Shoe bracket convenient to take and place
Technical Field
The utility model relates to a shoes storage tool field especially relates to a shoes bracket convenient to get and put.
Background
Along with the improvement of living standard, people are more and more big to the demand of shopping, and the storage of shoes after the purchase has then become a big difficult problem. The shoe cabinet on the market is generally divided into a plurality of layers, the layer height is high, only 3-4 shoes can be placed on each layer, and the layer height of the shoe cabinet is enough for placing more than 2 shoes, so that the waste rate of space is up to more than 50%. Resulting in that too many shoes can be piled only at the hallway, which affects the convenience of entering and exiting and the beauty of the house.
The problem of easily above-mentioned, chinese patent publication No. CN209235272U discloses a double-deck shoe rack, includes top plate and lower plywood, the one end of top plate passes through buckle mechanism sliding connection with the same end of lower plywood, buckle mechanism includes first card portion and second card portion, first card portion vertical fixation is in the both sides of lower plywood one end, be equipped with bellied buckle in the first card portion, the buckle with form the recess between the first card portion, second card portion vertical fixation is in the both sides of top plate same end, be equipped with the buckle groove in the second card portion, the buckle groove card is in the recess, be equipped with positioning mechanism between buckle groove and the buckle.
As can be seen from the attached drawings and the description, the double-layer shoe rack is essentially structurally characterized in that the end lines of the upper layer plate and the lower layer plate are firstly hinged, and then are limited by the limiting mechanism positioned at the hinged position, so that the size of the placing space on the lower layer plate is changed.
The angle of the double-layer shoe rack is limited by the aid of the buckles, when the angles of the upper plate and the lower plate are adjusted, the shoe rack needs to be taken out of the shoe cabinet for adjustment, the existing clamping structure needs to be unfastened during adjustment, clamping is carried out after debugging, and the double-layer shoe rack is troublesome and laborious, so that more time is needed for taking and placing shoes.
SUMMERY OF THE UTILITY MODEL
The utility model aims at the above shortcoming, provide a shoe bracket convenient to get and put, just can carry out the regulation of plywood interval from top to bottom in the shoe cabinet, adjust fast, convenient and control range big.
In order to solve the technical problem, the utility model discloses a following technical scheme can solve:
the utility model provides a shoe bracket convenient to get and put, including the top plate, lower plywood and set up the lift adjustment structure between top plate and lower plywood, the lift adjustment structure includes in the central authorities of plywood down or one side along the axial embedding of plywood slide and do the initiative slider that is close to in step or keeps away from down, on the top plate slide and do the driven slider that is close to in step or keeps away from along the axial embedding of top plate and two in central department cross hinged setting and both ends respectively with initiative slider and driven slider articulated lifting rod, the one end of plywood is provided with a rotary driving piece under, be provided with on the plywood under and just can adjust the link gear of top plate elevating height through rotary driving piece.
Preferably, a single placing position for placing a shoe or a double placing position for placing a pair of shoes is arranged on the upper layer plate and the lower layer plate, and if the single placing position is adopted, the lifting adjusting structure is positioned on one side of the upper layer plate and one side of the lower layer plate; if for two when placing the position, the lift adjustment structure is located upper strata board and lower floor's middle department.
Preferably, the center of the upper end face of the lower plate is provided with a first embedded groove for the driving slider to be embedded and slide along the axial direction, the center of the lower end face of the upper plate is provided with a second embedded groove for the driven slider to be embedded and slide along the axial direction, the linkage structure comprises a screw rod with opposite threads from the middle to the two ends, the two threads of the screw rod are respectively in rotating fit with the driving slider, the two ends of the screw rod are respectively in rotating connection with the two ends of the first embedded groove, and one end of the screw rod is fixedly connected with the rotary driving piece.
Preferably, the rotary drive member is a hand wheel or knob.
Preferably, a rotation bearing is fitted between both ends of the screw rod and both ends of the first insertion groove.
Preferably, the first and second insertion grooves have a "dovetail" or "T" or "cross" shaped section.
Preferably, flanges extend upwards from two ends or four sides of the upper layer plate and the lower layer plate.
The utility model discloses owing to adopted above technical scheme, have following technological effect: the upper layer plate is lifted horizontally, the lifting space is large, shoes with larger height can be placed on the upper layer plate and the lower layer plate, and the shoes cannot slide off; the lifting adjusting structure of the scheme utilizes the knob to rotate the screw rod to drive the driving sliding blocks to move close to or away from each other along the opposite thread sections, and when the two driving sliding blocks are close to each other, the lifting rods are close to each other to drive the upper layer plate to move in a lifting manner; when initiative slider kept away from each other, the lifting pole is kept away from each other and is ordered about the upper plate and make descending motion, when treating not rotating the knob, then the initiative slider is in quiescent condition, and at this moment, the upper plate is in quiescent condition, places the knob in the one side that is close to the shoe cabinet open-ended, only needs the height that the upper plate just can be adjusted to rotatory knob, need not to take out the shoes bracket just can the quick adjustment upper plate height, carries out arbitrary getting on the shoes on the upper and lower plate and puts, and is very convenient.
Drawings
FIG. 1 is an isometric view of the present invention when a shoe bracket is lowered for easy access;
FIG. 2 is a front view of the shoe bracket of the present invention when it is lowered;
FIG. 3 is a cross-sectional view A-A of FIG. 2;
fig. 4 is an axonometric view of the shoe bracket of the utility model when it is lifted, which is convenient for taking and putting.
The names of the parts indicated by the numerical references in the above figures are as follows: 1. an upper plate; 2. a lower layer plate; 3. blocking edges; 4. a knob; 5. a first embedded groove; 6. a second embedded groove; 7. an active slider; 8. a driven slider; 9. lifting the rod; 10. a screw; 11. and rotating the bearing.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples.
Examples
A shoe bracket convenient for taking and placing is shown in figures 1-4 and comprises an upper plate 1, a lower plate 2 and a lifting adjusting structure arranged between the upper plate 1 and the lower plate 2, wherein flanges 3 extend upwards from two ends or four sides of the upper plate 1 and the lower plate 2, a single placing position for placing a shoe or a double placing position for placing a pair of shoes is arranged on the upper plate 1 and the lower plate 2, and if the single placing position is adopted, the lifting adjusting structure is positioned on one side of the upper plate 1 and one side of the lower plate 2; if when putting the position for two, the lift adjustment structure is located department in the middle of upper plate 1 and lower floor slab 2, and what this scheme set up puts the position for two, so, the lift adjustment structure is located the centre of upper plate 1 and lower floor slab 2.
A first embedded groove 5 with a dovetail-shaped or T-shaped or cross-shaped cross section is sunken along the axial direction between the double placing positions in the middle of the upper end surface of the lower plate 2, a second embedded groove 6 with a dovetail-shaped or T-shaped or cross-shaped cross section is recessed in the center of the lower end surface of the upper plate 1 along the axial direction, the lifting adjusting structure comprises a driving slide block 7 which is embedded in the first embedded groove 5 and is arranged in a sliding manner and can be synchronously close to or far away from the first embedded groove, a driven slide block 8 which is embedded in the second embedded groove 6 and is arranged in a sliding manner and can be synchronously close to or far away from the second embedded groove, and two lifting rods 9 which are arranged in a cross hinge manner in the center and are respectively hinged with the driving slide block 7 and the driven slide block 8 at two ends, one end of the lower plate 2 is provided with a rotary driving piece, and the lower plate 2 is provided with a linkage mechanism which can adjust the lifting height of the upper plate 1 through the rotary driving piece.
The rotary driving part is a hand wheel or a knob 4, the knob 4 is arranged in the scheme, the linkage mechanism comprises a screw rod 10 which is oppositely threaded from the middle to two ends, two sections of threads of the screw rod 10 are respectively in rotary fit with a driving sliding block 7, two ends of the screw rod 10 are respectively in rotary connection with two ends of the first embedded groove 5 through a rotating bearing 11, and one end of the screw rod 10 is fixedly connected with the knob 4.
The existing double-layer shoe rack (shoe bracket) is generally hinged, the upper plate 1 is upwards rotated to be positioned at the lower plate 2, so that the lower plate 2 can be used for placing shoes, and the defects that the hinged part is generally positioned at one side close to a shoe cabinet, and an adjusting structure for just limiting is also positioned at one side close to the shoe cabinet, so that the shoes are inconvenient to take, the upper plate 1 is also inconvenient to adjust, and the lower plate 2 has insufficient placing space (not enough for placing the shoes with high upper); the upper plate 1 is too steep, and shoes on the upper plate 1 are easy to slide off.
The scheme has the advantages that the upper layer plate 1 is lifted horizontally, the lifting space is large, shoes with larger height can be placed on the upper layer plate 1 and the lower layer plate 2, and the shoes cannot slide down; the lifting adjusting structure of the scheme utilizes the knob 4 to rotate the screw rod 10 to drive the driving slide blocks 7 to synchronously approach or separate along opposite thread sections, and when the two driving slide blocks 7 synchronously approach, the lifting rods 9 approach each other to drive the upper layer plate 1 to perform lifting movement; when initiative slider 7 kept away from, lifting rod 9 keeps away from each other and orders about upper plate 1 and make descending motion, when treating not rotating knob 4, then initiative slider 7 is in quiescent condition, and at this moment, upper plate 1 is in quiescent condition, places knob 4 in the one side that is close to the shoe cabinet open-ended, only needs rotatory knob 4 just can adjust the height of upper plate 1, need not to take out the shoes bracket just can the quick adjustment upper plate 1 height, carries out arbitrary getting on upper and lower plate 2 and puts, and is very convenient.