5 adopts the technical scheme of combining independent rotation and circumferential rotation:
  • the physical expansion vessel device includes but not limited to the bearing frame 5, the sliding frame 4, the rotating frame 3, the fixed frame 1, the guide rail 7, the screw rod 8.
  • the screw rod 8 is fixed on the rotating frame 3 through the shaft hole of the screw rod 8 to be able to rotate, and the guide rail 7 is parallel to the axis line of the screw rod 8; Integral or separate assembly; when there is a vertical shaft 6 above the sliding frame 4, the vertical shaft 6 and the sliding frame 4 are an integral or separate assembly; when the fixed frame 1 is provided with the main shaft 2 bearing 16 holes for installing the main shaft 2 , there is a main shaft 2 on the lower side of the rotating frame 3, and the main shaft 2 and the rotating frame 3 are a whole or a separate combination; There is a main shaft 2 on the upper side, and the main shaft 2 and the fixed frame 1 are a whole or a separate combination; the bearing frame 5 is fixed on the sliding frame 4 through the vertical shaft 6 on the lower end and the vertical shaft 6 bearing 16 holes on the sliding frame 4 through the bearing 16.
  • the upper or bearing frame 5 is fixed on the sliding frame 4 through the vertical shaft 6 on the upper end of the sliding frame 4 and the vertical shaft 6 bearing 16 holes on the carrier frame 5 through the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, and the sliding frame
  • the guide slide part of 4 cooperates with the guide slide track 7 on the guide slide track 7, when the insertion foot 9 at the lower end of the slide frame 4 is matched with the thread on the screw rod 8 or when the threaded hole on the slide frame 4 cooperates with the screw rod 8, the screw rod 8 is in the
  • the sliding frame 4 is driven to slide along the guide rail 7, and the rotating frame 3 cooperates with the main shaft 2 bearing 16 holes on the fixed frame 1 through the main shaft 2 on the lower side, and then is fixed on the fixed frame 1 through the bearing 16 or the rotating frame 3 is fixed by
  • the main shaft 2 on the upper side of the frame 1 cooperates with the 16 holes of the main shaft 2 bearing on the rotating frame 3 and is fixed on the fixed frame 1 through the bearing 16; Or the shaft or gear
  • the carrier frame 5 only adopts the technical solution of equal-diameter and circumferential rotation:
  • the physical expansion vessel device includes but not limited to the carrier frame 5, the rotating frame 3, the fixed frame 1, the main shaft reduction device 10, the main shaft motor 11, and the controller
  • the frame 3 is fixed on the fixed frame 1 through the main shaft 2 and the bearing 16 hole of the main shaft 2 through the bearing 16.
  • the main shaft motor 11 is fixed on the fixed frame 1.
  • the energized circuit of the main shaft motor 11 is connected to the power supply through the controller; or, the main shaft 2 is provided on the upper side of the fixed frame 1, and the main shaft 2 bearing 16 holes for installing the main shaft 2 are arranged at one end of the rotating frame 3, and the rotating frame 3 Cooperate with the main shaft 2 through the 16 holes of the main shaft 2 bearings and then fix it on the fixed frame 1 through the bearing 16.
  • a carrier frame 5 is fixed, and the main shaft motor 11 is fixed on the rotating frame.
  • the spindle motor 11 is connected to the spindle 2 below the end of the rotating frame 3 through the spindle reduction device 10, and the power circuit of the spindle motor 11 is connected to the power supply through the controller;
  • the carrier frame 5 only adopts the technical solution of independent rotation:
  • the physical expansion vessel device includes but not limited to the carrier frame 5, the fixed frame 1, the load reduction device 14, the load motor 15, and the controller; at the lower end of the carrier frame 5 A vertical shaft 6 is provided, and the vertical shaft 6 and the bearing frame 5 are an integral or separate combination; the vertical shaft 6 bearing 16 holes for installing the vertical shaft 6 are arranged on the fixed frame 1, and the supporting frame 5 cooperates with the vertical shaft 6 through the vertical shaft 6 bearing 16 holes Then be fixed on the fixed frame 1 by the bearing 16, the carrying motor 15 is fixed on the fixed frame 1 and is connected with the vertical shaft 6 at the lower end of the carrying frame 5 through the carrying reduction gear 14, and the energizing circuit of the carrying motor 15 is connected with the power supply through the controller; or, A vertical shaft 6 is arranged above the fixed frame 1, and the vertical shaft 6 and the fixed frame 1 are an integral or separate combination; the vertical shaft 6 bearing 16 holes for installing the main shaft 2 are arranged on the carrier frame 5, and the carrier frame 5 passes through the vertical shaft 6
  • the carrier frame 5 adopts the technical scheme of combining independent rotation and circumferential rotation, and there are several ways to realize it as follows:
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the sliding frame 4 through the vertical shaft 6 at the lower end and is fixed on the sliding frame 4 through the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, and the sliding frame 4
  • the guide slide part cooperates with the guide slide track 7 on the guide slide track 7, the threaded hole on the slide frame 4 cooperates with the screw rod 8, and the screw rod 8 drives the slide frame 4 to slide along the guide slide track 7 when rotating, and the rotating frame 3 passes through the lower side
  • the main shaft 2 is matched with the main shaft 2 bearing 16 holes on the fixed frame 1 and fixed on the fixed frame 1 through the bearing 16;
  • the input end of the main shaft reduction device 10 is connected to the input end of the main shaft reduction device 10, and the main shaft 2 below the end of the rotating frame 3, the vertical shaft 6 and the screw rod 8 at the lower end of the carrier frame 5 are respectively connected to the output end of the main shaft reduction device 10 through a transmission shaft or a gear or a pulley and a belt,
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the bearing frame 5 through the vertical shaft 6 on the upper end of the sliding frame 4 and is fixed on the sliding frame 4 through the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, slide The sliding part of the frame 4 cooperates with the sliding track 7 on the sliding track 7, and the insertion foot 9 at the lower end of the sliding frame 4 cooperates with the thread on the screw 8, and the screw 8 drives the sliding frame 4 to slide along the sliding track 7 when rotating , the rotating frame 3 is fixed on the fixed frame 1 through the bearing 16 through the spindle 2 on the upper side of the fixed frame 1 and the spindle 2 bearing 16 holes on the rotating frame 3; the spindle motor 11 is fixed on the rotating frame 3, and the spindle motor 11 passes through
  • the pulley or shaft or gear is connected to the input end of the main shaft reduction device 10, and the output end of the main shaft reduction device 10 is respectively connected to the main shaft 2 below the end of the rotating frame 3 and the vertical shaft 6 at the lower end of the
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the sliding frame 4 through the vertical shaft 6 at the lower end and is fixed on the sliding frame 4 through the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, and the sliding frame 4
  • the guide slide part cooperates with the guide slide track 7 on the guide slide track 7, and the insertion foot 9 at the lower end of the slide frame 4 cooperates with the screw thread on the screw rod 8.
  • the screw rod 8 When the screw rod 8 rotates, it drives the slide frame 4 to slide along the guide slide track 7, and the rotating frame 3 Cooperate with the main shaft 2 on the lower side and the bearing 16 hole of the main shaft 2 on the fixed frame 1, and then fix it on the fixed frame 1 through the bearing 16; the main shaft motor 11 is fixed on the fixed frame 1, and the main shaft motor 11 is connected with the The input end of the main shaft reduction device 10 is connected, and the output end of the main shaft reduction device 10 is respectively connected with the main shaft 2 below the end of the rotating frame 3, the vertical shaft 6 and the screw rod 8 at the lower end of the carrier frame 5 through a transmission shaft or a gear or a pulley and a belt.
  • the energizing circuit of the motor 11 is connected with the power supply through the controller;
  • the bearing frame 5 is fixed on the sliding frame 4 by the vertical shaft 6 at the lower end and the vertical shaft 6 bearing 16 holes on the sliding frame 4 through the bearing 16, and the sliding frame 4 is installed on the upper side of the rotating frame 3, and the sliding frame 4
  • the guide slide part cooperates with the guide slide track 7 on the guide slide track 7, the threaded hole on the slide frame 4 cooperates with the screw rod 8, and the screw rod 8 drives the slide frame 4 to slide along the guide slide track 7 when rotating, and the rotating frame 3 passes through the fixed frame 1
  • the main shaft 2 on the upper side is matched with the 16 holes of the main shaft 2 bearing on the rotating frame 3, and then fixed on the fixed frame 1 through the bearing 16;
  • the input end of the deceleration device 10 is connected, the output end of the main shaft deceleration device 10 is respectively connected with the main shaft 2 below the end of the rotating frame 3, the vertical shaft 6 and the screw 8 at the lower end of the carrier frame 5 through a transmission shaft or a gear or a pulley and a belt, and the main shaft
  • the bearing frame 5 is fixed on the sliding frame 4 by the vertical shaft 6 at the upper end of the sliding frame 4 and the vertical shaft 6 bearing 16 holes on the carrying frame 5 through the bearing 16, and the sliding frame 4 is installed on the upper side of the rotating frame 3, slides
  • the slide guide part of the frame 4 cooperates with the guide slide track 7 on the guide slide track 7, and the threaded hole on the slide frame 4 cooperates with the screw rod 8, and the screw rod 8 drives the slide frame 4 to slide along the guide slide track 7 when rotating, and the rotating frame 3
  • the main shaft 2 on the upper side of the fixed frame 1 is matched with the 16 holes of the main shaft 2 bearing on the rotating frame 3 and then fixed on the fixed frame 1 through the bearing 16;
  • the gear is connected to the input end of the main shaft reduction device 10, and the output end of the main shaft reduction device 10 is respectively connected to the main shaft 2 below the end of the rotating frame 3, the vertical shaft 6 and the screw rod 8 at the lower end of the carrier frame 5 through a transmission shaft or a gear or a pulley and a belt
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the bearing frame 5 through the vertical shaft 6 at the upper end of the sliding frame 4 and is fixed on the sliding frame 4 through the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, slides
  • the slide guide part of the frame 4 cooperates with the guide slide track 7 on the guide slide track 7, and the threaded hole on the slide frame 4 cooperates with the screw rod 8, and the screw rod 8 drives the slide frame 4 to slide along the guide slide track 7 when rotating, and the rotating frame 3
  • the main shaft 2 on the lower side cooperates with the main shaft 2 bearing 16 holes on the fixed frame 1 and is fixed on the fixed frame 1 through the bearing 16;
  • the input end of the deceleration device 10 is connected, the output end of the main shaft deceleration device 10 is respectively connected with the main shaft 2 below the end of the rotating frame 3, the vertical shaft 6 and the screw 8 at the lower end of the carrier frame 5 through a transmission shaft or a gear or a pulley and a belt, and the main
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the bearing frame 5 through the vertical shaft 6 at the upper end of the sliding frame 4 and is fixed on the sliding frame 4 through the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, slide The sliding part of the frame 4 cooperates with the sliding track 7 on the sliding track 7, and the insertion foot 9 at the lower end of the sliding frame 4 cooperates with the thread on the screw 8, and the screw 8 drives the sliding frame 4 to slide along the sliding track 7 when rotating , the rotating frame 3 cooperates with the main shaft 2 on the lower side and the bearing 16 hole of the main shaft 2 on the fixed frame 1, and then is fixed on the fixed frame 1 through the bearing 16; Or the gear is connected to the input end of the main shaft reduction device 10, and the output end of the main shaft reduction device 10 is respectively connected with the main shaft 2 below the end of the rotating frame 3, the vertical shaft 6 and the screw rod 8 at the lower end of the bearing frame 5 through a transmission shaft or a gear or a pulley and a belt. connected, the
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the sliding frame 4 through the vertical shaft 6 at the lower end and is fixed on the sliding frame 4 by the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, and the sliding frame 4
  • the guide slide part cooperates with the guide slide track 7 on the guide slide track 7, and the insertion foot 9 at the lower end of the slide frame 4 cooperates with the screw thread on the screw rod 8.
  • the screw rod 8 When the screw rod 8 rotates, it drives the slide frame 4 to slide along the guide slide track 7, and the rotating frame 3
  • the main shaft 2 on the upper side of the fixed frame 1 is matched with the bearing 16 hole of the main shaft 2 on the rotating frame 3, and then fixed on the fixed frame 1 through the bearing 16;
  • the gear is connected to the input end of the main shaft reduction device 10, and the output end of the main shaft reduction device 10 is respectively connected with the main shaft 2 below the end of the rotating frame 3, the vertical shaft 6 and the screw rod 8 at the lower end of the bearing frame 5 through a transmission shaft or a gear or a pulley and a belt.
  • the energized circuit of the spindle motor 11 is connected to the power supply through the controller;
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the sliding frame 4 through the vertical shaft 6 at the lower end and is fixed on the sliding frame 4 through the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, and the sliding frame 4
  • the guide slide part cooperates with the guide slide track 7 on the guide slide track 7, the threaded hole on the slide frame 4 cooperates with the screw rod 8, and the screw rod 8 drives the slide frame 4 to slide along the guide slide track 7 when rotating, and the rotating frame 3 passes through the lower side
  • the main shaft 2 is matched with the main shaft 2 bearing 16 holes on the fixed frame 1 and fixed on the fixed frame 1 through the bearing 16;
  • the main shaft motor 11 is connected to the main shaft 2 below the end of the rotating frame 3 through the main shaft reduction device 10
  • the bearing motor 15 is connected to the vertical shaft 6 at the lower end of the bearing frame 5 through the bearing reduction device 14.
  • the motor 13 is connected to the shaft of the screw rod 8 through the transverse reduction device 12, and the energized circuits of the main
  • the bearing frame 5 is fixed on the sliding frame 4 through the vertical shaft 6 on the upper end of the sliding frame 4 and the vertical shaft 6 bearing 16 holes on the bearing frame 5 through the bearing 16, and the sliding frame 4 is installed on the upper side of the rotating frame 3, sliding
  • the sliding part of the frame 4 cooperates with the sliding track 7 on the sliding track 7, and the insertion foot 9 at the lower end of the sliding frame 4 cooperates with the thread on the screw 8, and the screw 8 drives the sliding frame 4 to slide along the sliding track 7 when rotating
  • the rotating frame 3 is fixed on the fixed frame 1 through the bearing 16 through the spindle 2 on the upper side of the fixed frame 1 and the bearing 16 hole of the spindle 2 on the rotating frame 3;
  • the spindle motor 11 is fixed on the rotating frame 3, and the carrying motor 15 is fixed
  • the transverse motor 13 is fixed on the rotating frame 3 or the sliding frame 4
  • the main shaft motor 11 is connected with the main shaft 2 on the fixed frame 1 through the main shaft reduction device 10
  • the carrying motor 15 is connected to the sliding frame through the bearing reduction
  • the vertical shaft 6 at the upper end is connected, the transverse motor 13 is connected to the shaft of the screw rod 8 through the transverse reduction device 12, and the energizing circuit of the main shaft motor 11, the carrying motor 15 and the transverse motor 13 is connected to the power supply through the controller;
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the sliding frame 4 through the vertical shaft 6 at the lower end and is fixed on the sliding frame 4 through the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, and the sliding frame 4
  • the guide part of the guide slide is matched with the guide slide track 7 on the guide slide track 7, and the insertion foot 9 at the lower end of the slide frame 4 cooperates with the screw thread on the screw rod 8, and the screw rod 8 drives the slide frame 4 to slide along the guide slide track 7 when rotating, and rotates
  • the frame 3 is fixed on the fixed frame 1 through the spindle 2 on the lower side and the spindle 2 bearing 16 holes on the fixed frame 1, and then fixed on the fixed frame 1 through the bearing 16;
  • the transverse motor 13 is fixed on the rotating frame 3 or on the sliding frame 4
  • the main shaft motor 11 is connected with the main shaft 2 below the end of the rotating frame 3 through the main shaft reduction device 10
  • the bearing motor 15 is connected with the lower end of the bearing frame 5 through the bearing
  • the vertical shaft 6 is connected, the transverse motor 13 is connected to the shaft of the screw rod 8 through the transverse reduction device 12, and the energizing circuits of the main shaft motor 11, the carrying motor 15 and the transverse motor 13 are connected to the power supply through the controller;
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the sliding frame 4 through the vertical shaft 6 at the lower end and is fixed on the sliding frame 4 through the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, and the sliding frame 4
  • the guide part of the guide slide is matched with the guide slide track 7 on the guide slide track 7, the threaded hole on the slide frame 4 cooperates with the screw rod 8, and the screw rod 8 drives the slide frame 4 to slide along the guide slide track 7 when rotating, and the rotating frame 3 is fixed by
  • the main shaft 2 on the upper side of the frame 1 cooperates with the 16 holes of the main shaft 2 bearing on the rotating frame 3 and is fixed on the fixed frame 1 through the bearing 16;
  • the main shaft motor 11 is fixed on the rotating frame 3, and the carrying motor 15 is fixed on the sliding frame 4
  • the transverse motor 13 is fixed on the rotating frame 3 or the sliding frame 4, the main shaft motor 11 is connected with the main shaft 2 on the fixed frame 1 through the main shaft reduction device 10, and the bearing motor 15 is connected with the
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the bearing frame 5 through the vertical shaft 6 at the upper end of the sliding frame 4 and is fixed on the sliding frame 4 through the bearing 16, and the sliding frame 4 is installed on the upper side of the rotating frame 3,
  • the slide guide part of the slide frame 4 cooperates with the slide guide rail 7 on the slide guide rail 7, and the threaded hole on the slide frame 4 cooperates with the screw rod 8, and the screw rod 8 drives the slide frame 4 to slide along the slide guide rail 7 when rotating, and the rotating frame 3
  • the main shaft 2 on the upper side of the fixed frame 1 is matched with the bearing 16 hole of the main shaft 2 on the rotating frame 3, and then fixed on the fixed frame 1 through the bearing 16;
  • the main shaft motor 11 is fixed on the rotating frame 3, and the carrying motor 15 is fixed on the supporting frame 5,
  • the transverse motor 13 is fixed on the rotating frame 3 or the sliding frame 4
  • the main shaft motor 11 is connected with the main shaft 2 on the fixed frame 1 through the main shaft reduction device 10, and the bearing motor 15 is connected
  • the vertical shaft 6 is connected, the transverse motor 13 is connected to the shaft of the screw rod 8 through the transverse reduction device 12, and the energizing circuits of the main shaft motor 11, the carrying motor 15 and the transverse motor 13 are connected to the power supply through the controller;
  • bearing frame 5 cooperates with vertical shaft 6 bearing 16 holes on the bearing frame 5 through the vertical shaft 6 on the upper end of the sliding frame 4 and is fixed on the sliding frame 4 through the bearing 16, and the sliding frame 4 is installed on the top side of the rotating frame 3,
  • the slide guide part of the slide frame 4 cooperates with the slide guide rail 7 on the slide guide rail 7, and the threaded hole on the slide frame 4 cooperates with the screw rod 8, and the screw rod 8 drives the slide frame 4 to slide along the slide guide rail 7 when rotating, and the rotating frame 3
  • the main shaft motor 11 is fixed on the fixed frame 1, and the carrying motor 15 is fixed on the carrier frame 5
  • the transverse motor 13 is fixed on the rotating frame 3 or the sliding frame 4
  • the main shaft motor 11 is connected with the main shaft 2 below the end of the rotating frame 3 through the main shaft reduction device 10
  • the bearing motor 15 is connected to the vertical shaft
  • bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the bearing frame 5 by the vertical shaft 6 on the upper end of the sliding frame 4 and is fixed on the sliding frame 4 by the bearing 16, and the sliding frame 4 is installed on the top side of the rotating frame 3,
  • the slide guide part of the slide frame 4 cooperates with the guide slide track 7 on the guide slide track 7, and the insertion foot 9 at the lower end of the slide frame 4 cooperates with the screw thread on the screw rod 8, and the screw rod 8 drives the slide frame 4 along the guide slide track 7 when rotating.
  • the rotating frame 3 cooperates with the main shaft 2 bearing 16 holes on the fixed frame 1 through the main shaft 2 on the lower side and is fixed on the fixed frame 1 through the bearing 16; the main shaft motor 11 is fixed on the fixed frame 1, and the carrying motor 15 is fixed on the carrying On the frame 5, the transverse motor 13 is fixed on the rotating frame 3 or on the sliding frame 4, the main shaft motor 11 is connected with the main shaft 2 under the end of the rotating frame 3 through the main shaft reduction device 10, and the carrying motor 15 is connected to the sliding frame through the carrying reduction device 14 4.
  • the vertical shaft 6 at the upper end is connected, the transverse motor 13 is connected to the shaft of the screw rod 8 through the transverse reduction device 12, and the energizing circuit of the main shaft motor 11, the carrying motor 15 and the transverse motor 13 is connected to the power supply through the controller;
  • the bearing frame 5 cooperates with the vertical shaft 6 bearing 16 holes on the sliding frame 4 through the vertical shaft 6 at the lower end and is fixed on the sliding frame 4 through the bearing 16.
  • the sliding frame 4 is installed on the upper side of the rotating frame 3, and the sliding frame 4
  • the guide part of the guide slide is matched with the guide slide track 7 on the guide slide track 7, and the insertion foot 9 at the lower end of the slide frame 4 cooperates with the screw thread on the screw rod 8, and the screw rod 8 drives the slide frame 4 to slide along the guide slide track 7 when rotating, and rotates
  • the frame 3 is fixed on the fixed frame 1 through the bearing 16 through the spindle 2 on the upper side of the fixed frame 1 and the spindle 2 bearing 16 holes on the rotating frame 3;
  • the spindle motor 11 is fixed on the rotating frame 3, and the bearing motor 15 is fixed on the sliding
  • the transverse motor 13 is fixed on the rotating frame 3 or the sliding frame 4
  • the main shaft motor 11 is connected with the main shaft 2 above the fixed frame 1 through the main shaft reduction device 10, and the
  • the carrier frame 5 is a carrier for carrying the human body, including a base and a carrier.
  • the base part and the carrier part are separate assemblies or a whole;
  • the fixed frame 1 is a frame that supports and stabilizes the movement of the physical expansion vessel device, and is also a frame that supports and stabilizes the rotating frame 3 or a frame that supports and stabilizes the carrier frame 5; the fixed frame 1 is provided with a main shaft 2 or The main shaft 2 has 16 holes for bearings, or the fixed frame 1 is provided with a vertical shaft 6 or 16 holes for the vertical shaft 6 bearings;
  • the rotating frame 3 is a frame that rotates around an axis, and is also a frame that supports the carrier 5 or a frame that supports the sliding frame 4 and the carrier 5; one end of the rotating frame 3 is provided with a main shaft 2 or a main shaft 2 bearing 16 hole, the other end is fixed with bearing frame 5, or, one end of rotating frame 3 is provided with main shaft 2 or main shaft 2 bearing 16 holes, and sliding frame 4 is installed on rotating frame 3; , a guide rail 7 and a screw rod 8 are installed on the rotating frame 3; when the bearing frame 5 is fixed on one end of the rotating frame 3, the rotating frame 3 may not install the guide rail 7 and the screw rod 8;
  • sliding frame 4 is the sliding frame 4 body that connects swivel frame 3 and bearing frame 5, is provided with vertical shaft 6 bearing 16 holes that pass through on the upper and lower end faces of sliding frame 4 or is provided with vertical shaft 6 above sliding frame 4,
  • the front and rear end faces of the slide frame 4 are provided with a guide chute and the lower end face of the slide frame 4 is provided with an insertion foot 9 or the front and rear end faces of the slide frame 4 are provided with a guide chute and a threaded hole, and the guide chute center line of the guide chute Parallel to the threaded hole, the guide groove is a groove with a guide sleeve or a guide plate;
  • the deceleration device is commonly known as a tooth box, a reduction box, and a gearbox, including but not limited to a lateral deceleration device 12, a main shaft deceleration device 10, and a bearing deceleration device 14. Gears or pulleys are used to change speed, and bevel gears are used to change the power transmission direction.
  • the transmission or gear transmission or transmission shaft composed of pulley and belt is used for variable speed transmission; the reduction device can have one or more output ends, and the structure of the output end includes output drive shaft, output gear, and output pulley;
  • the controller is an electronic controller with a programming function, a microcomputer with a programming function, or a circuit controller with a programming function;
  • the forward and reverse are relative, and the directions are interchangeable; the up and down are also relative, and up and down are interchangeable; the left and right are also relative, and left and right are interchangeable .
  • the rotation mode of the bearing frame 5 has two types of rotation modes: independent rotation and circumferential rotation; Circumferential rotation includes two types of independent rotation and equal-diameter circumferential rotation, and unequal-diameter circumferential rotation includes two types of spiral dispersed circumferential rotation and spiral convergent circumferential rotation; the rotation mode of the bearing frame 5 is determined by combination. points, including: individual rotation, equal-diameter circumferential rotation, spiral dispersed circumferential rotation, spiral convergent circumferential rotation, combination of individual rotation and spiral dispersed circumferential rotation, combination of individual rotation and spiral convergent circumferential rotation , Combination of individual rotation and circumferential rotation Seven rotation modes:
  • Circumferential rotation There is a certain distance between the bearing frame 5 and the external axis line, and the external axis line of the bearing frame 5 is used as the rotation center to rotate around the axis; the circumferential rotation includes equal-diameter circumferential rotation and unequal Radial circumferential rotation, unequal radial circumferential rotation includes spiral dispersed circumferential rotation and spiral convergent circumferential rotation;
  • Combination of independent rotation and circumferential rotation while the carrier 5 is rotating with its own vertical center, the carrier 5 is also rotating around the axis on the outer axis as the center of rotation, forming a double rotation;
  • the combination of individual rotation and circumferential rotation includes: the combination of individual rotation and equal-diameter circumferential rotation, the combination of individual rotation and helical dispersed circumferential rotation, and the combination of individual rotation and helical convergent circumferential rotation;
  • the bearing frame 5 has a certain distance from the external axis, and when the axis of the bearing frame 5 is rotated around the axis as the center of rotation, the bearing frame 5. It is still rotating with its own vertical center; including the rotation in the same direction as the independent rotation and the circumferential rotation and the opposite rotation of the independent rotation and the circumferential rotation;
  • the forward/reverse rotation of the bearing frame 5 is used to generate centrifugal force inside the body of the hypertensive patient and the thrombus patient, and/or, the positive/reverse rotation of the bearing frame 5 in a spiral distributed circumferential direction is adopted.
  • the rotation postures of the human body after being fixed on the carrier frame 5 include but are not limited to various rotation postures such as sitting posture rotation, standing posture rotation, leaning posture posture rotation, and lying posture rotation; Choose one or more rotation postures from sitting posture rotation, standing posture rotation, leaning posture rotation, and lying posture rotation according to your physical condition, to cooperate with the individual rotation of the human body with the carrier, and the equal-diameter circumferential rotation , Spiral dispersed circumferential rotation, spiral convergent circumferential rotation, combination of individual rotation and spiral dispersed circumferential rotation, combination of individual rotation and spiral convergent circumferential rotation, combination of individual rotation and equal-diameter circumferential rotation;
  • the sitting posture mode rotation is that people sit on the carrier frame 5, and when the carrier frame 5 rotates, the people adopt a sitting posture on the carrier frame 5;
  • the standing posture rotation is that the person stands on the carrier frame 5, and the carrier frame 5 rotates. 5 rotates, what people adopt on the bearing frame 5 is standing posture;
  • Described leaning posture type rotation is that people rely on the posture on the bearing frame 5, when the bearing frame 5 rotates, what people adopt on the bearing frame 5 is to rely on Posture posture posture;
  • the lying posture includes reclining and flat lying, and the reclining posture rotation is that the person is reclining on the carrier 5, and when the carrier 5 rotates, the person adopts reclining on the carrier 5 Posture;
  • the lying posture rotation described is that the person lies flat on the carrying frame 5 , and when the carrying frame 5 rotates, the person adopts a lying flat posture on the carrying frame 5 .
  • the physical vascular expansion device is set in a combination of independent rotation and circumferential rotation of the carrier 5: firstly, the carrier 5 is set to rotate forward in a separate rotation mode (generally set to 3 to 100 turns, depending on 5 to 10 circles are the best); then set the bearing frame 5 to rotate forward to the maximum radius with the forward rotation of the spiral distributed circumferential rotation, and cooperate with the forward rotation of the bearing frame 5 in a separate rotation mode to carry out double rotation (carrying frame 5.
  • a separate rotation mode generally set to 3 to 100 turns, depending on 5 to 10 circles are the best
  • the number of circles to reach the maximum radius is generally set at 3 to 50 circles with a spiral dispersed circumferential rotation, and 5 to 10 circles are the best;
  • Frame 5 rotates one turn in the mode of independent rotation);
  • the forward rotation of bearing frame 5 is set to rotate in the equidiameter circumferential direction, and the double rotation is carried out in cooperation with the forward rotation of bearing frame 5 in the mode of independent rotation (bearing
  • the number of circles that the frame 5 rotates in the equidiametrical direction is generally set at 3 to 100 circles, and 5 to 10 circles are the best;
  • carrier frame 5 is generally set as 3 to 50 turns from the maximum radius to the maximum radius by spiral converging circumferential rotation, and is preferably 5 to 10 turns;
  • carrying frame 5 is spiral converging circumferential rotation
  • the rotation speed of the combination of the individual rotation and the circumferential rotation of the bearing frame 5 is based on the user's physical quality and Depending on the physical condition, the rotation speed of a healthy person's individual rotation is 1 to 4 circles per second (2 to 3 circles per second is appropriate), and the rotation speed of spiral dispersed circumferential rotation and spiral convergent circumferential rotation 1 to 4 revolutions per second (preferably 2 to 3 revolutions per second), the rotational speed of the isodiametric circumferential rotation is 1 to 4 revolutions per second (preferably 2 to 3 revolutions per second), and the weak body
  • the rotation speed of the individual rotation is 0.3 to 2 circles per second (0.5 to 1 circle per second is suitable), the rotation speed of the spiral dispersed circumferential rotation and the spiral convergent circumferential rotation is 0.3 to 2 circles
  • the physical dilating device for blood vessels adopts a rotation mode in which the carrier frame 5 only rotates in the equidiametrical circumferential direction: first, the carrier frame 5 is set to rotate in the forward direction in the manner of the equidiametrical peripheral rotation (generally, it is advisable to set 3 to 100 revolutions) , with 10 to 30 circles as the best), and then set the bearing frame 5 to rotate in the opposite direction in the manner of equidiameter and circumferential rotation; To determine, the rotation speed of a healthy person is 1 to 4 circles per second (2 to 3 circles per second is appropriate), and the individual rotation speed of a weak person is 0.3 to 2 circles per second (2 to 3 circles per second is appropriate). 0.5 to 1 circle is appropriate), and the rotation speed of people between healthy and weak is also taken as an appropriate speed in the middle;
  • the described physical expansion vessel device adopts the rotation mode that the carrier frame 5 only rotates independently: first, the carrier frame 5 is set to rotate positively in the mode of independent rotation (generally, it is advisable to set 3 to 100 turns, and 10 to 30 turns is the best), then set the bearing frame 5 to rotate in reverse in the mode of independent rotation; 1 to 4 laps per second (2 to 3 laps per second is appropriate), and the rotation speed of the weak person's individual rotation is 0.3 to 2 laps per second (0.5 to 1 lap per second is appropriate). The rotation speed of the person between weak and weak also takes the appropriate speed in the middle.
  • the user enters the carrier frame 5, turns on the control switch of the controller, and allows the user to rotate the carrier frame 5 forward/reversely in a separate rotation mode, and/or rotate circumferentially in a spiral distributed manner.
  • Forward/reverse rotation, and/or forward/reverse rotation with helical convergent circumferential rotation, and/or forward/reverse rotation with equidiametric circumferential rotation, and/or with helical dispersion The forward/reverse rotation of the circumferential rotation and the carrier 5 rotate simultaneously in the double rotation of the forward/reverse rotation of the individual rotation, and/or the forward/reverse rotation and the bearing of the circumferential rotation of the helical convergence
  • the frame 5 rotates simultaneously in the forward/reverse rotation double rotation mode of the individual rotation, and/or the forward/reverse rotation of the equidiametric circumferential rotation and the forward/reverse rotation of the carrier 5 in the individual rotation
  • the dual rotation mode rotates at the same time to generate centrifugal force inside the user's body,
  • the carrier 5 rotates simultaneously in the forward/reverse rotation double rotation mode of individual rotation, the forward/reverse rotation in the spiral converging circumferential rotation and the forward/reverse rotation double rotation of the carrier 5 in the individual rotation
  • the pushing method that the carrier 5 of the physical expansion vessel device moves on the rotating frame 3 can also use a hydraulic pump to drive a hydraulic telescopic cylinder to push or pull; the carrier 5 and the rotating frame 3 of the physical expansion vessel device
  • the rotation of the air pressure pump can also be used to drive the air pressure blower to drive the rotation of the bearing frame 5 and the swivel frame 3, or the rotation of the load frame 5 and the swivel frame 3 can be driven by a hydraulic pump to drive the hydraulic turning machine to drive the load frame 5 and the swivel frame 3 rotations.
  • Musical instruments can also be set on the physical dilating device to play rhythmic music or music that calms the mind or play relaxed and pleasant music to cooperate with the centrifugal movement inside the human body. Relax muscles, regulate mood;
  • a massage device on the chair or column or back cushion or lying cushion on the carrier frame 5, and cooperate with the massage device during the centrifugal movement inside the human body to allow the user's meridians and blood vessels to flow more smoothly through massage, which is beneficial to the patient.
  • the dredging of blocked blood vessels is also conducive to the relaxation of the user's muscles.
  • the physical expansion vessel device is mainly used to physically expand and dredge blood vessels, gradually reduce the blood pressure of hypertensive patients and gradually eliminate thrombus in patients with thrombosis; , It is also suitable for healthy people to exercise, increase the flexibility and elasticity of blood vessels, and prevent the occurrence of cardiovascular and cerebrovascular diseases.
  • hypertensive patients can treat high blood pressure without taking antihypertensive drugs, taking antihypertensive injections, and without surgery and drugs, reducing the impact of antihypertensive drugs.
  • Side effects produced by the human body are not limited to:

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Abstract

一种物理扩张血管装置,属于物理扩张血管和物理疏通血管的技术领域,采用人体在承载架(5)上随承载架(5)旋转,承载架(5)旋转时带动人体旋转,利用旋转的人体内部的离心运动产生的离心力与血管内的血压配合而形成的推动力和振动力,让血管变得柔软而有弹性和扩张性,来对血管进行物理扩张而降血压和对堵塞的血管进行物理疏通,而对高血压患者进行血管物理扩张来降低血压和对血栓患者的血管进行物理疏通,使高血压患者和血栓患者不吃药、不打针、更不用手术与药物配合治疗就能对高血压患者和血栓患者进行治疗,为高血压患者和血栓患者开辟了一条避开药物治疗和手术治疗高血压和血栓的新的治疗途径。

Description

物理扩张血管装置 技术领域
本发明涉及人体内部的离心运动产生的离心力与血管内的血压配合,形成的推动力和振动力来对血管进行物理扩张而降血压和对堵塞的血管进行物理疏通的身体运动技术领域的一种物理扩张血管装置。
背景技术
人类发展科技的目的:是为了让人类的身体更健康、身心更舒畅。
血管是运送血液的管道,血管失去了弹性、出现了硬化,就会导致人的血压升高,血压升高后甚至血管破裂,对人的身体健康造成巨大危害;同时,血管失去了弹性、出现了硬化,就容易出现血栓。
目前,对于高血压患者的降血压的途径基本上都是采用药物暂时性的扩张血管和药物疏通血管来进行降血压,不能对高血压患者进行彻底的根治,高血压患者一旦停止了降压药或降血压的保健品,血压就会快速飙升,甚至造成生命危险。
血栓患者基本上都伴有静脉曲张的状况,目前对于血栓患者的治疗基本上都是采用手术与溶血性或化瘀性药物配合的治疗方式进行治疗,对药物的依耐性极大,一旦停止了药物对血栓的控制,血栓就会复发。
众所周知,任何药物都有两面性,降血压药物与溶血性和化瘀性药物也不例外,降压药在将血压的同时对身体也产生了副作用,溶血性和化瘀性药物在溶解血栓的同时对身体也产生了副作用,不同的降压药、溶血性药物和化瘀性药物只是产生的副作用的大小不同而已。虽然,市面上有很多降血压和溶血性的保健品,但,这些都只能通过保健品中的降血压的成分来暂时性的疏通血管和扩张血管或通过溶血性药物暂时性的溶解血栓而疏通血管,并不能对高血压患者和血栓患者进行彻底的根治。因此,市面上的降高血压和溶解血栓的药物和保健品并不能让人高血压患者和血栓患者从真正意义上的感觉到身体更健康、身心更舒畅。
另外,市面上还有锻炼身体的跑步机、摇臂机、扭腰机等,这些都是通过肌肉锻炼来提高身体的机能,虽然能够通过对身体的锻炼来让人的身体更健康、身心更舒畅;但,如跑步机、摇臂机、扭腰机这些锻炼设备也不能通过人体有规律的的动锻炼来扩张血管而不能使血管变得有弹性,而不能用于高血压患者的物理扩张血管而不能降血压,也不能通过物理疏通血管的方式来治疗血栓。
为了从根本上解决高血压患者的血压高的技术难题和血栓堵塞血管的技术难题,我们经过了长期的研究,发明了通过人体的旋转使身体内部产生离心力来对血管进行物理扩张和 物理疏通的物理扩张血管装置,适合高血压患者降低血压和消除血栓患者的血栓堵塞。
技术问题
存在的技术问题:一、高血压患者的传统治疗方法只能通过吃降血压药物或注射降血压药物来进行治疗,或者通过手术与药物配合的治疗方式进行治疗;二、高血压患者的血压反复升高,再反复治疗,对人的身心健康造成了极大的危害;三、高血压患者在没有降压药物控制的情况下血压极不稳定,对人的行动造成了很大的障碍,也对人的身心健康造成了极大的危害;四、高血压患者离开了降血压药物血压就会升高,对降血压药有依耐性和成瘾性;五、传统治疗血栓的治疗方式只能通过手术和药物配合来进行治疗,造成手术后离开了溶血栓药物血栓就会复发;六、传统治疗高血压和血栓的治疗方式不能通过对人体进行有规律的锻炼来进行物理扩张血管和疏通血管,而不能减少药物对患者产生的毒副作用。
本发明解决的技术问题:
1.解决了高血压患者必须通过吃药、打针的方式或通过手术与药物配合的治疗方式才能够对高血压进行治疗,其治疗后复发的可能性极大,导致:高血压的反复发作,再反复治疗,对人的身心健康造成了极大的危害;
2.解决了高血压患者只能药物扩张和疏通血管来缓解血压高的症状,导致:高血压患者在没有降压药物控制的情况下血压极不稳定,对人的行动造成了很大的障碍,也对人的身心健康造成了极大的危害;
3.解决了高血压患者的血管逐进失去了弹性,必须在药物的作用下才能暂时的恢复弹性,而导致:高血压患者对降血压药有依耐性和成瘾性,高血压患者离开了降血压药物血压就会升高;
4.解决了高血压患者对降血压药物的依耐性;
5.解决了传统的身体锻炼设备不能对高血压患者进行物理扩张血管和疏通血管的技术问题;
6.解决了高血压患者和血栓患者的传统治疗方式不能通过对人体进行有规律的锻炼来进行物理扩张血管和疏通血管的技术问题;
7.解决了传统的血栓患者需要手术与药物配合才能够治疗,以及手术后对药物的依耐性和药物药副作用;
开辟了高血压患者和血栓患者避开药物治疗的新途径:利用旋转的人体内部的离心运动产生的离心力与血管内的血压配合而形成的推动力和振动力,来对血管进行物理扩张而降血压和对堵塞的血管进行物理疏通。
技术解决方案
本发明的目的是提供一种让身体随身体锻炼设备的运转而同步运转来对血管进行物理 扩张而使血管变得有弹性的物理扩张血管装置及其方法。
为实现上述目的,本发明所述的物理扩张血管装置,采用人体在承载架上随承载架旋转,承载架旋转时带动人体旋转,利用旋转的人体内部的离心运动产生的离心力与血管内的血压配合而形成的推动力和振动力,让血管变得柔软而有弹性和扩张性,来对血管进行物理扩张而疏通血管、降低血压,而对高血压患者的血管进行物理扩张来降低血压和对血栓患者的血管进行物理疏通。
采用承载架来承载人体,人体在承载架上或内的姿势包括但不仅限于躺姿、坐姿、靠姿、站姿。在承载架上或内有与人体的躺姿(包括斜躺、平躺)、坐姿、靠姿(包括斜靠、仰靠、站靠、座靠)、站姿相匹配的器具,还有固定人体采用躺姿、坐姿、靠姿、站姿时的安全装置。
承载架的旋转方式有单独旋转和周向旋转二类旋转方式;承载架的旋转方式以旋转半径来分分为等径周向旋转和不等径周向旋转二类旋转方式,等径周向旋转又包括单独旋转和等径周向旋转二类,不等径周向旋转又包括螺旋分散式周向旋转、螺旋汇聚式周向旋转二类;承载架的旋转方式以组合方式来分,包括:单独旋转、等径周向旋转、螺旋分散式周向旋转、螺旋汇聚式周向旋转、单独旋转与螺旋分散式周向旋转相结合、单独旋转与螺旋汇聚式周向旋转相结合、单独旋转与周向旋转相结合七种旋转方式:
一、单独旋转:承载架以自身的竖向中心为旋转中心进行的自转式的旋转;
二、周向旋转:承载架与外在轴心线有一定的距离,承载架以外在轴心线为旋转中心进行的绕轴式旋转;周向旋转包括等径周向旋转和不等径周向旋转,不等径周向旋转包括螺旋分散式周向旋转和螺旋汇聚式周向旋转;
(一)等径周向旋转:承载架以相同的旋转半径做绕轴式旋转;
(二)螺旋分散式周向旋转:承载架的旋转半径不相等,承载架以旋转半径逐渐扩大、外面一圈比里面一圈的旋转半径大、从旋转中心向圆周方向进行旋转扩散的绕轴式旋转;
(三)螺旋汇聚式周向旋转:承载架的旋转半径不相等,承载架以旋转半径逐渐缩小、外面一圈比里面一圈的旋转半径小、从边缘向旋转中心旋转收缩的绕轴式旋转;
三、单独旋转与周向旋转相结合:承载架在以自身的竖向中心旋转的同时,承载架还在以外在轴心线为旋转中心进行的绕轴式旋转,形成的双重旋转;单独旋转与周向旋转相结合包括:单独旋转与等径周向旋转相结合、单独旋转与螺旋分散式周向旋转相结合、单独旋转与螺旋汇聚式周向旋转相结合三种结合形式;
(一)单独旋转与等径周向旋转相结合:承载架与外在轴心线有一定的距离,承载架以外在轴心线为旋转中心进行的绕轴式旋转的同时,承载架还在以自身的竖向中心旋转;包括单独 旋转与周向旋转同向的旋转和单独旋转与周向旋转反向的旋转;
(二)单独旋转与螺旋分散式周向旋转相结合:承载架在以外在轴心线为旋转中心进行螺旋分散式周向旋转的同时,承载架还在以自身的竖向中心旋转;包括单独旋转与螺旋分散式周向旋转同向的旋转和单独旋转与螺旋分散式周向旋转反向的旋转;
(三)单独旋转与螺旋汇聚式周向旋转相结合:承载架在以外在轴心线为旋转中心进行螺旋汇聚式周向旋转的同时,承载架还在以自身的竖向中心旋转;包括单独旋转与螺旋汇聚式周向旋转同向的旋转和单独旋转与螺旋汇聚式周向旋转反向的旋转;
采用让承载架以单独旋转的方式正向/反向旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架以螺旋分散式周向旋转的正向/反向旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架以螺旋汇聚式周向旋转的正向/反向旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架以等径周向旋转的正向/反向旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架以螺旋分散式周向旋转的正向/反向旋转和承载架以单独旋转的正向/反向旋转的双重旋转方式同时旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架以螺旋汇聚式周向旋转的正向/反向旋转和承载架以单独旋转的正向/反向旋转的双重旋转方式同时旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架以等径周向旋转的正向/反向旋转和承载架以单独旋转的正向/反向旋转的双重旋转方式同时旋转来使高血压患者和血栓患者的身体内部产生离心力,通过人体内部产生的离心力来让血液在离心力的作用下在血管中向身体的外围扩张,来让血液对血管进行扩张,并通过血液对血管的扩张来让血管变得柔软而有弹性和扩张性,达到降低血压和疏通淤积堵塞的血管的目的;来实现:通过旋转的人体内部离心运动使血液产生的离心推动力与血管内的血压配合来使血液对血管进行扩张,血管通过长期的运动扩张而让血管变得柔软而具有弹性和扩张性,降低血液在血管内通过阻力而提高血液在血管内的通过性能,降低高血压患者的血压和疏通血栓患者的血栓拥堵;
采用物理扩张血管装置来让人体在旋转时在身体内部产生离心力而对血管进行扩张,人体固定在承载架上后的旋转姿势包括但不仅限于坐姿方式旋转、站立姿式旋转、靠姿姿式旋转、躺姿姿式旋转等多种旋转姿势;高血压患者或血栓患者可以根据自身的身体状况的选择坐姿方式旋转、站立姿式旋转、靠姿姿式旋转、躺姿姿式旋转中的一种或多种旋转姿势,来配合人体随承载架的单独旋转、等径周向旋转、螺旋分散式周向旋转、螺旋汇聚式周向旋转、单独旋转与螺旋分散式周向旋转相结合、单独旋转与螺旋汇聚式周向旋转相结合、单独旋转与等径周向旋转相结合中的一种或多种旋转方式来对高血压患者或血栓患者的血管进行离心力 扩张。
所述的物理扩张血管装置有承载架的旋转方式分别与单独旋转、等径周向旋转、单独旋转与周向旋转组合相匹配的三种技术方案:
一、承载架采用单独旋转与周向旋转组合的技术方案:所述的物理扩张血管装置包括但不仅限于承载架、滑动架、旋转架、固定架、导滑轨道、螺杆、插入脚或螺纹孔、减速装置、电动机、控制器;所述的电动机包括但不仅限于主轴电动机、承载电动机和横向电动机;所述的减速装置俗称牙箱、减速箱、变速箱,包括但不仅限于横向减速装置、主轴减速装置和承载减速装置,采用齿轮变速或皮带轮变速,采用圆锥齿轮变换动力传动方向,采用皮带轮与皮带组成的传动或齿轮传动或传动轴来进行变速传动;减速装置可以有一个或多个输出端,输出端的结构形式有包括输出传动轴、输出齿轮、输出皮带轮;在滑动架的上下端面设有对穿的立轴轴承孔或在滑动架的上面设有立轴,在滑动架的前后端面设有导滑槽和滑动架的下端面部分设有插入脚或在滑动架的前后端面设有导滑槽和螺纹孔,导滑槽的导滑中心线与螺纹孔平行,导滑槽是带有导滑套或导滑板的槽;在旋转架上安装有导滑轨道和螺杆,螺杆通过螺杆轴孔固定在旋转架上能够转动,导滑轨道与螺杆的轴心线平行;在承载架的下端有立轴时,立轴与承载架是一个整体或分开的组合体;在滑动架的上面有立轴时,立轴与滑动架是一个整体或分开的组合体;在固定架上设有安装主轴的主轴轴承孔时,在旋转架的下面一面有主轴,主轴与旋转架是一个整体或分开的组合体;在旋转架上设有安装主轴的主轴轴承孔时,在固定架的上面一面有主轴,主轴与固定架是一个整体或分开的组合体;承载架通过下端的立轴与滑动架上的立轴轴承孔配合再通过轴承固定在滑动架上或承载架通过滑动架上端的立轴与承载架上的立轴轴承孔配合再通过轴承固定在滑动架上,滑动架安装在旋转架的上面一面,滑动架的导滑部分在导滑轨道上与导滑轨道配合,滑动架下端的插入脚与螺杆上的螺纹配合时或滑动架上的螺纹孔与螺杆配合时螺杆在转动时带动滑动架沿导滑轨道滑动,旋转架通过下面一面的主轴与固定架上的主轴轴承孔配合再通过轴承固定在固定架上或旋转架通过固定架上面一面的主轴与旋转架上的主轴轴承孔配合再通过轴承固定在固定架上;主轴电动机固定在固定架上或旋转架上,主轴电动机通过皮带轮或轴或齿轮与主轴减速装置的输入端连接,主轴减速装置的输出端通过传动轴或齿轮或皮带轮和皮带分别与旋转架端部下面的主轴、承载架下端的立轴、螺杆连接,主轴电动机的通电电路通过控制器与电源连接;或者,主轴电动机固定在固定架上或旋转架上,承载电动机固定在滑动架上或承载架上,横向电动机固定在旋转架上或滑动架上,主轴电动机通过主轴减速装置与旋转架端部下面的主轴连接或与固定架上面的主轴连接,承载电动机通过承载减速装置与承载架下端的立轴连接或滑动架上端的立轴连接,横向电动机通过横向减速装置与螺杆的轴连接,主轴电 动机、承载电动机和横向电动机的通电电路通过控制器与电源连接;
二、承载架采用等径周向旋转的技术方案:所述的物理扩张血管装置包括但不仅限于承载架、旋转架、固定架、主轴减速装置、主轴电动机、控制器;在旋转架的一端端部的下面一面有主轴,在旋转架的另一端的上面一面固定有承载架,在固定架上设有安装主轴的主轴轴承孔,旋转架通过主轴与主轴轴承孔配合再通过轴承固定在固定架上,主轴电动机固定在固定架上,主轴电动机通过主轴减速装置与旋转架端部下面的主轴连接,主轴电动机的通电电路通过控制器与电源连接;或者,在固定架的上面一面设有主轴,在旋转架的一端设有安装主轴的主轴轴承孔,旋转架通过主轴轴承孔与主轴配合再通过轴承固定在固定架上,在旋转架没有主轴轴承孔的另一端的上面一面固定有承载架,主轴电动机固定在旋转架上,主轴电动机通过主轴减速装置与旋转架端部下面的主轴连接,主轴电动机的通电电路通过控制器与电源连接;
三、承载架采用单独旋转的技术方案:所述的物理扩张血管装置包括但不仅限于承载架、固定架、承载减速装置、承载电动机、控制器;在承载架的下端设有立轴,立轴与承载架是一个整体或分开的组合体;在固定架上设有安装立轴的立轴轴承孔,承载架通过立轴与立轴轴承孔配合再通过轴承固定在固定架上,承载电动机固定在固定架上通过承载减速装置与承载架下端的立轴连接,承载电动机的通电电路通过控制器与电源连接;或者,在固定架的上面设有立轴,立轴与固定架是一个整体或分开的组合体;在承载架上设有安装主轴的立轴轴承孔,承载架通过立轴轴承孔与立轴配合再通过轴承固定在固定架上,承载电动机固定在承载架上通过承载减速装置与固定架上面的立轴连接,承载电动机的通电电路通过控制器与电源连接。
有益效果
采用物理扩张血管装置的有益效果:
1.通过人体内部的离心运动,来对血管进行物理扩张和物理疏通血管,让血管变得柔软而具有弹性和扩张性的同时,降低了高血压患者的血压,对血栓拥堵的血管进行疏通,提高了高血压患者和血栓患者的身体机能,有效的防止血压反复升高和血栓的反复堵塞,减少了高血压患者和血栓患者的发病率;
2.高血压患者通过人体内部的离心运动,使高血压患者不需要吃降血压药、也不需要打降血压针、更不需要手术与药物配合治疗就能够对高血压进行治疗,减少了降血压药物对人体产生的副作用;
3.高血压患者通过人体内部的离心运动,来对高血压患者的血管进行物理扩张和物理疏通血管,让高血压患者的血管变得柔软而具有弹性和扩张性,血压降低后稳定性好,对人的身心 健康有极大的帮助,减少了高血压患者的复发几率;
4.通过人体内部的离心运动,来对高血压患者的血管进行物理扩张和物理疏通血管,减少了高血压患者对降血压药物的依耐性;
5.通过人体内部的离心运动产生的离心力和血管中的血压来推动凝固的血液在血管中慢慢蠕动和振荡,通过慢慢蠕动来使凝固的血液慢慢溶解而对血栓拥堵的血管进行疏通,使血栓患者不需要吃药、也不需要打针、更不需要手术就能够对血栓拥堵的血管进行疏通而不会产生药副作用;
6.通过人体内部的离心运动,来对血栓患者的血管进行物理扩张和物理疏通血管,减少了血栓患者对药物的依耐性;
7.血压正常的人通过人体内部的离心运动来对血管进行物理扩张,在增加血管的柔软性、弹性和扩张性的同时,能够有效的防止高血压疾病的产生;
8.为高血压患者和血栓患者开辟了一条新的避开药物治疗和手术治疗高血压和血栓的新途径:利用旋转的人体内部的离心运动产生的离心力与血管内的血压配合而形成的推动力和振动力,来对血管进行物理扩张而降血压和对堵塞的血管进行物理疏通;
9.还能够作为高血压患者通过药物治疗把血压降下来后,用来稳定血压而替代降血压药物的替代品;也还能够作为血栓患者通过药物治疗把血栓暂时溶解后,用于血栓部位的血液不再凝固而替代溶血药物的替代品;继而减少药物对人体产生的药副作用。
附图说明
图1是主轴在旋转架上与固定架配合、滑动架在与旋转架上滑动配合、立轴在承载架上与滑动架配合的物理扩张血管装置的剖视结构示意图;
图2是主轴在固定架上与旋转架配合、滑动架在与旋转架上滑动配合、立轴在滑动架上与承载架配合的物理扩张血管装置的剖视结构示意图。
图3是主轴在旋转架上与固定架配合、承载架固定在旋转架上的物理扩张血管装置的剖视结构示意图;
图4是主轴在固定架上与旋转架配合、承载架固定在旋转架上的物理扩张血管装置的剖视结构示意图。
图5是主轴在承载架上与固定架配合的物理扩张血管装置的剖视结构示意图;
图6是主轴在固定架上与承载架配合的物理扩张血管装置的剖视结构示意图。
图中所示:固定架1、主轴2、旋转架3、滑动架4、承载架5、立轴6、导滑轨道7、螺杆8、插入脚9、主轴减速装置10、主轴电动机11、横向减速装置12、横向电动机13、承载减速装置14、承载电动机15、轴承16。
本发明的最佳实施方式
物理扩张血管装置优选承载架5采用单独旋转与周向旋转组合的技术方案:承载架5通过下端的立轴6与滑动架4上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4下端的插入脚9与螺杆8上的螺纹配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过下面一面的主轴2与固定架1上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在固定架1上,承载电动机15固定在滑动架4上,横向电动机13固定在旋转架3上,主轴电动机11通过主轴减速装置10与旋转架3端部下面的主轴2连接,承载电动机15通过承载减速装置14与承载架5下端的立轴6连接,横向电动机13通过横向减速装置12与螺杆8的轴连接,主轴电动机11、承载电动机15和横向电动机13的通电电路通过控制器与电源连接;
承载架5的旋转方式优选:单独旋转与周向旋转相结合:承载架5在以自身的竖向中心旋转的同时,承载架5还在以外在轴心线为旋转中心进行的绕轴式旋转,形成的双重旋转;采用让承载架5以螺旋分散式周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转与承载架5以螺旋汇聚式周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转、承载架5以等径周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转配合来使高血压患者和血栓患者的身体内部产生离心力,通过人体内部产生的离心力来让血液在离心力的作用下在血管中向身体的外围扩张,来让血液对血管进行扩张,并通过血液对血管的扩张来让血管变得柔软而有弹性和扩张性,来降低血压和疏通淤积堵塞的血管;
人体固定在承载架5上后的旋转姿势优选:最优是坐姿方式旋转,其次是靠姿姿式旋转,再其次是躺姿姿式旋转。
本发明的实施方式
物理扩张血管装置有承载架5的旋转方式分别与单独旋转、等径周向旋转、单独旋转与周向旋转组合相匹配的三种技术方案:
一、承载架5采用单独旋转与周向旋转组合的技术方案:所述的物理扩张血管装置包括但不仅限于承载架5、滑动架4、旋转架3、固定架1、导滑轨道7、螺杆8、插入脚9或螺纹孔、减速装置、电动机、控制器;所述的电动机包括但不仅限于主轴电动机11、承载电动机15和横向电动机13;在旋转架3上安装有导滑轨道7和螺杆8,螺杆8通过螺杆8轴孔固定在旋转架3上能够转动,导滑轨道7与螺杆8的轴心线平行;在承载架5的下端有立轴6时,立轴6与承载架5是一个整体或分开的组合体;在滑动架4的上面有立轴6时,立轴6与滑 动架4是一个整体或分开的组合体;在固定架1上设有安装主轴2的主轴2轴承16孔时,在旋转架3的下面一面有主轴2,主轴2与旋转架3是一个整体或分开的组合体;在旋转架3上设有安装主轴2的主轴2轴承16孔时,在固定架1的上面一面有主轴2,主轴2与固定架1是一个整体或分开的组合体;承载架5通过下端的立轴6与滑动架4上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上或承载架5通过滑动架4上端的立轴6与承载架5上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4下端的插入脚9与螺杆8上的螺纹配合时或滑动架4上的螺纹孔与螺杆8配合时螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过下面一面的主轴2与固定架1上的主轴2轴承16孔配合再通过轴承16固定在固定架1上或旋转架3通过固定架1上面一面的主轴2与旋转架3上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在固定架1上或旋转架3上,主轴电动机11通过皮带轮或轴或齿轮与主轴减速装置10的输入端连接,主轴减速装置10的输出端通过传动轴或齿轮或皮带轮和皮带分别与旋转架3端部下面的主轴2、承载架5下端的立轴6、螺杆8连接,主轴电动机11的通电电路通过控制器与电源连接;或者,主轴电动机11固定在固定架1上或旋转架3上,承载电动机15固定在滑动架4上或承载架5上,横向电动机13固定在旋转架3上或滑动架4上,主轴电动机11通过主轴减速装置10与旋转架3端部下面的主轴2连接或与固定架1上面的主轴2连接,承载电动机15通过承载减速装置14与承载架5下端的立轴6连接或滑动架4上端的立轴6连接,横向电动机13通过横向减速装置12与螺杆8的轴连接,主轴电动机11、承载电动机15和横向电动机13的通电电路通过控制器与电源连接;
二、承载架5只采用等径周向旋转的技术方案:所述的物理扩张血管装置包括但不仅限于承载架5、旋转架3、固定架1、主轴减速装置10、主轴电动机11、控制器;在旋转架3的一端端部的下面一面有主轴2,在旋转架3的另一端的上面一面固定有承载架5,在固定架1上设有安装主轴2的主轴2轴承16孔,旋转架3通过主轴2与主轴2轴承16孔配合再通过轴承16固定在固定架1上,主轴电动机11固定在固定架1上,主轴电动机11通过主轴减速装置10与旋转架3端部下面的主轴2连接,主轴电动机11的通电电路通过控制器与电源连接;或者,在固定架1的上面一面设有主轴2,在旋转架3的一端设有安装主轴2的主轴2轴承16孔,旋转架3通过主轴2轴承16孔与主轴2配合再通过轴承16固定在固定架1上,在旋转架3没有主轴2轴承16孔的另一端的上面一面固定有承载架5,主轴电动机11固定在旋转架3上,主轴电动机11通过主轴减速装置10与旋转架3端部下面的主轴2连接,主轴电动机11的通电电路通过控制器与电源连接;
三、承载架5只采用单独旋转的技术方案:所述的物理扩张血管装置包括但不仅限于承载架5、固定架1、承载减速装置14、承载电动机15、控制器;在承载架5的下端设有立轴6,立轴6与承载架5是一个整体或分开的组合体;在固定架1上设有安装立轴6的立轴6轴承16孔,承载架5通过立轴6与立轴6轴承16孔配合再通过轴承16固定在固定架1上,承载电动机15固定在固定架1上通过承载减速装置14与承载架5下端的立轴6连接,承载电动机15的通电电路通过控制器与电源连接;或者,在固定架1的上面设有立轴6,立轴6与固定架1是一个整体或分开的组合体;在承载架5上设有安装主轴2的立轴6轴承16孔,承载架5通过立轴6轴承16孔与立轴6配合再通过轴承16固定在固定架1上,承载电动机15固定在承载架5上通过承载减速装置14与固定架1上面的立轴6连接,承载电动机15的通电电路通过控制器与电源连接。
所述的承载架5采用单独旋转与周向旋转组合的技术方案,有以下几种实现方式:
(一)承载架5通过下端的立轴6与滑动架4上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4上的螺纹孔与螺杆8配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过下面一面的主轴2与固定架1上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在固定架1上,主轴电动机11通过皮带轮或轴或齿轮与主轴减速装置10的输入端连接,主轴减速装置10的输出端通过传动轴或齿轮或皮带轮和皮带分别与旋转架3端部下面的主轴2、承载架5下端的立轴6、螺杆8连接,主轴电动机11的通电电路通过控制器与电源连接;
(二)承载架5通过滑动架4上端的立轴6与承载架5上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4下端的插入脚9与螺杆8上的螺纹配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过固定架1上面一面的主轴2与旋转架3上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在旋转架3上,主轴电动机11通过皮带轮或轴或齿轮与主轴减速装置10的输入端连接,主轴减速装置10的输出端通过传动轴或齿轮或皮带轮和皮带分别与旋转架3端部下面的主轴2、承载架5下端的立轴6、螺杆8连接,主轴电动机11的通电电路通过控制器与电源连接;
(三)承载架5通过下端的立轴6与滑动架4上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4下端的插入脚9与螺杆8上的螺纹配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过下面一面的主轴2与固定架1上的主轴2轴承16 孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在固定架1上,主轴电动机11通过皮带轮或轴或齿轮与主轴减速装置10的输入端连接,主轴减速装置10的输出端通过传动轴或齿轮或皮带轮和皮带分别与旋转架3端部下面的主轴2、承载架5下端的立轴6、螺杆8连接,主轴电动机11的通电电路通过控制器与电源连接;
(四)承载架5通过下端的立轴6与滑动架4上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4上的螺纹孔与螺杆8配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过固定架1上面一面的主轴2与旋转架3上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在旋转架3上,主轴电动机11通过皮带轮或轴或齿轮与主轴减速装置10的输入端连接,主轴减速装置10的输出端通过传动轴或齿轮或皮带轮和皮带分别与旋转架3端部下面的主轴2、承载架5下端的立轴6、螺杆8连接,主轴电动机11的通电电路通过控制器与电源连接;
(五)承载架5通过滑动架4上端的立轴6与承载架5上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4上的螺纹孔与螺杆8配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过固定架1上面一面的主轴2与旋转架3上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在旋转架3上,主轴电动机11通过皮带轮或轴或齿轮与主轴减速装置10的输入端连接,主轴减速装置10的输出端通过传动轴或齿轮或皮带轮和皮带分别与旋转架3端部下面的主轴2、承载架5下端的立轴6、螺杆8连接,主轴电动机11的通电电路通过控制器与电源连接;
(六)承载架5通过滑动架4上端的立轴6与承载架5上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4上的螺纹孔与螺杆8配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过下面一面的主轴2与固定架1上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在固定架1上,主轴电动机11通过皮带轮或轴或齿轮与主轴减速装置10的输入端连接,主轴减速装置10的输出端通过传动轴或齿轮或皮带轮和皮带分别与旋转架3端部下面的主轴2、承载架5下端的立轴6、螺杆8连接,主轴电动机11的通电电路通过控制器与电源连接;
(七)承载架5通过滑动架4上端的立轴6与承载架5上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4下端的插入脚9与螺杆8上的螺纹配合,螺杆8在转动 时带动滑动架4沿导滑轨道7滑动,旋转架3通过下面一面的主轴2与固定架1上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在固定架1上,主轴电动机11通过皮带轮或轴或齿轮与主轴减速装置10的输入端连接,主轴减速装置10的输出端通过传动轴或齿轮或皮带轮和皮带分别与旋转架3端部下面的主轴2、承载架5下端的立轴6、螺杆8连接,主轴电动机11的通电电路通过控制器与电源连接;
(八)承载架5通过下端的立轴6与滑动架4上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4下端的插入脚9与螺杆8上的螺纹配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过固定架1上面一面的主轴2与旋转架3上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在旋转架3上,主轴电动机11通过皮带轮或轴或齿轮与主轴减速装置10的输入端连接,主轴减速装置10的输出端通过传动轴或齿轮或皮带轮和皮带分别与旋转架3端部下面的主轴2、承载架5下端的立轴6、螺杆8连接,主轴电动机11的通电电路通过控制器与电源连接;
(九)承载架5通过下端的立轴6与滑动架4上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4上的螺纹孔与螺杆8配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过下面一面的主轴2与固定架1上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在固定架1上,承载电动机15固定在滑动架4上,横向电动机13固定在旋转架3上或滑动架4上,主轴电动机11通过主轴减速装置10与旋转架3端部下面的主轴2连接,承载电动机15通过承载减速装置14与承载架5下端的立轴6连接,横向电动机13通过横向减速装置12与螺杆8的轴连接,主轴电动机11、承载电动机15和横向电动机13的通电电路通过控制器与电源连接;
(十)承载架5通过滑动架4上端的立轴6与承载架5上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4下端的插入脚9与螺杆8上的螺纹配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过固定架1上面一面的主轴2与旋转架3上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在旋转架3上,承载电动机15固定在承载架5上,横向电动机13固定在旋转架3上或滑动架4上,主轴电动机11通过主轴减速装置10与固定架1上面的主轴2连接,承载电动机15通过承载减速装置14与滑动架4上端的立轴6连接,横向电动机13通过横向减速装置12与螺杆8的轴连接,主轴电动机11、承载电动机15和横向电动机13的通电电路通过控制器与电源连接;
(十一)承载架5通过下端的立轴6与滑动架4上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4下端的插入脚9与螺杆8上的螺纹配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过下面一面的主轴2与固定架1上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在固定架1上,承载电动机15固定在滑动架4上,横向电动机13固定在旋转架3上或滑动架4上,主轴电动机11通过主轴减速装置10与旋转架3端部下面的主轴2连接,承载电动机15通过承载减速装置14与承载架5下端的立轴6连接,横向电动机13通过横向减速装置12与螺杆8的轴连接,主轴电动机11、承载电动机15和横向电动机13的通电电路通过控制器与电源连接;
(十二)承载架5通过下端的立轴6与滑动架4上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4上的螺纹孔与螺杆8配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过固定架1上面一面的主轴2与旋转架3上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在旋转架3上,承载电动机15固定在滑动架4上,横向电动机13固定在旋转架3上或滑动架4上,主轴电动机11通过主轴减速装置10与固定架1上面的主轴2连接,承载电动机15通过承载减速装置14与承载架5下端的立轴6连接,横向电动机13通过横向减速装置12与螺杆8的轴连接,主轴电动机11、承载电动机15和横向电动机13的通电电路通过控制器与电源连接;
(十三)承载架5通过滑动架4上端的立轴6与承载架5上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4上的螺纹孔与螺杆8配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过固定架1上面一面的主轴2与旋转架3上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在旋转架3上,承载电动机15固定在承载架5上,横向电动机13固定在旋转架3上或滑动架4上,主轴电动机11通过主轴减速装置10与固定架1上面的主轴2连接,承载电动机15通过承载减速装置14与滑动架4上端的立轴6连接,横向电动机13通过横向减速装置12与螺杆8的轴连接,主轴电动机11、承载电动机15和横向电动机13的通电电路通过控制器与电源连接;
(十四)承载架5通过滑动架4上端的立轴6与承载架5上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4上的螺纹孔与螺杆8配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过下面一面的主轴2与固定架1上的主轴2轴承16孔配 合再通过轴承16固定在固定架1上;主轴电动机11固定在固定架1上,承载电动机15固定在承载架5上,横向电动机13固定在旋转架3上或滑动架4上,主轴电动机11通过主轴减速装置10与旋转架3端部下面的主轴2连接,承载电动机15通过承载减速装置14与滑动架4上端的立轴6连接,横向电动机13通过横向减速装置12与螺杆8的轴连接,主轴电动机11、承载电动机15和横向电动机13的通电电路通过控制器与电源连接;
(十五)承载架5通过滑动架4上端的立轴6与承载架5上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4下端的插入脚9与螺杆8上的螺纹配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过下面一面的主轴2与固定架1上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在固定架1上,承载电动机15固定在承载架5上,横向电动机13固定在旋转架3上或滑动架4上,主轴电动机11通过主轴减速装置10与旋转架3端部下面的主轴2连接,承载电动机15通过承载减速装置14与滑动架4上端的立轴6连接,横向电动机13通过横向减速装置12与螺杆8的轴连接,主轴电动机11、承载电动机15和横向电动机13的通电电路通过控制器与电源连接;
(十六)承载架5通过下端的立轴6与滑动架4上的立轴6轴承16孔配合再通过轴承16固定在滑动架4上,滑动架4安装在旋转架3的上面一面,滑动架4的导滑部分在导滑轨道7上与导滑轨道7配合,滑动架4下端的插入脚9与螺杆8上的螺纹配合,螺杆8在转动时带动滑动架4沿导滑轨道7滑动,旋转架3通过固定架1上面一面的主轴2与旋转架3上的主轴2轴承16孔配合再通过轴承16固定在固定架1上;主轴电动机11固定在旋转架3上,承载电动机15固定在滑动架4上,横向电动机13固定在旋转架3上或滑动架4上,主轴电动机11通过主轴减速装置10与固定架1上面的主轴2连接,承载电动机15通过承载减速装置14与承载架5下端的立轴6连接,横向电动机13通过横向减速装置12与螺杆8的轴连接,主轴电动机11、承载电动机15和横向电动机13的通电电路通过控制器与电源连接。
所述的承载架5是承载人体的载体,包括座体和载体两部分,座体部分和载体部分是分开的组合体或者是一个整体;在载体部分上有与坐姿方式旋转或站立姿式旋转或靠姿姿式旋转或躺姿姿式旋转相匹配的、让人体依靠和固定的椅或柱或靠垫或躺垫,以及对人体在椅或柱或靠垫或躺垫上进行固定的带或扣或锁紧装置;在承载架5的下端有立轴6时,立轴6在载体部分的下端;
所述的固定架1是支撑和稳定物理扩张血管装置运动的架体,也是支撑和稳定旋转架3的架体或支撑和稳定承载架5的架体;在固定架1上设有主轴2或主轴2轴承16孔,或者,在固定架1上设有立轴6或立轴6轴承16孔;
所述的旋转架3是绕轴旋转的架体,也是支撑承载架5的架体或支撑滑动架4和承载架5的架体;在旋转架3的一端设有主轴2或主轴2轴承16孔、另一端固定有承载架5,或者,在旋转架3的一端设有主轴2或主轴2轴承16孔、在旋转架3上安装有滑动架4;旋转架3与滑动架4滑动配合时,旋转架3上安装有导滑轨道7和螺杆8;承载架5固定在旋转架3的一端时,旋转架3上可以不安装导滑轨道7和螺杆8;
所述的滑动架4是连接旋转架3和承载架5的滑动架4体,在滑动架4的上下端面设有对穿的立轴6轴承16孔或在滑动架4的上面设有立轴6,在滑动架4的前后端面设有导滑槽和滑动架4的下端面部分设有插入脚9或在滑动架4的前后端面设有导滑槽和螺纹孔,导滑槽的导滑中心线与螺纹孔平行,导滑槽是带有导滑套或导滑板的槽;
所述的减速装置俗称牙箱、减速箱、变速箱,包括但不仅限于横向减速装置12、主轴减速装置10和承载减速装置14,采用齿轮变速或皮带轮变速,采用圆锥齿轮变换动力传动方向,采用皮带轮与皮带组成的传动或齿轮传动或传动轴来进行变速传动;减速装置可以有一个或多个输出端,输出端的结构形式有输出传动轴、输出齿轮、输出皮带轮;
所述的控制器是带有编程功能的电子控制器,也可以是带有编程功能的微型电脑,还可以是带有编程功能的电路控制器;
所述的正向与反向是相对的,方向可以互换;所述的上与下也是相对的,上与下可以互换;所述的左与右也是相对的,左与右可以互换。
承载架5的旋转方式有单独旋转和周向旋转二类旋转方式;承载架5的旋转方式以旋转半径来分分为等径周向旋转和不等径周向旋转二类旋转方式,等径周向旋转又包括单独旋转和等径周向旋转二类,不等径周向旋转又包括螺旋分散式周向旋转、螺旋汇聚式周向旋转二类;承载架5的旋转方式以组合方式来分,包括:单独旋转、等径周向旋转、螺旋分散式周向旋转、螺旋汇聚式周向旋转、单独旋转与螺旋分散式周向旋转相结合、单独旋转与螺旋汇聚式周向旋转相结合、单独旋转与周向旋转相结合七种旋转方式:
一、单独旋转:承载架5以自身的竖向中心为旋转中心进行的自转式的旋转;
二、周向旋转:承载架5与外在轴心线有一定的距离,承载架5以外在轴心线为旋转中心进行的绕轴式旋转;周向旋转包括等径周向旋转和不等径周向旋转,不等径周向旋转包括螺旋分散式周向旋转和螺旋汇聚式周向旋转;
(一)等径周向旋转:承载架5以相同的旋转半径做绕轴式旋转;
(二)螺旋分散式周向旋转:承载架5的旋转半径不相等,承载架5以旋转半径逐渐扩大、外面一圈比里面一圈的旋转半径大、从旋转中心向圆周方向进行旋转扩散的绕轴式旋转;
(三)螺旋汇聚式周向旋转:承载架5的旋转半径不相等,承载架5以旋转半径逐渐缩小、 外面一圈比里面一圈的旋转半径小、从边缘向旋转中心旋转收缩的绕轴式旋转;
三、单独旋转与周向旋转相结合:承载架5在以自身的竖向中心旋转的同时,承载架5还在以外在轴心线为旋转中心进行的绕轴式旋转,形成的双重旋转;单独旋转与周向旋转相结合包括:单独旋转与等径周向旋转相结合、单独旋转与螺旋分散式周向旋转相结合、单独旋转与螺旋汇聚式周向旋转相结合三种结合形式;
(一)单独旋转与等径周向旋转相结合:承载架5与外在轴心线有一定的距离,承载架5以外在轴心线为旋转中心进行的绕轴式旋转的同时,承载架5还在以自身的竖向中心旋转;包括单独旋转与周向旋转同向的旋转和单独旋转与周向旋转反向的旋转;
(二)单独旋转与螺旋分散式周向旋转相结合:承载架5在以外在轴心线为旋转中心进行螺旋分散式周向旋转的同时,承载架5还在以自身的竖向中心旋转;包括单独旋转与螺旋分散式周向旋转同向的旋转和单独旋转与螺旋分散式周向旋转反向的旋转;
(三)单独旋转与螺旋汇聚式周向旋转相结合:承载架5在以外在轴心线为旋转中心进行螺旋汇聚式周向旋转的同时,承载架5还在以自身的竖向中心旋转;包括单独旋转与螺旋汇聚式周向旋转同向的旋转和单独旋转与螺旋汇聚式周向旋转反向的旋转;
采用让承载架5以单独旋转的方式正向/反向旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架5以螺旋分散式周向旋转的正向/反向旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架5以螺旋汇聚式周向旋转的正向/反向旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架5以等径周向旋转的正向/反向旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架5以螺旋分散式周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架5以螺旋汇聚式周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转来使高血压患者和血栓患者的身体内部产生离心力,和/或者,采用让承载架5以等径周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转来使高血压患者和血栓患者的身体内部产生离心力,通过人体内部产生的离心力来让血液在离心力的作用下在血管中向身体的外围扩张,来让血液对血管进行扩张,并通过血液对血管的扩张来让血管变得柔软而有弹性和扩张性,达到降低血压和疏通淤积堵塞的血管的目的;来实现:通过旋转的人体内部离心运动使血液产生的离心推动力与血管内的血压配合来使血液对血管进行扩张,血管通过长期的运动扩张而让血管变得柔软而具有弹性和扩张性,降低血液在血管内通过阻力而提高血液在血管内的通过性能,降低高血压患者的血压和疏通血栓患者的血栓拥堵。
人体固定在承载架5上后的旋转姿势包括但不仅限于坐姿方式旋转、站立姿式旋转、靠姿姿式旋转、躺姿姿式旋转等多种旋转姿势;高血压患者或血栓患者可以根据自身的身体状况的选择坐姿方式旋转、站立姿式旋转、靠姿姿式旋转、躺姿姿式旋转中的一种或多种旋转姿势,来配合人体随承载架的单独旋转、等径周向旋转、螺旋分散式周向旋转、螺旋汇聚式周向旋转、单独旋转与螺旋分散式周向旋转相结合、单独旋转与螺旋汇聚式周向旋转相结合、单独旋转与等径周向旋转相结合中的一种或多种旋转方式来对高血压患者或血栓患者的血管进行离心力扩张;
所述的坐姿方式旋转是人坐在承载架5上,承载架5旋转时,人在承载架5上采用的是坐姿;所述的站立姿式旋转是人站在承载架5上,承载架5旋转时,人在承载架5上采用的是站姿;所述的靠姿姿式旋转是人靠姿在承载架5上,承载架5旋转时,人在承载架5上采用的是靠姿姿势姿;所述的躺姿包括斜躺和平躺,所述的斜躺姿式旋转是人斜躺在承载架5上,承载架5旋转时,人在承载架5上采用的是斜躺姿势;所述的平躺姿式旋转是人平躺在承载架5上,承载架5旋转时,人在承载架5上采用的是平躺姿势。
所述的物理扩张血管装置采用承载架5的单独旋转与周向旋转组合的旋转方式设置:先设置承载架5以单独旋转的方式正向旋转(一般设定为3至100圈为宜,以5至10圈为最佳);再设置承载架5以螺旋分散式周向旋转的正向旋转到最大半径,并与承载架5以单独旋转的方式正向旋转相配合进行双重旋转(承载架5以螺旋分散式周向旋转旋转到最大半径的圈数一般设定为3至50圈为宜,以5至10圈为最佳;承载架5以螺旋分散式周向旋转旋转一圈,承载架5以单独旋转的方式旋转一圈);之后,再设置承载架5以等径周向旋转的正向旋转,并与承载架5以单独旋转的方式正向旋转相配合进行双重旋转(承载架5以等径周向旋转的圈数一般设定为3至100圈为宜,以5至10圈为最佳;承载架5以等径周向旋转旋转一圈,承载架5以单独旋转的方式旋转一圈);之后,再设置承载架5以螺旋汇聚式周向旋转的正向旋转从最大半径旋转到最大半径,并与承载架5以单独旋转的方式正向旋转相配合进行双重旋转(承载架5以螺旋汇聚式周向旋转从最大半径旋转到最大半径的圈数一般设定为3至50圈为宜,以5至10圈为最佳;承载架5以螺旋汇聚式周向旋转旋转一圈,承载架5以单独旋转的方式旋转一圈);再之后,再设置承载架5以单独旋转的方式反向旋转(一般设定为3至100圈为宜,以5至10圈为最佳);再设置承载架5以螺旋分散式周向旋转的反向旋转到最大半径,并与承载架5以单独旋转的方式反向旋转相配合进行双重旋转(承载架5以螺旋分散式周向旋转旋转到最大半径的圈数一般设定为3至50圈为宜,以5至10圈为最佳;承载架5以螺旋分散式周向旋转旋转一圈,承载架5以单独旋转的方式旋转一圈);之后,再设置承载架5以等径周向旋转的反向旋转,并与承载架5以单独旋转的方式反向旋转 相配合进行双重旋转(承载架5以等径周向旋转的圈数一般设定为3至100圈为宜,以5至10圈为最佳;承载架5以等径周向旋转旋转一圈,承载架5以单独旋转的方式旋转一圈);之后,再设置承载架5以螺旋汇聚式周向旋转的反向旋转从最大半径旋转到最大半径,并与承载架5以单独旋转的方式反向旋转相配合进行双重旋转(承载架5以螺旋汇聚式周向旋转从最大半径旋转到最大半径的圈数一般设定为3至50圈为宜,以5至10圈为最佳;承载架5以螺旋汇聚式周向旋转旋转一圈,承载架5以单独旋转的方式旋转一圈);再之后,可以重复之前的旋转方式继续旋转;承载架5的单独旋转与周向旋转组合的旋转速度根据使用者的身体素质和身体状况来定,身体健康的人的单独旋转的旋转速度为每秒1至4圈(以每秒2至3圈为宜)、螺旋分散式周向旋转和螺旋汇聚式周向旋转的旋转速度为每秒1至4圈(以每秒2至3圈为宜)、等径周向旋转的旋转速度为每秒1至4圈(以每秒2至3圈为宜),身体柔弱的人的单独旋转的旋转速度为每秒0.3至2圈(以每秒0.5至1圈为宜)、螺旋分散式周向旋转和螺旋汇聚式周向旋转的旋转速度为每秒0.3至2圈(以每秒0.5至1圈为宜)、等径周向旋转的旋转速度为每秒0.3至2圈(以每秒0.5至1圈为宜),介于身体健康与身体柔弱之间的人的旋转速度也取其中间的适当速度;
所述的物理扩张血管装置采用承载架5只以等径周向旋转的旋转方式设置:先设置承载架5以等径周向旋转的方式正向旋转(一般设定为3至100圈为宜,以10至30圈为最佳),再设置承载架5以等径周向旋转的方式反向旋转;承载架5只以等径周向旋转的旋转速度根据使用者的身体素质和身体状况来定,身体健康的人的旋转速度为每秒1至4圈(以每秒2至3圈为宜),身体柔弱的人的单独旋转的旋转速度为每秒0.3至2圈(以每秒0.5至1圈为宜),介于身体健康与身体柔弱之间的人的旋转速度也取其中间的适当速度;
所述的物理扩张血管装置采用承载架5只以单独旋转的旋转方式设置:先设置承载架5以单独旋转的方式正向旋转(一般设定为3至100圈为宜,以10至30圈为最佳),再设置承载架5以单独旋转的方式反向旋转;承载架5只以单独旋转的旋转速度根据使用者的身体素质和身体状况来定,身体健康的人的旋转速度为每秒1至4圈(以每秒2至3圈为宜),身体柔弱的人的单独旋转的旋转速度为每秒0.3至2圈(以每秒0.5至1圈为宜),介于身体健康与身体柔弱之间的人的旋转速度也取其中间的适当速度。
完成设置后,使用者进入承载架5内,打开控制器的控制开关,让使用者,通过让承载架5以单独旋转的方式正向/反向旋转、和/或者以螺旋分散式周向旋转的正向/反向旋转、和/或者以螺旋汇聚式周向旋转的正向/反向旋转、和/或者以等径周向旋转的正向/反向旋转、和/或者以螺旋分散式周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转、和/或者以螺旋汇聚式周向旋转的正向/反向旋转和承载架5以单独旋转 的正向/反向旋转的双重旋转方式同时旋转、和/或者以等径周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转,来使使用者的身体内部产生离心力,通过人体内部产生的离心力来让血液在离心力的作用下在血管中向身体的外围扩张,来让血液对血管进行扩张,并通过血液对血管的扩张来让血管变得柔软而有弹性和扩张性,来降低血压和疏通淤积堵塞的血管;所述的使用者可以是高血压患者、也可以是血栓患者、还可以是身体健康的正常人;
采用上述的承载架5的旋转的方法,根据使用者感觉的舒适度和时间的充裕度,可以省略承载架5以单独旋转的方式正向/反向旋转、以螺旋分散式周向旋转的正向/反向旋转、以螺旋汇聚式周向旋转的正向/反向旋转、以等径周向旋转的正向/反向旋转、以螺旋分散式周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转、以螺旋汇聚式周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转、以等径周向旋转的正向/反向旋转和承载架5以单独旋转的正向/反向旋转的双重旋转方式同时旋转的旋转方式中的其中一种或多种旋转方式的设置。
所述的物理扩张血管装置的承载架5在旋转架3的上面移动的推动方式还能够采用液压泵带动液压伸缩缸来推动或拉动;所述的物理扩张血管装置的承载架5和旋转架3的旋转还能够采用气压泵带动气压风炮机来带动承载架5和旋转架3的旋转,或者,承载架5和旋转架3的旋转采用液压泵带动液压转动机来带动承载架5和旋转架3的旋转。
还可以在所述的物理扩张血管装置上设置播放音乐器来播放有节奏感的音乐或播放让心境宁静的音乐或播放轻松愉快的音乐来与人体内部的离心运动配合,在人体内部离心运动时放松肌肉、调节心情;
还可以在所述的承载架5上的椅或柱或靠垫或躺垫上设置按摩装置,在人体内部离心运动时与按摩装置配合,通过按摩来让使用者的经脉和血管更畅通,有利于被堵塞的血管的疏通,也有利于使用者的肌肉放松。
所述的物理扩张血管装置主要用于对血管进行物理扩张和物理疏通,逐渐降低高血压患者的血压和逐渐消除血栓患者的血栓;既适用于高血压患者降低血压,也适用于血栓患者消除血栓,还适用于健康人用来锻炼身体、增加血管的柔软性和弹性、防止心脑血管疾病的发生。
工业实用性
1.通过人体内部的离心运动,通过离心力的作用来对高血压患者和血栓患者的血管进行物理扩张和物理疏通,让血管变得柔软而具有弹性和扩张性的同时,降低了高血压患者的血压,疏通了血栓患者的血管堵塞,提高了高血压患者和血栓患者的身体机能,有效的防止 血压反复升高和血管的反复堵塞,降低了高血压患者的复发率和血栓患者的复发;
2.通过人体内部的离心运动,来对高血压患者的血管进行物理扩张和物理疏通血管,让高血压患者的血管变得柔软而具有弹性和扩张性,血压降低后稳定性好,对人的身心健康有极大的帮助,减少了高血压患者的复发;
3.通过人体内部的离心运动,使高血压患者不需要吃降血压药、也不需要打降血压针、更不需要手术与药物配合治疗就能够对高血压进行治疗,减少了降血压药物对人体产生的副作用;
4.通过人体内部的离心运动产生的离心力和血管中的血压来推动凝固的血液在血管中慢慢蠕动和振荡,通过慢慢蠕动来使凝固的血液慢慢溶解而对血栓拥堵的血管进行疏通,使血栓患者不需要吃药、也不需要打针、更不需要手术就能够对血栓拥堵的血管进行疏通而不会产生药副作用;
5.通过人体内部的离心运动,来对血管进行物理扩张和物理疏通血管,减少了高血压患者和血栓患者对降药物的依耐性和减少了药副作用;
6.血压正常的人通过人体内部的离心运动来对血管进行物理扩张,在增加血管的柔软性、弹性和扩张性的同时,能够有效的防止高血压疾病的产生;
7.为高血压患者和血栓患者开辟了一条新的避开药物治疗和手术治疗高血压和血栓的新途径:利用旋转的人体内部的离心运动产生的离心力与血管内的血压配合而形成的推动力和振动力,来对血管进行物理扩张而降血压和对堵塞的血管进行物理疏通;
8.还能够作为高血压患者通过药物治疗把血压降下来后,用来稳定血压而替代降血压药物的替代品来减少药物对人体产生的药副作用;
9.也还能够作为血栓患者通过药物治疗把血栓暂时溶解后,用于血栓部位的血液不再凝固而替代溶血药物的替代品来减少药物对人体产生的药副作用。
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Claims (8)

  1. 一种物理扩张血管装置,其特征在于:采用人体在承载架上随承载架旋转而使人体内部产生离心力来对血管进行扩张,并通过对血管的扩张来让血管变得柔软而有弹性和扩张性,来疏通血管、降低血压。
  2. 根据权利要求1所述的物理扩张血管装置,其特征在于:通过人体内部的离心运动,来对高血压患者和血栓患者的血管进行物理扩张和物理疏通。
  3. 根据权利要求1所述的物理扩张血管装置,其特征在于:通过人体内部的离心运动产生的离心力和血管中的血压来推动凝固的血液在血管中慢慢蠕动和振荡,通过慢慢蠕动来使凝固的血液慢慢溶解而对血栓拥堵的血管进行疏通。
  4. 根据权利要求1所述的物理扩张血管装置,其特征在于:通过物理扩张血管,高血压患者和血栓患者能够不吃药、不打针、更不用手术与药物配合治疗就能对高血压和血栓进行治疗。
  5. 根据权利要求1所述的物理扩张血管装置,其特征在于:承载架的旋转方式包括但不仅限于单独旋转、周向旋转、单独旋转与周向旋转相结合三种旋转方式。
  6. 根据权利要求1所述的物理扩张血管装置,其特征在于:采用让承载架以单独旋转的方式正向/反向旋转来使人的身体内部产生离心力,和/或者,采用让承载架以螺旋分散式周向旋转的正向/反向旋转来使人的身体内部产生离心力,和/或者,采用让承载架以螺旋汇聚式周向旋转的正向/反向旋转来使人的身体内部产生离心力,和/或者,采用让承载架以等径周向旋转的正向/反向旋转来使人的身体内部产生离心力,和/或者,采用让承载架以螺旋分散式周向旋转的正向/反向旋转和承载架以单独旋转的正向/反向旋转的双重旋转方式同时旋转来使人的身体内部产生离心力,和/或者,采用让承载架以螺旋汇聚式周向旋转的正向/反向旋转和承载架以单独旋转的正向/反向旋转的双重旋转方式同时旋转来使人的身体内部产生离心力,和/或者,采用让承载架以等径周向旋转的正向/反向旋转和承载架以单独旋转的正向/反向旋转的双重旋转方式同时旋转来使人的身体内部产生离心力,通过人体内部产生的离心力来让血液在离心力的作用下在血管中向身体的外围扩张,来让血液对血管进行扩张,并通过血液对血管进行扩张来让血管变得柔软而具有弹性和扩张性,降低血液在血管内通过阻力而提高血液在血管内的通过性能,降低高血压患者的血压和/或疏通血栓患者的血栓拥堵。
  7. 根据权利要求1所述的物理扩张血管装置,其特征在于:采用物理扩张血管装置来让人体在旋转时在身体内部产生离心力而对血管进行扩张,人体在承载架上的旋转姿势包括但不仅限于坐姿方式旋转、站立姿式旋转、斜靠姿式旋转、斜躺姿式旋转、平躺姿式旋转;高血压患者或血栓患者可以根据自身的身体状况的选择坐姿方式旋转、站立姿式旋转、斜靠姿式旋转、斜躺姿式旋转、平躺姿式旋转中的一种或多种旋转姿势,来配合单独旋转、等径周向旋转、螺旋分散式周向旋转、螺旋汇聚式周向旋转、单独旋转与螺旋分散式周向旋转相结合、 单独旋转与螺旋汇聚式周向旋转相结合、单独旋转与等径周向旋转相结合中的一种或多种旋转方式来对高血压患者或血栓患者的血管进行离心力扩张。
  8. 根据权利要求1所述的物理扩张血管装置,其特征在于:承载架以单独旋转的方式正向/反向旋转、以螺旋分散式周向旋转的正向/反向旋转、以螺旋汇聚式周向旋转的正向/反向旋转、以等径周向旋转的正向/反向旋转、以螺旋分散式周向旋转的正向/反向旋转和承载架以单独旋转的正向/反向旋转的双重旋转方式同时旋转、以螺旋汇聚式周向旋转的正向/反向旋转和承载架以单独旋转的正向/反向旋转的双重旋转方式同时旋转、以等径周向旋转的正向/反向旋转和承载架以单独旋转的正向/反向旋转的双重旋转方式同时旋转的旋转方式中,能够根据使用者感觉的舒适度和时间的充裕度,来省略其中一种或多种旋转方式。
PCT/CN2021/131808 2021-11-19 2021-11-19 物理扩张血管装置 WO2023087257A1 (zh)

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