CN112441326A - Assembled material rack - Google Patents

Assembled material rack Download PDF

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Publication number
CN112441326A
CN112441326A CN201910823402.4A CN201910823402A CN112441326A CN 112441326 A CN112441326 A CN 112441326A CN 201910823402 A CN201910823402 A CN 201910823402A CN 112441326 A CN112441326 A CN 112441326A
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CN
China
Prior art keywords
groove
baffle
length direction
inner partition
locking groove
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN201910823402.4A
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Chinese (zh)
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CN112441326B (en
Inventor
王余康
张伟松
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China Forever Logistics Co ltd
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China Forever Logistics Co ltd
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Priority to CN201910823402.4A priority Critical patent/CN112441326B/en
Publication of CN112441326A publication Critical patent/CN112441326A/en
Application granted granted Critical
Publication of CN112441326B publication Critical patent/CN112441326B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D61/00External frames or supports adapted to be assembled around, or applied to, articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D25/00Details of other kinds or types of rigid or semi-rigid containers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D25/00Details of other kinds or types of rigid or semi-rigid containers
    • B65D25/02Internal fittings
    • B65D25/04Partitions
    • B65D25/06Partitions adapted to be fitted in two or more alternative positions
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D25/00Details of other kinds or types of rigid or semi-rigid containers
    • B65D25/20External fittings
    • B65D25/24External fittings for spacing bases of containers from supporting surfaces, e.g. legs

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Connector Housings Or Holding Contact Members (AREA)
  • Packaging Of Annular Or Rod-Shaped Articles, Wearing Apparel, Cassettes, Or The Like (AREA)

Abstract

The invention discloses an assembled material rack which comprises a material rack body, a material box and a material bracket, wherein the material rack is rotatably arranged on the material rack body and used for placing the material box, and the material box is integrally separated from the material bracket. According to the assembled material rack disclosed by the invention, the material box is convenient to replace after being damaged, the material rack is convenient to maintain, the maintenance cost is reduced, the material box and the material rack body cannot deform due to assembly, and the product quality of the material rack is improved.

Description

Assembled material rack
Technical Field
The invention belongs to the technical field of logistics and packaging, and particularly relates to an assembled material rack.
Background
The existing material rack consists of a material rack body and a material box arranged on the material rack body, wherein the material box is used for storing automobile parts. Because magazine and work or material rest body are welded connection, this kind of mounting means has following two defects:
1. the material box needs to be completely replaced after being damaged, and the maintenance cost is high;
2. the material box is welded with the material rack body, so that the material box and the material rack body are easy to deform, the manufacturing precision is reduced, and the product quality of the material rack is influenced.
Disclosure of Invention
The present invention is directed to solving at least one of the problems of the prior art. Therefore, the invention provides an assembled material rack, and aims to facilitate maintenance and reduce maintenance cost.
In order to achieve the purpose, the invention adopts the technical scheme that: the assembled material rack comprises a material rack body, a material box and a material bracket which is rotatably arranged on the material rack body and used for placing the material box, wherein the material box is integrally separated from the material bracket.
The magazine includes the bottom plate board and sets up first outer baffle, the outer baffle of second, first inner baffle and second inner baffle on the bottom plate board, and first outer baffle, the outer baffle of second, first inner baffle and second inner baffle are equallyd divide and are formed detachable the being connected through plug connector and bottom plate board, and first outer baffle forms detachable the being connected through plug connector and the outer baffle of second and second inner baffle respectively, and the outer baffle of second forms detachable the being connected through plug connector and first inner baffle respectively.
The length direction of the first outer baffle is parallel to the length direction of the first inner baffle, the length direction of the second outer baffle is parallel to the length direction of the second inner baffle, the length direction of the second outer baffle is perpendicular to the length direction of the first outer baffle, the first outer baffle and the second outer baffle are both provided with two parallel plates, and the first inner baffle and the second inner baffle are both positioned between the two first outer baffles and the two second outer baffles.
The first inner partition plates are arranged in a plurality, all the first inner partition plates are sequentially arranged along the length direction of the second outer partition plate, the second inner partition plates are arranged in a plurality, one second inner partition plate is arranged between the second outer partition plate and the first inner partition plates, and one second inner partition plate is arranged between every two adjacent first inner partition plates.
The plug connector comprises a connecting plate, and a guide pin and a locking pin which are arranged on the connecting plate, wherein the locking pin comprises an insertion rod and limiting bulges arranged on the insertion rod, and the two limiting bulges are arranged on the limiting bulges and extend out towards the two opposite sides of the insertion rod respectively.
The utility model discloses a lead-in section, including the guide-in section of inserting the pole, the guide-in section sets up two and has the clearance between two and two guide-in sections, two spacing archs set up respectively on two guide-in sections, and the first terminal surface of guide-in section is the inclined plane, has contained angle and this contained angle for the acute angle between the first terminal surface of guide-in section and the length direction of guide-in section, and the first terminal surface of two guide-in sections is the V-arrangement.
First outer baffle has the let the uide pin with the first hole of dodging, letting the first outer holding groove of uide pin male, letting of dodging that the lock pin passed insert the first outer locking groove of pole male and let spacing protruding male first outer spacing groove, first hole of dodging, first outer holding groove, first outer locking groove and first outer spacing groove all set up a plurality ofly, and all first holes of dodging arrange in proper order for the length direction along first outer baffle, and each first outer spacing groove is in on the same straight line that parallels with the length direction of first outer baffle with at least one first outer holding groove respectively.
The outer baffle of second has the let the uide pin with the hole is dodged to the second that the lock pin passed, lets the outer storage tank of uide pin male second, lets insert the outer locking groove of pole male second, let the outer spacing groove of spacing arch male second, let the outer holding groove of uide pin male third, let insert the outer locking groove of pole male third and let the outer spacing groove of spacing arch male third, the hole is dodged to the second, the outer storage tank of second, the outer locking groove of second and the outer spacing groove of second all set up a plurality ofly, all seconds are dodged the hole and are arranged in proper order for the length direction along the outer baffle of second, the outer spacing groove of each second is in the same straight line that parallels with the length direction of the outer baffle of second with at least one second respectively, the outer holding groove of third, the outer locking groove of third and the outer spacing groove of third set up in the tip of the outer baffle of second.
The first inner partition plate is provided with a first upper accommodating groove for the guide pin to be inserted into, a first upper locking groove for the insertion rod to be inserted into, a first upper limiting groove for the limiting protrusion to be inserted into, a first lower accommodating groove for the guide pin to be inserted into, a first lower locking groove for the insertion rod to be inserted into and a first lower limiting groove for the limiting protrusion to be inserted into, the first upper accommodating groove and the first upper locking groove are positioned on the same straight line parallel to the width direction of the first inner partition plate, and the first lower accommodating groove and the first lower locking groove are positioned on the same straight line parallel to the length direction of the first inner partition plate.
The second inner partition plate is provided with a second upper accommodating groove for the guide pin to be inserted into, a second upper locking groove for the insertion rod to be inserted into, a second upper limiting groove for the limiting protrusion to be inserted into, a second lower accommodating groove for the guide pin to be inserted into, a second lower locking groove for the insertion rod to be inserted into and a second lower limiting groove for the limiting protrusion to be inserted into, the second upper accommodating groove and the second upper locking groove are positioned on the same straight line parallel to the width direction of the second inner partition plate, and the second lower accommodating groove and the second lower locking groove are positioned on the same straight line parallel to the length direction of the second inner partition plate.
According to the assembled material rack disclosed by the invention, the material box is convenient to replace after being damaged, the material rack is convenient to maintain, the maintenance cost is reduced, the material box and the material rack body cannot deform due to assembly, and the product quality of the material rack is improved.
Drawings
The description includes the following figures, the contents shown are respectively:
fig. 1 is a schematic structural diagram of an assembled rack of the present invention;
FIG. 2 is a schematic structural view of the cartridge;
FIG. 3 is a partial structural schematic view of the cartridge;
FIG. 4 is a schematic view of the construction of the plug;
FIG. 5 is a schematic structural view of a first outer baffle;
FIG. 6 is a partial schematic view of a second outer baffle;
FIG. 7 is a schematic structural view of a first inner baffle;
FIG. 8 is a schematic structural view of a second inner partition;
FIG. 9 is an enlarged view at A in FIG. 5;
labeled as: 1. a horizontal chassis; 2. a side baffle frame; 3. a front baffle frame; 4. a material bracket; 5. a magazine; 501. a bottom pallet; 502. a first outer baffle; 503. a second outer baffle; 504. a first inner baffle; 505. a second inner baffle; 506. a first avoidance hole; 507. a first outer containment tank; 508. a first outer locking groove; 509. a first outer limiting groove; 510. a second avoidance hole; 511. a second outside accommodating groove; 512. a second outer locking groove; 513. a second outer limiting groove; 514. a third outer containment tank; 515. a third outer locking groove; 516. a third outer limiting groove; 517. a first upper receiving groove; 518. a first upper locking groove; 519. a first upper limiting groove; 520. a first lower accommodating groove; 521. a first lower locking groove; 522. a first lower limiting groove; 523. a second upper receiving groove; 524. a second upper locking groove; 525. a second upper limiting groove; 526. a second lower accommodating groove; 527. a second lower locking groove; 528. a second lower limiting groove; 6. a gas spring; 7. a plug-in unit; 701. a connecting plate; 702. a guide pin; 703. a fixed section; 704. a lead-in section; 705. a limiting bulge; 706. a first end surface.
Detailed Description
The following detailed description of the embodiments of the present invention will be given with reference to the accompanying drawings for a purpose of helping those skilled in the art to more fully, accurately and deeply understand the concept and technical solution of the present invention and to facilitate its implementation.
As shown in fig. 1 to 8, the present invention provides an assembled rack, which includes a rack body, a magazine and a material holder 4 rotatably disposed on the rack body and used for holding the magazine, wherein the magazine is configured to be detachable from the material holder 4 as a whole.
Specifically, as shown in fig. 1 to 3, the rack body is of a hollow structure, the material holders 4 are disposed in the inner cavity of the rack body, the material holders 4 are disposed in a plurality and all the material holders 4 are sequentially arranged along the vertical direction, and a material box can be placed on each material holder 4. The inner cavity of the material rack body is a rectangular cavity, rectangular openings are formed in the inner cavity of the material rack body on the top surface and one side surface of the material rack body respectively, and the material rack body is of an open structure. The material rack body mainly comprises a transverse bottom frame 1, two side baffle frames 2 vertically arranged on the transverse bottom frame 1 and a front baffle frame 3 which is positioned between the two side baffle frames 2 and fixedly connected with the two side baffle frames 2, wherein the front baffle frame 3 is positioned above the transverse bottom frame 1, the front baffle frame 3 is parallel to the transverse bottom frame 1, the transverse bottom frame 1 is of a rectangular structure, the transverse bottom frame 1 is horizontally arranged, the length direction of the transverse bottom frame 1 is parallel to a first direction, the width direction of the transverse bottom frame 1 is parallel to a second direction, the first direction and the second direction are both horizontal directions and are perpendicular to the first direction and the second direction, the length direction of the front baffle frame 3 is parallel to the first direction, the two side baffle frames 2 are arranged at two ends of the transverse bottom frame 1 in the length direction, the side baffle frames 2 have certain length and height, the length direction of the side baffle frames 2 is parallel to the second direction, the front baffle frame 3 is fixedly connected with one ends of the two side baffle frames 2 in the length direction, an opening is formed between the other ends of the two side blocking frames 2 in the length direction, an opening for taking and placing materials is also formed between the tops of the two side blocking frames 2, and an inner cavity of the material rack body is formed by the two side blocking frames 2, the transverse bottom frame 1 and the front blocking frame 3 in a surrounding mode. The material bracket 4 is positioned above the transverse underframe 1, the material bracket 4 has certain length and width, the length direction of the material bracket 4 is parallel to the first direction, the width direction of the material bracket 4 is vertical to the length direction, the material bracket 4 is rotatably connected with the material rack body, and the rotating center line of the material bracket 4 is parallel to the first direction.
As shown in fig. 1 to 3, the material tray 4 can rotate up and down, when the material tray 4 rotates up, the material tray 4 is switched from the supporting state to the lifting state, and after the material tray 4 is in the lifting state, the space between the material tray 4 and the lower material tray is increased, so that automobile parts can be conveniently taken and placed in the material box on the lower layer. The material bracket 4 is located between the two side baffle frames 2, the material rack body is provided with an air spring 6 for supporting the material bracket 4, one end of the air spring 6 is rotatably connected with the material bracket 4, the other end of the air spring 6 is rotatably connected with the side baffle frames 2, and the rotating center line of the air spring 6 is parallel to the first direction. Each material bracket 4 is respectively connected with two gas springs 6, and the gas springs 6 are telescopic members, and the springs can jack up the material brackets 4 upwards, so that the material brackets 4 rotate to the lifted state, and the material brackets 4 are kept in the lifted state, thereby facilitating the operation of an operator when taking and placing automobile parts. When the material bracket 4 is in a supporting state, the material bracket 4 is in a horizontal state, and the width direction of the material bracket 4 is parallel to the second direction; when the material bracket 4 is in the lifted state, the material bracket 4 is in an inclined state, and an included angle is formed between the width direction of the material bracket 4 and the second direction and is an acute angle. The top surface of material bracket 4 is the plane, and the magazine is placed on the top surface of material bracket 4, and material bracket 4 provides the support to the magazine, and the magazine has a plurality of storing chambeies that are used for placing automobile parts, and all storing chambeies are for being n x m matrix distribution, and the storing chamber is the rectangle cavity.
As shown in fig. 1 to 3, the material box is detachably connected with the material bracket 4, after the material box is detached from the material bracket 4, the whole material box can be separated from the material bracket 4, and the material box separated from the material bracket 4 can be taken out of the material rack body, so that the whole material box can be conveniently replaced after the material box is damaged, the material rack is convenient to maintain, and the maintenance cost is reduced. As preferred, the magazine is connected with material bracket 4 through the screw, and the magazine passes through the fix with screw on material bracket 4's top surface, and the magazine is not welded connection with material bracket 4, and the magazine can not lead to the deformation because of welded assembly with material bracket 4, work or material rest body like this, and work or material rest preparation precision is high, has improved work or material rest product quality. When the material box is disassembled, the screw is firstly screwed off, then the material box can be taken down from the material bracket 4, the disassembly and the assembly are convenient and fast, and the efficiency is high.
As shown in fig. 1 to 8, the magazine includes a bottom plate 501, and a first outer baffle 502, a second outer baffle 503, a first inner baffle 504, and a second inner baffle 505 disposed on the bottom plate 501, wherein the first outer baffle 502, the second outer baffle 503, the first inner baffle 504, and the second inner baffle 505 are detachably connected to the bottom plate 501 through a plug 7, the first outer baffle 502 is detachably connected to the second outer baffle 503 and the second inner baffle 505 through the plug 7, and the second outer baffle 503 is detachably connected to the first inner baffle 504 through the plug 7. The bottom plate 501 is attached to the top surface of the material bracket 4, the bottom plate 501 is connected with the material bracket 4 through screws, the bottom plate 501 is a rectangular flat plate, the length direction of the bottom plate 501 is parallel to the length direction of the material bracket 4, and the width direction of the bottom plate 501 is parallel to the width direction of the material bracket 4. A first outer baffle 502, a second outer baffle 503, the first inner baffle 504 and the second inner baffle 505 are perpendicular to the bottom support plate 501, the length direction of the first outer baffle 502 is parallel to the length direction of the first inner baffle 504, the length directions of the first outer baffle 502 and the first inner baffle 504 are parallel to the width direction of the bottom support plate 501, the length direction of the second outer baffle 503 is parallel to the length direction of the second inner baffle 505, the length direction of the second outer baffle 503 is perpendicular to the length direction of the first outer baffle 502, the length directions of the second outer baffle 503 and the second inner baffle 505 are parallel to the length direction of the bottom support plate 501, the first outer baffle 502 and the second outer baffle 503 are arranged in parallel, the first inner baffle 504 and the second inner baffle 505 are arranged between the two first outer baffles 502 and the two second outer baffles 503, and the length of the second outer baffle 503 is greater than the length of the first outer baffle 502. The first inner partition plates 504 are provided in plurality, and all the first inner partition plates 504 are sequentially arranged along the length direction of the second outer partition plate 503, the second inner partition plates 505 are provided in plurality, one second inner partition plate 505 is provided between the second outer partition plate 503 and the first inner partition plate 504, and one second inner partition plate 505 is provided between every two adjacent first inner partition plates 504. The first outer baffle 502, the second outer baffle 503, the first inner baffle 504 and the second inner baffle 505 are positioned above the bottom bracket plate 501, and each storage cavity of the magazine is surrounded by the first outer baffle 502, the second outer baffle 503, the first inner baffle 504 and the second inner baffle 505. The first outer baffle 502, the second outer baffle 503, the first inner baffle 504 and the second inner baffle 505 are respectively connected with the bottom support plate 501 through at least one plug connector 7, the first outer baffle 502, the second outer baffle 503, the first inner baffle 504 and the second inner baffle 505 are detachably connected with the bottom support plate 501 through the plug connector 7, the first outer baffle 502 is respectively connected with the second outer baffle 503 and the second inner baffle 505 through one plug connector 7, the first outer baffle 502 is detachably connected with the second outer baffle 503 and the second inner baffle 505 through the plug connector 7, the second outer baffle 503 is connected with the first inner baffle 504 through one plug connector 7, the second outer baffle 503 is detachably connected with the first inner baffle 504 through the plug connector 7, the formed material box is an assembled material box, the bottom support plate 501, the first outer baffle 502, the second outer baffle 503, the first inner baffle 504 and the second inner baffle 505 are mutually detachable, after one or more plate bodies are damaged, the material box can be detached for replacement, the material box is not required to be replaced integrally, and the maintenance cost is reduced. And moreover, the material box is convenient to disassemble and assemble due to the adoption of a plug-in type structure.
As shown in fig. 1 to 4, the plug 7 includes a connecting plate 701, and a guide pin 702 and a locking pin which are disposed on the connecting plate 701, the locking pin includes an insertion rod and a limiting protrusion 705 disposed on the insertion rod, the limiting protrusion 705 is provided with two limiting protrusions 705, and the two limiting protrusions 705 respectively extend out toward two opposite sides of the insertion rod. The insertion rod comprises a fixing section 703 and an introduction section 704 connected with the fixing section 703, the introduction section 704 is provided with two and a gap is arranged between the two introduction sections 704, two limiting protrusions 705 are respectively arranged on the two introduction sections 704, a first end face 706 of the introduction section 704 is an inclined plane, an included angle is formed between the first end face 706 of the introduction section 704 and the length direction of the introduction section 704 and is an acute angle, and the first end faces 706 of the two introduction sections 704 are arranged in a V shape. The connecting plate 701, the guide pin 702 and the locking pin all have certain lengths, the length direction of the guide pin 702 is parallel to the length direction of the locking pin, the length directions of the guide pin 702 and the locking pin are perpendicular to the length direction of the connecting plate 701, and the guide pin 702 and the locking pin extend out towards the same side of the connecting plate 701. One end of the insertion rod in the length direction (i.e., the length direction of the locking pin) is fixedly connected with the connecting plate 701, the limiting protrusion 705 is fixedly arranged at the other end of the insertion rod in the length direction, the limiting protrusion 705 extends out towards the outer side of the insertion rod along a set direction, the set direction is parallel to the length direction of the connecting plate 701, and the insertion rod is located between the two limiting protrusions 705. The fixed section 703 and the leading-in section 704 both have a certain length, the length direction of the fixed section 703 and the leading-in section 704 is parallel to the length direction of the guide pin 702, one end of the fixed section 703 in the length direction is fixedly connected with the connecting plate 701, the other end of the fixed section 703 in the length direction is fixedly connected with one end of the leading-in section 704 in the length direction, the limiting protrusion 705 is fixedly connected with the other end of the leading-in section 704 in the length direction, the limiting protrusion 705 extends out towards the outer side of the leading-in section 704, the two leading-in sections 704 are connected with the same end of the fixed section 703, the two leading-in sections 704 extend out towards the same side of the fixed section 703, and each leading-in section 704 is. The introduction section 704 has a first end portion and a second end portion, the first end portion and the second end portion are opposite ends of the introduction section 704 in the length direction, the second end portion of the introduction section 704 is fixedly connected to the fixing section 703, and the first end portion of the introduction section 704 is one end far away from the fixing section 703. The limiting protrusions 705 are fixedly connected with the first end portions of the leading-in sections 704, the two leading-in sections 704 are located between the two limiting protrusions 705, the first end faces 706 of the leading-in sections 704 are end faces of the first end portions of the leading-in sections 704, the first end faces 706 of the leading-in sections 704 are inclined planes which are obliquely arranged, an included angle is formed between the first end faces 706 of the leading-in sections 704 and the length direction of the leading-in sections 704 and is an acute angle, an included angle is formed between the first end faces 706 of the leading-in sections 704 and the length direction of the connecting plate 701 and is an acute angle, and the first end faces 706 of the two leading-in sections 704 connected with the same fixing section 703 are arranged in. The first end surface 706 of the introduction section 704 has a proximal end and a distal end, the proximal end and the distal end are opposite ends in the length direction of the first end surface 706 of the introduction section 704, the length direction of the first end surface 706 of the introduction section 704 is also the inclination direction thereof, the perpendicular distance between the proximal end of the first end surface 706 of the introduction section 704 and the connecting plate 701 is smaller than the perpendicular distance between the distal end of the first end surface 706 of the introduction section 704 and the connecting plate 701, the perpendicular distance between the proximal end of the first end surface 706 of the introduction section 704 and the other introduction section 704 is larger than the perpendicular distance between the distal end of the first end surface 706 of the introduction section 704 and the other introduction section 704, and the perpendicular distance between the proximal ends of the first end surfaces 706 of the two introduction sections 704 is larger than the distance between the distal ends of the first end surfaces 706 of the two introduction sections 704. The tip of the locking pin of plug connector 7 that forms like this is most advanced structure, is convenient for insert the hole that sets up on the corresponding plate when the assembly, and the first terminal surface 706 of leading-in section 704 is arranged in playing the guide effect to the locking pin when the assembly, and the guide locking pin inserts in the hole that sets up on the corresponding plate, and the operation when making things convenient for operating personnel to assemble helps improving assembly efficiency.
As shown in fig. 1 to 4, a gap is formed between the two lead-in sections 704 of the locking pin, the gap enables the lead-in sections 704 to deflect relative to the fixing sections 703, during the process that the locking pin is inserted into the hole arranged on the corresponding plate during assembly, a first end surface 706 of the lead-in sections 704 is contacted with the plate, the first end surface 706 receives a reaction force applied by the plate, the reaction force pushes the two lead-in sections 704 to move towards each other, the lead-in sections 704 are deformed relative to the fixing sections 703, and the gap between the two lead-in sections 704 is gradually reduced, so that the locking pin can be inserted into the hole arranged on the plate. After the assembly is completed between the plug connector 7 and the two plates, the leading-in section 704 restores to be deformed due to self elastic force, the locking pin restores to be in an initial state, the plug connector 7 is connected with the two plates, and the two plates are prevented from being separated due to the locking effect of the two plates. The first end surface 706 of the lead-in section 704 extends to the position of the limiting protrusion 705, the proximal end of the first end surface 706 of the lead-in section 704 is located at the end of the limiting protrusion 705 far away from the lead-in section 704, the width of the limiting protrusion 705 is smaller than the length of the lead-in section 704, and the width direction of the limiting protrusion 705 is parallel to the length direction of the lead-in section 704.
As shown in fig. 1 to 4, the guide pins 702 of the plug 7 are arranged in parallel, the locking pin is located at the middle position of the two guide pins 702, and the two guide pins 702 have the same length.
As shown in fig. 1 to 5, the first outer baffle 502 has a first avoidance hole 506 through which the guide pin 702 and the lock pin pass, a first outer accommodation groove 507 through which the guide pin 702 is inserted, a first outer lock groove 508 through which the insertion rod is inserted, and a first outer limit groove 509 through which the limit protrusion 705 is inserted, the first avoidance hole 506, the first outer accommodation groove 507, the first outer lock groove 508, and the first outer limit groove 509 are provided in plural numbers, all the first avoidance holes 506 are sequentially arranged along the length direction of the first outer baffle 502, and each first outer limit groove 509 and at least one first outer accommodation groove 507 are respectively located on the same straight line parallel to the length direction of the first outer baffle 502. First outer baffle 502 has certain length, width and thickness, the thickness direction of first outer baffle 502 is parallel with the length direction of bottom plate 501, the width direction of first outer baffle 502 is perpendicular rather than length and thickness direction, first dodge hole 506 for run through the through-hole that sets up and first dodge hole 506 for the width direction who follows first outer baffle 502 on first outer baffle 502 along the thickness direction of first outer baffle 502 extends, the length of uide pin 702 and lock round pin is greater than the thickness of first outer baffle 502, the length and the width of connecting plate 701 are greater than the length and the width of first dodge hole 506. The first outer accommodating groove 507 and the first outer locking groove 508 both have a certain length, and the length directions of the first outer accommodating groove 507 and the first outer locking groove 508 are parallel to the width direction of the first outer baffle 502, the first outer accommodating groove 507 and the first outer locking groove 508 extend from the end face of the first outer baffle 502, which is attached to the bottom plate 501, to the inside of the first outer baffle 502 along the width direction of the first outer baffle 502, the first outer accommodating groove 507 and the first outer locking groove 508 are arranged in a penetrating manner along the thickness direction of the first outer baffle 502, and the first outer accommodating groove 507 and the first outer locking groove 508 respectively form openings, through which the guide pin 702 and the locking pin pass, on the end face of the first outer baffle 502, which is attached to the bottom plate 501. The first outer limiting groove 509 is communicated with the first outer locking groove 508, the first outer locking groove 508 is located between the two first outer limiting grooves 509, the two first outer limiting grooves 509 are located on the same straight line parallel to the length direction of the first outer baffle 502, and the first outer limiting groove 509 extends along the length direction of the first outer baffle 502. The shape of the first outer receiving groove 507 is matched with the shape of the guide pin 702 of the plug 7, the shape of the first outer locking groove 508 is matched with the shape of the insertion rod of the plug 7, and the shape of the first outer stopper groove 509 is matched with the shape of the stopper protrusion 705 of the plug 7.
As shown in fig. 1 to 5, the bottom plate 501 has a first lower avoiding hole for the guide pin 702 and the lock pin of the plug connector 7 to pass through, the first lower avoiding hole is a through hole penetrating the bottom plate 501 along the thickness direction thereof and extends along the width direction of the bottom plate 501, the length of the guide pin 702 and the length of the lock pin are greater than the thickness of the first lower avoiding hole, the length and the width of the connecting plate 701 are greater than the length and the width of the first lower avoiding hole, and the length direction of the first lower avoiding hole is parallel to the width direction of the bottom plate 501. The first lower avoiding hole is formed in the end portion of the bottom plate 501 in the length direction, and at least one first lower avoiding hole is formed in each of the two ends of the bottom plate 501 in the length direction. When the plug-in unit 7 is used for assembling the first outer baffle 502 and the bottom bracket plate 501, the guide pin 702 and the locking pin of the plug-in unit 7 penetrate through the first lower avoiding hole of the bottom bracket plate 501, then the guide pin 702 and the locking pin of the plug-in unit 7 are gradually inserted into the first outer accommodating groove 507 and the first outer locking groove 508 of the first outer baffle 502, finally the two guide pins 702 are respectively inserted into the two first outer accommodating grooves 507, the insertion rod is inserted into the first outer locking groove 508, the two limiting protrusions 705 penetrate through the first outer locking groove 508 and are respectively embedded into the two first outer limiting grooves 509, the limiting protrusions 705 are used for limiting the first outer baffle 502 in the width direction of the first outer baffle 502, the locking pin plays a locking role for the first outer baffle 502 and the bottom bracket plate 501, the first outer baffle 502 is prevented from being separated from the bottom bracket plate 501 after being assembled, and the bottom bracket plate 501 is clamped between the connecting plate 701 and the first outer baffle 502, first end surface 706 of lead-in section 704 abuts against the inner wall surface of first outer locking groove 508.
As shown in fig. 1 to 5, the first outer baffle 502 is connected to the bottom plate 501 through two connectors 7, so as to ensure that the bottom plate 501 is firmly connected to the first outer baffle 502, four first lower avoiding holes are formed in the bottom plate 501, and two first lower avoiding holes are respectively formed at two ends of the bottom plate 501 in the length direction. Correspondingly, the first outer retainer 502 is provided with two first outer locking grooves 508, four first outer receiving grooves 507 and four first outer limiting grooves 509.
As shown in fig. 1 to 6, the second outer barrier 503 has a second escape hole 510 through which the guide pin 702 and the locking pin pass, a second outer receiving groove 511 into which the guide pin 702 is inserted, a second outer locking groove 512 into which the insertion rod is inserted, a second outer stopper groove 513 into which the stopper protrusion 705 is inserted, a third outer receiving groove 514 into which the guide pin 702 is inserted, the third outer locking groove 515 into which the insertion rod is inserted and the third outer limiting groove 516 into which the limiting protrusion 705 is inserted are provided in plurality, the second avoiding holes 510, the second outer receiving grooves 511, the second outer locking grooves 512 and the second outer limiting grooves 513 are all provided in plurality, all the second avoiding holes 510 are sequentially arranged along the length direction of the second outer baffle 503, each second outer limiting groove 513 is respectively positioned on the same straight line parallel to the length direction of the second outer baffle 503 with at least one second outer receiving groove 511, and the third outer receiving groove 514, the third outer locking groove 515 and the third outer limiting groove 516 are provided at the end of the second outer baffle 503. The second outer baffle 503 has a certain length, width and thickness, the thickness direction of the second outer baffle 503 is parallel to the width direction of the bottom bracket plate 501, the width direction of the first outer baffle 502 is perpendicular to the length and thickness direction thereof, the second avoiding hole 510 is a through hole which is arranged on the second outer baffle 503 along the thickness direction of the second outer baffle 503 in a penetrating manner, the second avoiding hole 510 extends along the width direction of the second outer baffle 503, the lengths of the guide pin 702 and the locking pin are greater than the thickness of the second outer baffle 503, and the length and width of the connecting plate 701 are greater than the length and width of the second avoiding hole 510. The second outside receiving groove 511 and the second outside locking groove 512 both have a certain length, and the length direction of the second outside receiving groove 511 and the second outside locking groove 512 is parallel to the width direction of the second outside baffle 503, the second outside receiving groove 511 and the second outside locking groove 512 extend from the end surface of the second outside baffle 503, which is attached to the bottom bracket plate 501, to the inside of the second outside baffle 503 along the width direction of the second outside baffle 503, the second outside receiving groove 511 and the second outside locking groove 512 are arranged to penetrate along the thickness direction of the second outside baffle 503, and the second outside receiving groove 511 and the second outside locking groove 512 form openings, through which the guide pins 702 and the locking pins pass, respectively, on the end surface of the second outside baffle 503, which is attached to the bottom bracket plate 501. The second outer limiting groove 513 is communicated with the second outer locking groove 512, the second outer locking groove 512 is located between the two second outer limiting grooves 513, the two second outer limiting grooves 513 are located on the same straight line parallel to the length direction of the second outer baffle 503, and the second outer limiting groove 513 extends along the length direction of the second outer baffle 503. The shape of the second outer receiving groove 511 is matched with the shape of the guide pin 702 of the plug 7, the shape of the second outer locking groove 512 is matched with the shape of the insertion rod of the plug 7, and the shape of the second outer stopper groove 513 is matched with the shape of the stopper protrusion 705 of the plug 7.
As shown in fig. 1 to 6, the bottom bracket plate 501 has a second lower avoiding hole for the guide pin 702 and the lock pin of the plug connector 7 to pass through, the second lower avoiding hole is a through hole penetrating the bottom bracket plate 501 along the thickness direction thereof and extends along the length direction of the bottom bracket plate 501, the length of the guide pin 702 and the lock pin is greater than the thickness of the second lower avoiding hole, the length and the width of the connecting plate 701 are greater than the length and the width of the second lower avoiding hole, and the length direction of the second lower avoiding hole is parallel to the length direction of the bottom bracket plate 501. The second lower avoiding hole is formed in the end portion of the bottom plate 501 in the width direction, and at least one second lower avoiding hole is formed in each of the two ends of the bottom plate 501 in the width direction. When the plug-in unit 7 is used for assembling the second outer baffle 503 and the bottom bracket plate 501, the guide pin 702 and the locking pin of the plug-in unit 7 penetrate through the second lower avoiding hole of the bottom bracket plate 501, then the guide pin 702 and the locking pin of the plug-in unit 7 are gradually inserted into the second outer accommodating groove 511 and the second outer locking groove 512 of the second outer baffle 503 respectively, finally the two guide pins 702 are respectively inserted into the two second outer accommodating grooves 511, the insertion rod is inserted into the second outer locking groove 512, the two limiting protrusions 705 penetrate through the second outer locking groove 512 and are respectively embedded into the two second outer limiting grooves 513, the limiting protrusion 705 is used for limiting the second outer baffle 503 in the width direction of the second outer baffle 503, the locking pin is used for locking the second outer baffle 503 and the bottom bracket plate 501, the second outer baffle 503 is prevented from being separated from the bottom bracket plate 501 after being assembled, and the bottom bracket plate 501 is clamped between the connecting plate 701 and the second outer baffle 503, the first end surface 706 of the introduction section 704 abuts against the inner wall surface of the second outer locking groove 512.
As shown in fig. 1 to 6, the second outer baffle 503 is connected to the bottom bracket plate 501 through three plug connectors 7, the three plug connectors 7 are sequentially arranged along the length direction of the second outer baffle 503 and are distributed at equal intervals, so as to ensure that the bottom bracket plate 501 is firmly connected to the second outer baffle 503, six second lower avoiding holes are provided on the bottom bracket plate 501, and three second lower avoiding holes are respectively provided at two ends of the bottom bracket plate 501 in the width direction. Correspondingly, the second outer blocking plate 503 is provided with three first outer locking grooves 508, six first outer accommodating grooves 507 and six first outer limiting grooves 509.
As shown in fig. 1 to 6, the third outer accommodating groove 514 and the third outer locking groove 515 each have a certain length, and the length directions of the third outer accommodating groove 514 and the third outer locking groove 515 are parallel to the length direction of the second outer barrier 503, the third outer accommodating groove 514 and the third outer locking groove 515 extend from the end surface of the second outer barrier 503, which is in contact with the first outer barrier 502, to the inside of the second outer barrier 503 along the length direction of the second outer barrier 503, the third outer accommodating groove 514 and the third outer locking groove 515 are provided so as to penetrate in the thickness direction of the second outer barrier 503, and the third outer accommodating groove 514 and the third outer locking groove 515 form openings through which the guide pin 702 and the locking pin pass, respectively, at the end surface of the second outer barrier 503, which is in contact with the first outer barrier 502. The third outer limiting grooves 516 are communicated with the third outer locking grooves 515, the third outer locking grooves 515 are located between the two third outer limiting grooves 516, the two third outer limiting grooves 516 are located on the same straight line parallel to the width direction of the second outer baffle 503, and the third outer limiting grooves 516 extend along the width direction of the second outer baffle 503. The shape of the third outer receiving groove 514 matches the shape of the guide pin 702 of the plug 7, the shape of the third outer locking groove 515 matches the shape of the insertion rod of the plug 7, and the shape of the third outer stopper groove 516 matches the shape of the stopper protrusion 705 of the plug 7.
When the plug-in unit 7 is used for assembling the second outer baffle 503 and the first outer baffle 502, the guide pin 702 and the lock pin of the plug-in unit 7 pass through the first avoiding hole 506 of the first outer baffle 502, then the guide pin 702 and the lock pin of the plug-in unit 7 are gradually inserted into the third outer accommodating groove 514 and the third outer lock groove 515 of the second outer baffle 503, finally the two guide pins 702 are respectively inserted into the two third outer accommodating grooves 514, the insertion rod is inserted into the third outer lock groove 515, the two limiting protrusions 705 pass through the third outer lock groove 515 and are respectively embedded into the two third outer limiting grooves 516, the limiting protrusion 705 is used for limiting the second outer baffle 503 in the length direction of the second outer baffle 503, the lock pin locks the second outer baffle 503 and the first outer baffle 502, and prevents the second outer baffle 503 from being separated from the first outer baffle 502 after being assembled, the first outer skirt 502 is sandwiched between the connecting plate 701 and the second outer skirt 503, and the first end surface 706 of the introduction section 704 abuts against the inner wall surface of the third outer lock groove 515.
As shown in fig. 1 to 6, the second outer blocking plate 503 is connected to the first outer blocking plate 502 through a plug connector 7, two ends of the second outer blocking plate 503 in the length direction are respectively connected to one ends of the two first outer blocking plates 502 in the length direction through a plug connector 7, two ends of the first outer blocking plate 502 in the length direction are respectively connected to one ends of the two second outer blocking plates 503 in the length direction through a plug connector 7, and correspondingly, two ends of the second outer blocking plate 503 in the length direction are respectively provided with a third outer locking groove 515, a third outer accommodating groove 514 and a third outer limiting groove 516.
As shown in fig. 1 to 7, the first inner spacer 504 includes a first upper receiving groove 517 into which the guide pin 702 is inserted, a first upper locking groove 518 into which the insertion rod is inserted, a first upper limiting groove 519 into which the limiting protrusion 705 is inserted, a first lower receiving groove 520 into which the guide pin 702 is inserted, a first lower locking groove 521 into which the insertion rod is inserted, and a first lower limiting groove 522 into which the limiting protrusion 705 is inserted, the first upper receiving groove 517 and the first upper locking groove 518 are located on the same straight line parallel to the width direction of the first inner spacer 504, and the first lower receiving groove 520 and the first lower locking groove 521 are located on the same straight line parallel to the length direction of the first inner spacer 504. The first inner partition 504 has a certain length, width and thickness, the thickness direction of the first inner partition 504 is parallel to the length direction of the bottom plate 501, the width direction of the first inner partition 504 is perpendicular to the length and thickness directions thereof, the first lower receiving groove 520 and the first lower locking groove 521 both have a certain length, the length directions of the first lower receiving groove 520 and the first lower locking groove 521 are parallel to the width direction of the first inner partition 504, the first lower receiving groove 520 and the first lower locking groove 521 extend from the end surface of the first inner partition 504, which is attached to the bottom plate 501, to the inside of the first inner partition 504 along the width direction of the first inner partition 504, the first lower receiving groove 520 and the first lower locking groove 521 are arranged to penetrate through the thickness direction of the first inner partition 504, the first lower receiving groove 520 and the first lower lock groove 521 form openings through which the guide pin 702 and the lock pin pass, respectively, on the end surface of the first inner partition 504 that abuts against the bottom plate 501. The first lower locking groove 522 is communicated with the first lower locking groove 521, the first lower locking groove 521 is located between two first lower limiting grooves 522, the two first lower limiting grooves 522 are located on the same straight line parallel to the length direction of the first inner partition 504, and the first lower limiting grooves 522 extend along the length direction of the first inner partition 504. The shape of the first lower receiving groove 520 is matched with the shape of the guide pin 702 of the plug 7, the shape of the first lower locking groove 521 is matched with the shape of the insertion rod of the plug 7, and the shape of the first lower stopper groove 522 is matched with the shape of the stopper protrusion 705 of the plug 7.
As shown in fig. 1 to 7, the bottom bracket plate 501 has a third lower avoiding hole for the guide pin 702 and the lock pin of the plug connector 7 to pass through, the third lower avoiding hole is a through hole penetrating the bottom bracket plate 501 along the thickness direction thereof and extends along the width direction of the bottom bracket plate 501, the length of the guide pin 702 and the lock pin is greater than the thickness of the third lower avoiding hole, the length and the width of the connecting plate 701 are greater than the length and the width of the third lower avoiding hole, and the length direction of the third lower avoiding hole is parallel to the width direction of the bottom bracket plate 501. When the plug-in unit 7 is used for assembling the first inner partition 504 and the bottom bracket plate 501, the guide pin 702 and the lock pin of the plug-in unit 7 penetrate through the third lower relief hole of the bottom bracket plate 501, then the guide pin 702 and the lock pin of the plug-in unit 7 are gradually inserted into the first lower receiving groove 520 and the first lower lock groove 521 of the first inner partition 504, finally the two guide pins 702 are respectively inserted into the two first lower receiving grooves 520, the insertion rod is inserted into the first lower lock groove 521, the two limit protrusions 705 penetrate through the first lower lock groove 521 and are respectively embedded into the two first lower limit grooves 522, the limit protrusion 705 is used for limiting the first inner partition 504 in the width direction of the first inner partition 504, the lock pin is used for locking the first inner partition 504 and the bottom bracket plate 501, the first inner partition 504 is prevented from being separated from the bottom bracket plate 501 after assembly, and the bottom bracket plate 501 is sandwiched between the connecting plate 701 and the first inner partition 504, the first end surface 706 of the introduction section 704 abuts against the inner wall surface of the first lower locking groove 521.
As shown in fig. 1 to 7, the first inner spacer 504 is connected to the bottom plate 501 through two plug connectors 7, so as to ensure that the bottom plate 501 is firmly connected to the first inner spacer 504, four third lower avoiding holes are provided on the bottom plate 501, and two third lower avoiding holes are provided at two ends of the bottom plate 501 in the length direction. Correspondingly, two first lower locking grooves 521, four first lower receiving grooves 520 and four first lower limiting grooves 522 are disposed on the first inner partition 504.
As shown in fig. 1 to 7, a first upper receiving groove 517, a first upper locking groove 518 and a first upper limiting groove 519 are disposed at an end portion of the first inner partition 504 in the length direction, each of the first upper receiving groove 517 and the first upper locking groove 518 has a certain length, the length directions of the first upper receiving groove 517 and the first upper locking groove 518 are parallel to the length direction of the first inner partition 504, the first upper receiving groove 517 and the first upper locking groove 518 extend from an end surface of the first inner partition 504, which is attached to the second outer partition 503, to the inside of the first inner partition 504 in the length direction of the first inner partition 504, the first upper receiving groove 517 and the first upper locking groove 518 are disposed to penetrate through the first inner partition 504 in the thickness direction, the first upper receiving groove 517 and the first upper lock groove 518 form openings through which the guide pins 702 and the lock pins pass, respectively, on the end surface of the first inner partition 504 that abuts against the second outer barrier 503. The first upper limiting groove 519 is communicated with the first upper locking groove 518, the first upper locking groove 518 is located between two first upper limiting grooves 519, the two first upper limiting grooves 519 are located on the same straight line parallel to the width direction of the first inner partition 504, and the first upper limiting groove 519 extends along the width direction of the first inner partition 504. The shape of the first upper receiving groove 517 is matched with the shape of the guide pin 702 of the plug 7, the shape of the first upper locking groove 518 is matched with the shape of the insertion rod of the plug 7, and the shape of the first upper limiting groove 519 is matched with the shape of the limiting projection 705 of the plug 7.
When the plug-in unit 7 is used for assembling the first inner partition 504 and the second outer partition 503, the guide pin 702 and the lock pin of the plug-in unit 7 penetrate through the second avoiding hole 510 of the second outer partition 503, then the guide pin 702 and the lock pin of the plug-in unit 7 are gradually inserted into the first upper receiving groove 517 and the first upper lock groove 518 of the first inner partition 504, finally the two guide pins 702 are respectively inserted into the two first upper receiving grooves 517, the insertion rod is inserted into the first upper lock groove 518, the two limit protrusions 705 penetrate through the first upper lock groove 518 and are respectively embedded into the two first upper limit grooves 519, the limit protrusions 705 are used for limiting the first inner partition 504 in the length direction of the first inner partition 504, the lock pin locks the first inner partition 504 and the second outer partition 503, and prevents the first inner partition 504 from being separated from the second outer partition 503 after being assembled, the second outer shield 503 is sandwiched between the connecting plate 701 and the first inner shield 504, and the first end surface 706 of the introduction section 704 abuts against the inner wall surface in the first upper lock groove 518.
As shown in fig. 1 to 7, the first inner partition 504 is connected to the second outer partition 503 through a plug 7, two ends of the first inner partition 504 in the length direction are respectively connected to the two second outer partitions 503 through a plug 7, and correspondingly, two ends of the first inner partition 504 in the length direction are respectively provided with a first upper locking groove 518, a first upper receiving groove 517 and a first upper limiting groove 519.
As shown in fig. 1 to 8, the second inner partition 505 has a second upper receiving groove 523 into which the guide pin 702 is inserted, a second upper locking groove 524 into which the insertion rod is inserted, a second upper limiting groove 525 into which the limiting protrusion 705 is inserted, a second lower receiving groove 526 into which the guide pin 702 is inserted, a second lower locking groove 527 into which the insertion rod is inserted, and a second lower limiting groove 528 into which the limiting protrusion 705 is inserted, wherein the second upper receiving groove 523 and the second upper locking groove 524 are located on the same straight line parallel to the width direction of the second inner partition 505, and the second lower receiving groove 526 and the second lower locking groove 527 are located on the same straight line parallel to the length direction of the second inner partition 505. The second inner partition 505 has a certain length, width and thickness, the thickness direction of the second inner partition 505 is parallel to the width direction of the bottom bracket plate 501, the width direction of the second inner partition 505 is perpendicular to the length and thickness directions thereof, the second lower receiving groove 526 and the second lower locking groove 527 both have a certain length, the length directions of the second lower receiving groove 526 and the second lower locking groove 527 are parallel to the width direction of the second inner partition 505, the second lower receiving groove 526 and the second lower locking groove 527 extend from the end face of the second inner partition 505, which is attached to the bottom bracket plate 501, to the inside of the second inner partition 505 along the width direction of the second inner partition 505, and the second lower receiving groove 526 and the second lower locking groove 527 are arranged to penetrate along the thickness direction of the second inner partition 505, the second lower receiving groove 526 and the second lower lock groove 527 form openings through which the guide pins 702 and the lock pins pass, respectively, on the end surface of the second inner partition 505 that abuts the bottom bracket plate 501. The second lower-limiting groove 528 is in communication with the second lower locking groove 527, the second lower locking groove 527 is located between two second lower-limiting grooves 528, the two second lower-limiting grooves 528 are located on the same straight line parallel to the length direction of the second inner partition 505, and the second lower-limiting groove 528 extends along the length direction of the second inner partition 505. The shape of the second lower receiving groove 526 is matched with the shape of the guide pin 702 of the plug 7, the shape of the second lower locking groove 527 is matched with the shape of the insertion rod of the plug 7, and the shape of the second lower limiting groove 528 is matched with the shape of the limiting protrusion 705 of the plug 7.
As shown in fig. 1 to 8, the bottom bracket plate 501 has a fourth lower avoiding hole for the guide pin 702 and the lock pin of the plug connector 7 to pass through, the fourth lower avoiding hole is a through hole penetrating the bottom bracket plate 501 along the thickness direction thereof and extends along the length direction of the bottom bracket plate 501, the length of the guide pin 702 and the lock pin is greater than the thickness of the fourth lower avoiding hole, the length and the width of the connecting plate 701 are greater than the length and the width of the fourth lower avoiding hole, and the length direction of the fourth lower avoiding hole is parallel to the length direction of the bottom bracket plate 501. When the plug-in unit 7 is used for assembling the second inner partition 505 and the bottom bracket plate 501, the guide pins 702 and the lock pins of the plug-in unit 7 penetrate through the fourth lower avoiding holes of the bottom bracket plate 501, then the guide pins 702 and the lock pins of the plug-in unit 7 are gradually inserted into the second lower accommodating grooves 526 and the second lower lock grooves 527 of the second inner partition 505, finally the two guide pins 702 are respectively inserted into the two second lower accommodating grooves 526, the insertion rods are inserted into the second lower lock grooves 527, the two limit protrusions 705 penetrate through the second lower lock grooves 527 and are respectively inserted into the two second lower limit grooves 528, the limit protrusions 705 are used for limiting the second inner partition 505 in the width direction of the second inner partition 505, the lock pins are used for locking the second inner partition 505 and the bottom bracket plate 501, the second inner partition 505 is prevented from being separated from the bottom bracket plate 501 after being assembled, and the bottom bracket plate 501 is clamped between the connecting plate 701 and the second inner partition 505, the first end surface 706 of the introduction section 704 abuts against the inner wall surface of the second lower locking groove 527.
As shown in fig. 1 to 8, the second inner partition 505 is connected to the bottom bracket 501 through a plug 7, and a second lower locking groove 527, a second lower receiving groove 526 and a second lower limiting groove 528 are formed in the second inner partition 505.
As shown in fig. 1 to 8, the second upper receiving groove 523, the second upper locking groove 524, and the second upper limiting groove 525 are disposed at one end of the second inner partition 505 in the length direction, the second upper receiving groove 523 and the second upper locking groove 524 both have a certain length, the length directions of the second upper receiving groove 523 and the second upper locking groove 524 are parallel to the length direction of the second inner partition 505, the second upper receiving groove 523 and the second upper locking groove 524 extend from the end surface of the second inner partition 505, which is attached to the first outer baffle 502, to the inside of the second inner partition 505 in the length direction of the second inner partition 505, the second upper receiving groove 523 and the second upper locking groove 524 are disposed to penetrate through the thickness direction of the second inner partition 505, the second upper receiving groove 523 and the second upper lock groove 524 form openings through which the guide pin 702 and the lock pin pass, respectively, on the end surface of the second inner partition 505 that abuts the first outer barrier 502. The second upper limiting groove 525 is in communication with the second upper locking groove 524, the second upper locking groove 524 is located between two second upper limiting grooves 525, the two second upper limiting grooves 525 are located on the same straight line parallel to the width direction of the second inner partition 505, and the second upper limiting grooves 525 extend along the width direction of the second inner partition 505. The shape of the second upper receiving groove 523 is matched with the shape of the guide pin 702 of the connector 7, the shape of the second upper locking groove 524 is matched with the shape of the insertion rod of the connector 7, and the shape of the second upper limiting groove 525 is matched with the shape of the limiting protrusion 705 of the connector 7.
When the plug-in unit 7 is used for assembling the second inner partition 505 and the first outer partition 502, the guide pin 702 and the lock pin of the plug-in unit 7 pass through the first avoiding hole 506 of the first outer partition 502, then the guide pin 702 and the lock pin of the plug-in unit 7 are gradually inserted into the second upper receiving groove 523 and the second upper lock groove 524 of the second inner partition 505, finally the two guide pins 702 are respectively inserted into the two second upper receiving grooves 523, the insertion rod is inserted into the second upper lock groove 524, the two limit protrusions 705 pass through the second upper lock groove 524 and are respectively inserted into the two second upper limit grooves 525, the limit protrusion 705 is used for limiting the second inner partition 505 in the length direction of the second inner partition 505, the lock pin locks the second inner partition 505 and the first outer partition 502, and prevents the second inner partition 505 from being separated from the first outer partition 502 after being assembled, the first outer baffle 502 is sandwiched between the connecting plate 701 and the second inner baffle 505, and the first end surface 706 of the introduction section 704 abuts against the inner wall surface of the second upper lock groove 524.
As shown in fig. 1 to 8, the second inner partition 505 is connected to the first outer partition 502 by a connector 7, one end of the second inner partition 505 in the length direction is connected to the two first outer partitions 502 by a connector 7, and correspondingly, one end of the second inner partition 505 in the length direction is provided with a second upper locking groove 524, a second upper receiving groove 523 and a second upper limiting groove 525.
As shown in fig. 1 to 3, during assembly, the end of the second outer barrier 503 needs to be inserted into the first avoiding hole 506 of the first outer barrier 502, and the plug 7 is engaged, so that the degree of freedom in the X direction and the Y direction can be limited, the X direction is parallel to the length direction of the bottom bracket plate 501, the Y direction is parallel to the width direction of the bottom bracket plate 501, and the reliability of the connection between the first outer barrier 502 and the second outer barrier 503 is improved; in addition, during assembly, the end of the second inner baffle 505 also needs to be inserted into the first avoiding hole 506 of the first outer baffle 502 and matched with the plug connector 7, so that the degree of freedom in the X direction and the Y direction can be limited, the reliability of connection between the first outer baffle 502 and the second inner baffle 505 is improved, and the assembled magazine is not easy to loosen.
As shown in fig. 1 to 3, in the present embodiment, two first outer baffles 502 are provided, two second outer baffles 503 are provided, two first inner baffles 504 are provided, three second inner baffles 505 are provided, six storage cavities of the magazine are provided, and the six storage cavities are arranged in two rows. The length direction of the guide pin of the plug connector connected with the first outer baffle and the second outer baffle is parallel to the length direction of the second outer baffle, the length direction of the guide pin of the plug connector connected with the first outer baffle and the second inner baffle is parallel to the length direction of the second inner baffle, the length direction of the guide pin of the plug connector connected with the first outer baffle plate and the bottom plate is parallel to the width direction of the first outer baffle plate, the length direction of the guide pin of the plug connector connected with the second outer baffle plate and the bottom plate is parallel to the width direction of the second outer baffle plate, the length direction of the guide pin of the plug connector connected with the first inner partition plate and the bottom plate is parallel to the width direction of the first inner partition plate, the length direction of the guide pin of the plug connector connected with the second inner baffle and the bottom plate is parallel to the width direction of the second inner baffle, and the length direction of the guide pin of the plug connector connected with the first inner baffle and the second outer baffle is parallel to the length direction of the first inner baffle.
The invention is described above with reference to the accompanying drawings. It is to be understood that the specific implementations of the invention are not limited in this respect. Various insubstantial improvements are made by adopting the method conception and the technical scheme of the invention; the present invention is not limited to the above embodiments, and can be modified in various ways.

Claims (10)

1. Assembled work or material rest, including work or material rest body and magazine, its characterized in that: the material rack is characterized by further comprising a material bracket which is rotatably arranged on the material rack body and used for placing the material box, and the material box is integrally separated from the material bracket.
2. The modular stack of claim 1, wherein: the magazine includes the bottom plate board and sets up first outer baffle, the outer baffle of second, first inner baffle and second inner baffle on the bottom plate board, and first outer baffle, the outer baffle of second, first inner baffle and second inner baffle are equallyd divide and are formed detachable the being connected through plug connector and bottom plate board, and first outer baffle forms detachable the being connected through plug connector and the outer baffle of second and second inner baffle respectively, and the outer baffle of second forms detachable the being connected through plug connector and first inner baffle respectively.
3. The modular stack of claim 2, wherein: the length direction of the first outer baffle is parallel to the length direction of the first inner baffle, the length direction of the second outer baffle is parallel to the length direction of the second inner baffle, the length direction of the second outer baffle is perpendicular to the length direction of the first outer baffle, the first outer baffle and the second outer baffle are both provided with two parallel plates, and the first inner baffle and the second inner baffle are both positioned between the two first outer baffles and the two second outer baffles.
4. The modular stack of claim 3, wherein: the first inner partition plates are arranged in a plurality, all the first inner partition plates are sequentially arranged along the length direction of the second outer partition plate, the second inner partition plates are arranged in a plurality, one second inner partition plate is arranged between the second outer partition plate and the first inner partition plates, and one second inner partition plate is arranged between every two adjacent first inner partition plates.
5. The modular stack of any of claims 2 to 4, wherein: the plug connector comprises a connecting plate, and a guide pin and a locking pin which are arranged on the connecting plate, wherein the locking pin comprises an insertion rod and limiting bulges arranged on the insertion rod, and the two limiting bulges are arranged on the limiting bulges and extend out towards the two opposite sides of the insertion rod respectively.
6. The modular stack of claim 5, wherein: the utility model discloses a lead-in section, including the guide-in section of inserting the pole, the guide-in section sets up two and has the clearance between two and two guide-in sections, two spacing archs set up respectively on two guide-in sections, and the first terminal surface of guide-in section is the inclined plane, has contained angle and this contained angle for the acute angle between the first terminal surface of guide-in section and the length direction of guide-in section, and the first terminal surface of two guide-in sections is the V-arrangement.
7. The modular stack of claim 6, wherein: first outer baffle has the let the uide pin with the first hole of dodging, letting the first outer holding groove of uide pin male, letting of dodging that the lock pin passed insert the first outer locking groove of pole male and let spacing protruding male first outer spacing groove, first hole of dodging, first outer holding groove, first outer locking groove and first outer spacing groove all set up a plurality ofly, and all first holes of dodging arrange in proper order for the length direction along first outer baffle, and each first outer spacing groove is in on the same straight line that parallels with the length direction of first outer baffle with at least one first outer holding groove respectively.
8. The modular stack of claim 6 or 7, wherein: the outer baffle of second has the let the uide pin with the hole is dodged to the second that the lock pin passed, lets the outer storage tank of uide pin male second, lets insert the outer locking groove of pole male second, let the outer spacing groove of spacing arch male second, let the outer holding groove of uide pin male third, let insert the outer locking groove of pole male third and let the outer spacing groove of spacing arch male third, the hole is dodged to the second, the outer storage tank of second, the outer locking groove of second and the outer spacing groove of second all set up a plurality ofly, all seconds are dodged the hole and are arranged in proper order for the length direction along the outer baffle of second, the outer spacing groove of each second is in the same straight line that parallels with the length direction of the outer baffle of second with at least one second respectively, the outer holding groove of third, the outer locking groove of third and the outer spacing groove of third set up in the tip of the outer baffle of second.
9. The modular stack of any of claims 6 to 8, wherein: the first inner partition plate is provided with a first upper accommodating groove for the guide pin to be inserted into, a first upper locking groove for the insertion rod to be inserted into, a first upper limiting groove for the limiting protrusion to be inserted into, a first lower accommodating groove for the guide pin to be inserted into, a first lower locking groove for the insertion rod to be inserted into and a first lower limiting groove for the limiting protrusion to be inserted into, the first upper accommodating groove and the first upper locking groove are positioned on the same straight line parallel to the width direction of the first inner partition plate, and the first lower accommodating groove and the first lower locking groove are positioned on the same straight line parallel to the length direction of the first inner partition plate.
10. The modular stack of any of claims 6 to 9, wherein: the second inner partition plate is provided with a second upper accommodating groove for the guide pin to be inserted into, a second upper locking groove for the insertion rod to be inserted into, a second upper limiting groove for the limiting protrusion to be inserted into, a second lower accommodating groove for the guide pin to be inserted into, a second lower locking groove for the insertion rod to be inserted into and a second lower limiting groove for the limiting protrusion to be inserted into, the second upper accommodating groove and the second upper locking groove are positioned on the same straight line parallel to the width direction of the second inner partition plate, and the second lower accommodating groove and the second lower locking groove are positioned on the same straight line parallel to the length direction of the second inner partition plate.
CN201910823402.4A 2019-09-02 2019-09-02 Assembled material rack Active CN112441326B (en)

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