Intelligent breast adjustment model and method for assembling same
Abstract
Provided is an intelligent breast adjustment model. The model includes a model main structure provided with a pressure sensor and a model periphery structure provided on the model main structure. The model main structure includes an upper portion, a middle portion and a lower portion. A first motor of the middle portion controls an up and down movement of a left breast model through a first gear. A second motor of the middle portion controls an up and down movement of a right breast model through a second gear, and a third motor of the middle portion simultaneously controls a left and right movement of the left breast model and the right breast model through a drive structure. A method for assembling the intelligent breast adjustment model is disclosed.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An intelligent breast adjustment model, comprising:
a model main structure, and a model periphery structure provided on the model main structure; wherein the model main structure comprises an upper portion, a middle portion and a lower portion; and the middle portion comprises a breast size adjustment mechanism.
2 . The intelligent breast adjustment model of claim 1 , further comprising a control unit; wherein the model main structure is provided with a pressure sensor.
3 . The intelligent breast adjustment model of claim 1 , wherein the middle portion comprises a support plate of the middle portion, a left drive box, a first gear located in the left drive box, a left breast model, a first motor of the middle portion located on the left drive box, a right drive box, a second gear located in the right drive box, a right breast model, a second motor of the middle portion located on the right drive box, a third motor of the middle portion and a drive structure; a left part of an upper surface of the support plate of the middle portion is connected to the left drive box; a right part of the upper surface of the support plate of the middle portion is connected to the right drive box; the first motor of the middle portion controls an up and down movement of the left breast model through the first gear; the second motor of the middle portion controls an up and down movement of the right breast model through the second gear; and the third motor of the middle portion simultaneously controls a left and right movement of the left breast model and the right breast model through the drive structure.
4 . The intelligent breast adjustment model of claim 3 , wherein the drive structure comprises a drive rack, a limit shaft, a rotating shaft, a left bearing block, a right bearing block and a return spring; a first groove of the middle portion is provided at a top of the drive rack for placing the third motor of the middle portion; a first through hole of the middle portion is provided in the drive rack for passing through an output shaft of the third motor of the middle portion; a first snap ring is provided on a side wall of the drive rack; the drive rack is sleeved to the limit shaft through the first snap ring; the output shaft of the third motor of the middle portion drives the rotating shaft to operate through a gear engagement; both ends of the rotating shaft are connected to the left bearing block and the right bearing block, respectively; outside of the rotating shaft is sleeved with the return spring; a second snap ring is provided on a side wall of the left drive box; the left drive box is sleeved to the limit shaft through the second snap ring; a third snap ring is provided on a side wall of the right drive box; and the right drive box is sleeved to the limit shaft through the third snap ring.
5 . The intelligent breast adjustment model of claim 4 , wherein the left bearing block comprises a first left bearing block, a second left bearing block and a third left bearing block; the second left bearing block is provided at a left part of an upper surface of the first left bearing block; the third left bearing block is provided at a right part of the upper surface of the first left bearing block; the first left bearing block, the second left bearing block and the third left bearing block form a first round hole for inserting the rotating shaft; a first slit is formed on an opposite side of the second left bearing block and the third left bearing block; a first screw hole of the middle portion which penetrates is provided on the opposite side of the second left bearing block and the third left bearing block; and a second screw hole of the middle portion is provided on both ends of an upper surface of the first left bearing block, respectively;
wherein the right bearing block comprises a first right bearing block, a second right bearing block and a third right bearing block; the second right bearing block is provided at a left part of an upper surface of the first right bearing block; the third right bearing block is provided at a right part of the upper surface of the first right bearing block; the first right bearing block, the second right bearing block and the third right bearing block form a first round hole for inserting the rotating shaft; a first slit is formed on an opposite side of the second right bearing block and the third right bearing block; a first screw hole of the middle portion which penetrates is provided on the opposite side of the second right bearing block and the third right bearing block; and a second screw hole of the middle portion is provided on both ends of an upper surface of the first right bearing block, respectively.
6 . The intelligent breast adjustment model of claim 3 , wherein the upper portion comprises a support plate of the upper portion, a left oblique support plate, a right oblique support plate, a reinforcing bar, a motor bracket, a first motor of the upper portion, a second motor of the upper portion, a driving shaft and a frame of the upper portion; the left oblique support plate is mounted at a left end of an upper surface of the support plate of the upper portion; the right oblique support plate is mounted at a right end of the upper surface of the support plate of the upper portion; a first through hole of the upper portion is provided in a middle part of the upper surface of the support plate of the upper portion; the reinforcing bar is mounted in the first through hole of the upper portion; a left end of the reinforcing bar is connected to the left oblique support plate; a right end of the reinforcing bar is connected to the right oblique support plate; the motor bracket is provided on the reinforcing bar; the first motor of the upper portion is provided on the motor bracket; a lower surface of the support plate of the upper portion is connected to the frame of the upper portion; the frame of the upper portion comprises a first frame of the upper portion and a second frame of the upper portion; the first frame of the upper portion is a hollow frame; the second frame of the upper portion is connected to an upper part of the first frame of the upper portion; a first groove of the upper portion is provided at a top of the second frame of the upper portion for inserting the second motor of the upper portion; the first motor of the upper portion drives a back and forth movement of the driving shaft; and the second motor of the upper portion drives a left and right movement of the driving shaft.
7 . The intelligent breast adjustment model of claim 6 , wherein the left oblique support plate comprises a first left oblique support plate and a second left oblique support plate; the first left oblique support plate is connected to the support plate of the upper portion; the second left oblique support plate is connected to a side wall of the first left oblique support plate; the second left oblique support plate is provided with a left bar-type hole; the right oblique support plate comprises a first right oblique support plate and a second right oblique support plate; the first right oblique support plate is connected to the support plate of the upper portion; the second right oblique support plate is connected to a side wall of the first right oblique support plate; the second right oblique support plate is provided with a right bar-type hole; the reinforcing bar comprises a first reinforcing bar, a second reinforcing bar and a third reinforcing bar; both ends of the second reinforcing bar are connected to the first reinforcing bar and the third reinforcing bar, respectively; a first protrusion of the reinforcing bar is provided at a left end of the first reinforcing bar for inserting the left bar-type hole; and a second protrusion of the reinforcing bar is provided at a right end of the third reinforcing bar for inserting the right bar-type hole.
8 . The intelligent breast adjustment model of claim 3 , wherein the lower portion comprises a support plate of the lower portion, a left connecting shaft, a right connecting shaft, a frame of the lower portion and a first motor of the lower portion; a left end of the support plate of the lower portion is connected to the left connecting shaft; a right end of the support plate of the lower portion is connected to the right connecting shaft; the frame of the lower portion comprises a first frame of the lower portion and a second frame of the lower portion; the first frame of the lower portion is in a concave shape; the first motor of the lower portion is placed in a concave opening; and the second frame of the lower portion is in a trapezoidal shape.
9 . The intelligent breast adjustment model of claim 8 , wherein a front mounting plate is provided in a front of the support plate of the lower portion; a rear mounting plate is provided in a rear of the support plate of the lower portion; the front mounting plate is in a triangular shape; a left end and a right end of the front mounting plate are provided with a first lug for connecting to the second frame of the lower portion, respectively; and the rear mounting plate is provided with a second lug for connecting to the second frame of the lower portion.
10 . The intelligent breast adjustment model of claim 3 , wherein the model periphery structure comprises a breast middle-upper plate, a breast middle-lower plate, a breast left-upper plate, a breast left-lower plate, a breast right-upper plate and a breast right-lower plate; the breast middle-upper plate comprises a front breast middle-upper plate and a rear breast middle-upper plate; the breast middle-lower plate comprises a front breast middle-lower plate and a rear breast middle-lower plate; the breast left-upper plate comprises a front breast left-upper plate and a rear breast left-upper plate; the breast left-lower plate comprises a front breast left-lower plate and a rear breast left-lower plate; the breast right-upper plate comprises a front breast right-upper plate and a rear breast right-upper plate; and the breast right-lower plate comprises a front breast right-lower plate and a rear breast right-lower plate.
11 . The intelligent breast adjustment model of claim 10 , wherein three first screw holes of the front breast middle-upper plate are provided on the front breast middle-upper plate; the rear breast middle-upper plate is provided with a first protrusion of the rear breast middle-upper plate; two first screw holes of the front breast middle-lower plate are provided on the front breast middle-lower plate; the rear breast middle-lower plate is provided with a second protrusion of the rear breast middle-lower plate; the rear breast left-upper plate is provided with a first clamping groove of the rear breast left-upper plate; the rear breast left-lower plate is provided with a second clamping groove of the rear breast left-lower plate; the rear breast right-upper plate is provided with a first clamping groove of the rear breast right-upper plate; and the rear breast right-lower plate is provided with a second clamping groove of the rear breast right-lower plate.
12 . A method for assembling an intelligent breast adjustment model, comprising:
step 1: mounting a left oblique support plate and a right oblique support plate at a left end and a right end of an upper surface of a support plate of the upper portion, respectively; providing a first through hole of the upper portion in a middle part of the upper surface of the support plate of the upper portion; mounting a reinforcing bar in the first through hole of the upper portion; connecting the left oblique support plate and the right oblique support plate to a left end and a right end of the reinforcing bar, respectively; providing a motor bracket on the reinforcing bar; providing a first motor of the upper portion on the motor bracket; connecting a lower surface of the support plate of the upper portion to a frame of the upper portion comprising a first frame of the upper portion which is hollow and a second frame of the upper portion; connecting the second frame of the upper portion to an upper part of the first frame of the upper portion; and providing a first groove of the upper portion at a top of the second frame of the upper portion for inserting the second motor of the upper portion to assemble the upper portion; step 2: assembling a left drive box, a left breast model and a first motor of the middle portion into a whole; assembling a right drive box, a right breast model and a second motor of the middle portion into a whole; and connecting the left drive box and the right drive box to a left part and a right part of an upper surface of the support plate of the middle portion respectively to assemble the middle portion; step 3: connecting a left connecting shaft and a right connecting shaft to a left end and a right end of a support plate of the lower portion respectively to assemble the lower portion; step 4: placing the middle portion into the frame of the upper portion of the upper portion; and then inserting the middle portion into the lower portion to assemble a model main structure; and step 5: installing a front breast middle-upper plate and a rear breast middle-upper plate using screw holes on the frame of the upper portion to assemble a breast middle-upper plate; installing a front breast middle-lower plate using screw holes of a front mounting plate, and installing a rear breast middle-lower plate using screw holes of a rear mounting plate to assemble a breast middle-lower plate; installing a front breast left-upper plate and a rear breast left-upper plate using a first clamping groove of the rear breast left-upper plate to assemble a breast left-upper plate; and installing a front breast left-lower plate and a rear breast left-lower plate using a second clamping groove of the rear breast left-lower plate to a breast left-lower plate; installing a front breast right-upper plate and a rear breast right-upper plate using a first clamping groove of the rear breast right-upper plate to assemble a breast right-upper plate; and installing a front breast right-lower plate and a rear breast right-lower plate using a second clamping groove of the rear breast right-lower plate to assemble a breast right-lower plate to assemble a model periphery structure.Join the waitlist — get patent alerts
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