Mounting structure of rack in corollary equipment

By setting up X- and Y-direction horizontal guide rails and adjustment mechanisms on the frame, combined with base adjustment and translation drive, the problem that the edge machine frame cannot be moved separately is solved, and the precise positioning and convenient maintenance of the edge machine and the glove forming machine are realized, reducing the cost of use.

CN223252161UActive Publication Date: 2025-08-22ZHANGJIAGANG PIONEER AUTOMATION MACHINERY EQUIP
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Patent Information

Application Number
CN202422663330.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-08-22
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

In the prior art, the frame of the edge feeder cannot be moved alone, resulting in increased precise positioning and maintenance difficulty of the edge feeder and glove forming machine, and increased maintenance costs.

Method used

在机架上设置X向和Y向的水平导轨和调节机构,结合底座调节机构和平移驱动机构,使机架能够在X向和Y向移动,并通过底板锁定机构和脚轮实现机架的灵活定位和移动。

Benefits of technology

The precise positioning of the edge material machine and the glove forming machine is realized, which reduces maintenance difficulty and cost, reduces labor intensity, and improves the convenience of equipment installation and movement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a mounting structure of a rack in corollary equipment with a rack capable of moving independently, which comprises a base, the rack is arranged on the base, at least three corners of the base are respectively provided with a base adjusting mechanism, the base is provided with a bottom plate through a pair of parallel X-direction horizontal guide rails, and the X-direction horizontal guide rails are arranged on the bottom plate. A bottom plate locking mechanism is arranged between the bottom plate and the base, a pair of Y-direction horizontal guide rails perpendicular to the X-direction horizontal guide rails is arranged on the bottom plate, the machine frame is arranged on the Y-direction horizontal guide rails in a sliding mode, and limiting abutting bolts are arranged at the two ends, right opposite to the Y-direction horizontal guide rails, of the machine frame respectively. The mounting structure of the rack can move independently relative to the base, so that the maintenance space can be vacated without moving the whole corollary equipment, the maintenance is greatly facilitated, and the maintenance cost is reduced.
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Description

Technical Field

[0001] The utility model relates to a mounting structure of a rack, in particular to a mounting structure of a rack in supporting equipment. Background Art

[0002] As is well known, after PVC and other thin-film gloves are formed on corresponding glove forming machines, the glove scraps need to be torn off. Therefore, a scraper is usually installed next to the corresponding side of the glove forming machine as an auxiliary equipment to improve production efficiency. In actual use, when the scraper needs to be precisely aligned with the glove forming machine or when the glove forming machine needs to be maintained, the frame on the scraper cannot be moved independently, so the entire scraper needs to be moved to accurately align the scraper with the glove forming machine or to make room for maintenance, which increases maintenance difficulty and usage costs. Utility Model Content

[0003] The technical problem to be solved by the utility model is to provide a mounting structure of a rack in a supporting device in which the rack can be moved independently.

[0004] In order to solve the above technical problems, the technical solution adopted by the present invention is: an installation structure of a rack in a supporting equipment, comprising: a base, a rack is arranged on the base, the base is respectively provided with a base adjustment mechanism at at least three corners thereof, a bottom plate is provided on the base through a pair of mutually parallel X-direction horizontal guide rails, a bottom plate locking mechanism is provided between the bottom plate and the base, a pair of Y-direction horizontal guide rails perpendicular to the X-direction horizontal guide rails are provided on the bottom plate, the rack is slidably arranged on the Y-direction horizontal guide rails, and limited position tightening bolts are respectively provided at both ends of the rack facing the Y-direction horizontal guide rails.

[0005] As a preferred solution, in the mounting structure of the frame in the aforementioned supporting equipment, the frame is further provided with a Y-direction translation drive mechanism.

[0006] As a preferred solution, in the mounting structure of the frame in the described supporting equipment, the Y-axis translation drive mechanism includes: a Y-axis threaded adjustment rod and a translation adjustment seat arranged on the corresponding side of the frame, the outer end of the Y-axis threaded adjustment rod is provided with an adjustment handwheel, the inner end of the Y-axis threaded adjustment rod is provided with a protrusion with a smaller diameter, an adjustment threaded hole corresponding to the Y-axis threaded adjustment rod is provided on the translation adjustment seat, and an adjustment rod through-hole corresponding to the adjustment threaded hole on the translation adjustment seat is provided on the corresponding side of the frame, a Y-axis adjustment reference seat matching with the translation adjustment seat is provided on the base plate, the protrusion on the inner end of the Y-axis threaded adjustment rod passes through the adjustment threaded hole on the translation adjustment seat and the adjustment rod through-hole on the corresponding side of the frame, and is movably arranged in the Y-axis adjustment reference seat, and the Y-axis threaded adjustment rod is inserted into the adjustment threaded hole of the parallel adjustment seat.

[0007] As a preferred solution, in the mounting structure of the frame in the described supporting equipment, the specific arrangement of the protrusion on the inner end of the Y-direction threaded adjustment rod and the Y-direction adjustment reference seat is as follows: the outer end of the protrusion on the inner end of the Y-direction threaded adjustment rod is provided with a threaded section, and the Y-direction adjustment reference seat is provided with an protrusion through hole that matches the protrusion on the inner end of the Y-direction threaded adjustment rod, the protrusion on the inner end of the Y-direction threaded adjustment rod extends from the protrusion through hole on the Y-direction adjustment reference seat, is sleeved with a gasket, and has a limiting nut on its threaded section.

[0008] As a preferred solution, in the mounting structure of the frame in the supporting equipment, the protruding portion on the inner end of the Y-direction threaded adjustment rod is further provided with a tightening nut on the outside of the limiting nut on its threaded section.

[0009] As a preferred solution, in the mounting structure of the rack in the supporting equipment, the base plate locking mechanism includes: at least one limit seat vertically arranged on the base, and a vertical locking bolt corresponding to the limit seat, a vertical locking threaded hole is provided on the top end face of the limit seat, and a locking through hole corresponding to the vertical locking threaded hole on the limit seat is provided on the base plate, and the vertical locking bolt is selected to pass through the locking through hole on the base plate and be set in the vertical locking threaded hole on the limit seat.

[0010] As a preferred solution, in the mounting structure of the rack in the described supporting equipment, the base plate locking mechanism includes: at least one locking folded edge arranged vertically downward on the corresponding side of the base plate and in contact with the corresponding side of the base, and a horizontal locking bolt corresponding to the locking folded edge, a locking notch matching the horizontal locking bolt is provided on the corresponding side of the locking folded edge, a horizontal locking threaded hole corresponding to the locking notch on the locking folded edge is provided on the corresponding side of the base, and the horizontal locking bolt is selected to be set in the horizontal locking threaded hole on the base.

[0011] As a preferred solution, in the mounting structure of the rack in the supporting equipment, the base is provided with casters at at least three corners thereof.

[0012] As a preferred solution, in the mounting structure of the rack in the supporting equipment, the base adjustment mechanism includes: a base adjustment bolt, the base is provided with a base adjustment through-hole corresponding to the base adjustment bolt at its corresponding corner, the base adjustment bolt is pre-positioned with a positioning adjustment nut, and then passes through the corresponding base adjustment through-hole on the base, and is provided with a positioning locking nut.

[0013] The beneficial effects of the utility model are:

[0014] 1. The present invention utilizes adjustment mechanisms in two mutually perpendicular horizontal directions, the X and Y directions, to enable the frame to move relative to the base (i.e., relative to the glove forming machine) in the X and Y directions. This greatly facilitates the precise positioning of the edge material machine and the glove forming machine, and allows the frame to be removed to free up maintenance space for the glove forming machine, thereby reducing operating costs.

[0015] 2. The utility model provides base adjustment mechanisms at at least three corners of the base, thereby making it very convenient to level the frame and adjust it to a suitable height, greatly facilitating the installation of supporting equipment.

[0016] 3. The utility model greatly reduces the labor intensity of maintenance personnel by arranging a Y-direction translation drive mechanism on the frame.

[0017] 4. The utility model provides locking folds on the corresponding sides of the bottom plate that fit with the corresponding sides of the base, and provides locking notches on the locking folds, and opens horizontal locking threaded holes on the corresponding sides of the base that correspond to the locking notches on the locking folds, so that the bottom plate can be moved by loosening the horizontal locking bolt (without unscrewing the entire horizontal locking bolt).

[0018] 5. The utility model provides casters at at least three corners of the bottom surface of the base, so that after the base adjustment mechanism is folded up, the device can be moved directly by pushing, making the movement of the entire supporting equipment very convenient and greatly reducing the cost of use. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a structural schematic diagram of the edge material machine described in the utility model.

[0020] Figure 2 It is a partially exploded structural diagram of the structural diagram of the edge material machine described in the utility model.

[0021] Figure 3 It is a schematic diagram of another locking structure between the base and the bottom plate.

[0022] Figure 4 yes Figure 2 Schematic diagram of the enlarged structure of part B.

[0023] Figure 5 yes Figure 3 Schematic diagram of the enlarged structure of part C.

[0024] Figures 1 to 51. The reference numerals in the drawings are: 1. base, 11. longitudinal beam, 12. cross beam, 14. limit seat, 2. X-axis horizontal guide rail, 3. bottom plate, 30. Y-axis horizontal guide rail, 31. Y-axis slider, 34. vertical locking bolt, 35. locking folding edge, 36. Y-axis adjustment reference seat, 361. extension through hole, 38. horizontal locking bolt, 6. Y-axis threaded adjustment rod, 60. translation adjustment seat, 601. adjustment hand wheel, 602. extension, 65. gasket, 66. limit nut, 67. tightening nut, 7. frame, 70. top plate, 71. side plate, 73. end plate, 8. limit and tightening bolt, 9. foot adjustment bolt, 91. positioning locking nut, 92. positioning adjustment nut, 10. caster. DETAILED DESCRIPTION

[0025] In the following, with reference to the accompanying drawings, a specific embodiment of the mounting structure of the frame in the supporting equipment of the present invention will be described in detail by taking a side feed machine of a PVC or other thin film glove forming machine as an example.

[0026] Example 1:

[0027] like Figure 1 and Figure 2As shown, the mounting structure of the rack in the supporting equipment described in the present invention includes: a base 1, which includes: two mutually parallel longitudinal beams 11, and two mutually parallel cross beams 12 (which belong to the conventional technology in this field and are not described in detail here), the cross beam 12 is a square tube, and its two ends are respectively provided with an upward oblique port; a rack 7 is provided on the base 1, and a base adjustment mechanism is respectively provided on the bottom surface of the two ends of the two cross beams 12, and the base adjustment mechanism includes: foot adjustment bolts 9, the cross beam 12 is at the bottom of its corresponding end The wall is provided with a base adjustment through hole corresponding to the base adjustment bolt 9. After the base adjustment bolt 9 is pre-positioned with a positioning adjustment nut 92, it passes through the base adjustment through hole on the bottom wall of the corresponding end of the beam 12 and is provided with a positioning locking nut 91 (which belongs to the conventional technology in this field and will not be described in detail here); the base 1 is provided with a bottom plate 3 through a pair of mutually parallel X-direction horizontal guide rails 2, and a bottom plate locking mechanism is provided between the bottom plate 3 and the base 1. The bottom plate locking mechanism includes: two vertically arranged on both sides of the width direction of the base 1 The limit seat 14, and the vertical locking bolt 34 corresponding to the limit seat 14, a vertical locking threaded hole is provided on the top end surface of the limit seat 14, and a locking through hole corresponding to the vertical locking threaded hole on the limit seat 14 is provided on the base plate 3. The vertical locking bolt 34 is selected to pass through the locking through hole on the base plate 3 and is set in the vertical locking threaded hole on the limit seat 14 (belonging to the conventional technology in this field and will not be described here); the base plate 3 is provided with a pair of vertical locking screws 2 perpendicular to the X-direction horizontal guide rail 2. The Y-direction horizontal guide rail 30 is provided, and a pair of Y-direction sliders 31 are respectively provided on both sides of the frame 7. The Y-direction sliders 31 are slidably provided on the corresponding Y-direction horizontal guide rail 30. The frame 7 is provided with limited position tightening bolts 8 at both ends facing the Y-direction horizontal guide rail 30; the frame 7 is also provided with a Y-direction translation drive mechanism, which includes: a Y-direction threaded adjustment rod 6, and a translation adjustment seat 60 provided on the corresponding side of the frame 7. The outer end of the Y-direction threaded adjustment rod 6 is provided with an adjustment handwheel 601, as shown in FIG. Figure 4As shown, the inner end of the Y-axis threaded adjustment rod 6 is provided with a thinner diameter extension 602, the translation adjustment seat 60 is provided with an adjustment threaded hole corresponding to the Y-axis threaded adjustment rod 6, and the corresponding side of the frame 7 is provided with an adjustment rod through-hole corresponding to the adjustment threaded hole on the translation adjustment seat 60. The base plate 3 is provided with a Y-axis adjustment reference seat 36 that cooperates with the translation adjustment seat 60. After the extension 602 on the inner end of the Y-axis threaded adjustment rod 6 passes through the adjustment threaded hole on the translation adjustment seat 60 and the adjustment rod through-hole on the corresponding side of the frame 7, it is movably set in the Y-axis adjustment reference seat 36. The method is as follows: the outer end of the protrusion 602 on the inner end of the Y-direction threaded adjustment rod 6 is provided with a threaded section, and the Y-direction adjustment reference seat 36 is provided with an protrusion through hole 361 that matches the protrusion 602 on the inner end of the Y-direction threaded adjustment rod 6. The protrusion 602 on the inner end of the Y-direction threaded adjustment rod 6 protrudes from the protrusion through hole 361 on the Y-direction adjustment reference seat 36, is sleeved with a gasket 65, and a limiting nut 66 and a tightening nut 67 are sequentially provided on its threaded section; the Y-direction threaded adjustment rod 6 is inserted into the adjustment threaded hole of the translation adjustment seat 60; and casters 10 are respectively provided at the four corners of the base 1.

[0028] Example 2:

[0029] like Figure 3 As shown in FIG. 1 , the mounting structure of the rack in another supporting device of the present invention, wherein the bottom plate locking mechanism includes: at least one locking fold 35 vertically downwardly arranged on the corresponding side of the bottom plate 3 and affixed to the corresponding side longitudinal beam 11 of the base 1, and a horizontal locking bolt 38 corresponding to the locking fold 35, as shown in FIG. Figure 5 As shown, a locking notch that cooperates with the horizontal locking bolt 38 is opened on the corresponding side of the locking fold 35, and a horizontal locking threaded hole corresponding to the locking notch on the locking fold 35 is opened on the corresponding side longitudinal beam 11 of the base 1, and the horizontal locking bolt 38 is selected to be set in the horizontal locking threaded hole on the corresponding side longitudinal beam 11 of the base 1; except that the bottom plate locking mechanism of this embodiment is different from that of Example 1, the rest of the structures are the same and will not be repeated here.

[0030] In actual application, the frame 7 includes: a side panel 71 located on each side, and an end panel 73 and a top panel 70 connecting the two side panels 71 (which belongs to the conventional technology in this field and will not be described in detail here).

[0031] In actual use, when the glove forming machine needs to be maintained, it is only necessary to remove the vertical locking bolts 34 or loosen the horizontal locking bolts 38 and move the frame 7 to the corresponding side ( Figure 2When the edge feed machine and the glove forming machine need to be precisely positioned, it is only necessary to loosen the limit tightening bolt 8 on the corresponding side, and then turn the adjusting hand wheel 601 to move the entire frame 7 in the Y direction. After the edge feed machine and the glove forming machine are precisely aligned, the limit tightening bolt 8 can be locked.

[0032] In summary, the above is only a preferred embodiment of the present invention and is not intended to limit the scope of implementation of the present invention. All equivalent changes and modifications made in accordance with the shape, structure, characteristics and spirit described in the scope of the claims of the present invention should be included in the scope of the claims of the present invention.

Claims

1. A mounting structure for a rack in an ancillary device, comprising: A base, a frame is arranged on the base, characterized in that the base is respectively provided with a base adjustment mechanism at at least three corners thereof, a bottom plate is provided on the base through a pair of mutually parallel X-direction horizontal guide rails, a bottom plate locking mechanism is provided between the bottom plate and the base, a pair of Y-direction horizontal guide rails perpendicular to the X-direction horizontal guide rails are provided on the bottom plate, the frame is slidably arranged on the Y-direction horizontal guide rails, and limited position tightening bolts are respectively provided at both ends of the frame facing the Y-direction horizontal guide rails.

2. The mounting structure of the rack in the supporting equipment according to claim 1, characterized in that: The frame is also provided with a Y-direction translation driving mechanism.

3. The mounting structure of the rack in the supporting equipment according to claim 2, characterized in that: The Y-axis translation drive mechanism includes: a Y-axis threaded adjustment rod and a translation adjustment seat arranged on the corresponding side of the frame, the outer end of the Y-axis threaded adjustment rod is provided with an adjustment handwheel, the inner end of the Y-axis threaded adjustment rod is provided with a protrusion with a smaller diameter, an adjustment threaded hole corresponding to the Y-axis threaded adjustment rod is provided on the translation adjustment seat, and an adjustment rod through-hole corresponding to the adjustment threaded hole on the translation adjustment seat is provided on the corresponding side of the frame, a Y-axis adjustment reference seat matching the translation adjustment seat is provided on the base plate, the protrusion on the inner end of the Y-axis threaded adjustment rod passes through the adjustment threaded hole on the translation adjustment seat and the adjustment rod through-hole on the corresponding side of the frame, and is movably arranged in the Y-axis adjustment reference seat, and the Y-axis threaded adjustment rod is inserted into the adjustment threaded hole of the parallel adjustment seat.

4. The mounting structure of the rack in the supporting equipment according to claim 1, characterized in that: The specific arrangement of the protrusion on the inner end of the Y-direction threaded adjustment rod and the Y-direction adjustment reference seat is as follows: a threaded section is provided at the outer end of the protrusion on the inner end of the Y-direction threaded adjustment rod, and an protrusion through hole is provided on the Y-direction adjustment reference seat to match the protrusion on the inner end of the Y-direction threaded adjustment rod. The protrusion on the inner end of the Y-direction threaded adjustment rod extends from the protrusion through hole on the Y-direction adjustment reference seat, is sleeved with a gasket, and a limiting nut is provided on its threaded section.

5. The mounting structure of the rack in the supporting equipment according to claim 4, characterized in that: The protruding portion on the inner end of the Y-direction threaded adjusting rod is also provided with a tightening nut on the threaded section thereof and located outside the limiting nut.

6. The mounting structure of the rack in the supporting equipment according to claim 1, characterized in that: The base plate locking mechanism includes: at least one limit seat vertically arranged on the base, and a vertical locking bolt corresponding to the limit seat, a vertical locking threaded hole is provided on the top end surface of the limit seat, and a locking through hole corresponding to the vertical locking threaded hole on the limit seat is provided on the base plate, and the vertical locking bolt is selected to pass through the locking through hole on the base plate and be set in the vertical locking threaded hole on the limit seat.

7. The mounting structure of the rack in the supporting equipment according to claim 1, characterized in that: The base plate locking mechanism includes: at least one locking folded edge arranged vertically downward on the corresponding side of the base plate and fitted with the corresponding side of the base, and a horizontal locking bolt corresponding to the locking folded edge. A locking notch matching the horizontal locking bolt is provided on the corresponding side of the locking folded edge, and a horizontal locking threaded hole corresponding to the locking notch on the locking folded edge is provided on the corresponding side of the base. The horizontal locking bolt is selected and set in the horizontal locking threaded hole on the base.

8. The mounting structure of the rack in the supporting equipment according to claim 1, characterized in that: The base is provided with casters at at least three corners thereof.

9. The mounting structure of a rack in an auxiliary device according to any one of claims 1 to 8, characterized in that: The base adjustment mechanism includes: a base adjustment bolt, and the base is provided with a base adjustment through hole corresponding to the base adjustment bolt at its corresponding corner. After the base adjustment bolt is pre-positioned with a positioning adjustment nut, it passes through the corresponding base adjustment through hole on the base and is provided with a positioning locking nut.