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CN-224221285-U - Fixed subassembly of high-pressure reactor and reaction unit

CN224221285UCN 224221285 UCN224221285 UCN 224221285UCN-224221285-U

Abstract

The utility model belongs to the technical field of chemical equipment and discloses a fixing assembly of a high-pressure reactor and a reaction unit, which comprises square tube sections, wherein a holding belt is arranged on the inner wall of each square tube section in an equidistant sliding manner, a high-pressure reactor is arranged between the two holding belts, a bolt structure is connected between the two opposite holding belts in a penetrating manner, a clamp main body is arranged on the outer side of each square tube section in a clamping manner, a high-pressure reaction tank is arranged in the clamp main body in a clamping manner at one end position of each square tube section in a clamping manner, arc clamping plates are arranged at the interfaces at the two ends of the clamp main body in a sliding manner, a fixing plate block is arranged on the rear side of each clamp main body in a welding manner, a sliding rail is fixedly arranged at one end surface of each fixing plate block, a square sliding block is connected in the sliding manner, the clamp main body of each high-pressure reactor can be adjusted and fixed by using hoops, the tightness degree of the high-pressure reactor body can be adjusted, the stability is improved, and the clamp supporting manner is more stable, and the disassembly and the installation is convenient.

Inventors

  • XU QINGCHUN
  • SUN WEI

Assignees

  • 江苏鑫门能源装备有限公司

Dates

Publication Date
20260512
Application Date
20250107

Claims (7)

  1. 1. The fixing assembly of the high-pressure reactor and the reaction unit is characterized by comprising square tube sections (1), wherein holding belts (6) are slidably arranged on the inner walls of the square tube sections (1) at equal intervals, a high-pressure reactor (2) is arranged between the two holding belts (6), a bolt structure (7) is connected between the two opposite holding belts (6) in a penetrating way, a clamp main body (4) is arranged on the outer side of the square tube sections (1) in a clamping way, a high-pressure reaction tank (3) is arranged inside the clamp main body (4) at one end of the square tube sections (1) in a clamping way, and arc clamping plates (5) are slidably arranged at the interfaces at the two ends of the clamp main body (4); Fixed plate (8) are installed in welding of clamp main part (4) rear side, fixed plate (8) terminal surface fixed mounting has slide rail (9), inside sliding connection of slide rail (9) has square slider (15), square slider (15) terminal surface sliding connection has limiting plate (10), limiting plate (10) inner wall sliding connection has slide bar (12), equal fixed mounting in bottom position department in slide bar (12) terminal surface corresponding limiting plate (10) top, slide bar (12) other end fixed mounting has spherical clamp (13).
  2. 2. The fixing assembly of the high-pressure reactor and the reaction unit according to claim 1, wherein one end of the holding belt (6) is fixedly provided with a guide block which is in sliding connection with the inner wall of the square tube section bar (1).
  3. 3. The fixing assembly of the high-pressure reactor and the reaction unit according to claim 1, wherein a nut is connected to the outer side of the clamp main body (4) at a position corresponding to one end face of the arc-shaped clamping plate (5) through threads.
  4. 4. The fixed assembly of the high-pressure reactor and the reaction unit according to claim 1, wherein the inner sides of the holding belt (6) and the arc-shaped clamping plate (5) are provided with anti-skid textures.
  5. 5. The fixed assembly of a high-pressure reactor and a reaction unit according to claim 1, wherein a sliding sheet is fixedly arranged at the bottom of the spherical clamping hoop (13), and the sliding sheet is slidably arranged on a sliding rod (12).
  6. 6. The fixing assembly of the high-pressure reactor and the reaction unit according to claim 1, wherein an extrusion structure (16) is fixedly installed inside the square sliding block (15), the extrusion structure (16) is formed by combining a positioning screw rod and a positioning nut, the positioning screw rod and the square sliding block (15) are connected through threads, one end face is mutually attached to one end face of the inner wall of the sliding rail (9), and the positioning nut is connected to the outer side of the positioning screw rod through threads, and one end face is mutually attached to one end face of the limiting plate (10).
  7. 7. The fixing assembly of the high-pressure reactor and the reaction unit according to claim 1, wherein a fastening structure (17) is fixedly installed at one end of the sliding rod (12), the fastening structure (17) is formed by combining a fastening screw rod and a fastening nut, the fastening screw rod penetrates through the limiting plate (10) and is fixedly connected with one end face of the sliding rod (12), and the fastening nut is connected with one end position of the outside of the fastening screw rod, corresponding to the limiting plate (10), through threads.

Description

Fixed subassembly of high-pressure reactor and reaction unit Technical Field The utility model belongs to the technical field of chemical equipment, and discloses a fixing component of a high-pressure reactor and a reaction unit. Background In the fields of chemical industry, pharmacy and the like, the application of the high-pressure reactor and the reaction unit is increasingly wide, and the reliable fixation of the high-pressure reactor and the reaction unit is an important link for ensuring the safe and stable operation of the whole reaction system. The existing high-pressure reactor and reaction unit often adopt a heavy integral structure, the fixed components are mostly cast parts or integral welding structures, the installation is heavy, the fixed components are easy to loosen or even fall off, and the size of the fixed components of the high-pressure reactor cannot be adjusted. Disclosure of utility model Aiming at the problems that in the prior art, a heavy integral structure is adopted, most of fixing components are cast parts or integral welding structures, the installation is heavy, the fixing components are easy to loosen and even fall off, and the size of the fixing components of the high-pressure reactor cannot be adjusted and fixed, the utility model provides the following technical scheme: the fixing assembly of the high-pressure reactor and the reaction unit comprises a square tube section, wherein a band is arranged on the inner wall of the square tube section at equal intervals in a sliding manner, a high-pressure reactor is arranged between the two bands, a bolt structure is connected between the two opposite bands in a penetrating manner, a clamp main body is arranged on the outer side of the square tube section in a clamping manner, a high-pressure reaction tank is arranged in the clamp main body in a clamping manner at one end of the square tube section, and arc clamping plates are arranged at the interfaces at the two ends of the clamp main body in a sliding manner; The clamp is characterized in that a fixed plate is welded and installed on the rear side of the clamp main body, a sliding rail is fixedly installed on one end face of the fixed plate, a square sliding block is slidably connected inside the sliding rail, a limiting plate is slidably connected on one end face of the square sliding block, a sliding rod is slidably connected on the inner wall of the limiting plate, corner pieces are fixedly installed on one end face of the sliding rod corresponding to the top end and the bottom end of the limiting plate, and a spherical clamp is fixedly installed on the other end of the sliding rod. Preferably, the guide block is fixedly arranged at one end of the holding belt and is in sliding connection with the inner wall of the square pipe section. Preferably, the outside of the clamp main body is connected with a nut through threads at a position corresponding to one end face of the arc-shaped clamping plate. Preferably, the inner sides of the holding belt and the arc-shaped clamping plate are provided with anti-skid textures. Preferably, a sliding sheet is fixedly arranged at the bottom of the spherical clamp, and the sliding sheet is slidably arranged on the sliding rod. Preferably, the inside fixed mounting of square slider has the extrusion structure, the extrusion structure is formed by locating screw and locating nut combination, laminating each other through threaded connection and an terminal surface and slide rail inner wall terminal surface between locating screw and the square slider, locating nut passes through threaded connection in locating screw outside and an terminal surface and limiting plate terminal surface laminating each other. Preferably, the fixed mounting of sliding rod one end has fastening structure, fastening structure is formed by fastening lead screw and fastening nut combination, fastening lead screw runs through limiting plate and with sliding rod one end face between fixed connection, the fastening lead screw outside corresponds limiting plate one end position department through threaded connection has fastening nut. The beneficial effects of the utility model are as follows: (1) The hoop can adapt to high-pressure reactors with different sizes, the tightness degree of the high-pressure reactor body can be adjusted and fixed, the stability is improved, the hoop support mode is more stable, and the disassembly and the assembly are convenient; (2) The length can be adjusted by using the sliding rail to connect the limiting plate, the square sliding block adopts the screw pair to fix the limiting plate and the sliding rail, the sliding rod and the limiting plate adopt the ground angle corner piece, the supportability and the fixity are increased, the spherical clamp is fixedly connected with the sliding piece sliding in the sliding rod, the position of the spherical clamp can be moved, and the position of the spherical clamp can be adjusted to the central