CN217852097U - Novel reciprocating bedstead structure - Google Patents
Novel reciprocating bedstead structure Download PDFInfo
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- CN217852097U CN217852097U CN202221631326.0U CN202221631326U CN217852097U CN 217852097 U CN217852097 U CN 217852097U CN 202221631326 U CN202221631326 U CN 202221631326U CN 217852097 U CN217852097 U CN 217852097U
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- 239000003638 chemical reducing agent Substances 0.000 claims abstract description 28
- 230000000712 assembly Effects 0.000 claims description 10
- 238000000429 assembly Methods 0.000 claims description 10
- 238000000034 method Methods 0.000 claims 1
- 230000009286 beneficial effect Effects 0.000 abstract description 2
- 238000005457 optimization Methods 0.000 description 3
- 230000002045 lasting effect Effects 0.000 description 2
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Abstract
The utility model relates to a bedstead structure, concretely relates to novel reciprocating motion bedstead structure, include: bedstead, chassis, bottom plate, motion subassembly, link means, slip subassembly and adjustable supporting legs. One end of the primary belt is sleeved on one side of the motor; the other end of the primary belt is sleeved on the primary speed reducer; wherein one end of the secondary belt is sleeved at one side of the primary speed reducing device; wherein the other end of the secondary belt is sleeved on the secondary speed reducer; wherein, eccentric wheels are respectively arranged at two sides of the secondary speed reducer; wherein the sliding wheel set is arranged on the sliding frame; wherein the sliding rod moves horizontally on the sliding wheel group; wherein the bed frame is arranged above the underframe; wherein the bottom plate is fixedly arranged on the bottom frame; wherein the motion component is fixedly arranged on the bottom plate; one end of the connecting rod device is connected with the moving component; wherein the other end of the connecting rod device is connected with the bedstead; wherein the adjustable supporting feet are arranged at the bottom of the underframe. The beneficial effects are that: the power is sufficient, the durability is longer, and the bearing capacity is large.
Description
Technical Field
The utility model relates to a bedstead structure, in particular to a structure for moving objects, which has enough power, is more durable and bears large novel reciprocating motion bedstead structure.
Background
Many bedstead need install the reciprocating motion bedstead structure, and the reciprocating motion bedstead structure that uses on the existing market all carries out the braking with multiple mode, and a lot of all power is not enough, and is not lasting, bears for a short time, the not good experience scheduling problem of user, and the development in market is different day by day, and current many bedstead need improve because of not obtaining the not lasting and bearing for a short time scheduling problem that better swing mode produced.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a novel reciprocating motion bed frame structure which has sufficient power, is more durable and has large bearing capacity.
This novel technical scheme who provides is: a novel reciprocating bed frame structure, comprising: bedstead, chassis, bottom plate, motion subassembly, link means, slip subassembly and adjustable supporting legs.
The motion assembly comprises a motor, a primary speed reducer, a primary belt, a secondary speed reducer, a secondary belt and an eccentric wheel; one end of the primary belt is sleeved on one side of the motor; the other end of the primary belt is sleeved on the primary speed reducer; wherein one end of the secondary belt is sleeved at one side of the primary speed reducing device; wherein the other end of the secondary belt is sleeved on the secondary speed reducer; wherein, two sides of the secondary speed reducer are respectively provided with an eccentric wheel;
the sliding assembly comprises a sliding rod frame, a sliding wheel set and a sliding frame; wherein the sliding rod frame comprises a sliding rod and a side frame; wherein the side frames are respectively connected and fixed at two ends of the sliding rod; wherein, the number of the sliding rods is at least 2, and the sliding rods are respectively arranged above the sliding wheel set and below the sliding wheel set; wherein the sliding wheel set is arranged on the sliding frame; wherein the sliding rod moves horizontally on the sliding wheel group;
wherein the sliding frames are respectively installed and fixed on two side edges of the underframe; wherein the sliding rod frames are respectively connected and fixed at the bottoms of two side edges of the bed frame;
wherein the bed frame is arranged above the underframe; wherein the bottom plate is fixedly arranged on the bottom frame; wherein the motion component is fixedly arranged on the bottom plate; one end of the connecting rod device is connected with the moving component; wherein the other end of the connecting rod device is connected with the bedstead; wherein the adjustable supporting feet are arranged at the bottom of the underframe.
Further optimization, the underframe comprises a cross bar and a side bar; wherein, two ends of the cross bar are respectively connected with the fixed side bars, and the cross bar and the side bars are vertically arranged at ninety degrees; wherein, the number of the cross bars is not less than 2; wherein, the number of the side rods is 2; wherein the bottom plate is fixedly arranged on the cross rod; wherein the sliding rack is fixedly arranged on the side rod.
Further optimizing, wherein the bed frame comprises an upper cross bar and an upper side bar, wherein two ends of the upper cross bar are respectively connected and fixed with the upper side bar, and the upper cross bar and the upper side bar are vertically placed at ninety degrees; wherein the number of the upper cross rods is not less than 2; wherein the side pole of going up is 2, and wherein the connection of the frame top of limit of slide bar frame is fixed in the side pole bottom of going up.
Further optimizing, wherein the connecting rod device is Y-shaped; wherein one end of the connecting rod device is provided with two interfaces which are respectively connected with the eccentric wheels; wherein the other end of the connecting rod device is provided with a vertical rod; wherein the top end of the vertical rod is connected and fixed with the bottom of the upper cross rod.
Further optimizing, wherein the sliding assemblies are at least 4 groups, and 2 groups of sliding assemblies are respectively installed and fixed below the upper side rod; wherein the two sliding rods are arranged up and down; an upper sliding rod and a lower sliding rod respectively; wherein the upper sliding rod is arranged above the lower sliding rod.
Further optimizing, wherein the sliding assemblies are at least 4 groups, and sliding frames for fixing 2 groups of sliding assemblies are respectively arranged on the side rods; the sliding wheel group comprises an upper pulley and a lower pulley; wherein the number of the upper pulleys is at least 2, and the number of the lower pulleys is at least 1; wherein the lower pulley is arranged between the two upper pulleys; wherein the top of the upper pulley is propped against the bottom of the upper sliding rod; wherein the bottom of the lower pulley is propped against the top of the lower sliding rod.
Further optimization, at least 4 adjustable supporting legs are arranged and fixed at the bottoms of four corners of the base respectively; the adjustable supporting feet are used for adjusting the balance of the base by adjusting the height of the supporting feet.
Further optimization, wherein the motor drives the primary belt to rotate; wherein the primary belt rotates to drive the primary speed reducer to rotate; wherein the primary speed reducer rotates to drive the secondary belt to rotate; wherein the secondary belt rotates to drive the secondary speed reducer to rotate; wherein the second-stage reduction gear rotates to drive the eccentric wheel to rotate, and the eccentric wheel rotates to drive the connecting rod device to swing; wherein the connecting rod device swings to drive the bedstead to swing; wherein the bed frame swings to drive the sliding rod to horizontally move on the sliding wheel set.
Further preferred, wherein the sliding rod is a circular rod for sliding on the set of sliding wheels.
After having adopted above-mentioned technical scheme, this neotype beneficial effect is:
compared with the disclosed technical scheme, the novel reciprocating motion bed frame structure has the innovation points that the power is sufficient, the durability is high, and the bearing capacity is large.
Drawings
FIG. 1 is a first structural view of a novel reciprocating bed frame;
FIG. 2 is a second drawing of a novel reciprocating bed frame structure;
FIG. 3 is a top view of a novel back and forth motion bed frame construction;
fig. 4 is a side view of a novel reciprocating bed frame structure.
Detailed Description
The present invention will be described in detail with reference to fig. 1, 2, 3 and 4, and the specific embodiments, but the present invention is not limited thereto.
Examples
As shown in fig. 1 to 4, a novel reciprocating bedstead structure comprises: bedstead 1, underframe 2, bottom plate 3, motion assembly 4, linkage 5, sliding assembly 6 and adjustable supporting legs 7.
Wherein the motion assembly 4 comprises a motor 41, a primary speed reducer 42, a primary belt 43, a secondary speed reducer 44, a secondary belt 45 and an eccentric wheel 46; one end of the primary belt 43 is sleeved on one side of the motor 41; the other end of the primary belt 43 is sleeved on the primary speed reducer 42; wherein one end of the secondary belt 45 is sleeved at one side of the primary speed reducer 43; wherein the other end of the secondary belt 45 is sleeved on the secondary speed reducer 44; wherein, two sides of the second-stage speed reducer 44 are respectively provided with an eccentric wheel 46; the sliding assembly 6 comprises a sliding rod frame 61, a sliding wheel set 62 and a sliding frame 63; wherein the sliding bar frame 61 comprises a sliding bar 611 and a side frame 612; wherein, the side frames 612 are respectively connected and fixed at the two ends of the sliding rod 611; at least 2 sliding rods 611 are respectively arranged above the sliding wheel set 62 and below the sliding wheel set 62; wherein the sliding wheel set 62 is arranged on the sliding frame 63; wherein the sliding rod 611 moves horizontally on the pulley block 62; wherein, the sliding rack 63 is respectively arranged and fixed on the two side edges of the underframe 2; wherein the sliding rod frames 61 are respectively connected and fixed at the bottoms of the two side edges of the bedstead 1; wherein the chassis 2 comprises a cross bar 21 and side bars 22; wherein, two ends of the cross bar 21 are respectively connected with the fixed side bars 22, and the cross bar 21 and the side bars 22 are vertically arranged at ninety degrees; wherein, the number of the cross bars 21 is not less than 2; wherein, the number of the side rods 22 is 2; wherein the bottom plate 3 is fixedly arranged on the cross rod 21; wherein the carriage 63 is fixedly mounted on the side bar 22. Wherein the bed frame 1 comprises an upper cross bar 11 and an upper side bar 12, wherein two ends of the upper cross bar 11 are respectively connected with the upper side bar 12, and the upper cross bar 11 and the upper side bar 12 are vertically arranged at ninety degrees; wherein, the number of the upper cross bars 11 is not less than 2; wherein, the upper side rod 12 is 2, and the top of the side frame of the sliding rod frame 61 is connected and fixed at the bottom of the upper side rod 12. Wherein the connecting rod device 5 is Y-shaped; wherein, one end of the connecting rod device 5 is provided with two interfaces which are respectively connected with the eccentric wheels 46; wherein the other end of the connecting rod device 5 is provided with a vertical rod 51; wherein the top end of the vertical rod 51 is connected with and fixed at the bottom of the upper cross rod 11. The number of the sliding assemblies 6 is at least 4, and 2 groups of sliding assemblies 6 are respectively installed and fixed below the upper side rod 12; two of the sliding bars 611 are placed up and down; an upper slide bar 6111 and a lower slide bar 6112; wherein the upper sliding bar 6111 is disposed above the lower sliding bar 6112. The sliding assemblies 6 are at least 4 groups, and the side rods are respectively provided with sliding frames 63 for fixing 2 groups of sliding assemblies 6; wherein the sliding wheel set 62 comprises an upper pulley 621 and a lower pulley 622; wherein the number of the upper pulleys 621 is at least 2, and wherein the number of the lower pulleys 622 is at least 1; wherein the lower pulley 622 is disposed in the middle of the two upper pulleys 621; wherein the top of the upper pulley 621 pushes against the bottom of the upper sliding bar 6111; with the bottom of lower pulley 622 resting against the top of lower sliding bar 6112. At least 4 adjustable supporting legs 7 are respectively installed and fixed at the bottoms of four corners of the base 2; wherein the adjustable supporting feet 7 are used for adjusting the balance of the base 2 by adjusting the height of the supporting feet. Wherein the sliding bar 611 is a circular bar for sliding on the sliding wheel set
As shown in fig. 1 to 4, a novel reciprocating bed frame structure is implemented: wherein the bed frame 1 is arranged above the underframe 2; wherein the bottom plate 3 is fixedly arranged on the bottom frame 2; wherein the moving component 4 is fixedly arranged on the bottom plate 3; wherein one end of the connecting rod device 5 is connected with the moving component 4; wherein the other end of the connecting rod device 5 is connected with the bedstead 1; the adjustable supporting legs 7 are arranged at the bottom of the underframe 2, and the motor 41 drives the primary belt 43 to rotate; wherein, the primary belt 43 rotates to drive the primary speed reducer 42 to rotate; wherein the primary speed reducer 42 rotates to drive the secondary belt 45 to rotate; wherein the secondary belt 45 rotates to drive the secondary speed reducer 44 to rotate; wherein the secondary reduction gear 44 rotates to drive the eccentric wheel 46 to rotate, wherein the eccentric wheel 46 rotates to drive the connecting rod device 5 to swing; wherein the connecting rod device 5 swings to drive the bedstead 11 to swing; wherein the bed frame 1 swings to drive the sliding rod to move horizontally on the sliding wheel set 62. Thereby achieving the effect of exercise. Therefore, the novel purpose is achieved, the power is sufficient, the durability is high, and the bearing capacity is large.
As is apparent from the technical common knowledge, the technical solution can be realized by other embodiments without departing from the spirit or essential characteristics thereof. The embodiments disclosed above are therefore to be considered in all respects as illustrative and not restrictive. All changes which come within the scope of the invention or are equivalent to the scope of the invention are intended to be embraced therein.
Claims (9)
1. A novel reciprocating bed frame structure, comprising: the bed frame, the underframe, the bottom plate, the motion assembly, the connecting rod device, the sliding assembly and the adjustable supporting legs; the method is characterized in that:
the motion component comprises a motor, a primary speed reducer, a primary belt, a secondary speed reducer, a secondary belt and an eccentric wheel; one end of the primary belt is sleeved on one side of the motor; the other end of the primary belt is sleeved on the primary speed reducer; one end of the secondary belt is sleeved on one side of the primary speed reducing device; wherein the other end of the secondary belt is sleeved on the secondary speed reducer; wherein, two sides of the secondary speed reducer are respectively provided with an eccentric wheel;
the sliding assembly comprises a sliding rod frame, a sliding wheel set and a sliding frame; the sliding rod frame comprises a sliding rod and a side frame; wherein the side frames are respectively connected and fixed at two ends of the sliding rod; wherein, the number of the sliding rods is at least 2, and the sliding rods are respectively arranged above the sliding wheel set and below the sliding wheel set; wherein the sliding wheel set is arranged on the sliding frame; wherein the sliding rod moves horizontally on the sliding wheel set;
wherein the sliding frames are respectively installed and fixed on two side edges of the underframe; wherein the sliding rod frames are respectively connected and fixed at the bottoms of the two side edges of the bed frame;
wherein the bed frame is arranged above the underframe; wherein the bottom plate is fixedly arranged on the bottom frame; wherein the motion component is fixedly arranged on the bottom plate; wherein one end of the connecting rod device is connected with the motion assembly; wherein the other end of the connecting rod device is connected with the bedstead; wherein the adjustable supporting feet are arranged at the bottom of the underframe.
2. The novel reciprocating frame structure as claimed in claim 1, wherein: wherein the underframe comprises a cross bar and side bars; wherein, two ends of the cross bar are respectively connected with the fixed side bars, and the cross bar and the side bars are vertically arranged at ninety degrees; wherein, the number of the cross bars is not less than 2; wherein, the number of the side rods is 2; wherein the bottom plate is fixedly arranged on the cross rod; wherein the sliding frame is fixedly arranged on the side edge rod.
3. The novel reciprocating frame structure as claimed in claim 1, wherein: the bed frame comprises an upper cross bar and an upper side bar, wherein two ends of the upper cross bar are respectively connected with the upper side bar fixedly, and the upper cross bar and the upper side bar are vertically placed at ninety degrees; wherein the number of the upper cross rods is not less than 2; wherein the side pole of going up is 2, and wherein the connection of the frame top of limit of slide bar frame is fixed in the side pole bottom of going up.
4. A novel reciprocating bed frame structure as claimed in claim 1 or 3, wherein: wherein the connecting rod device is Y-shaped; wherein one end of the connecting rod device is provided with two interfaces which are respectively connected with the eccentric wheels; wherein the other end of the connecting rod device is provided with a vertical rod; wherein the top end of the vertical rod is connected and fixed with the bottom of the upper cross rod.
5. A novel reciprocating bed frame structure as claimed in claim 1 or 3, wherein: wherein, the sliding components are at least 4 groups, and 2 groups of sliding components are respectively installed and fixed below the upper side rod; wherein the two sliding rods are arranged up and down; an upper sliding rod and a lower sliding rod respectively; wherein the upper sliding rod is arranged above the lower sliding rod.
6. The novel reciprocating frame structure as claimed in claim 1, wherein: the sliding assemblies are at least 4 groups, and sliding frames for fixing 2 groups of sliding assemblies are respectively arranged on the side rods; the sliding wheel set comprises an upper pulley and a lower pulley; wherein the number of the upper pulleys is at least 2, and the number of the lower pulleys is at least 1; wherein the lower pulley is arranged between the two upper pulleys; wherein the top of the upper pulley is propped against the bottom of the upper sliding rod; wherein the bottom of the lower pulley is against the top of the lower sliding rod.
7. The new reciprocating bed frame structure as defined in claim 1, wherein: at least 4 adjustable supporting legs are respectively installed and fixed at the bottoms of four corners of the base; the adjustable supporting feet are used for adjusting the balance of the base by adjusting the height of the supporting feet.
8. The novel reciprocating frame structure as claimed in claim 1, wherein: wherein the motor drives the primary belt to rotate; wherein the primary belt rotates to drive the primary speed reducer to rotate; wherein the primary speed reducer rotates to drive the secondary belt to rotate; wherein the secondary belt rotates to drive the secondary speed reducer to rotate; wherein the second-stage reduction gear rotates to drive the eccentric wheel to rotate, and the eccentric wheel rotates to drive the connecting rod device to swing; wherein the connecting rod device swings to drive the bedstead to swing; wherein the bed frame swings to drive the sliding rod to horizontally move on the sliding wheel set.
9. The novel reciprocating frame structure as claimed in claim 1, wherein: wherein the sliding rod is a circular rod for sliding on the sliding wheel set.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202221631326.0U CN217852097U (en) | 2022-06-28 | 2022-06-28 | Novel reciprocating bedstead structure |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202221631326.0U CN217852097U (en) | 2022-06-28 | 2022-06-28 | Novel reciprocating bedstead structure |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN217852097U true CN217852097U (en) | 2022-11-22 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202221631326.0U Active CN217852097U (en) | 2022-06-28 | 2022-06-28 | Novel reciprocating bedstead structure |
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|---|---|
| CN (1) | CN217852097U (en) |
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2022
- 2022-06-28 CN CN202221631326.0U patent/CN217852097U/en active Active
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