Disclosure of Invention
In order to overcome the defects that the traditional baby sickbed cannot sooth the baby mood and prevent the patient from falling, the invention provides the baby-carrying sickbed for obstetrics and gynecology department, which can sooth the baby mood and prevent the patient from falling.
The invention is realized in this way, a hospital bed capable of carrying baby for obstetrics and gynecology department, comprising: the novel multifunctional creeper comprises a creeper body, a shielding plate, a seat plate, a shielding mechanism, a clamping mechanism and a sliding bed mechanism, wherein the shielding plate is arranged on each of the two sides of the creeper body, the seat plate is arranged in the middle of the lower side of the creeper body, the shielding mechanism is arranged at the top of the creeper body, the clamping mechanism is arranged on the creeper body, and the sliding bed mechanism is arranged on the creeper body.
Further explained, the shielding mechanism includes: bedplate upper portion both sides all are equipped with first swivelling joint board, and the rotary type is connected with the first rotating barrier who is used for preventing patient from dropping between two first rotating joint boards, and both sides all are around having first torsion spring on two first rotating joint boards, and first torsion spring both ends are connected with first rotating joint board and first rotating barrier respectively.
Further illustratively, the detent mechanism includes: the middle part of the seat board is provided with a first connecting frame, the first connecting frame is slidably provided with a sliding stop lever, two sides of the lower part of the sliding stop lever are respectively wound with a first spring, and two ends of the first spring are respectively connected with the first connecting frame and the sliding stop lever.
Further illustratively, the sliding bed mechanism includes: bedplate inner wall upper portion both sides all are equipped with the head rod, equal slidingtype is equipped with first sliding connection board on two head rods, all around having the second spring on two head rods, the second spring both ends are connected with bedplate and first sliding connection board respectively, two first sliding connection board tops all are equipped with second sliding connection board, slidingtype is connected with the sliding plate that is used for providing rest environment for the baby between two second sliding connection boards, sliding plate lower part both sides all around having the third spring, the third spring both ends are connected with second sliding connection board and sliding plate respectively.
Further explaining, still include rotatory shutter mechanism, rotatory shutter mechanism includes: the sliding plate lower part both sides all are equipped with the second link frame, and two second link frame inner walls all are equipped with the rotatory connecting plate of second, and two equal rotary type of rotatory connecting plate of second are equipped with and are used for protecting baby's health safety's second rotating barrier, and both sides all around there being second torsion spring on two rotatory connecting plates of second, and second torsion spring both ends are connected with rotatory connecting plate of second and second rotating barrier respectively.
Further illustrated, the apparatus further comprises a side baffle mechanism, wherein the side baffle mechanism comprises: the sliding plate bottom is equipped with the third carriage, the equal rotary type in third carriage inner wall both sides is equipped with swing joint pole, equal rotary type is equipped with third swivelling joint board on two swing joint poles, third carriage upside slidingtype is equipped with the second connecting rod, the equal slidingtype in the inside both sides of second connecting rod is equipped with third sliding connection board, third sliding connection board is connected with third swivelling joint board, the inside both sides of second connecting rod all around there being the fourth spring, the fourth spring both ends are connected with second connecting rod and third sliding connection board respectively, all around there being third torsion spring on two swing joint poles, the third torsion spring both ends are connected with third carriage and swing joint pole respectively.
Further, the device also comprises a driving mechanism, wherein the driving mechanism comprises: third connecting frame bottom both sides all are equipped with the third connecting rod, and equal slidingtype is equipped with sliding connection pole on two third connecting rods, all around having the fifth spring on two third connecting rods, and the fifth spring both ends are connected with third connecting rod and sliding connection pole respectively, all are equipped with one-way straight-teeth gear on two swivelling joint poles, and two sliding connection pole upsides all are equipped with the rack.
Further, the second connecting rod is used for protecting the baby and preventing the baby from being blocked and injured by the lying plate.
The invention provides a hospital bed capable of carrying a baby for obstetrics and gynecology department, which has the following beneficial effects:
1. the first rotating baffle plate can shield the patient, so that the patient is prevented from falling to the ground due to overlarge action in the rest process, safety guarantee is provided for the patient, and the safety factor of the patient is increased;
2. the sliding stop lever can clamp the first rotating baffle, so that the first rotating baffle is prevented from being rotated due to overlarge action of a patient in the rest process, the patient is prevented from falling on the ground, and the stability of the first rotating baffle is improved;
3. according to the baby crying device, after the first sliding connecting plate moves forwards to the designated position, a user controls the first sliding connecting plate to stay, the user can place a baby on the sliding plate, the sliding plate provides a rest environment for the baby, and when the baby cryes, the baby can be pacified by the sliding plate moving forwards and backwards, so that the mood of the baby is stabilized, and the burden of a patient is relieved;
4. after the second connecting rod upward movement reached the limit, third sliding connection board continued to move to the outside, and the fourth spring is compressed for the swivelling joint pole changes vertical state into, and the second connecting rod is protected the baby, thereby prevents that the service creeper card from hindering the baby, has increased baby's factor of safety.
Drawings
Fig. 1 is a schematic perspective view of a first perspective structure according to the present invention.
Fig. 2 is a perspective view of a second perspective structure according to the present invention.
Fig. 3 is a schematic perspective view of a first shielding mechanism according to the present invention.
Fig. 4 is a schematic perspective view of a second shielding mechanism according to the present invention.
Fig. 5 is a schematic perspective view of a first locking mechanism of the present invention.
Fig. 6 is a schematic perspective view of a second locking mechanism of the present invention.
Fig. 7 is a schematic perspective view of a first sliding bed mechanism according to the present invention.
Fig. 8 is a schematic perspective view of a second sliding bed mechanism according to the present invention.
Fig. 9 is a schematic view of a third three-dimensional structure of the sliding bed mechanism of the present invention.
Fig. 10 is a schematic perspective view of a first embodiment of the rotary shutter mechanism of the present invention.
FIG. 11 is a schematic perspective view of a second embodiment of the rotary shutter mechanism of the present invention.
FIG. 12 is a schematic perspective view of a third embodiment of the rotary shutter mechanism of the present invention.
Fig. 13 is a schematic perspective view of a first side barrier mechanism of the present invention.
Fig. 14 is a schematic perspective view of a second side barrier mechanism of the present invention.
FIG. 15 is a schematic view of a third perspective view of the side dam mechanism of the present invention.
Fig. 16 is a schematic perspective view of a first driving mechanism according to the present invention.
Fig. 17 is a schematic perspective view of a second driving mechanism according to the present invention.
Reference numbers in the drawings: 1: creeper, 2: shielding plate, 3: seat plate, 4: shielding mechanism, 41: first rotating connecting plate, 42: first rotating shutter, 43: first torsion spring, 5: detent mechanism, 51: first connection frame, 52: sliding bar, 53: first spring, 6: sliding bed mechanism, 61: first connecting rod, 62: first slide connecting plate, 63: second spring, 64: second slide connecting plate, 65: sliding plate, 66: third spring, 7: rotary shutter mechanism, 71: second connection frame, 72: second rotating connecting plate, 73: second rotating shutter, 74: second torsion spring, 8: side shield mechanism, 81: third connection frame, 82: rotating connecting rod, 83: third rotating link plate, 84: second connecting rod, 85: third slide connecting plate, 86: fourth spring, 87: third torsion spring, 9: drive mechanism, 91: third connecting rod, 92: sliding connecting rod, 93: fifth spring, 94: rack, 95: a one-way straight gear.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1-17, the present invention provides a technical solution: the utility model provides a gynaecology and obstetrics is with sick bed of portability baby, including service creeper 1, shielding plate 2, bedplate 3, shelter from mechanism 4, screens mechanism 5 and slide bed mechanism 6, the 1 upper portion left and right sides of service creeper all has shielding plate 2 through bolted connection, and 1 downside middle part of service creeper is connected with bedplate 3, and 1 rear side of service creeper is equipped with screens mechanism 5, and 1 top rear side of service creeper is equipped with shelters from mechanism 4, is equipped with slide bed mechanism 6 on the service creeper 1.
The shielding mechanism 4 comprises a first rotating connecting plate 41, a first rotating baffle 42 and a first torsion spring 43, the left side and the right side of the upper part of the rear side of the seat plate 3 are both connected with the first rotating connecting plate 41, the first rotating baffle 42 is rotatably connected between the two first rotating connecting plates 41, the left side and the right side of the two first rotating connecting plates 41 are both wound with the first torsion spring 43, and two ends of the first torsion spring 43 are respectively connected with the first rotating connecting plate 41 and the first torsion spring 42.
Clamping mechanism 5 is including first splice frame 51, slip pin 52 and first spring 53, and bedplate 3 rear side middle part is equipped with first splice frame 51, and first splice frame 51 rear side is opened has a plurality of recesses, and the slip is equipped with slip pin 52 on first splice frame 51, and slip pin 52 cooperates with first rotating damper 42, and the slip pin 52 lower part left and right sides all is around having first spring 53, and first spring 53 both ends are connected with first splice frame 51 and slip pin 52 respectively.
Sliding bed mechanism 6 is including first connecting rod 61, first sliding connection board 62, second spring 63, second sliding connection board 64, sliding plate 65 and third spring 66, bedplate 3 inner wall upper portion left and right sides all is connected with first connecting rod 61, all be equipped with first sliding connection board 62 on two first connecting rod 61 in the slidingtype, two first connecting rod 61 rear sides all around there being second spring 63, second spring 63 both ends are connected with bedplate 3 and first sliding connection board 62 respectively, two first sliding connection board 62 tops all are connected with second sliding connection board 64, sliding connection has sliding plate 65 between two second sliding connection board 64 upper portions, sliding plate 65 lower part left and right sides all around having third spring 66, third spring 66 both ends are connected with second sliding connection board 64 and sliding plate 65 respectively.
Still including rotatory sunshade mechanism 7, rotatory sunshade mechanism 7 is including second connection frame 71, second swivelling joint board 72, second rotating barrier 73 and second torsion spring 74, the sliding plate 65 lower part left and right sides all is connected with second connection frame 71, two second connection frame 71 inner walls all are connected with second rotating joint board 72, two equal rotary type of second rotating joint board 72 are equipped with second rotating barrier 73, two second rotating joint board 72 front and back both sides all around having second torsion spring 74, second torsion spring 74 both ends are connected with second rotating joint board 72 and second rotating barrier 73 respectively.
The side baffle mechanism 8 comprises a third connecting frame 81, a rotating connecting rod 82, a third rotating connecting plate 83, a second connecting rod 84, a third sliding connecting plate 85, a fourth spring 86 and a third torsion spring 87, the rear side of the bottom of the sliding plate 65 is connected with the third connecting frame 81, the rotating connecting rod 82 is rotatably arranged on the left side and the right side of the inner wall of the third connecting frame 81, the second connecting rod 84 is slidably arranged on the upper side of the third connecting frame 81, the second connecting rod 84 is used for protecting a baby from being stuck by the lying plate 1, the third rotating connecting plate 83 is rotatably arranged on the two rotating connecting rods 82, the third sliding connecting plate 85 is slidably arranged on the left side and the right side inside the second connecting rod 84, the third sliding connecting plate 85 is connected with the third rotating connecting plate 83, the fourth spring 86 is wound on the left side and the right side inside the second connecting rod 84, and two ends of the fourth spring 86 are respectively connected with the second connecting rod 84 and the third sliding connecting plate 85, the front sides of the two rotating connecting rods 82 are wound with third torsion springs 87, and two ends of each third torsion spring 87 are respectively connected with the third connecting frame 81 and the rotating connecting rod 82.
Still including drive mechanism 9, drive mechanism 9 is including third connecting rod 91, sliding connection 92, fifth spring 93, rack 94 and one-way straight-teeth gear 95, the third connecting frame 81 bottom left and right sides all is connected with third connecting rod 91, equal slidingtype is equipped with sliding connection 92 on two third connecting rods 91, sliding connection 92 and the cooperation of second rotating barrier 73, all around having fifth spring 93 on two third connecting rods 91, the fifth spring 93 both ends are connected with third connecting rod 91 and sliding connection 92 respectively, two rotating connection 82 rear sides all are equipped with one-way straight-teeth gear 95, two sliding connection 92 upsides all are equipped with rack 94, rack 94 and the cooperation of one-way straight-teeth gear 95.
The working principle of the invention is that when a patient wants to carry an infant in a department of obstetrics and gynecology, the hospital bed capable of carrying the infant in the department of obstetrics and gynecology can be used, firstly, the user pushes the clamping mechanism 5 downwards, the clamping mechanism 5 moves downwards to a designated position, the user controls the clamping mechanism 5 to stay, then the user rotates the shielding mechanism 4 downwards, the shielding mechanism 4 rotates downwards to the designated position, the user controls the shielding mechanism 4 to stay, then the user holds the patient to lie on the lying plate 1, after the patient lies, the user releases the shielding mechanism 4, the shielding mechanism 4 rotates upwards to a recovery position, then the user releases the clamping mechanism 5, the clamping mechanism 5 moves upwards to the recovery position, after the clamping mechanism 5 moves upwards to be contacted with the shielding mechanism 4, the clamping mechanism 5 clamps the shielding mechanism 4, the patient is prevented from rotating the shielding mechanism 4 due to overlarge movement in the rest process, the patient is caused to fall on the ground, so that the personal safety of the patient is guaranteed, when the patient wants to carry an infant around, a user operates the sliding bed mechanism 6 to operate, after the sliding bed mechanism 6 operates to a designated position, the user controls the sliding bed mechanism 6 to stop, then the user places the infant on the sliding bed mechanism 6, the sliding bed mechanism 6 provides a rest environment for the infant, when the infant cries, the user pushes the sliding bed mechanism 6 forwards and backwards to enable the sliding bed mechanism 6 to placate the infant, so that the emotion of the infant is stabilized, after the emotion of the infant is stabilized, the user stops operating the sliding bed mechanism 6, when the patient wants to stand up to exercise, the user pushes the clamping mechanism 5 downwards, after the clamping mechanism 5 moves downwards to the designated position, the user controls the clamping mechanism 5 to stop, then the user rotates the shielding mechanism 4 downwards, after sheltering from mechanism 4 and rotating down to the assigned position, user control shelters from mechanism 4 and stops, after patient stands up and leaves lying board 1, the user loosens and shelters from mechanism 4 for shelter from mechanism 4 and rotate upwards to the recovery normal position, the user loosens screens mechanism 5 afterwards, makes screens mechanism 5 upwards move to the recovery normal position, the user embraces the baby from sliding bed mechanism 6 after that, the baby embraces the back, and the user loosens sliding bed mechanism 6, makes sliding bed mechanism 6 reverse operation to the recovery normal position.
When a patient wants to lie on the lying plate 1 for rest, the user pushes the clamping mechanism 5 downwards, the clamping mechanism 5 moves downwards to be separated from the first rotating baffle 42, the user rotates the first rotating baffle 42 downwards, the first torsion spring 43 is twisted and deformed, the first rotating baffle 42 rotates downwards to a specified position, the user controls the first rotating baffle 42 to stop, after the patient lies on the lying plate 1, the user loosens the first rotating baffle 42, the first torsion spring 43 resets, so that the first rotating baffle 42 is driven to move upwards to a recovery position, the first rotating baffle 42 shields the patient, the patient is prevented from falling on the ground due to excessive movement in the rest process, safety guarantee is provided for the patient, the user loosens the clamping mechanism 5, and the clamping mechanism 5 clamps the first rotating baffle 42.
When a patient wants to lie on the lying plate 1 for rest, the user pushes the sliding stop lever 52 downwards, the first spring 53 is compressed, after the sliding stop lever 52 moves downwards to be separated from the first rotary baffle 42, the user controls the sliding stop lever 52 to stop, then the first rotary baffle 42 rotates downwards, the first torsion spring 43 is deformed in a torsional mode, after the first rotary baffle 42 rotates downwards to a designated position, the user controls the first rotary baffle 42 to stop, after the patient lies on the lying plate 1, the user releases the first rotary baffle 42, the first torsion spring 43 is reset, so as to drive the first rotary baffle 42 to move upwards to a reset position, then the user releases the sliding stop lever 52, the first spring 53 is reset, so as to drive the sliding stop lever 52 to move upwards, after the sliding stop lever 52 moves upwards to be contacted with the first rotary baffle 42, so that the sliding stop lever 52 clamps the first rotary baffle 42, the patient is prevented from rotating the first rotary baffle 42 due to excessive movement during the rest process, so that the patient falls on the ground.
When a patient wants to carry an infant around, the user pulls the first sliding connecting plate 62 forwards, the second spring 63 is stretched, the first sliding connecting plate 62 drives the second sliding connecting plate 64, the sliding plate 65 and the third spring 66 to move forwards, after the first sliding connecting plate 62 moves forwards to a specified position, the user controls the first sliding connecting plate 62 to stay, the user can place the infant on the sliding plate 65, the sliding plate 65 provides a rest environment for the infant, when the infant cries, the user pulls the sliding plate 65 forwards, the third spring 66 deforms, after the sliding plate 65 moves forwards to a limit, the user pushes the sliding plate 65 backwards, the third spring 66 is deformed after being reset, the infant can be pacified by the forward and backward movement of the sliding plate 65, the infant is stabilized in mood, after the infant is stabilized in mood, the user releases the sliding plate 65, the third spring 66 resets, the sliding plate 65 is moved to the reset position, then the user pulls the baby out of the sliding plate 65, and after the baby pulls out, the user releases the first sliding connecting plate 62, the second spring 63 is reset, and the second sliding connecting plate 64, the sliding plate 65 and the third spring 66 are driven to move backwards to the reset position.
The second rotary baffle 73 is in a compressed state, when the sliding plate 65 moves forward, the sliding plate 65 drives the second connecting frame 71, the second rotary connecting plate 72, the second rotary baffle 73 and the second torsion spring 74 to move forward, after the second rotary baffle 73 moves forward and is separated from the lying plate 1, the second torsion spring 74 is reset, so as to drive the second rotary baffle 73 to rotate outwards, so that the second rotary baffle 73 is changed from a flush state to a vertical state, the second rotary baffle 73 shields the baby, so as to prevent the baby from falling from the sliding plate 65 to the ground and causing injury to the baby, after the baby holds the sliding plate 65, the user rotates the second rotary baffle 73 inwards, the second torsion spring 74 is twisted and deformed, after the second rotary baffle 73 rotates inwards to be in contact with the sliding plate 65, the user controls the second rotary baffle 73 to stay, when the sliding plate 65 moves backwards, the sliding plate 65 drives the second connecting frame 71, the second rotating connecting plate 72, the second rotating baffle 73 and the second torsion spring 74 to move backwards, after the second rotating baffle 73 moves backwards to the lower part of the lying plate 1, the user releases the second rotating baffle 73, so that the lying plate 1 clamps the second rotating baffle 73.
After the sliding plate 65 is pulled out, the user rotates the rotating connecting rod 82 to the outside, the third torsion spring 87 is twisted and deformed, the rotating connecting rod 82 drives the third rotating connecting plate 83 and the third sliding connecting plate 85 to rotate to the outside, the third sliding connecting plate 85 drives the second connecting rod 84 to move upwards, after the second connecting rod 84 moves upwards to the limit, the third sliding connecting plate 85 continues to move to the outside, the fourth spring 86 is compressed, so that the rotating connecting rod 82 is converted into the vertical state, the second connecting rod 84 protects the baby, thereby preventing the lying plate 1 from blocking the baby, after the baby is taken out, the user releases the rotating connecting rod 82, the third torsion spring 87 is reset, thereby driving the rotating connecting rod 82 to rotate to the inside, the rotating connecting rod 82 drives the third rotating connecting plate 83 and the third sliding connecting plate 85 to rotate to the inside, the fourth spring 86 is reset, thereby driving the third sliding connecting plate 85 to move to the inside, the third sliding connecting plate 85 drives the second connecting rod 84 to move downwards to the restoring position.
When the second rotary flap 73 rotates to the outside, the second rotary flap 73 rotates to the outside to be in contact with and matched with the sliding connecting rod 92, thereby driving the sliding connecting rod 92 to move downwards, the fifth spring 93 is compressed, the sliding connecting rod 92 drives the rack 94 to move downwards, the rack 94 is matched with the one-way spur gear 95, thereby driving the one-way spur gear 95 to rotate, the one-way spur gear 95 drives the rotary connecting rod 82 to rotate to the outside, the third torsion spring 87 is torsionally deformed, the rotary connecting rod 82 drives the third rotary connecting plate 83 and the third sliding connecting plate 85 to rotate to the outside, the third sliding connecting plate 85 drives the second connecting rod 84 to move upwards, after the second connecting rod 84 moves upwards to the limit, the third sliding connecting plate 85 continues to move outwards, the fourth spring 86 is compressed, so that the rotary connecting rod 82 is converted into the vertical state, and the second connecting rod 84 protects the baby, thereby prevent that lying board 1 card from hindering the baby, the baby embraces the back, when second whirl baffle 73 rotates to the inboard, second whirl baffle 73 rotates to the inboard and breaks away from behind sliding connection pole 92, fifth spring 93 resets, thereby drive sliding connection pole 92 and rack 94 upward movement, rack 94 and the cooperation of one-way straight-teeth gear 95, one-way straight-teeth gear 95 idle running, after rack 94 breaks away from one-way straight-teeth gear 95, third torsion spring 87 resets, thereby it rotates to the inboard to drive rotating connection pole 82, rotating connection pole 82 drives third rotation connection board 83 and third slip connection board 85 and rotates to the inboard, fourth spring 86 resets, thereby drive third slip connection board 85 and move to the inboard, third slip connection board 85 drives second connection pole 84 and moves to the recovery normal position downwards.
The above description is only for the specific embodiments of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present invention, and all the changes or substitutions should be covered within the scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the protection scope of the appended claims.