CN212438531U - Horizontal-pushing type lifting and entering-exiting integrated dish washing cabinet - Google Patents

Horizontal-pushing type lifting and entering-exiting integrated dish washing cabinet Download PDF

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Publication number
CN212438531U
CN212438531U CN202021976728.5U CN202021976728U CN212438531U CN 212438531 U CN212438531 U CN 212438531U CN 202021976728 U CN202021976728 U CN 202021976728U CN 212438531 U CN212438531 U CN 212438531U
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China
Prior art keywords
lifting
bracket
linear module
bowl basket
rail
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CN202021976728.5U
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Chinese (zh)
Inventor
付政
黄建昌
芮正国
周飞
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Oechsler Plastic Products Taicang Co Ltd
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Oechsler Plastic Products Taicang Co Ltd
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Abstract

The utility model belongs to the technical field of household electrical appliances, concretely relates to integrative dish washing cabinet of flat-pushing formula lift business turn over. The lifting type bowl basket comprises a cabinet body, a first bowl basket and a lifting in-out actuator; the lifting in-out actuator is arranged in the cabinet body; the first bowl basket is arranged on the lifting in-out actuator and is driven by the lifting in-out actuator to lift and enter. The lifting in-and-out actuator comprises a pair of inclined guide rails, a group of guide rods, a bracket and a linear module; the pair of inclined guide rails are fixedly arranged in parallel, and the linear module is fixedly arranged horizontally; a guide rod is vertically fixed on the linear module; the bracket is horizontally arranged, and supporting rods are arranged on two sides of the bracket and slide along the inclined guide rails; and the guide rod can be slidably arranged in the bracket in a penetrating way. The utility model provides an integrative dish washing cabinet of flat pushing-type lift business turn over, reasonable in design is ingenious, and the succinct compactness of structure, cost economy is controllable, and safe and reliable ground has realized the automatic business turn over lifting operation and the manual business turn over lifting operation of bowl basket.

Description

Horizontal-pushing type lifting and entering-exiting integrated dish washing cabinet
Technical Field
The utility model belongs to the technical field of household electrical appliances, concretely relates to integrative dish washing cabinet of flat-pushing formula lift business turn over.
Background
With the continuous development and progress of society, the quality and refinement requirements of people on household appliances are gradually improved. At present, especially high-end household appliances need to have basic use functions, and also need to be safe and reliable to use, convenient and friendly to operate and bring exquisite and elegant feeling to people. Taking a dish washer as an example, the lower layer bowl basket needs an operator to bend and get up many times when taking and placing bowls due to lower position, the operation convenience is not good, and especially for the old, the operation is not friendly.
Disclosure of Invention
The above-mentioned not enough to prior art, the utility model provides a integrative cupboard of washing of flat-pushing formula lift business turn over can realize the manual-automatic business turn over and the lift operation of bowl basket with succinct structure and controllable cost safe and reliable ground.
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: a flat-push type lifting in-out integrated dish washing cabinet comprises a cabinet body, a first dish basket and a lifting in-out actuator; the lifting in-out actuator is arranged in the cabinet body; the first bowl basket is arranged on the lifting in-out actuator and is driven by the lifting in-out actuator to lift and enter.
The lifting in-and-out actuator comprises a pair of inclined guide rails, a group of guide rods, a bracket and a linear module; the pair of inclined guide rails are fixedly arranged in parallel, and the linear module is fixedly arranged horizontally; a guide rod is vertically fixed on the linear module; the bracket is horizontally arranged, and supporting rods are arranged on two sides of the bracket and slide along the inclined guide rails; and the guide rod can be slidably arranged in the bracket in a penetrating way.
The inclined guide rail is fixed in the cabinet body; the linear module is horizontally fixed in the cabinet body; the first bowl basket is fixed on the bracket.
The bowl basket of the dish washing cabinet has the functions of automatically moving out and lifting, and also has the functions of automatically retracting and descending. Specifically, when the bowl basket needs to be moved out and lifted, the linear module is started, the linear module moves and drives the guide rod to translate, the guide rod translates to push the bracket to slide along the inclined guide rail, and the bracket is arranged obliquely upwards and also slides upwards along the guide rod to lift while being moved out, so that the bowl basket is automatically moved out and lifted along with the bracket. The automatic withdrawing and descending operation of the bowl basket only needs to reversely operate the driving device. In addition, when the power is off, manual operation can be carried out, and the bowl basket can be pulled out or pushed back manually.
Furthermore, a linear bearing which slides up and down along the guide rod is sleeved on the guide rod and is fixed with the bracket. The bracket is connected with the guide rod through the linear bearing, so that the friction resistance during sliding is obviously reduced, the abrasion is reduced, and the operation is smoother.
Furthermore, a cam bearing follower is arranged on the supporting rod; the cam bearing follower snaps into and slides along the angled rail. The cam bearing follower has the functions of guiding and reducing friction, and can bear large load, so that the sliding of the bracket along the inclined guide rail is smoother.
Furthermore, the inclined guide rail comprises a horizontal section, an inclined section and a bearing section which are sequentially connected from bottom to top; the joints of the horizontal section, the inclined section and the bearing section are all in smooth transition connection. The moving track of the bracket is directly determined by the trend of the inclined guide rail, and the inclined guide rail is set into three sections, so that the bracket is firstly translated outwards and then lifted upwards when moving out, and the interference with other structures possibly arranged on the upper part of the bracket is avoided; meanwhile, the bearing section can stably bear the bracket, and the bracket is prevented from accidentally sliding off.
Further, the end of the bearing section is closed.
Further, the linear module preferably uses a motor screw driver. Besides, linear driving devices such as synchronous belt drivers, air cylinders, oil cylinders and the like can also be selected.
Further, the motor lead screw driver comprises a slide rail, a slide block, a lead screw and a motor; the screw rod is rotatably arranged on the slide rail and is parallel to the slide rail; the sliding block can be arranged on the sliding rail in a sliding mode, and the screw rod penetrates through the sliding block; the motor is in power connection with the screw rod; and a ball is also arranged between the sliding block and the screw rod.
Furthermore, the device also comprises at least one auxiliary slide rail parallel to the linear module; an auxiliary sliding block is slidably arranged on the auxiliary sliding rail; the synchronous connecting block is used for fixedly connecting the auxiliary sliding block with the linear module; the auxiliary sliding block is also provided with a guide rod. The auxiliary sliding rails are additionally arranged and synchronously push the multi-tracking guide rods with the linear module, so that the shaking of the bracket in the operation process can be obviously reduced, the integral stability and reliability are improved, and the service life is prolonged.
Furthermore, the guide rods are four in total, and are preferably arranged in a rectangular distribution.
Furthermore, a second bowl basket can be slidably arranged in the cabinet body; the second bowl basket is positioned above the first bowl basket.
In addition, in order to further improve the safety and reliability, the control logic of the linear module can be designed and expanded, and the control logic comprises a current overload protection design, an execution time out-of-range protection design and the like.
Has the advantages that: according to the technical scheme provided by the utility model, the utility model provides an integrative dish washing cabinet of flat pushing-type lift business turn over, reasonable in design is ingenious, and the succinct compactness of structure, cost economy is controllable, and safe and reliable's automatic business turn over lifting operation and manual business turn over lifting operation of bowl basket have been realized.
Drawings
FIGS. 1 and 2 are schematic structural views of an actuator according to embodiment 1;
FIGS. 3 and 4 are schematic structural views of an actuator according to embodiment 2;
FIG. 5 is a schematic view of the guide rod and linear bearing in cooperation;
FIG. 6 is a schematic view of the construction of the inclined rail;
FIG. 7 is a schematic structural diagram of a motor screw driver;
FIGS. 8 and 9 are schematic structural views of the dish washing cabinet of embodiment 3;
fig. 10 and 11 are schematic structural views of the dish washing cabinet of embodiment 4.
In the figure, the cabinet 1, the first bowl basket 2, the inclined guide rail 31, the guide rod 32, the bracket 33, the linear module 34, the linear bearing 35, the auxiliary slide rail 36, the auxiliary slide block 37, the synchronous connecting block 38, the second bowl basket 4, the horizontal section 311, the inclined section 312, the bearing section 313, the support rod 331, the cam bearing follower 332, the slide rail 341, the slide block 342, the screw rod 343 and the motor 344 are shown.
Detailed Description
The present invention is further illustrated by the following specific examples, which are intended to be illustrative only and not limiting.
Example 1
A flat-pushing type lifting in and out integrated actuator is shown in figures 1, 2 and 5 and comprises a pair of inclined guide rails 31, a group of guide rods 32, a bracket 33 and a linear module 34; the pair of inclined guide rails 31 are fixedly arranged in parallel, and the linear module 34 is fixedly arranged horizontally; the linear module 34 is vertically fixed with a guide rod 32; the bracket 33 is horizontally arranged, the two sides of the bracket 33 are provided with supporting rods 331, and the supporting rods 331 slide along the inclined guide rail 31; and the guide rod 32 is slidably disposed through the bracket 33.
In this embodiment, the guide rod 32 is sleeved with a linear bearing 35 sliding up and down along the guide rod 32, and the linear bearing 35 is fixed to the bracket 33.
In this embodiment, the supporting rod 331 is provided with a cam bearing follower 332; the cam bearing follower 332 is caught in the inclined rail 31 and slides along the inclined rail 31.
In this embodiment, the linear module 34 is a motor screw driver.
Example 2
A flat-pushing type lifting and entering integrated actuator, as shown in fig. 3, 4, 5, 6 and 7, comprising a pair of inclined guide rails 31, a set of guide rods 32, a bracket 33 and a linear module 34; the pair of inclined guide rails 31 are fixedly arranged in parallel, and the linear module 34 is fixedly arranged horizontally; the linear module 34 is vertically fixed with a guide rod 32; the bracket 33 is horizontally arranged, the two sides of the bracket 33 are provided with supporting rods 331, and the supporting rods 331 slide along the inclined guide rail 31; and the guide rod 32 is slidably disposed through the bracket 33.
In this embodiment, the guide rod 32 is sleeved with a linear bearing 35 sliding up and down along the guide rod 32, and the linear bearing 35 is fixed to the bracket 33.
In this embodiment, the supporting rod 331 is provided with a cam bearing follower 332; the cam bearing follower 332 is caught in the inclined rail 31 and slides along the inclined rail 31.
In this embodiment, the inclined guide rail 31 includes, from bottom to top, a horizontal section 311, an inclined section 312, and a bearing section 313 that are connected in sequence; the horizontal section 311, the inclined section 312 and the bearing section 313 are all connected in a smooth transition mode.
In this embodiment, the end of the bearing section 313 is closed.
In this embodiment, the linear module 34 is a motor screw driver.
In this embodiment, the motor lead screw driver includes a slide rail 341, a slider 342, a lead screw 343, and a motor 344; the screw rod 343 is rotatably arranged on the slide rail 341 and is parallel to the slide rail 341; the sliding block 342 is slidably disposed on the sliding rail 341, and the screw rod 343 is disposed in the sliding block 342; the motor 344 is in power connection with the lead screw 343; a ball is also provided between the slider 342 and the lead screw 343.
In this embodiment, the device further includes at least one auxiliary slide rail 36 parallel to the linear module 34; an auxiliary sliding block 37 is slidably arranged on the auxiliary sliding rail 36; the synchronous connecting block 38 is also included to fixedly connect the auxiliary sliding block 37 with the linear module 34; the sub-slider 37 is also provided with a guide rod 32.
In this embodiment, the guide rods 32 are four in number and are arranged in a rectangular shape.
Example 3
A flat-pushing type lifting in-out integrated dish washing cabinet is shown in figures 1, 2, 5, 8 and 9 and comprises a cabinet body 1, a first bowl basket 2 and a lifting in-out actuator; the lifting in-out actuator is arranged in the cabinet body 1; the first bowl basket 2 is arranged on the lifting in-out actuator and is driven by the lifting in-out actuator to lift and enter.
The lifting in-and-out actuator comprises a pair of inclined guide rails 31, a group of guide rods 32, a bracket 33 and a linear module 34; the pair of inclined guide rails 31 are fixedly arranged in parallel, and the linear module 34 is fixedly arranged horizontally; the linear module 34 is vertically fixed with a guide rod 32; the bracket 33 is horizontally arranged, the two sides of the bracket 33 are provided with supporting rods 331, and the supporting rods 331 slide along the inclined guide rail 31; and the guide rod 32 is slidably disposed through the bracket 33.
The inclined guide rail 31 is fixed in the cabinet body 1; the linear module 34 is horizontally fixed in the cabinet 1; the first bowl basket 2 is fixed to the bracket 33.
In this embodiment, the guide rod 32 is sleeved with a linear bearing 35 sliding up and down along the guide rod 32, and the linear bearing 35 is fixed to the bracket 33.
In this embodiment, the supporting rod 331 is provided with a cam bearing follower 332; the cam bearing follower 332 is caught in the inclined rail 31 and slides along the inclined rail 31.
Example 4
A flat-pushing type lifting in-out integrated dish washing cabinet is shown in figures 3, 4, 5, 6, 7, 10 and 11 and comprises a cabinet body 1, a first bowl basket 2 and a lifting in-out actuator; the lifting in-out actuator is arranged in the cabinet body 1; the first bowl basket 2 is arranged on the lifting in-out actuator and is driven by the lifting in-out actuator to lift and enter.
The lifting in-and-out actuator comprises a pair of inclined guide rails 31, a group of guide rods 32, a bracket 33 and a linear module 34; the pair of inclined guide rails 31 are fixedly arranged in parallel, and the linear module 34 is fixedly arranged horizontally; the linear module 34 is vertically fixed with a guide rod 32; the bracket 33 is horizontally arranged, the two sides of the bracket 33 are provided with supporting rods 331, and the supporting rods 331 slide along the inclined guide rail 31; and the guide rod 32 is slidably disposed through the bracket 33.
The inclined guide rail 31 is fixed in the cabinet body 1; the linear module 34 is horizontally fixed in the cabinet 1; the first bowl basket 2 is fixed to the bracket 33.
In this embodiment, the guide rod 32 is sleeved with a linear bearing 35 sliding up and down along the guide rod 32, and the linear bearing 35 is fixed to the bracket 33.
In this embodiment, the supporting rod 331 is provided with a cam bearing follower 332; the cam bearing follower 332 is caught in the inclined rail 31 and slides along the inclined rail 31.
In this embodiment, the inclined guide rail 31 includes, from bottom to top, a horizontal section 311, an inclined section 312, and a bearing section 313 that are connected in sequence; the horizontal section 311, the inclined section 312 and the bearing section 313 are all connected in a smooth transition mode.
In this embodiment, the end of the bearing section 313 is closed.
In this embodiment, the linear module 34 is a motor screw driver.
In this embodiment, the motor lead screw driver includes a slide rail 341, a slider 342, a lead screw 343, and a motor 344; the screw rod 343 is rotatably arranged on the slide rail 341 and is parallel to the slide rail 341; the sliding block 342 is slidably disposed on the sliding rail 341, and the screw rod 343 is disposed in the sliding block 342; the motor 344 is in power connection with the lead screw 343; a ball is also provided between the slider 342 and the lead screw 343.
In this embodiment, the device further includes at least one auxiliary slide rail 36 parallel to the linear module 34; an auxiliary sliding block 37 is slidably arranged on the auxiliary sliding rail 36; the synchronous connecting block 38 is also included to fixedly connect the auxiliary sliding block 37 with the linear module 34; the sub-slider 37 is also provided with a guide rod 32.
In this embodiment, the guide rods 32 are four in number and are arranged in a rectangular shape.
In this embodiment, the cabinet body 1 may further include a second bowl basket 4 slidably disposed therein; the second bowl basket 4 is located above the first bowl basket 2.
The above is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements can be made without departing from the principle of the present invention, and these improvements should also be regarded as the protection scope of the present invention.

Claims (10)

1. The utility model provides a integrative dish washing cabinet of flat push formula lift business turn over which characterized in that: comprises a cabinet body (1), a first bowl basket (2) and a lifting in-out actuator; the lifting in-out actuator is arranged in the cabinet body (1); the first bowl basket (2) is arranged on the lifting in-out actuator and is driven by the lifting in-out actuator to lift and move in and out;
the lifting in-and-out actuator comprises a pair of inclined guide rails (31), a group of guide rods (32), a bracket (33) and a linear module (34); the pair of inclined guide rails (31) are fixedly arranged in parallel, and the linear module (34) is horizontally and fixedly arranged; the guide rod (32) is vertically fixed on the linear module (34); the bracket (33) is horizontally arranged, supporting rods (331) are arranged on two sides of the bracket (33), and the supporting rods (331) slide along the inclined guide rail (31); and the guide rod (32) is slidably arranged in the bracket (33);
the inclined guide rail (31) is fixed in the cabinet body (1); the linear module (34) is horizontally fixed in the cabinet body (1); the first bowl basket (2) is fixed on the bracket (33).
2. A flat push type lift in and out integrated dishwashing cabinet according to claim 1, wherein: the guide rod (32) is sleeved with a linear bearing (35) which slides up and down along the guide rod (32), and the linear bearing (35) is fixed with the bracket (33).
3. A flat push type lift in and out integrated dishwashing cabinet according to claim 1, wherein: a cam bearing follower (332) is arranged on the support rod (331); the cam bearing follower (332) is snapped into the inclined rail (31) and slides along the inclined rail (31).
4. A flat push type lift in and out integrated dishwashing cabinet according to claim 1, wherein: the inclined guide rail (31) comprises a horizontal section (311), an inclined section (312) and a bearing section (313) which are sequentially connected from bottom to top; the joints of the horizontal section (311), the inclined section (312) and the bearing section (313) are all in smooth transition connection.
5. The flat-push type lifting in-and-out integrated dish washing cabinet as claimed in claim 4, characterized in that: the bearing section (313) is closed at the end.
6. A flat push type lift in and out integrated dishwashing cabinet according to claim 1, wherein: the linear module (34) is a motor screw driver.
7. The flat-push type lifting in-and-out integrated dish washing cabinet as claimed in claim 6, characterized in that: the motor lead screw driver comprises a slide rail (341), a slide block (342), a lead screw (343) and a motor (344); the screw rod (343) is rotatably arranged on the sliding rail (341) and is parallel to the sliding rail (341); the sliding block (342) is slidably arranged on the sliding rail (341), and the screw rod (343) is arranged in the sliding block (342) in a penetrating manner; the motor (344) is in power connection with the screw rod (343); and a ball is also arranged between the sliding block (342) and the screw rod (343).
8. A flat push type lift in and out integral dishwashing cabinet according to any one of claims 1 to 7, wherein: the device also comprises at least one auxiliary sliding rail (36) parallel to the linear module (34); an auxiliary sliding block (37) is slidably arranged on the auxiliary sliding rail (36); the auxiliary sliding block (37) is fixedly connected with the linear module (34) through a synchronous connecting block (38); the guide rod (32) is also arranged on the auxiliary sliding block (37).
9. A flat push type lift in and out integrated dishwashing cabinet according to claim 8, wherein: the guide rods (32) are four in number and are distributed in a rectangular shape.
10. A flat push type lift in and out integrated dishwashing cabinet according to claim 8, wherein: a second bowl basket (4) can be arranged in the cabinet body (1) in a sliding manner; the second bowl basket (4) is positioned above the first bowl basket (2).
CN202021976728.5U 2020-09-11 2020-09-11 Horizontal-pushing type lifting and entering-exiting integrated dish washing cabinet Active CN212438531U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021976728.5U CN212438531U (en) 2020-09-11 2020-09-11 Horizontal-pushing type lifting and entering-exiting integrated dish washing cabinet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021976728.5U CN212438531U (en) 2020-09-11 2020-09-11 Horizontal-pushing type lifting and entering-exiting integrated dish washing cabinet

Publications (1)

Publication Number Publication Date
CN212438531U true CN212438531U (en) 2021-02-02

Family

ID=74474572

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021976728.5U Active CN212438531U (en) 2020-09-11 2020-09-11 Horizontal-pushing type lifting and entering-exiting integrated dish washing cabinet

Country Status (1)

Country Link
CN (1) CN212438531U (en)

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