CN215973379U - Mounting structure of tilting slide - Google Patents

Mounting structure of tilting slide Download PDF

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Publication number
CN215973379U
CN215973379U CN202122479315.7U CN202122479315U CN215973379U CN 215973379 U CN215973379 U CN 215973379U CN 202122479315 U CN202122479315 U CN 202122479315U CN 215973379 U CN215973379 U CN 215973379U
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China
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support
hole
locking
column
lower support
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CN202122479315.7U
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Chinese (zh)
Inventor
奚阿明
高斐斐
田毅
刘钱
陆浩南
郭俊超
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Jiangsu Enrico Intelligent Manufacturing Co ltd
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Jiangsu Enrico Intelligent Manufacturing Co ltd
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Abstract

The utility model discloses a mounting structure of an inclined slideway, which comprises: the support, this support includes linking bridge, high order support frame and low order support frame, and this linking bridge includes: the connecting plate, the two connecting bases and the two connecting columns which are adjustably arranged in the connecting bases in a one-to-one correspondence mode; high-order support frame and low level support frame all include: the two sides of the lower support frame are respectively provided with an upper support column; the lower support frame include: the device comprises two lower supporting bases, two lower supporting columns which are adjustably arranged in the lower supporting bases in a one-to-one correspondence mode, and at least one lower supporting cross rod which is connected with the two lower supporting columns; the upper supporting column in the low-position supporting frame is connected with the corresponding side frames of the inclined slide way, and the side frames on two sides of the inclined slide way are connected with the top of the connecting column and the top of the upper supporting column of the high-position supporting frame through the rotary locking mechanism respectively. The mounting structure of the inclined slideway is particularly suitable for mounting various large slideways.

Description

Mounting structure of tilting slide
Technical Field
The utility model relates to an inclined slideway, in particular to an installation structure of the inclined slideway.
Background
At present, the mounting structure of traditional tilting slide is fairly simple, installs the support earlier, then hoists the tilting slide to the top of support, then, and the position of adjustment tilting slide is simultaneously welded, finally welds the tilting slide on the support. The whole installation process is very troublesome, and the installation efficiency is very low.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the utility model is as follows: provides a mounting structure of an inclined slideway with convenient mounting.
In order to solve the technical problems, the technical scheme adopted by the utility model is as follows: a mounting structure of a tilting chute comprising: the support, this support's concrete structure includes: the linking bridge that links to each other with the top of tilting slide and be used for supporting high order support frame and the low order support frame of tilting slide, the linking bridge include: the bottom end of the connecting column is inserted into the tubular connecting part and locked on the connecting base through a screw which penetrates through the adjusting long hole in the tubular connecting part and is screwed in the first locking threaded hole in the connecting column; high-order support frame and low level support frame all include: the two sides of the lower support frame are respectively provided with an upper support column; the lower support frame include: the lower support device comprises two lower support bases, two lower support columns and at least one lower support cross rod for connecting the two lower support columns, wherein the lower support bases are provided with tubular support parts matched with the lower support columns, the tubular support parts are provided with at least one adjusting long hole arranged in the vertical direction, the bottom ends of the lower support columns are provided with first locking threaded holes corresponding to the adjusting long holes in the tubular support parts, and the bottom ends of the lower support columns are inserted in the tubular support parts and are locked on the lower support bases through screws penetrating through the adjusting long holes in the tubular support parts and screwed in the first locking threaded holes in the lower support columns; the concrete structure of tilting slide includes: the side frames on two sides are provided with baffle plates, and a bottom plate is arranged between the side frames on two sides to form a sliding chute; the upper supporting column in the low-position supporting frame is connected with the corresponding side frames, and the side frames on two sides of the inclined slide way are respectively connected with the tops of the connecting column and the upper supporting column of the high-position supporting frame through the rotary locking mechanism.
As a preferable scheme, in the mounting structure of the inclined slide way, an upper support column in the high-position support frame is provided with an inclined upward inclined support rod towards a downward direction of the inclined slide way, and side frames at two sides of the inclined slide way are respectively connected with the top of the inclined support rod through a rotary locking mechanism.
As a preferable mode, in the inclined ramp mounting structure, the specific structure of the rotation locking mechanism includes: the connecting lug plate is arranged on the side frame, a locking through hole and an arc-shaped adjusting hole taking the locking through hole as a circle center are formed in the connecting lug plate, and a second locking threaded hole corresponding to the locking through hole and a third locking threaded hole corresponding to the arc-shaped adjusting hole are formed in the connecting column, the upper supporting column and the inclined supporting rod; the corresponding connecting lug plate is locked on the connecting column through a screw which passes through the locking through hole and is screwed in a second locking threaded hole on the connecting column and a screw which passes through the circular arc-shaped adjusting hole and is screwed in a third locking threaded hole on the connecting column; the corresponding connecting lug plate is locked on the upper supporting column through a screw which passes through the locking through hole and is screwed in a second locking threaded hole on the upper supporting column and a screw which passes through the circular arc-shaped adjusting hole and is screwed in a third locking threaded hole on the upper supporting column; and the corresponding connecting lug plate is locked on the inclined supporting rod through a screw which passes through the locking through hole and is screwed in the second locking threaded hole on the inclined supporting rod and a screw which passes through the circular arc-shaped adjusting hole and is screwed in the third locking threaded hole on the inclined supporting rod.
As a preferable scheme, in the mounting structure of the inclined slideway, at least one upper support cross rod connected with the two upper support columns is arranged between the two upper support columns of the high-position support frame.
As a preferable scheme, in the mounting structure of the inclined slideway, two upper support cross rods connected with the two upper support columns are arranged between the two upper support columns of the high-position support frame.
Preferably, in the inclined chute mounting structure, the two upper support cross bars are parallel to each other.
The utility model has the beneficial effects that: the utility model can conveniently adjust the relative position between the inclined chute and the bracket by arranging the rotary locking mechanism, and the height of the bracket can also be adjusted, thereby greatly facilitating the installation of the inclined chute and greatly improving the installation efficiency.
Drawings
Fig. 1 is a schematic perspective view of the installation structure of the inclined chute of the utility model.
Fig. 2 is a front view structural schematic diagram of the mounting structure of the inclined slideway.
Fig. 3 is an enlarged schematic view of a portion a of fig. 1.
The reference numerals in fig. 1 to 3 are respectively: 120. lower support base, 121, the lower support post, 122, the lower support horizontal pole, 123, go up the support post, 1231, the support horizontal pole, 124, the bearing diagonal pole, 125, go up the support post, 15, the connecting plate, 2, the tilting slide, 20, the bottom plate, 23, the side frame, 24, the side frame, 25, the baffle, 5, the linking bridge, 50, connect the base, 51, tubular connecting portion, 511, adjust the slot hole, 52, the spliced pole, 521, first locking screw hole, 522, second locking screw hole, 523, third locking screw hole, 6, the engaging lug board, 61, convex regulation hole.
Detailed Description
The following describes in detail a specific embodiment of a mounting structure of an inclined ramp according to the present invention with reference to the accompanying drawings.
As shown in fig. 1 and 2, the installation structure of the inclined chute of the present invention comprises: support and setting are in tilting slide 2 on the support, the support include: a connecting bracket 5 for connecting the top of the inclined slideway 2, and two supports, namely a high support and a low support, for supporting the inclined slideway 2, as shown in fig. 3, the connecting bracket 5 has a specific structure comprising: the connecting device comprises a connecting plate 15 and two connecting columns 52, wherein two sides of the connecting plate 15 are respectively provided with a connecting base 50, the connecting base 50 is provided with a tubular connecting part 51 matched with the connecting column 52, the tubular connecting part 51 is provided with two adjusting long holes 511 arranged in the vertical direction, the bottom end of the connecting column 52 is provided with a first locking threaded hole 521 corresponding to the adjusting long hole 511 on the tubular connecting part 51, the bottom end of the connecting column 52 is inserted into the tubular connecting part 51 and is locked on the connecting base 50 through a screw which penetrates through the adjusting long hole 511 on the tubular connecting part 51 and is screwed into the first locking threaded hole 521 on the connecting column 52 (the device belongs to the conventional technology in the field, and the description is not expanded); the high-order support frame all include: the support comprises a lower support frame and two upper support columns 123 arranged on two sides of the lower support frame respectively, wherein an upper support cross rod 1231 used for connecting the two upper support columns 123 is arranged between the two upper support columns 123 respectively up and down, and the two upper support cross rods 1231 are parallel to each other; the low position support frame all include: a lower support frame, and one upper support column 125 disposed at both sides of the lower support frame; the lower support frame include: the lower support comprises two lower support bases 120, two lower support columns 121 and a lower support cross bar 122 connecting the top ends of the two lower support columns 121, wherein the lower support bases 120 are provided with tubular support parts matched with the lower support columns 121, the tubular support parts are provided with two adjusting long holes arranged in the vertical direction, the bottom ends of the lower support columns 121 are provided with locking threaded holes corresponding to the adjusting long holes on the tubular support parts, and the bottom ends of the lower support columns 121 are inserted into the tubular support parts and are locked on the lower support bases 120 through screws penetrating through the adjusting long holes on the tubular support parts and screwed in the locking threaded holes on the lower support columns 121 (see the mounting structure of the connecting bracket in fig. 3); the specific structure of the inclined slideway 2 comprises: the side frames 23 and 24 on two sides are provided with baffle plates 25, and a bottom plate 20 is arranged between the side frames 23 and 24 to form a sliding chute; the upper support column in the low-position support frame is directly connected with the side frames 23 and 24 at two sides, the upper support column 123 in the high-position support frame is also provided with an inclined upward inclined support rod 124 towards the descending direction of the inclined slideway 2, and the side frames 23 and 24 at two sides of the inclined slideway 2 are respectively connected with the top parts of the connecting column 52, the inclined support rod 124 and the upper support column 123 of the high-position support frame through a rotary locking mechanism; as shown in fig. 3, the specific structure of the rotation locking mechanism includes: the connecting ear plate 6 is arranged on the side frame 24, the connecting ear plate 6 is provided with a locking through hole and an arc-shaped adjusting hole 61 taking the locking through hole as a circle center, and the connecting column 52 is provided with a second locking threaded hole 522 corresponding to the locking through hole and a third locking threaded hole 523 corresponding to the arc-shaped adjusting hole 61; the connecting ear plate 6 is locked on the connecting column 52 by a screw passing through the locking through hole and screwed into the second locking threaded hole 522 on the connecting column 52 and a screw passing through the circular arc-shaped adjusting hole 61 and screwed into the third locking threaded hole 523 on the connecting column 52, and the installation structures of the inclined supporting rod 124 and the upper supporting column 123 of the high-position supporting frame and the side frames 23 and 24 are completely the same as the installation structures of the connecting column 52 and the side frames 23 and 24, and the description is not repeated herein.
In summary, the present invention is only a preferred embodiment, and not intended to limit the scope of the utility model, and all equivalent changes and modifications made in the shape, structure, characteristics and spirit of the present invention described in the claims should be included in the scope of the present invention.

Claims (6)

1. A mounting structure of a tilting chute comprising: support, its characterized in that: the specific structure of the support comprises: the linking bridge that links to each other with the top of tilting slide and be used for supporting high order support frame and the low order support frame of tilting slide, the linking bridge include: the bottom end of the connecting column is inserted into the tubular connecting part and locked on the connecting base through a screw which penetrates through the adjusting long hole in the tubular connecting part and is screwed in the first locking threaded hole in the connecting column; high-order support frame and low level support frame all include: the two sides of the lower support frame are respectively provided with an upper support column; the lower support frame include: the lower support device comprises two lower support bases, two lower support columns and at least one lower support cross rod for connecting the two lower support columns, wherein the lower support bases are provided with tubular support parts matched with the lower support columns, the tubular support parts are provided with at least one adjusting long hole arranged in the vertical direction, the bottom ends of the lower support columns are provided with first locking threaded holes corresponding to the adjusting long holes in the tubular support parts, and the bottom ends of the lower support columns are inserted in the tubular support parts and are locked on the lower support bases through screws penetrating through the adjusting long holes in the tubular support parts and screwed in the first locking threaded holes in the lower support columns; the concrete structure of tilting slide includes: the side frames on two sides are provided with baffle plates, and a bottom plate is arranged between the side frames on two sides to form a sliding chute; the upper supporting column in the low-position supporting frame is connected with the corresponding side frames, and the side frames on two sides of the inclined slide way are respectively connected with the tops of the connecting column and the upper supporting column of the high-position supporting frame through the rotary locking mechanism.
2. The installation structure of the inclined slideway according to claim 1, wherein the upper support column of the upper support frame is provided with an inclined support rod which is inclined upwards towards the descending direction of the inclined slideway, and the side frames at two sides of the inclined slideway are respectively connected with the top of the inclined support rod through a rotary locking mechanism.
3. The inclined slide mounting structure of claim 2, wherein the specific structure of the rotation locking mechanism comprises: the connecting lug plate is arranged on the side frame, a locking through hole and an arc-shaped adjusting hole taking the locking through hole as a circle center are formed in the connecting lug plate, and a second locking threaded hole corresponding to the locking through hole and a third locking threaded hole corresponding to the arc-shaped adjusting hole are formed in the connecting column, the upper supporting column and the inclined supporting rod; the corresponding connecting lug plate is locked on the connecting column through a screw which passes through the locking through hole and is screwed in a second locking threaded hole on the connecting column and a screw which passes through the circular arc-shaped adjusting hole and is screwed in a third locking threaded hole on the connecting column; the corresponding connecting lug plate is locked on the upper supporting column through a screw which passes through the locking through hole and is screwed in a second locking threaded hole on the upper supporting column and a screw which passes through the circular arc-shaped adjusting hole and is screwed in a third locking threaded hole on the upper supporting column; and the corresponding connecting lug plate is locked on the inclined supporting rod through a screw which passes through the locking through hole and is screwed in the second locking threaded hole on the inclined supporting rod and a screw which passes through the circular arc-shaped adjusting hole and is screwed in the third locking threaded hole on the inclined supporting rod.
4. A tilting ramp mounting structure according to claim 1, 2 or 3, wherein at least one upper support cross bar is provided between the two upper support columns of said upper support frame to connect said two upper support columns.
5. The inclined slide way mounting structure as claimed in claim 4, wherein two upper support cross bars connecting the two upper support columns are arranged between the two upper support columns of the elevated support frame.
6. The inclined ramp mounting structure of claim 5, wherein the two upper support rails are parallel to each other.
CN202122479315.7U 2021-10-14 2021-10-14 Mounting structure of tilting slide Active CN215973379U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122479315.7U CN215973379U (en) 2021-10-14 2021-10-14 Mounting structure of tilting slide

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122479315.7U CN215973379U (en) 2021-10-14 2021-10-14 Mounting structure of tilting slide

Publications (1)

Publication Number Publication Date
CN215973379U true CN215973379U (en) 2022-03-08

Family

ID=80569502

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122479315.7U Active CN215973379U (en) 2021-10-14 2021-10-14 Mounting structure of tilting slide

Country Status (1)

Country Link
CN (1) CN215973379U (en)

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